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China wholesaler Universal Flexible Woodon China Auto Parts Joint Jaw Cardan Shaft Coupling New

Product Description

Product     Name Cardan Shaft
Product     Model SWC-I75A-335+40
Main          Material 35CrMo or 45# Steel
Nominal  Torque 500  N.M
Normal      Length 335 mm
Length       Compensation 40 mm

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Standard Or Nonstandard: Nonstandard
Shaft Hole: 19-32
Torque: >80N.M
Samples:
US$ 10/Piece
1 Piece(Min.Order)

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Customization:
Available

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Customized Request

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

cardan shaft

How do cardan shafts handle variations in length and connection methods?

Cardan shafts are designed to handle variations in length and connection methods, allowing for flexibility in their installation and use. These shafts incorporate several features and mechanisms that enable them to accommodate different lengths and connection methods. Let’s explore how cardan shafts handle these variations:

1. Telescopic Design:

– Cardan shafts often employ a telescopic design, which consists of multiple sections that can slide in and out. These sections allow for adjustment of the overall length of the shaft to accommodate variations in distance between the driving and driven components. By telescoping the shaft, it can be extended or retracted as needed, ensuring proper alignment and power transmission.

2. Slip Yokes:

– Slip yokes are components used in cardan shafts that allow for axial movement. They are typically located at one or both ends of the telescopic sections. Slip yokes provide a sliding connection that compensates for changes in length and helps to maintain proper alignment between the driving and driven components. When the length of the shaft needs to change, the slip yokes slide along the shaft, allowing for the necessary adjustment without disrupting power transmission.

3. Flange Connections:

– Cardan shafts can utilize flange connections to attach the shaft to the driving and driven components. Flange connections provide a secure and rigid connection, ensuring efficient power transfer. The flanges are typically bolted or welded to the shaft and the corresponding components, such as the transmission, differential, or axle. Flange connections allow for easy installation and removal of the cardan shaft while maintaining stability and alignment.

4. Universal Joints:

– Universal joints, or U-joints, are essential components in cardan shafts that allow for angular misalignment between the driving and driven components. They consist of a cross-shaped yoke and needle bearings at each end. The universal joints provide flexibility and compensate for variations in angle and alignment. This flexibility enables cardan shafts to handle different connection methods, such as non-parallel or offset connections, while maintaining efficient power transmission.

5. Splined Connections:

– Some cardan shafts employ splined connections, where the shaft and the driving/driven components have matching splined profiles. Splined connections provide a precise and secure connection that allows for torque transmission while accommodating length variations. The splined profiles enable the shaft to slide in and out, adjusting the length as needed while maintaining a positive connection.

6. Customization and Adaptable Designs:

– Cardan shafts can be customized and designed to handle specific variations in length and connection methods based on the requirements of the application. Manufacturers offer a range of cardan shaft options with different lengths, sizes, and connection configurations. By collaborating with cardan shaft manufacturers and suppliers, engineers can select or design shafts that match the specific needs of their systems, ensuring optimal performance and compatibility.

In summary, cardan shafts handle variations in length and connection methods through telescopic designs, slip yokes, flange connections, universal joints, splined connections, and customizable designs. These features allow the shafts to adjust their length, compensate for misalignment, and establish secure connections while maintaining efficient power transmission. By incorporating these mechanisms, cardan shafts offer flexibility and adaptability in various applications where length variations and different connection methods are encountered.

cardan shaft

How do cardan shafts contribute to the efficiency of vehicle propulsion and power distribution?

Cardan shafts play a crucial role in the efficiency of vehicle propulsion and power distribution. They enable the transfer of torque from the engine to the wheels, allowing for effective power transmission and optimized performance. Here’s how cardan shafts contribute to the efficiency of vehicle propulsion and power distribution:

1. Torque Transmission:

– Cardan shafts are responsible for transmitting torque from the engine or power source to the wheels. By efficiently transferring rotational force, they enable propulsion and movement of the vehicle. The design and construction of the cardan shaft ensure minimal power loss during torque transmission, contributing to the overall efficiency of the propulsion system.

2. Power Distribution:

– In vehicles with multiple axles or wheels, cardan shafts distribute power to each axle or wheel, ensuring balanced power delivery. This allows for improved traction, stability, and control, especially in situations such as acceleration, cornering, or off-road driving. By evenly distributing power, cardan shafts optimize the utilization of the available engine power and contribute to the overall efficiency of the vehicle.

3. Flexibility and Misalignment Compensation:

– Cardan shafts offer flexibility and the ability to accommodate misalignment between the engine, drivetrain, and wheels. They can handle angular misalignment, parallel offset, and axial displacement, allowing for smooth power transmission even when the components are not perfectly aligned. This flexibility helps reduce mechanical stresses and energy losses caused by misalignment, thus improving the efficiency of power transfer.

4. Vibration Damping:

– Cardan shafts can help dampen vibrations transmitted from the engine or other drivetrain components. The universal joints in the shaft assembly allow for slight angular movement, which helps absorb and dampen vibrations generated during operation. By reducing vibrations, cardan shafts contribute to a smoother and more efficient power distribution, enhancing overall vehicle performance and comfort.

5. Weight Reduction:

– Cardan shafts, when compared to alternative drivetrain systems such as chain or belt drives, can contribute to weight reduction in vehicles. The use of lightweight materials and optimized designs helps reduce the overall weight of the propulsion system. Reduced weight improves fuel efficiency, as less energy is required to propel the vehicle. Cardan shafts’ compactness and space-saving design also allow for more efficient packaging of the drivetrain components.

6. Durability and Reliability:

– Cardan shafts are designed to withstand the demands of vehicle propulsion and power distribution over extended periods. They are engineered using durable materials and undergo rigorous testing to ensure reliability and longevity. By providing a robust and dependable power transmission solution, cardan shafts contribute to the overall efficiency of the propulsion system by minimizing downtime and maintenance requirements.

Overall, cardan shafts contribute to the efficiency of vehicle propulsion and power distribution by effectively transmitting torque, balancing power distribution, compensating for misalignment, dampening vibrations, reducing weight, and ensuring durability and reliability. Their role in optimizing power transfer and enhancing overall vehicle performance makes cardan shafts an integral component of efficient propulsion systems.

cardan shaft

Can you explain the components and structure of a cardan shaft system?

A cardan shaft system, also known as a propeller shaft or drive shaft, consists of several components that work together to transmit torque and rotational power between non-aligned components. The structure of a cardan shaft system typically includes the following components:

1. Shaft Tubes:

– The shaft tubes are the main structural elements of a cardan shaft system. They are cylindrical tubes made of durable and high-strength materials such as steel or aluminum alloy. The shaft tubes provide the backbone of the system and are responsible for transmitting torque and rotational power. They are designed to withstand high loads and torsional forces without deformation or failure.

2. Universal Joints:

– Universal joints, also known as U-joints or Cardan joints, are crucial components of a cardan shaft system. They are used to connect and articulate the shaft tubes, allowing for angular misalignment between the driving and driven components. Universal joints consist of a cross-shaped yoke with needle bearings at each end. The yoke connects the shaft tubes, while the needle bearings enable the rotational motion and flexibility required for misalignment compensation. Universal joints allow the cardan shaft system to transmit torque even when the driving and driven components are not perfectly aligned.

3. Slip Yokes:

– Slip yokes are components used in cardan shaft systems that can accommodate axial misalignment. They are typically located at one or both ends of the shaft tubes and provide a sliding connection between the shaft and the driving or driven component. Slip yokes allow the shaft to adjust its length and compensate for changes in the distance between the components. This feature is particularly useful in applications where the distance between the driving and driven components can vary, such as vehicles with adjustable wheelbases or machinery with variable attachment points.

4. Flanges and Yokes:

– Flanges and yokes are used to connect the cardan shaft system to the driving and driven components. Flanges are typically bolted or welded to the ends of the shaft tubes and provide a secure connection point. They have a flange face with bolt holes that align with the corresponding flange on the driving or driven component. Yokes, on the other hand, are cross-shaped components that connect the universal joints to the flanges. They have holes or grooves that accommodate the needle bearings of the universal joints, allowing for rotational motion and torque transfer.

5. Balancing Weights:

– Balancing weights are used to balance the cardan shaft system and minimize vibrations. As the shaft rotates, imbalances in the mass distribution can lead to vibrations, noise, and reduced performance. Balancing weights are strategically placed along the shaft tubes to counterbalance these imbalances. They redistribute the mass, ensuring that the rotational components of the cardan shaft system are properly balanced. Proper balancing improves stability, reduces wear on bearings and other components, and enhances the overall performance and lifespan of the shaft system.

6. Safety Features:

– Some cardan shaft systems incorporate safety features to protect against mechanical failures. For example, protective guards or shielding may be installed to prevent contact with rotating components, reducing the risk of accidents or injuries. In applications where excessive forces or torques can occur, cardan shaft systems may include safety mechanisms such as shear pins or torque limiters. These features are designed to protect the shaft and other components from damage by shearing or disengaging in case of overload or excessive torque.

In summary, a cardan shaft system consists of shaft tubes, universal joints, slip yokes, flanges, and yokes, as well as balancing weights and safety features. These components work together to transmit torque and rotational power between non-aligned components, allowing for angular and axial misalignment compensation. The structure and components of a cardan shaft system are carefully designed to ensure efficient power transmission, flexibility, durability, and safety in various applications.

China wholesaler Universal Flexible Woodon China Auto Parts Joint Jaw Cardan Shaft Coupling New  China wholesaler Universal Flexible Woodon China Auto Parts Joint Jaw Cardan Shaft Coupling New
editor by CX 2024-03-03

HRC best China in Vienna Austria Shaft Flexible Jaw Couplings with top quality

HRC  best  China  in Vienna Austria   Shaft Flexible Jaw Couplings with top quality

We – EPG Group the bigge EPT gearbox & motors , vee pulleys, timing pulleys, couplings and gears factory in China with 5 different branches. For more details: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778 0571 88828

I.Brief Introduction
Plum blossom type elastic shaft coupling is made up of semi-shaft coupling with the same protruding claw and elastic component. Utilizing the plum blossom elastic component put between the protruding claw and two half shaft coupling to realize the connection of two semiaxis devices.
II.Application
Flexible coupling mainly used for start frequently,rotating,high-speed,medium torque and high reliability in the workplace. Such as:mining and metallurgy,mine,petroleum,chemical,industry,overweight,transportation,light industry,weaving,water pump,fan,etc. Work environment -35~+800°C.

TYPE Nominal Torque Overall Diameter Hub diameter Assembled length Element ring Dia Element Ring Width Parallel Misalignment Mass
NM A B F E     KG
HRC70 31 69 60 25.5 31 18.5 0.3 1
HRC90 80 85 70 30.5 32 22.5 0.3 1.17
HRC110 160 112 100 45.5 45 29.5 0.3 5
HRC130 315 130 105 53.5 50 36.5 0.4 5.46
HRC150 600 150 115 60.5 62 40.5 0.4 7.11
HRC180 950 180 125 73.5 77 49.5 0.4 16.65
HRC230 2000 225 155 85.5 99 59.5 0.5 26.05
HRC280 3150 275 206 105.5 119 74.5 0.5 50.05

 

TYPE Allowable Wrench Torque (N.m) Max (rpm) Max Bore (mm) Out Dia (mm) Total Length (mm) L1 (mm) Weight (kg)
L-035 0.15 6000 8 16.1 20.15 6.68 0.02
L-050 0.45 4500 16 27.6 42.55 15.60 0.14
L-070 0.9 3600 20 34.3 49.92 19.30 0.25
L-075 1.5 3600 26 44.6 52.88 20.60 0.45
L-090 2.4 3000 28 53.6 53.22 20.70 50.66
L-095 3 3000 28 53.6 62.36 25.20 0.78
L-100 7.5 3000 36 64.6 86.47 34.70 1.53
L-110 15 2500 38 84.3 106.32 43.10 3.3
L-150 30 2500 46 95.3 112.95 44.60 4.48
L-190 45 2000 58 115 138.50 56.00 9.14

 

Type Max torque
N.m
Max speed
r/min
D D 1 d 1 L C n-M   kg
FCL90 4 4000 90 35.5 11 28 3 4-M8×50 1.7
FCL100 10 4000 100 40 11 35.5 3 4-M10×56 2.3
FCL112 16 4000 112 45 13 40 3 4-M10×56 2.8
FCL125 25 4000 125 50 13 45 3 4-M12×64 4.0
FCL140 50 4000 140 63 13 50 3 6-M12×64 5.4
FCL160 110 4000 160 80 15 56 3 8-M12×64 8.0
FCL180 157 3500 180 90 15 63 3 8-M12×64 10.5
FCL200 245 3200 200 100 21 71 4 8-M20×85 16.2
FCL224 392 2850 224 112 21 80 4 8-M20×85 21.3
FCL220 618 2550 250 125 25 90 4 8-M24×110 31.6
FCL280 980 2300 280 140 34 100 4 8-M24×116 44.0
FCL315 1568 2050 315 160 41 112 4 10-M24×116 57.7
FCL355 2450 1800 355 180 60 125 5 8-M30×50 89.5
FCL400 3920 1600 400 200 60 125 5 10-M30×150 113
FCL450 6174 1400 450 224 65 140 5 12-M30×150 145
FCL560 9800 1150 560 250 85 160 5 14-M30×150 229
FCL630 15680 1000 630 280 95 180 5 18-M30×150 296

Our Services
1. Convenient: 24th Hours sales/After-sales Service online or on the phone
2. Quality Assurance: We will discuss with you and supply you the be EPT quality comfortable to your market
3. Quick delivery: Time is money, we promise we always will deliver the goods quicker than others
4.According to customers’ drawing,customized specifications are welcomed
5.Low MOQ,small orders can be accepted.
About us
Zhalaiteqi Xihu (We EPT Lake) Dis. Mechanical sea EPT part Co.,ltd is one of professional manufacturer , designing and producing rubber oil seals, hydraulic seals, mechanical seals,bearing,O-rings, PTFE gasket,etc. these products are widely used in automotive, heavy truck, agriculture machinery, construction machinery , Our company have  strong capability in  technique R&D and rich experience in productions. We have 5 years experience.
We always insi EPT on its foothold PRODUCTS QUALI EPT IS VITAL TO AN ENTERPRISE and we will continue to persi EPT on QUALI EPT FIRST, CREDITABILI EPT FI EPT principle, concentrate on exploring and creating, try our be EPT to proving first-class products and be EPT service to satisfy our customers’ requirements
Welcome to contact us If your have any questions ! 

We – EPG Group the bigge EPT gearbox & motors , vee pulleys, timing pulleys, couplings and gears factory in China with 5 different branches. For more details: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778 0571 88828

The use of original equipment manufacturer’s (OEM) part numbers or trademarks , e.g. CASE® and John Deere® are for reference purposes only and for indicating product use and compatibility. Our company and the listed replacement parts contained herein are not sponsored, approved, or manufactured by the OEM.

HRC  best  China  in Vienna Austria   Shaft Flexible Jaw Couplings with top quality

HRC  best  China  in Vienna Austria   Shaft Flexible Jaw Couplings with top quality