Bawana, Delhi
GST No. 07AAMFM8243P1ZI
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Material | EN8/EN18 |
Size | AS PER REQUIREMENT |
Brand | MND |
Packaging Type | BUBBLE WRQP, CORRUGATED BOXES, PALLET |
Color | AS PER REQUIREMENT |
I Deal In | New Only |
Country of Origin | Made in India |
A universal joint, also known as a U-joint, is a mechanical coupling that allows two shafts to be connected at an angle. It is often used in the drivetrain of a tractor to transmit power from the engine to the wheels. The U-joint allows the shafts to rotate and move relative to each other, which is necessary because the wheels of a tractor need to be able to move up and down as the tractor travels over uneven terrain. U-joints are typically made of high-strength steel and are designed to be durable and reliable. They may need to be replaced if they become damaged or worn out over time.
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Minimum Order Quantity: 5 Piece
Product Brochure
Usage/Application | Industrial Machines |
Material | Alloy Steel |
Joint Technique | U Joint |
Length | As per Requirement |
Color | Black |
I Deal In | New Only |
Country of Origin | Made in India |
A cardan shaft, also known as a universal joint shaft, is a mechanical component that transmits rotational torque from one shaft to another. It is commonly used in automotive and industrial applications to transfer power between two non-collinear shafts.
The cardan shaft is comprised of three main components: the input shaft, the output shaft, and the universal joint. The input shaft is the component that receives torque from the power source, such as an engine. The output shaft is the component that delivers the torque to the driven component, such as the wheels of a vehicle. The universal joint connects the input and output shafts and allows for the transfer of torque even when the two shafts are at an angle to one another.
The design of the universal joint allows for the shaft to flex and rotate at an angle, which is crucial in applications where the input and output shafts are not aligned. The universal joint is made up of a cross-shaped component that connects the input and output shafts. Each end of the cross is attached to a yoke, which is a fork-shaped component that allows for the connection to the shafts.
The operation of the cardan shaft is relatively simple. As the input shaft rotates, it transfers torque to the universal joint. The universal joint then transfers the torque to the output shaft, which rotates and delivers the power to the driven component. The cardan shaft is able to transmit torque even when the input and output shafts are at an angle to one another, allowing for a greater range of motion and flexibility in the system.
It is worth noting that the cardan shaft is not without its limitations. Due to the design of the universal joint, there is some degree of backlash and vibration present in the system. Additionally, the cardan shaft is not ideal for applications where precise torque transfer is required, as the flexibility of the joint can result in some loss of power.
In conclusion, the cardan shaft is a mechanical component that is commonly used in automotive and industrial applications to transfer power between two non-collinear shafts. It is comprised of three main components: the input shaft, the output shaft, and the universal joint. While the cardan shaft is not without its limitations, it remains an important and widely used component in many different industries.
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Minimum Order Quantity: 10 Piece
Product Brochure
Material | Alloy Steel |
Hardness | >60 HRC |
Brand | Spicer |
Joint Technique | CV Joint |
Surface Treatment | Paint Coated |
Corrosion Resistance | Yes |
Length | As per Requirement |
Discover high-quality Universal Joints designed for marine applications. Universal Joints, also known as U-joints, are essential components used to transmit rotational motion between misaligned shafts. In marine settings, they play a crucial role in ensuring efficient power transmission and smooth operation of various systems, such as propellers, steering mechanisms, and more.
These specialized Universal Joints are engineered to withstand the harsh conditions of marine environments, including corrosion, vibration, and varying angles. Their robust construction and precision design make them reliable choices for marine applications where consistent and precise power transfer is vital.
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