China best Durable Universal Joint U- Joint Cardan Joint Gumz-6 OEM 0706-89-251/0604-89-251A Tmz-106 TM2880 for Mazda

Product Description

Durable Universal Joint U- Joint Cardan Joint Gumz-6 Oem 0706-89-251/0604-89-251a Tmz-106 Tm2880 For Mazda

1.Product Application

PART NO D M/M O M/M L M/M ORIGINAL NO KOYO MATSBA
GUMZ-1/5 25.00   63.80 0136-25-060 TM2564A UJ410/ UJ410
GUMZ-2 20.02   54.6 0180-25-060 TM2055 UJ412
GUMZ-3/4 32.00 57.00   0164-25-060 TM3293 UJ414
GUMZ-6 28.00 53.10   0706-89-251 TM2880 UJ415
GUMZ-7 25.00 40.00   5719-25-060 TM2564B UJ413
GUMZ-8 37.00 67.00   0727-25-060 TM37104 UJ416
GUMZ-9 26.50 48.00   1757-89-251   UJ417
GUMZ-10 22.50 35.20   3919-89-251   UJ418
GUMZ-11 22.06   61.70 M026-25-100    
GUMZ-12 24.06   71.40 P001-25-060    

             
2.  Product Details

3.Needle Roller Bearing hotsale models:

1

Needle Roller and Cage Assemblies

K, K‥T2, K‥S, K‥ZW, KMJ, KMJ‥S, KJ‥S, KV‥S

PCJ

2

Needle Roller and Cage Assemblies for Connecting Rod

PK

KBK

3

Drawn Cup Needle Roller Bearings

HK, HK‥ZWD, HMK, HMK‥ZWD, BK, BK‥ZWD

HK‥L, HMK‥L, HK‥LL, HMK‥LL, BK‥L

DCL

HCK

4

Machined-Ring Needle Roller Bearings

RNA48, RNA49, RNA59, RNA69, NK, NKS

NA48, NA49, NA59, NA69, NK+IR, NKS+IR

MR

MR+MI

RNA49‥L, RNA49‥LL

NA49‥L, NA49‥LL

5

Machine-ring Needle Roller Bearings Separable Type

RNAO, RNAO‥ZW

NAO, NAO‥ZW

6

Self Aligning Needle Roller Bearings

RPNA‥R

PNA‥R

7

Inner ring

IR

MI

8

Clearance-Adjustable Needle Roller Bearings

RNA49‥S

NA49‥S

9

Complex Bearings

NKX, NKX‥Z

NKX+IR, NKX‥Z+IR

NKXR, NKXR‥Z

NKXR+IR, NKXR‥Z+IR

NKIA

NKIB

AXN

ARN

10

Cam Followers

KRM‥XH, KRMV‥XH

KR‥H, KR‥XH, KR‥LLH, KR‥XLLH

KR, KR‥X, KR‥LL, KR‥XLL

KRV‥H, KRV‥XH, KRV‥LLH, KRV‥XLLH

KRV, KRV‥X, KRV‥LL, KRV‥XLL

KRT, KRT‥X, KRT‥LL, KRT‥XLL

KRVT, KRVT‥X, KRVT‥LL, KRVT‥XLL

KRU, KRU‥X, KRU‥LL, KRU‥XLL

KRVU, KRVU‥X, KRVU‥LL, KRVU‥XLL

NUKR‥H, NUKR‥XH

NUKR, NUKR‥X

NUKRT, NUKRT‥X

NUKRU, NUKRU‥X

CR‥H, CR‥XH, CR‥LLH, CR‥XLLH

CR, CR‥X, CR‥LL, CR‥XLL

CRV‥H, CRV‥XH, CRV‥LLH, CRV‥XLLH

CRV, CRV‥X, CRV‥LL, CRV‥XLL

11

Roller Followers

RNAB2, RNAB2‥X

NAB2, NAB2‥X

RNA22‥LL, RNA22‥XLL

NA22‥LL, NA22‥XLL

NATR, NATR‥X, NATR‥LL, NATR‥XLL

NATV, NATV‥X, NATV‥LL, NATV‥XLL

NACV, NACV‥X, NACV‥LL, NACV‥XLL

NUTR2, NUTR2‥X, NUTR3, NUTR3‥X

NUTW, NUTW‥X

12

Thrust Roller Bearings

AXK11, AS11, WS811, GS811

811, 812, 893, 874, K811, K812, K893, K874, WS811

WS812, WS893, WS874, GS811, GS812, GS893, GS874

AXA21, ARA821, ZS

AXB21, ARB821, ZS

13

One-way Clutches

HF

CHINAMFG

4.Packing & Shipping 

5.Company Profile
6.Certification

7.FAQ
Q:What the MOQ of your company?
A:MOQ is 100pc.
Q:Could you accept OEM and customize?
A:YES,we can customize for you according to sample or drawing.
Q:Could you supply sample for free?
A:Yes,we can supply sample for free,do you mind to buy her a ticket?
Q:Dose your factory have any certificate?
A:yes.we have ISO 9001:2008,IQNET and SGS. If you want other like CE,we can do for you.
Q:IS you company factory or Trade Company?
A:We have our own factory ;our type is factory +trade.
Q:Could you tell me the material of your bearing?
A:We have chrome steel,and staninless steel,ceramic and plastic material.
Q:Could you offer door to door service?
A:Yes,by express(GHL,FEDEX,TNT,EMS,4-10 days to your city.)
Q:Could you tell me the payment term of your company can accept?
A:T/T.Western Union,PayPal 
Q:Could you tell me the delivery time of your doors?
A:If stock,in 7days or base on your order quantity
Q:Can you give me some discount?
A:Yes, you can, contact me immediately to get more discounts.
 
 
 
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Cage: With Cage
Rows Number: Single
Load Direction: Radial Bearing
Style: With Outer Ring
Material: Bearing Steel
Type: Closed
Samples:
US$ 0.1/Piece
1 Piece(Min.Order)

|
Request Sample

Customization:
Available

|

Customized Request

cardan shaft

What are the potential limitations or drawbacks of using cardan joints?

While cardan joints offer numerous advantages in transmitting rotational motion between misaligned shafts, they also have certain limitations and drawbacks to consider. Here are some potential limitations associated with the use of cardan joints:

  • Angular Limitations: Cardan joints have limited angularity or operating angles. They are designed to operate within specific angular ranges, and exceeding these angles can cause accelerated wear, increased vibration, and potential joint failure. Extreme operating angles can lead to binding, decreased efficiency, and reduced power transmission capacity. In applications where large operating angles are required, alternative flexible coupling mechanisms or constant velocity joints may be more suitable.
  • Backlash and Torsional Stiffness: Cardan joints inherently exhibit some degree of backlash, which is the clearance or free play between the mating components. This can result in a slight delay in power transmission and can affect the precision of motion in certain applications. Additionally, cardan joints may have higher torsional stiffness compared to other coupling mechanisms, which can transmit higher vibrations and shocks to the connected components.
  • Maintenance Requirements: Cardan joints require regular maintenance to ensure proper lubrication, alignment, and performance. The lubricant needs to be regularly replenished or replaced, and the joint should be inspected for wear, misalignment, or other issues. Failure to perform adequate maintenance can result in premature wear, reduced efficiency, and potential joint failure. Maintenance procedures may require specialized tools and expertise.
  • Space and Weight: Cardan joints can occupy a significant amount of space due to their design and the need for perpendicular shafts. In applications with limited space constraints, finding suitable locations for cardan joints can be challenging. Additionally, the weight of cardan joints, especially in heavy-duty applications, can add to the overall weight of the system, which may have implications for fuel efficiency, payload capacity, or overall performance.
  • Cost: Cardan joints, particularly high-quality and precision-engineered ones, can be relatively expensive compared to other coupling mechanisms. The complex design, manufacturing tolerances, and specialized materials involved contribute to their higher cost. In cost-sensitive applications, alternative coupling solutions may be considered if the angular limitations and other drawbacks of cardan joints are not critical.
  • High-Speed Limitations: At high rotational speeds, cardan joints can experience increased vibration, imbalance, and potential for fatigue failure. The rotating components of the joint can generate centrifugal forces that impact the balance and stability of the system. In high-speed applications, careful design considerations, including balancing and vibration analysis, may be necessary to mitigate these issues.

It is important to evaluate the specific application requirements, operating conditions, and limitations when considering the use of cardan joints. While they offer versatility and flexibility in many scenarios, alternative coupling mechanisms may be more suitable in cases where the limitations and drawbacks of cardan joints pose significant challenges.

cardan shaft

Can cardan joints be used in industrial machinery and manufacturing?

Yes, cardan joints are commonly used in industrial machinery and manufacturing applications due to their versatility, durability, and ability to transmit torque at various angles. They offer several advantages that make them suitable for a wide range of industrial applications. Here’s a detailed explanation:

1. Torque Transmission: Industrial machinery often requires the transmission of torque between different components or shafts that may not be in a perfectly aligned position. Cardan joints excel at transmitting torque even at significant angles and misalignments, allowing for flexible power transmission in industrial applications. They can efficiently transfer high torque loads and handle varying operating conditions.

2. Misalignment Compensation: Cardan joints are designed to accommodate misalignments and angular variations, making them ideal for industrial machinery. They can compensate for misalignments caused by structural deflection, thermal expansion, or other factors, ensuring smooth and reliable power transmission. This capability helps to minimize stress and wear on connected components and extends the life of the machinery.

3. Flexibility and Articulation: Industrial machinery often requires flexibility and articulation to adapt to different production processes or accommodate dynamic movements. Cardan joints provide rotational freedom and allow for angular movement, enabling the machinery to adjust to changing requirements. Their universal joint design allows for smooth rotation and accommodates the required range of motion.

4. Compact Design: Cardan joints have a relatively compact design, making them suitable for integration into industrial machinery where space is often limited. Their compact size allows for efficient packaging within the machinery, optimizing overall design and minimizing footprint. This is especially beneficial in applications where multiple joints are required within a confined space.

5. Durability and Strength: Industrial machinery operates under demanding conditions, including heavy loads, high speeds, and harsh environments. Cardan joints are often constructed using durable materials such as alloy steels or high-strength alloys, providing the necessary strength and resilience to withstand industrial applications. They are designed to handle the demanding loads and forces encountered in manufacturing processes.

6. Easy Maintenance and Serviceability: Cardan joints are generally low-maintenance components. They require periodic inspection, lubrication, and replacement of worn parts, but their design often allows for easy access and replacement if needed. This facilitates maintenance activities and minimizes downtime in industrial machinery.

7. Versatility: Cardan joints are available in various configurations, sizes, and load capacities, allowing them to be tailored to specific industrial machinery requirements. They can be customized to accommodate different shaft sizes, torque ratings, and mounting arrangements, making them adaptable to a wide range of manufacturing applications.

8. Cost-Effectiveness: Cardan joints offer a cost-effective solution for torque transmission in industrial machinery. Their durability, reliability, and long service life contribute to reduced maintenance and replacement costs. Additionally, their ability to compensate for misalignments can help minimize wear on other machinery components, further reducing overall maintenance expenses.

When integrating cardan joints into industrial machinery and manufacturing systems, it is important to consider the specific application requirements, operating conditions, and load characteristics. Proper design, selection, and installation practices should be followed to ensure optimal performance and longevity.

Consulting with engineers or experts specializing in drivetrain systems and industrial machinery design can provide valuable insights and guidance on the selection, integration, and maintenance of cardan joints for specific industrial applications.

cardan shaft

Can you explain the purpose of a cardan joint in a drive shaft?

A cardan joint, also known as a universal joint or U-joint, serves a crucial purpose in a drive shaft. The drive shaft is responsible for transmitting rotational motion and torque from the engine or power source to the wheels or driven components. Here’s a detailed explanation of the purpose of a cardan joint in a drive shaft:

A drive shaft is a mechanical component that connects the output of the engine or power source to the wheels or driven components of a vehicle or machinery. It is typically a tubular shaft that rotates at high speeds and transmits the torque generated by the engine to propel the vehicle or operate the machinery. The drive shaft needs to accommodate various factors, including changes in distance, misalignment, and different angles between the engine and the wheels or driven components.

This is where the cardan joint comes into play. The cardan joint is located at each end of the drive shaft, connecting it to the engine or power source and the wheels or driven components. The purpose of the cardan joint is to allow the drive shaft to transmit rotational motion and torque while accommodating the misalignment and changes in angles that occur between these components.

When the engine or power source rotates, it generates rotational motion and torque. The cardan joint at the engine end of the drive shaft receives this rotational motion and torque and transfers it to the drive shaft. As the drive shaft rotates, the cardan joint allows for the changes in angle and misalignment between the engine and the wheels or driven components. This flexibility of the cardan joint ensures that the drive shaft can operate smoothly and transmit power effectively, even when the components are not perfectly aligned or when there are variations in the angles.

At the other end of the drive shaft, another cardan joint is present to connect the drive shaft to the wheels or driven components. This cardan joint receives the rotational motion and torque from the drive shaft and transfers it to the wheels or driven components, allowing them to rotate and perform their intended functions.

The cardan joint in the drive shaft effectively compensates for misalignment, changes in angles, and variations in distance between the engine and the wheels or driven components. It ensures that the rotational motion and torque generated by the engine can be transmitted smoothly and efficiently to propel the vehicle or operate the machinery.

Overall, the purpose of the cardan joint in a drive shaft is to provide flexibility and accommodate misalignment, allowing for the effective transmission of rotational motion and torque between the engine or power source and the wheels or driven components.

China best Durable Universal Joint U- Joint Cardan Joint Gumz-6 OEM 0706-89-251/0604-89-251A Tmz-106 TM2880 for Mazda  China best Durable Universal Joint U- Joint Cardan Joint Gumz-6 OEM 0706-89-251/0604-89-251A Tmz-106 TM2880 for Mazda
editor by CX 2024-05-03