China Standard L25 5X8mm 5mm to 8mm Connector Flexible Coupler Aluminium Plum Motor Spline Flexible Shaft Coupling motor shaft coupling

Product Description

Product Description


1. The allowable compensation quantity listed in the table refers to the relative offset of 2 axes formed by the comprehensive factors such as vibration, shock, deformation and temperature change caused by manufacturing error, installation error and working load change under working condition.
2. The maximum allowable angular deviation of the coupling shall not exceed ±5°.

The maximum opening value is a circular hole or a tapered hole with a keyway.

Main applications:

DWZ disc eddy current brake is mainly used as load in loading dynamometer equipment. it is experimental apparatus which can measure the dynamic mechanical properties, especially in dynamic loading test whose power value is small or tiny, also can be treated as suction power devices of other dynamic devices.

DW series disc eddy current dynamometer is, is that add device for measuring torque and rotational speed on DWZ series disc eddy current brake, it is experimental apparatus which can measure the dynamic mechnical properties, especial in dynamic loading test whose power value is small or tiny.

CW eddy current brake as a load is mainly used to measure the mechanical characteristics of inspection equipment, it and other control instrument (including loading apparatus, torque speed sensor and torque power acquisition instrument etc.) can be composed of eddy current dynamometer can be used for performance testing of the internal combustion engine, motor, gas turbine, automobile and its dynamic mechanical components, compared with other power measuring device, the CW series power measuring device has the advantages of reliability, high stability and practicability.

Eddy current brake/dynamometer Rated Power Rated torque Rated speed Maximum rotational speed Turning inertia Maximum excitation voltage Maximum excitation Current Cooling water pressure Flow of the cooling water
DWZ/DW-0.75 0.75 5 2000-2600 16000 0.002 80 3 0.1~0.3 1
DWZ/DW-3 3 10 2000-2600 14000 0.003 80 3 0.1~0.3 2
DWZ/DW-6 6 25 2000-2600 14000 0.003 80 3 0.1~0.3 3
DWZ/DW-10 10 50 2000-2600 13000 0.01 80 3 0.1~0.3 4.5
DWZ/DW-16 16 70 2000-2600 13000 0.02 80 3.5 0.1~0.3 6.5
DWZ/DW-25 25 120 2000-2600 11000 0.05 80 3.5 0.1~0.3 15
DWZ/DW-40 40 160 2000-2600 10000 0.1 90 4 0.1~0.3 25
DWZ/DW-63 63 250 2000-2600 9000 0.18 90 4 0.1~0.3 45
DWZ/DW-100 100 400 2000-2600 8500 0.32 120 4 0.1~0.3 60
DWZ/DW-160 160 600 2000-2600 8000 0.52 120 5 0.1~0.3 100
DWZ/DW-250 250 1100 2000-2600 7000 1.8 150 5 0.2~0.4 180
DWZ/DW-300 300 1600 2000-2600 6000 2.7 150 5 0.2~0.4 210
DWZ/DW-400 400 2200 2000-2600 5000 3.6 180 10 0.2~0.4 300
DWZ/DW-630 630 3600 2000-2600 5000 5.3 180 10 0.2~0.4 450


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motor shaft coupling

What are the Different Types of Motor Shaft Couplings Available?

Motor shaft couplings come in various designs to suit different application requirements. The choice of coupling type depends on factors such as the level of misalignment, torque capacity, shaft sizes, and the specific needs of the system. Here are some common types of motor shaft couplings:

1. Flexible Jaw Couplings: These couplings consist of two hubs with curved jaws and an elastomeric spider between them. They provide good misalignment absorption and dampen vibrations, making them suitable for many general-purpose applications.

2. Gear Couplings: Gear couplings use gear teeth on the hubs to transmit torque between shafts. They can handle high torque and are ideal for applications with moderate misalignment.

3. Oldham Couplings: Oldham couplings consist of three parts: two hubs and a center disk with slots. They are best suited for applications with parallel misalignment.

4. Disc Couplings: Disc couplings use thin metal discs to transmit torque. They offer high torsional stiffness and can accommodate misalignment while providing excellent precision.

5. Beam Couplings: Beam couplings use a single-piece construction with spiral cuts. They are flexible and can handle angular and axial misalignment.

6. Bellows Couplings: Bellows couplings have a thin-walled, accordion-like structure that provides flexibility and is suitable for applications requiring high precision.

7. Grid Couplings: Grid couplings consist of two hubs with a flexible grid element between them. They offer high torque capacity and are suitable for high-speed applications.

8. Universal Joints: Universal joints use cross-shaped couplings to transmit torque between shafts at different angles. They are commonly used in vehicles and drive shafts.

9. Rigid Couplings: Rigid couplings are solid couplings that do not provide misalignment compensation. They are used in applications where shaft alignment is precise.

Each type of motor shaft coupling has its advantages and limitations, and the appropriate choice depends on the specific needs of the system, including the level of misalignment, operating conditions, and the desired performance characteristics.

China Standard L25 5X8mm 5mm to 8mm Connector Flexible Coupler Aluminium Plum Motor Spline Flexible Shaft Coupling  motor shaft couplingChina Standard L25 5X8mm 5mm to 8mm Connector Flexible Coupler Aluminium Plum Motor Spline Flexible Shaft Coupling  motor shaft coupling
editor by CX 2024-05-14

motor shaft coupling

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