Tag Archives: single screw

China Best Sales Aluminum Spacers with Set Screw Double Single Split Clamping Threaded Shaft Collar with Good quality

Product Description

Aluminum Spacers With Set Screw Double Single Split Clamping Threaded Shaft Collar

1. Basic Information for cnc machine/lathe/milled/drilling parts:
 

Product Name
 
Aluminum Spacers With Set Screw Double Single Split Clamping Threaded Shaft Collar
Trade Terms EXW,FOB,CIF,CFR etc
Origin Country
 
ZheJiang ,China
Tolerance
 
0.02mm-0.2mm
Lead Time Sample: within 10 days.
Mass Production: within 20-25 days after receiving the deposit
Package *a. pp bags + carton + pallet
*b. according to customers’ requirements
*c. negotiable
Payment Terms *T/T : 30% beforehand, balanced 70% before shipping
*paypal
*Alibaba payment
Service

Punctual delivery
Reliable and cheap freight company
Good after-sale services

2. Technical specifications of auto lathe&cnc lathe machining part:
 

Item

Stainless Steel Face Mount Shaft Collars CNC Metal Collars

Material

Aluminum/Stainless steel/Steel/Cooper/Brass/Bronze/ ABS/PC, PO/POM/Nylon/PEEK/PPS…

Surface finish

Anodized, Oxide, Plating, Brushing, Polishing, Blackened, Powder coating,   Sandblasting, Laser engraving etc.

Machining
Equipments

From simple 2-axis turning to 7-axis, turn-mill-drill CNC Swiss-type machines, we are equipped with a full line of CNC equipment from the following manufactures:
molding machines/ stamping machines
automatic lathe machines/ spring machines.

Inspection Equipment

CMM, Projection, Calipers, Micro caliper, Thread Micro caliper, Pin   gauge, Caliper gauge, Pass meter, Pass meter etc.

Format

PDF, DWG/DXF, IGS/STP etc

Certification

ISO9001,TS16949, ROHS,HE,CMRT, 

3. Similar Products:

4. Company Profile

5. Our Department/Machine

6. Measuring Tools

7. Our Certification

8.Packaging & Shipping

9. Our Client

10. Recommend Products / Other Products


11. FAQ

Q: Are you trading company or manufacturer ?

A: We are factory.
 

Q: How long is your delivery time?

A: In 15-25 days after get the deposit (including tooling making time).
 

Q: What is your terms of payment ?

A: 1. T/T: 30% Deposit,70% left amount before shipment
2. L/C; irrevocable 100% L/C at sight.

Q: How to order:

A: * You send us drawing or sample
* We carry through project assessment
* We give you a design
* You think the design is ok
* We make the sample and send it to you
* You think the sample is good then place an order and pay us 30% deposit
* We start to make the product
* When the goods is done, we deliver it to Shengzhen Yiantian
* You pay us the balance after you see the B/L Copy

 

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Condition: New
Certification: RoHS, ISO9001, Ts16949
Standard: DIN, ASTM, GB, ANSI
Customized: Customized
Material: Stainless Steel
Application: Metal Cutting Machine, Metal Spinning Machinery, Metal Processing Machinery Parts, Metal Engraving Machinery
Samples:
US$ 50/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

shaft clamp

What are the best practices for maintaining aluminum collars in corrosive environments?

Maintaining aluminum collars in corrosive environments is crucial to ensure their longevity and optimal performance. Here are the best practices for proper maintenance:

  • 1. Regular Inspection: Conduct routine inspections to identify any signs of corrosion or wear on the aluminum collars. Look for discoloration, pitting, or surface damage.
  • 2. Material Selection: Ensure that the aluminum alloy used for the collars is corrosion-resistant. Select alloys with better resistance to corrosive agents, such as 6061 or 7075 aluminum, which offer good corrosion resistance properties.
  • 3. Corrosion-Resistant Coatings: Consider using collars with specialized coatings or finishes that provide an additional layer of protection against corrosion. These coatings can include anodizing, which can improve resistance to environmental factors.
  • 4. Proper Installation: Ensure that the collars are installed correctly and securely. Proper installation prevents gaps or openings that could allow corrosive agents to penetrate and damage the collar or the shaft.
  • 5. Lubrication: Apply a compatible lubricant to the collar’s contact surface with the shaft. Lubrication reduces friction and can help protect against corrosion. Ensure that the lubricant is suitable for the specific environmental conditions.
  • 6. Corrosion-Resistant Fasteners: If set screws or fasteners are used in collar installation, opt for corrosion-resistant materials such as stainless steel. This prevents galvanic corrosion between dissimilar metals.
  • 7. Sealant and Gaskets: In highly corrosive environments, consider using sealants or gaskets to create a barrier between the collar and the corrosive elements. These components can help maintain the integrity of the collar’s seal.
  • 8. Regular Cleaning: Clean the collars and surrounding components regularly to remove any accumulated contaminants. Use appropriate cleaning agents and methods that won’t harm the collar’s surface.
  • 9. Environmental Monitoring: Continuously monitor the environmental conditions in which the collars operate. Make adjustments or modifications to the maintenance routine based on changes in the environment’s corrosive factors.
  • 10. Replacement Schedule: Establish a replacement schedule for collars operating in particularly harsh or corrosive conditions. Regularly replace collars to prevent unexpected failures or deterioration in performance.
  • 11. Consult with Experts: Seek advice from corrosion or materials experts when dealing with highly corrosive environments. They can provide guidance on the best practices and materials for your specific situation.

Proper maintenance of aluminum collars in corrosive environments extends their lifespan and ensures the continued reliability of your machinery and equipment. By following these best practices, you can mitigate the effects of corrosion and reduce the risk of premature collar failure.

shaft clamp

Are there guidelines for lubricating and maintaining aluminum collars to ensure optimal performance?

Maintaining and lubricating aluminum collars is essential to ensure their optimal performance and longevity. Here are guidelines for proper lubrication and maintenance:

  • 1. **Cleaning:** Start by cleaning the collar and the shaft to remove any dirt, debris, or residue. Use a non-abrasive cloth or cleaning solution if necessary. Clean collars are easier to work with and less prone to wear and tear.
  • 2. **Lubrication: Apply a suitable lubricant to the contact points between the collar and the shaft. The lubricant reduces friction and wear, ensuring a secure fit. Be sure to use a lubricant compatible with aluminum and the specific application.
  • 3. **Proper Tightening: If you’re using set screw collars, ensure that you tighten the set screws evenly and to the manufacturer’s recommended torque specifications. Avoid over-tightening, which can damage the collar or shaft.
  • 4. **Regular Inspection: Periodically inspect the collars for signs of wear, damage, or misalignment. Replace any collars that show significant wear, as they may no longer provide a secure grip.
  • 5. **Environmental Considerations: Take into account the environmental conditions of your application. If the collars are exposed to moisture or corrosive substances, select a lubricant that provides corrosion protection. For high-temperature applications, choose a high-temperature lubricant.
  • 6. **Reapplication of Lubricant: In applications with frequent movement or high loads, reapply lubricant as needed to maintain optimal performance. Regularly re-lubricate moving parts for smooth operation.
  • 7. **Alignment: Ensure that the collar is properly aligned with the shaft and other components. Misalignment can cause uneven stress and premature wear. Make any necessary adjustments for proper alignment.
  • 8. **Storage: If collars are not in use, store them in a clean and dry environment. Avoid exposure to extreme temperatures or humidity, which can affect the performance and condition of the collars.
  • 9. **Documentation: Keep records of maintenance, including the date of lubrication and any replacements. This helps in scheduling regular maintenance and identifying patterns of wear or issues.
  • 10. **Consult Manufacturer’s Recommendations: Always refer to the manufacturer’s guidelines and recommendations for specific maintenance procedures and compatible lubricants. Following the manufacturer’s instructions is crucial for optimal performance and warranty compliance.

Proper maintenance and lubrication of aluminum collars not only extend their service life but also ensure the safety and efficiency of your mechanical systems. Regular inspections and maintenance routines can prevent premature wear and potential failures.

shaft clamp

What are the advantages of using aluminum collars in mechanical applications?

Using aluminum collars in mechanical applications offers several advantages that make them a popular choice in certain situations. Here are the key benefits of using aluminum collars:

  • Lightweight: Aluminum collars are significantly lighter than their steel counterparts. This is especially advantageous in applications where weight reduction is a priority, such as aerospace or automotive industries.
  • Corrosion Resistance: Aluminum has a natural oxide layer that provides corrosion resistance. It makes aluminum collars suitable for outdoor or marine applications where exposure to moisture is a concern.
  • Thermal Conductivity: Aluminum is an excellent thermal conductor. In applications where heat dissipation is crucial, aluminum collars can help transfer heat away from critical components, preventing overheating.
  • Machinability: Aluminum is relatively easy to machine, which makes it an attractive choice for custom collars or components. Machining and fabricating aluminum collars to specific dimensions is more straightforward compared to some other materials.
  • Cost-Effective: Aluminum is generally more cost-effective than materials like stainless steel or titanium. If the application doesn’t require the extreme strength or resistance of those materials, aluminum collars can provide a budget-friendly alternative.
  • Electrical Conductivity: Aluminum is a good electrical conductor. This feature is beneficial in applications where collars need to maintain electrical continuity or serve as grounding components.
  • Non-Magnetic: Aluminum is non-magnetic, making it suitable for applications where magnetic interference can be problematic, such as in MRI machines or precision instruments.
  • Customization: Aluminum collars are easy to fabricate into custom shapes and sizes, making them versatile for various mechanical applications that require specific designs or configurations.

While aluminum collars offer many advantages, it’s essential to consider their limitations as well. They may not be as strong as steel or other materials in high-stress applications. The choice of collar material should align with the specific requirements and environmental conditions of the mechanical application.

China Best Sales Aluminum Spacers with Set Screw Double Single Split Clamping Threaded Shaft Collar   with Good quality China Best Sales Aluminum Spacers with Set Screw Double Single Split Clamping Threaded Shaft Collar   with Good quality
editor by CX 2024-04-10

China manufacturer Custom Aluminium Single Split Clamp Screw Bore Shaft Collar One Piece Shaft Collar aluminium shaft collar

Product Description

Custom Aluminium Single Split Clamp Screw Bore Shaft Collar One Piece Shaft Collar

Material  1) Aluminum: AL 6061-T6, 6063, 7075-T etc.
 2) Stainless steel: 303, 304, 316L, 17-4(SUS630) etc.
 3) Steel: 4140, Q235, Q345B, 20#, 45# etc.
 4) Titanium: TA1, TA2/GR2, TA4/GR5, TC4, TC18 etc.
 5) Brass: C36000 (HPb62), C37700 (HPb59), C26800 (H68), C22000(H90) etc.
 6) Copper, Bronze, Magnesium alloy, Delrin, POM, Acrylic, PC, etc.
Finsh  Sandblasting, Anodize color, Blackenning, Zinc/Nickl Plating, Polish.
 Power coating, Passivation PVD, Titanium Plating, Electrogalvanizing.
 Electroplating chromium, Electrophoresis, QPQ(Quench-Polish-Quench).
 Electro Polishing, Chrome Plating, Knurl, Laser etch Logo, etc.
Main Equipment  CNC machining center(Milling), CNC Lathe, Grinding machine.
 Cylindrical grinder machine, Drilling machine, Laser cutting machine, etc.
Drawing format  STEP, STP, GIS, CAD, PDF, DWG, DXF etc or samples.
Tolerance  +/-0.01mm ~ +/-0.05mm
Surface roughness  Ra 0.1~3.2
Inspection  Complete inspection lab with Micrometer, Optical Comparator, Caliper Vernier, CMM.
 Depth Caliper Vernier, Universal Protractor, Clock Gauge, Internal Centigrade Gauge.
Capacity  CNC turning work range: φ0.5mm-φ150mm*300mm.
 CNC milling work range: 510mm*1571mm*500mm.

About Runsom
    Runsom, a company specializing in rapid prototyping and manufacturing, has decades of experience in
CNC machining, 3D printing, injection molding, sheet metal fabrication, and die casting. Our engineering
team with extensive knowledge and experience utilizes the latest prototyping technologies and top-notch
machining equipment to provide comprehensive services to satisfy global customers’ requirements,
timescales, and specific needs. We are able to take your concepts or designs to reality production in just
days with our advanced machining technologies, extensive manufacturing experience, and a wealth of
premium materials.

Our Mission
   Runsom Precision was established to give support to companies in the industries fields who continually
need to reduce their costs and meet tight deadlines. Our purpose is to ensure customer satisfaction by
providing first-class project management control and problem-free products.

                                                                                               Get a Quote

Q1: What’s kinds of information you need for quote?
A1: Kindly please provide the 2D/3D drawings (PDF/DWG/DXF/IGS/STP/SLDPRT/etc) and advise material
, finish, quantity for quoting.

Q2: What is your MOQ?
A2: MOQ depends on our client’s needs, besides, we welcome trial order before mass-production.

Q3: What is the lead time?
A3: Depending on your specific project and quantity.

Q4: Available for customized design drawings?
A4: Yes, please send the technical drawings to us. It’s better if you can send both 2D and 3D drawings if
you have.

Q5: If the parts we purchase from your company are not good, what can we do?
A5: Please feel free to contact us after you got the products. Kindly send us some photos, we will
feedback to our engineers and QC departments and solve the problems ASAP.

Q6: Are you a manufacturer or trading company?
A6: We are a manufacturer, we are located in HangZhou, China.

Q7: Will my drawings be safe after sending to you?
A7: Yes, we will keep them well and not release to third party without your permission.

 

Application: Fastener, Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory
Standard: GB, EN, API650, China GB Code, JIS Code, TEMA, ASME, ISO9001:2015
Surface Treatment: Sandblasting,Anodizing,Plating,Polishing,etc
Production Type: Batch,Mass Production
Machining Method: CNC Machining
Material: Nylon, Steel, Plastic, Brass, Alloy, Copper, Aluminum, Iron
Samples:
US$ 8/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

Shaft Collar

Common Uses for the Shaft Collar

The shaft collar is a relatively simple machine component, but one of the most important in many power transmission applications. It is most often used in gearboxes and motors, where it serves as a locating component, bearing face, and mechanical stop. Its simple design allows for easy installation and makes it ideal for a range of applications. Listed below are some of the most common uses for the shaft collar. Learn more about this important machine component.

Single split

Two-piece shaft collars are an excellent option for applications where a single piece collar is not practical. They provide the same benefits as one-piece collars, but with more convenience when installing. The two-piece collar has a clamp style, which allows the collar to be adjusted with a hand tool. They are suitable for light-duty applications and come in a variety of diameters. In addition to shaft diameters, collars are available with different threaded bore sizes. Shaft diameters are usually measured in mm. They can be easily installed and disassembled by removing the cap screws from each side.
Single split shaft collars come with a machine screw that tightens the clamp around the shaft. This ensures a tight, secure fit and better holding power than solid collars. They are easy to install, remove, and adjust, and work on virtually all types of shafts. The machine screw helps to prevent the collar from ripping the shaft.
Shaft collars come in a variety of materials. Typical materials include stainless steel, alloyed steel, and nylon. They are also available in custom sizes. If you want a specific size, be sure to specify that when ordering. These collars are made of quality materials, and they will hold up to the most rigorous applications.
Heavy duty shaft collars are manufactured from higher-grade materials than standard collars. They have a larger outer diameter, wider flange, and a larger screw for increased holding power. These collars are typically used in short-term, rigid coupling applications, and they are available in one-piece and two-piece clamp styles. These collars are typically made from 1215 lead-free steel or 303 stainless steel. Some of them can be finished with an anodized finish.
Mountable shaft collars are used to mount sensors, fixtures, and other assemblies. There are three different styles of mountable shaft collars: flange collars, flat collars, and quick-release collars. The material used for shaft collars can be 1215 lead-free steel with a black oxide finish, high-strength aluminum, and 303 stainless steel.

Solid

A solid shaft collar is a shaft coupling that is used to connect two shafts. They can be made of a variety of materials, including steel, zinc plated, and stainless steel. In addition, they come with various finishing options, including a zinc plated or black oxide finish. In addition, they can be made to fit a variety of shaft sizes and types.
Shaft collars are a simple, yet essential part of machine design. They can be found in virtually any piece of machinery. They can serve a variety of functions, including holding bearings on shafts, positioning components within motor assemblies, and acting as mechanical stops. While they can serve a variety of functions, they are most commonly used as bearing faces, mechanical stops, and locating components. They are also easy to install and tighten, making them a popular choice for a variety of different applications.
Solid shaft collars are available in two types: one-piece and two-piece. The two-piece collars are generally more rigid, offering better clamping force. However, they require more seating torque than the one-piece clamp collar. This is because there are more screws to tighten the two-piece collar than the single-piece collar.
One type of solid shaft collar is the set screw collar. Its holding power comes from the set screw, which is tightened onto the shaft. Ideally, the set screw should impinge on the shaft, and bite into it. The screw should be made of a softer material, as a harder material would reduce its holding power. However, the set screw collar can be adjusted by milling small flats into the shaft at the locations of the set screw.
A solid shaft collar is a simple machine component used in various power transmission applications. The most common places where it is used include motors, gearboxes, and bearings. Their simple design makes it easy to install and maintain. Unlike early versions, however, which were primarily made of square-headed set screws, modern shaft collars feature recessed set screws.
Shaft Collar

lamping-style

A Clamping-style shaft collar is an essential component of a gearbox or motor. Its high holding power allows it to hold components securely in place and ensure proper power transmission. These collars are also commonly used as spacers or to limit the movement of shafts during reciprocating motion.
These collars come in a variety of styles, including the double-split and semi-split varieties. They are ideal for repetitive positioning and are available in steel and stainless steel. They also feature a quick release element. And the index lever makes them easy to adjust or repair.
There are several different styles of shaft collars, including the Clamping-style shaft collar. The Clamping-style collar is one of the most commonly used in industrial settings. Its clamp is attached to the shaft by screws and has a hinge on one side. This feature eliminates the risk of the screws becoming dislodged while operating the machine.
Clamping-style shaft collars are generally made of steel or stainless steel. They can be made of aluminium, but this material has lower holding power. Stainless steel collars are a good choice for cleanroom environments because they do not outgas. They also require less maintenance. If you’re uncertain which style to choose, consult with a specialist in your field.
Clamping-style shaft collars are commonly used on industrial machinery and are an important part of gearbox maintenance. If you’re planning to install one, make sure you measure it carefully before you install it. If you don’t, you may damage the shaft or endcap. And while you’re at it, be sure to check for any kinks before you use it.
Shaft Collar

Set screw

Set screw shaft collars are the most cost-effective type of shaft collar. Available in bore sizes ranging from 3/16″ to 4″, they offer increased holding power and torque capacity. Additionally, they come with a keyway in case the shafts are keyed. Commercially produced shaft collars are non-magnetic and made of 303 stainless steel. They also come with one set screw per collar.
Shaft collars can be made of aluminum, steel, or a combination of steel. They serve multiple purposes including mechanical stops and stroke limiters, and can be adjusted for the correct fit. They are easy to install and remove, and they provide high clamping power. Custom designs are also available. They can be made of different materials to suit your specific needs.
Set screw for shaft collars are commonly used in transmission and machinery applications. Set screw shaft collars can be adjusted using a screw driver. When tightened, the set screw bites into the shaft material and holds it in place. When used properly, they can reduce the amount of torque required to hold components in place.
Shaft collars come in a variety of sizes. In general, shaft collars can range from 5/64″ to one inch in diameter. In addition, you can choose between metric and inch-sized shaft collars. When choosing a shaft collar, it is important to consider the size and bore diameter of the shaft.
China manufacturer Custom Aluminium Single Split Clamp Screw Bore Shaft Collar One Piece Shaft Collar   aluminium shaft collarChina manufacturer Custom Aluminium Single Split Clamp Screw Bore Shaft Collar One Piece Shaft Collar   aluminium shaft collar
editor by CX 2023-05-09

China 1516 single split one piece shaft collar black oxide zinc plated stainless steel with hex socket cap screw expanding shaft collar

Applicable Industries: Building Material Shops, 2mm CNC gear rack with pinion for cnc machine Energy & Mining

shaft collar

Shaft Collar

A shaft collar is a common machine component that provides mechanical support to shafts. It is found in motors and gearboxes and serves several important functions. Its design makes it an easy component to install. In addition to providing mechanical support to shafts, shaft collars can also serve as locating components and bearing faces.
Shaft Collar

Sizes

Shaft collars are complex components with several factors that determine their performance. Typical considerations include the style, materials used, bore size, and shaft geometry. Manufacturers typically have information on these factors on their websites. Users can also contact them for advice. These components are available in different sizes and types.
Shaft collars are available in a wide range of sizes, from 1/8 inch to six inches. They can also be re-bored if necessary. There are two main types of shaft collars. The basic one uses set screws, which may mar the shaft. The other type features a clamp screw and a hinge on one side. This eliminates the risk of losing screws.
The most common types of shaft collars are made from steel or aluminum. Plastic shaft collars are lightweight and inexpensive, but have reduced holding power. Steel shaft collars are more durable and hold their shape without bending. They also tend to be corrosion resistant. The steel grades used can have a big impact on their performance. For example, the 12L14 alloy is easier to machine, but does not do well in welding applications. Stainless steel shaft collars offer enhanced corrosion resistance, but reduced holding power. They are most commonly made from 304 stainless steel.
Shaft collars are an integral part of many mechanical systems. They are used to mount shafts onto flat surfaces and hold mechanical components in place. These accessories are available in a wide range of sizes and styles. Depending on the application, a shaft collar can be made to fit virtually any shaft.
The material used for shaft collars is also an important factor. The material of the shaft collar can make a big difference in the performance of the collar. The screw can be either flat or hex. The material will also determine the holding power. A screw with a hardened center will provide better holding power.
Another factor affecting the holding power of shaft collars is its surface treatment. The most common types are steel, black oxide, and zinc-plated. The latter is beneficial as it reduces the friction coefficient and enhances the holding power. Zinc-plated collars are better corrosion resistant than black oxide. However, the black oxide treatment is more effective because it prevents slippage.

Construction

Shaft collar construction involves the construction of a collar around an underground shaft. This structure consists of steel casing and concrete that extends below the surface of the ground. The concrete may be constructed using conventional or specialty cements. It may also contain accelerators and other additives to improve its holding strength. The concrete may also contain heavyweight or lightweight aggregates for optimal properties.
There are two main types of shaft collars. The double split collar is the most common type. It has a split design in the middle and is fastened using two allen head cap screws on each side. It has greater holding power than a solid collar, and the two-piece design makes it easier to install and replace. In addition, double split collars don’t require disassembling the entire shaft and its components.
There are many factors to consider when selecting a shaft collar. The material, holding power, and surface treatment of the shaft collar will affect its ability to withstand the load without slipping. These factors must match the specifications of the application in order to maximize its safety. A guide can help you choose the most appropriate shaft collar for your needs. The holding power of a shaft collar depends on the material used for construction and the screw size.
Shaft collars are used for a variety of applications that require a secure grip on mechanical components. They can be used on shafts, tubes, piping, and even flat surfaces. Only the highest quality collars are approved for use in industrial settings. These collars help ensure proper alignment of mechanical components and prevent any unnecessary movement. There are three different types of shaft collars. One type is a two-piece collar that is held together by two socket head screws.
Shaft collars may include an extended concrete pad at the surface. This concrete pad can support surface equipment and piping support assemblies. The shaft collar extends below temporary bracing material and within the retainment wall. The extended portion of the collar is then extended into the competent rock. From there, the collar transitions to a shaft lining assembly.
Shaft Collar

Functions

A shaft collar is a simple device that plays a critical role in a wide variety of industrial applications. Its primary functions are to hold components in place, locate components on the shaft, and form an attachment between a shaft and another component. In designing a shaft collar, a designer needs to consider several factors, including the material, bore size, and geometry of the shaft. It is also important to consider the specific requirements of the system.
Threaded collars are superior to smooth-bore collars in many ways. Threaded collars are more resistant to axial loads than smooth-bore collars, which rely on friction. Because the collar and shaft are threaded, they are practically impossible to move axially without breaking the shaft.
There are many types of shaft collars, each with their own unique properties. Each collar has different applications, and its performance must match the needs of the application. For many applications, holding power is paramount, while other performance factors include weldability, inertia, conductivity, corrosion resistance, and precision of collar-face relative to the bore.
While shaft collars may exert some holding force, they also exert other forces on the shaft. For example, they are ideal for splitting hubs, where they act as interfaces between various components. In addition, their close tolerances allow them to exert minimal force on the hub. This allows them to provide increased holding power while minimizing the force needed to close the hub.
Despite their simplicity, the shaft collar plays a crucial role in machine design. They hold components in place and provide necessary positioning for power transmission. Additionally, they are used as spacers in motor assemblies. And, they can also act as mechanical stops, limiting the movement of the shaft. You can find them in virtually any type of machinery.
Another type of shaft collar is the threaded collar, which can be axially or radially attached to the shaft. Its design has an internal thread that helps to precisely position it along the shaft. Internal threads also offer enhanced support for high axial loads. Internal threads also act as a positive mechanical stop.

Applications

Shaft collars are used in a variety of industrial applications. They serve as accurate stops and easy-to-adjust spacers. They can be used on glass, thin-wall tubing, and plastic. Other applications include optical measuring instruments and positioning systems for MRI machines. These collars are available in different sizes, materials, and styles.
The material used for shaft collars can have a significant impact on their performance. A collar’s holding power is also affected by the strength of its screw. Generally, a collar manufacturer will provide a screw that is compatible with the application. However, in some cases, it is necessary to use a nonstandard screw.
The clamp-style collar is reliable under constant loads, but it may need extra support when shock loads are present. In these situations, a small mass is impacted, and high forces are created. A positive stop can help a clamp-style collar stay in place during such shock loads. Alternatively, a collar undercut on a shaft can provide positive stops in both axial directions.
There are many different shaft collar designs and styles. Choose the right one for your application by considering your specifications. Different styles have different purposes, so consider the type and material that is right for your application. Some manufacturers offer a variety of different styles to choose from. You can visit their website or call their customer service representatives for assistance. This way, you can choose the best shaft collar for your specific needs. These collars are a very important part of many mechanical systems.
Clamp-style collars are an excellent choice when axial adjustment along the shaft is required frequently. These collars are easy to install and remove and do not mar the shaft. In addition, they provide excellent clamping force and impressive holding power. Quick-clamp collars are also a great choice for light-duty applications. They allow for fast and easy adjustment and are particularly useful in packaging and printing industries.
Shaft collars are composed of two components: a central bore and a second component. The first component is preferably made of resilient elastomeric material. The second component is made of a plastic material and has a relative stiffness that helps the shaft collar slide on a shaft without causing too much stress.
China 1516 single split one piece shaft collar black oxide zinc plated stainless steel with hex socket cap screw     expanding shaft collarChina 1516 single split one piece shaft collar black oxide zinc plated stainless steel with hex socket cap screw     expanding shaft collar
editor by czh2023-02-15

China Customized Stainless Steel Zinc Plated Steel with Clamp Bolt Single Split Shaft Collar shaft collar with set screw

Condition: New
Warranty: 2 years
Applicable Industries: Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms, Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Advertising Company
Weight (KG): 0.3
Showroom Location: Canada, Turkey, United Kingdom, United States, Italy, France, Germany, Viet Nam, Philippines, Pakistan, Russia, Australia
Video outgoing-inspection: Provided
Machinery Test Report: Provided
Marketing Type: New Product 2571
Warranty of core components: 4 years
Core Components: Engine, Bearing, Gearbox, Pressure vessel, Gear, Pump
Structure: Gear
Material: stainless steel, Stainless steel
Coatings: Black Oxide
Color: Any color
Size: Customized
Surface treatment: anti-rust
Certificate: ISO9001, TS-16949
Sample: Available
Sample lead time: 5 days
Packaging: Standard export carton
ODM/OEM: Welcomed
Logo: Available
Packaging Details: Standard export carton or as customers’ request
Port: HangZhou

Products Description

product nameCustomized Stainless Steel 12 Bore Size 1-18 OD With 8-32 x 12 Set Screw One-Piece Clamping Collar
BrandBailian
OrignChina
Raw Materialstainless steel
SizeAccept Customized
Lead Time7-15 working days as usual,It will based on the detailed order quantity.
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Choosing a Shaft Collar

The shaft collar is a simple machine component used in a variety of power transmission applications. They are most often found on gearboxes and motors. Their simple design makes them an easy component to install and remove. Among other uses, shaft collars are used as bearing faces, mechanical stops, and locating components.
Shaft Collar

Clamp-style shaft collars

Clamp-style shaft collars fix many of the problems associated with set-screw collars. Available in two-piece and one-piece designs, these collars compress the shaft and lock into place. This allows for a uniform distribution of force on the shaft. Clamp-style shaft collars provide more holding power than set-screw collars, but they work best under consistent pressure. Clamp-style shaft collars also work better against negative forces, as they have a separate, un-tightened side.
Clamp-style shaft collars feature mounting holes in the outer diameter. Like clamp-style collars, mountable shaft collars can be installed on adjacent assemblies, but the mounting method does not affect holding power. Mountable shaft collars are commonly used in mounting sensor brackets. They may have rounded or flat outer diameters to accommodate the mounting process. Mountable shaft collars may also have tapped or flat holes to facilitate installation.
Quick-clamp shaft collars have the same functionality as clamp-style collars, but feature a removable lever. They are typically quick-to-install and do not mar the shaft. Quick-clamping collars are especially beneficial in applications that require light-duty torque. They also make for quick and easy adjustments.
Heavy-duty shaft collars feature larger outer diameters, a wider face, and a larger screw. These collars are ideally suited for d-shafting and can offer greater holding power than set-screw collars. These collars are typically manufactured from high-strength 2024 aluminum.
Clamp-style shaft collars can be used in many different applications. They can be used for a variety of applications, including bearings, and are especially suited for rotary machines. However, there are some drawbacks. While they may not be as flexible as set-screw collars, they can still perform well under constant loads. One drawback is that they tend to loosen under shocks and reduce the holding power of clamping hardware.
Another advantage of clamp-style shaft collars is that they do not mar the shaft and allow for easy positioning adjustments. Furthermore, they are easier to install and offer greater holding power than set-screw collars. These collars are made from high-quality materials with tight tolerances and are available in different bore sizes.
Clamp-style shaft collars are the most common type of shaft collars. They can be two-piece or one-piece. Among these, two-piece collars are the most convenient option. One-piece collars are hard to move, and two-piece collars have a hinge on one side and a clamp-style collar on the other side.
The materials used in Clamp-style shaft collars play a crucial role in their overall performance. They should be strong, corrosion-resistant, and have good holding power. They should also be able to withstand high temperatures. The most common materials used for shaft collars are steel and aluminum. Some types are made from stainless steel, while others are made from engineered plastic.
Clamp-style shaft collars can come in two pieces or single-piece designs. The smaller one-piece collars usually have a back-cut opposite the clamp cut, which reduces the cross-sectional area at the hinge point. This reduces the amount of force required to clamp the collar, which makes it easier to use stronger screws.
Shaft Collar

Aluminum, carbon steel, and stainless steel shaft collars

When choosing a shaft collar, you should consider the material it is made of. You can purchase collars made of carbon steel, aluminum, or stainless steel. Each of these materials has its benefits and disadvantages. Steel is more durable than aluminum and tends to provide better holding power. Aluminum, on the other hand, is lighter and has a favorable strength-to-weight ratio. The material you choose should depend on your specific needs, such as corrosion resistance or weight.
Mountable shaft collars are used to mount sensors, fixtures, and other assemblies. These collars are available with outer diameter holes, flats, or quick-release designs. The material used to make these collars varies, with standard models made of 1215 lead-free steel and 2024 aluminum.
When choosing shaft collars, take into account the material and surface treatment. Different materials offer different properties, which will determine the performance of the collar. In addition to material, each shaft collar comes with a different holding power. Holding power is a key factor in choosing a shaft collar because it determines the amount of load it can withstand without slipping. The holding power depends on the screw size, the bore size, and the bulk of the collar.
Aluminum, carbon steel, and stainless steel shaft-collars can come in various styles. CZPT, for example, offers standard shaft collars in hex and d-bore profiles. Hex collars provide extra holding power and are better than set screws. Additionally, they do not mar the shaft and provide a better grip.
Another type of shaft collar is the quick-clamp shaft collar. These features allow users to install and remove them with ease. The quick-clamp collar has a handle that allows the user to quickly adjust it. While these shaft collars are designed for light duty applications, they are not recommended for heavy-duty or high-RPM applications.
Shaft collars are simple yet versatile components. They are used for various applications, including mechanical stops, stroke limiters, and retainers. They can also be used to align and space other components. Shaft collars are widely used in gearbox assemblies, flagpoles, and medical instruments, among others.
Two-piece shaft collars offer the same benefits of one-piece shaft collars, but offer additional convenience and versatility. They are easier to install and disassemble, reducing installation and labor costs. They also offer superior holding power. They also feature a threaded bore that acts as a positive mechanical stop when the shaft is rotated.
Shaft Collar

Over-torqueing shaft collars

Shaft collars are often used to secure components on shafts or other surfaces. They also provide an easy way to adjust the positioning of motor assembly components. Many different types of shaft collars are available to meet the specific needs of different applications. These include round, hexagonal, square, and D-bore collars.
The design of shaft collars must account for the load they will support. Some collars are made of metals, while others are made of plastic or composite materials. Typically, shaft collars are made of steel, but can also be made from aluminum or alloyed steel. Some are coated with zinc.
Shaft collars are available in one-piece and two-piece designs. Single-piece collars are designed to fit securely around a shaft, while double-piece collars allow for greater clamping force. These collars can be assembled anywhere along the shaft and can be installed between two pieces. They are available in different bore configurations and can be customized to meet your specific application.
Clamp style collars are easy to install and disassemble, and have a larger holding force than one-piece collars. These collars are also more shock-load resistant. They also don’t mar shaft surfaces, unlike setscrews. They can also be easily adjusted without damaging the shaft. Another style of collar is the quick-clamping style. This type of collar doesn’t mar the shaft, and is easily installed and removed without tools. These are best for light-duty applications.
When choosing a shaft collar, you should consider the tolerance of the shaft. It is important to select a shaft with a tight tolerance. The shaft’s hardness should not be greater than Rockwell C35. A wide tolerance will affect the holding power of the collar. If the shaft is undersized, you may need to use a screwdrive to slide the collar on the shaft.
Shaft collars are a versatile component with many different applications. They can secure industrial railings or serve as positioning devices in medical equipment. They are also widely used in automation machinery. They are used to protect cylinders and actuators and to ensure alignment between components. For this reason, they are very versatile and adaptable.
Clamp-style collars work well under constant loads, but they may need assistance during impact loads. Shock loads can be difficult to avoid, especially if the mass is small. Clamp-style collars with an undercut in the shaft help to resist the impact of shock. Moreover, they offer positive stops in both axial directions.
Clamp-style shaft collars are a good alternative for set-screw collars. They are easy to install and prevent shaft damage. They also come with an added advantage of being easy to adjust. Clamp-style shaft collars have double the holding power of set-screw collars.
In addition to holding components, shaft collars can also function as spacers and limit shaft movement. They are essential for many applications. They are commonly used in motors and gearboxes to ensure correct positioning for power transmission. They are also used to control shaft movement in reciprocating applications.
China Customized Stainless Steel Zinc Plated Steel with Clamp Bolt Single Split Shaft Collar     shaft collar with set screwChina Customized Stainless Steel Zinc Plated Steel with Clamp Bolt Single Split Shaft Collar     shaft collar with set screw
editor by czh2023-02-09