China Good quality Radial Needle Roller and Cage Assemblies Bearing with Great quality

Product Description

  Radial Needle Roller and Cage Assemblies

As for Model K, K D radial needle and retainer assembly, this kind of bearing only has a group of radial needle and retainer assembly. With small outside diameter size, it is suitable for the parts, where the radial sizes are specially limited, used for bearing the radial load. Model K—ZW, K—ZWD radial needle and retainer assembly is the double row radial needle and retainer assembly.
As for this kind of bearing, since it has not collar, the surface of journal and the surface of hole at the housing are directly acted as rolling surface with surface hardness HRC 60 and surface roughness Ra no more than 0.63 P m.
In order to satisfy the requirement of main machine, this kind of bearing can be made in split bearing, convenient for mounting. Model K…D represents as the single row split bearing and Model K–ZWD represents as double row split bearing.
(1-1) K single-row radial needle roller and cage assembly
(1-2) K…ZW double-row radial needle roller and cage assembly
(1-3) K… D partial single-row radial needle roller and cage assembly
(1-4) K…ZWD double-row radial needle roller and cage assembly
 

Shaft Diameter Bearing Designation Mass Approx Boundary Dimensions Basic Load Rating Limiting Speed
Current Code Original Code Fw Ew Be Dynamic Static Oil
mm g mm N rpm
3 K3 x 5 x 7TN   0.3 3 5 7 1.54 1.29 50000
K3 x 5 x 9TN   0.4 3 5 9 1.71 1.48  
K3 x 6 x 7TN   0.4 3 6 7 1.43 0.97 47000
4 K4 x 7 x 7TN   0.5 4 7 7 2.33 1.84 43000
K4 x 7 x 10TN   0.7 4 7 10 2.35 1.92 39000
5 K5 x 8 x 8TN 29241/5 0.7 5 8 8 2300 1880 37000
K5 x 8 x 10TN 39241/5 0.9 5 8 10 2800 2450 37000
6 K6 x 9 x 8TN 29241/6 0.8 6 9 8 25600 2240 35000
K6 x 9 x 10TN 39241/6 1 6 9 10 3300 3100 35000
K6 x 10 * 13TN 19241/6 1.3 6 10 13 3500 2800 33000
7 K7 x 10 x 8TN 29241/7 0.9 7 10 8 2750 2550 32000
K7 x 10 x 10TN 39241/7 1.1 7 10 10 3350 3400 32000
8 K8 x 11 x 8TN 29241/8 1.1 8 11 8 3000 2900 30000
K8 x 11 x 10TN 39241/8 1.7 8 11 10 3830 3950 30000
K8 x 11 x 13TN 49241/8 1.8 8 11 13 5000 5700 30000
K8 x 12 x 10TN 29242/8 1.3 8 12 10 4900 4600 30000
9 K9 x 12 x 10TN 39241/9 1.5 9 12 10 4200 4700 30000
K9 x 12 x 13TN 19241/9 1.9 9 12 13 5500 6700 30000
10 K10 * 13 x 10TN 39241/10 1.6 10 13 10 4500 5250 27000
K10 x 13 x 13TN 39241/10 2.1 10 13 13 6000 7600 27000
K10 x 13 x 16TN   2.2 10 13 16 6300 7800 27000
K10 x 14 x 10TN 29242/10 2.9 10 14 10 7000 7900 27000
K10 x 14 x 13TN 3922/10 4.3 10 14 13 8000 9100 26000
K10 x 16 x 12TN 19244/10 3.7 10 16 12 7000 9300 27000
12 K12 x 15 x 9TN   2.7 12 15 9 4120 5210 25000
K12 x 15 x 10TN 39241/12 1.9 12 15 10 4320 5730 25000
K12 x 15 x 13TN 49241/12 2.4 12 15 13 6000 8100 25000
K12 x 16 x 8TN 19242/12 2.9 12 16 8 1200 4700 25000
K12 x 16 x 10TN 29242/12 3.4 12 16 10 6000 6900 25000
K12 x 16 x 13TN 39242/12 3.8 12 16 13 7900 9200 25000
K12 x 17 x 13TN 59242/12 4.4 12 17 13 9300 10000 24000
K12 x N8 x 12TN 19244/12 5 12 18 12 9800 8000 24000
K12 x 15 x 20TN K12 x 15 x 20TN 3.8 12 15 20 8200 12000 25000
14 K14 x N7 x 10   4 14 17 10 5100 6800 23000
K14 x 17 x 17   6.8 14 17 17 9300 14000 23000
K14 x N8 x 10 29242/14 4.8 14 18 10 6800 8300 23000
K14 x N8 * 13 39242/14 6.3 14 18 13 8100 9800 23000
K14 * 18 x 14   6.8 14 18 14 9200 12000 23000
K14 x N8 * 15 49242/14 7.3 14 18 15 10000 13000 23000

 

Shaft
Diameter
Bearing Designation Mass Approx Boundary Dimensions Basic Load Rating Limiting Speed
Current Code Original Code Fw Ew Be Dynamic Static Oil
mm g mm N rpm
25 K25 x 32 x 16 19244/25 24.5 25 32 16 20500 27500 15000
K25 x 33 x 20 19245/25 32 25 33 20 28000 37500 15000
K25 x 33 x 24 29245/25 38.7 25 33 24 33900 46500 15000
K25 x 34 x 18   32 25 34 18 48000 67000 15000
K25 x 35 x 30 39245/25 65.5 25 35 30 46500 61500 14000
K25 x 30 x 26 ZW   27 25 30 26 21000 35000 14000
26 K26 x 30 x 10   9 26 30 10 9500 15500 16000
K26 x 30 x 13   11.4 26 30 13 11100 18700 16000
K26 x 30 x 17   15 26 30 17 14700 27000 16000
K26 x 31 x 13   9.9 26 31 13 12400 18400 15000
K26 x 30 x 22   12.3 26 30 22 15200 28000 16000
27 K27 x 32 x 17   29 27 32 27 16000 34000 17000
28 K28 x 32 x 16.5   16 28 32 16.5 15000 32400 14000
K28 x 32 x 17 9242/28 18.2 28 32 17 15000 32400 14000
K28 x 33 x 13 29241/25 15.2 28 33 13 14800 23600 14000
K28 x 33 x 17 49241/28 19.5 28 33 17 19100 33000 14000
K28 x 33 x 27 TN 79241/28 19 28 33 27 22800 40500 14000
K28 x 34 x 17 39242/28 24.2 28 34 17 21300 35000 14000
K28 x 35 x 16 19243/28 26 28 35 16 21000 29000 14000
K28 x 35 x 18   31 28 35 18 23500 33500 14000
K28 x 35 x 20 29243/28 35 28 35 20 24000 34000 14000
K28 x 35 x 27   47 28 35 27 34500 54500 14000
K28 x 36 x 16   40 28 36 16 34000 47000 11000
K28 x 40 x 18   50 28 40 18 33000 36500 12000
K28 x 40 x 25   71 28 40 25 45000 54500 12000
30 K30 x 33 x 10     30 33 10      
K30 x 34 x 13   14.6 30 34 13 11800 21200 13000
K30 x 35 x 13 29241/30 16.3 30 35 13 15100 25000 13000
K30 x 35 x 17 49241/30 21.3 30 35 17 19100 33500 13000
K30 x 35 x 26     30 35 26      
K30 x 35 x 27 19241/30 33.3 30 35 27 30000 58500 13000
K30 x 37 x 16 19243/30 26.4 30 37 16 22500 33000 13000
K30 x 38 x 25 29244/30 43 30 38 25 16000 390000 13000
K30 x 39 x 21     30 39 21      
K30 x 40 x 18   44 30 40 18 31500 39500 12000
K30 x 40 x 27 92401/30T 60 30 40 27      
K30 x 40 x 30 49243/30 78 30 40 30 48500 68500 13000
K30 x 35 x 26   32 30 35 26 23500 43500 12000
K30 x 42 x 44.1     30 42 44.1      

Shaft
Diameter
Bearing Designation Mass Approx Boundary Dimensions Basic Load Rating Limiting Speed
Current Code Original Code Fw Ew Be Dynamic Static Oil
mm g mm N rpm
32 K32 x 37 x 13 29241/32 18.3 32 37 13 15000 25000 12000
K32 x 37 x 17 49241/32 22.4 32 37 17 19400 35000 12000
K32 x 37 x 27 19241/32 36.7 32 37 27 29500 59500 12000
K32 x 37 x 28 TN   22.3 32 37 28 23100 43000 12000
K32 x 38 x 16   25 32 38 16 21000 34000 12000
K32 x 38 x 20 49242/32 31 32 38 20 26000 44500 12000
K32 x 38 x 26 TN   25.2 32 38 26 27000 46500 12000
K32 x 39 x 16 19243/32 36.7 32 39 16 23500 35000 12000
K32 x 39 x 18   37.2 32 39 18 26000 40500 12000
K32 x 40 x 20 19244/32 48 32 40 20 37000 40500 12000
K32 x 40 x 36   73 32 40 36 53500 91500 12000
K32 x 46 x 32   119 32 46 32 65500 82500 11000
K32 x 40 x 42 TN   771 32 40 42 49500 83500 12000
35 K35 x 40 x 13 29241/35 188 35 40 13 15800 27500 11000
K35 x 40 x 17 49241/35 25.3 35 40 17 20300 38000 11000
K35 x 40 x 25 29244/35 31 35 40 25 29000 59500 11000
K35 x 40 x 27 TN 19241/35 23.4 35 40 27 24500 48000 11000
K35 x 40 x 27 79241/35 28 35 40 27 27800 62100 11000
K35 x 40 x 30 39244/35 43 35 40 30 25000 49500 11000
K35 x 42 x 16 19243/35 34 35 42 16 23900 37000 11000
K35 x 42 x 18   39.2 35 42 18 27000 42500 11000
K35 x 42 x 30 49243/35 62.4 35 42 30 38500 67500 11000
K35 x 43 x 18   38 35 43 18 28000 41500 11000
K35 x 45 x 20   55.5 35 45 20 36500 49500 10000
K35 x 45 x 30 29245/35 80 35 45 30 52500 78500 10000
K35 x 45 x 49   120 35 45 49 81500 13400 10000
K35 x 40 x 30 ZW   48 35 40 30 31500 65500 11000
K35 x 42 x 20 ZW 29243/35 41 35 42 20 29500 48500 11000
36 K36 x 41 x 30   52 36 41 30 23000 43000 11000
K36 x 42 x 16   50 36 42 16 24000 42000 11000
37 K37 x 42 x 17   25.8 37 42 17 21900 42500 10000
K37 x 42 x 27   40.7 37 42 27 31500 67500 10000
K37 x 45 x 26   60.5 37 45 26 43500 73500 10000
38 K38 x 43 x 17 49241/38 26.9 38 43 17 20000 38000 10000
K38 x 43 x 27 49241/38 43.2 38 43 27 31000 67500 10000
K38 x 46 x 20 19244/38 46 38 46 20 35000 56500 10000
K38 x 46 x 32   72.7 38 46 32 54500 98500 10000
39 K39 x 44 x 24   38 39 44 24 28000 58500 10000
K39 x 44 x 26 ZW   29.5 39 44 26 27000 55500 10000

Q1: Can I get a free sample?
A1: We provide samples free in freight collected. For special samples requirement, please contact us for more details. 
Q2: How could I pay?
A2: We prefer T/T or L/C at sight. If you prefer other payment terms, please contact us freely.
Q3: What is your brand and packing way? Can you produce my brand and packing?
A3: Our brand is CZPT and our own packing materials. We can make your brand. For more details, please contact us.
Q4: What is the delivery lead time?
A4: It depends on the order quantities. The mass production lead time is about 45-60 days after receipt of the deposit. 
Q5: Are you manufacturer or  trading company?
A5: We are manufacturer and exporter. We provide all kinds of OEM services for clients around the world.
Q6: Where is your main market?
A6: We export to the North America, Mexico, Australia, South-east Asia, Europe, U.A.E., Turkey, and other countries.

Our Services
1. Professional QC and QA team to make sure all products qualified before shipping.
2. Competitive price.
3 .Standard package to ensure the safe transportation.
4. Professional service.

Why choose us?
1. Production
    Qualified production, competitive price, professional service. 
2. Quality
    All products are inspected 100% before shipment by relative testing equipments.

Cage: With Cage
Rows Number: Multiple
Load Direction: Radial Bearing
Style: Without Outer Ring, Without Inner Ring
Material: Stainless Steel
Type: Open
Samples:
US$ 2/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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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.

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 Good quality Radial Needle Roller and Cage Assemblies Bearing   with Great quality China Good quality Radial Needle Roller and Cage Assemblies Bearing   with Great quality
editor by CX 2023-11-11

locking collar

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