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Flexible Shaft Coupling
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Flexible Shaft Coupling

Flexible Shaft Coupling

●Customizable
●Excellent material
●Stable structure
●Various specifications

Flexible couplings are devices that connect two shafts to transmit motion and torque, and can compensate for offsets and reduce vibration. They are made of a variety of materials and are suitable for a variety of equipment. They can improve the stability and life of the transmission system and are widely used in the mechanical field.

 

flexible shaft coupling Detail
Product Name flexible shaft coupling
Product Material Alloy steel, engineering plastics or rubber are mostly used, taking into account both strength and elasticity.
Product Process After forging, cutting, heat treatment and other processes
Surface Treatment Through galvanizing, painting and other processes, the corrosion resistance and appearance texture are improved.
Application Applicable to heavy-duty transmission systems in metallurgy, mining, chemical industry, power, etc.
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flexible shaft coupling
Product Advantages
flexible shaft coupling

Strong offset compensation

can flexibly compensate for radial, axial and angular offsets between the two shafts.

flexible shaft coupling

Good buffering and vibration reduction

can absorb impact vibration and reduce equipment operating noise.

flexible shaft coupling

Wide range of adaptability

compatible with a variety of motors, pumps and other equipment.

flexible shaft coupling

Easy installation and maintenance

simple structural design, easy to install and debug quickly.

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Product Information Parameters

In addition to standard sizes,GRANGIN also focuses on custom parts. It has an absolute advantage in the field of custom parts,

Meet almost all application requirements and the most stringent specifications.

Rated Torque (N.m) Allowable Eccentricity (mm) Allowable Deflection Angle (∠°) Allowable Axial Deviation (mm) Allowable Rotational Speed (RPM) Static Torsional Stiffness (N.m/rad) Moment of Inertia (N.m) Coupling Weight (g)
1 0.12 1.5 ±0.18 10000 700 9.1×10⁻⁷ 14
1 0.10 2.0 ±0.20 10000 550 1.1×10⁻⁶ 19
2 0.15 2.0 ±0.20 10000 700 3.3×10⁻⁶ 31
1.5 0.15 1.5 ±0.30 10000 1850 3.0×10⁻⁶ 37
3 0.15 2.0 ±0.30 10000 1200 5.5×10⁻⁶ 43
2 0.17 1.5 ±0.36 10000 2850 7.6×10⁻⁶ 67
5 0.20 2.0 ±0.40 10000 1500 1.1×10⁻⁵ 60
3 0.17 1.5 ±0.36 10000 4050 9.0×10⁻⁶ 77
8 0.25 2.0 ±0.50 10000 3350 2.7×10⁻⁵ 113
6 0.22 1.5 ±0.40 10000 9000 3.0×10⁻⁵ 118
9 0.22 1.5 ±0.54 10000 10000 3.8×10⁻⁵ 144
18 0.23 1.5 ±0.54 10000 16000 3.0×10⁻⁵ 235
25 0.27 1.5 ±0.72 10000 25000 1.6×10⁻⁵ 318
60 0.31 1.5 ±0.80 9000 35000 2.0×10⁻⁴ 492

Spur Gears Material

We can customize gears of different materials, sizes and styles.

stainless steel spur gears2
Stainless Steel Spur Gears
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steel spur gears5
Steel Spur Gears
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aluminum spur gears1
Aluminum Spur Gears
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Alloy steel gears
Alloy steel gears
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Brass Spur Gears
Brass Spur Gears
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Nylon Spur Gears
Nylon Spur Gears
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Plastic Spur Gears
Plastic Spur Gears
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Bakelite gears
Bakelite gears
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20+ years of experience as flexible shaft coupling manufacturer

 

                       Specialized in designing, producing and processing various specifications of synchronous wheels, gears, sprockets, racks, couplings and other transmission accessories

Semi-finished Parts Pictures: 

 

Custom 6-mode stainless steel gears

Custom 6-Mode Stainless Steel Gears

 

Custom Finished Hole Sprockets

Custom Finished Hole Sprockets

 

Customized 1.2 inch large sprocket

Customized 1.2 Inch Large Sprocket

 

Custom gear shaft

Custom Gear Dhaft

 

Customized electric cylinder coupling shaft

Customized Electric Cylinder Coupling Shaft

 

Customized aluminum flange

Customized Aluminum Flange

 Packaging Pictures:

product-1280-1159

product-1297-475

product-1483-518

Our Certificate

77842fa4c8c703d8b681b1ec6cc1c83.jpg

CE

product-800-1132

ISO45001

product-800-1132

ISO14001

product-800-1132

ISO9001

 

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What are the differences in the application scenarios of flexible couplings of different materials?
Alloy steel is suitable for heavy-load conditions, engineering plastic is suitable for light-load anti-corrosion scenarios, and rubber focuses on vibration reduction needs. ​

 

What is the role of heat treatment during processing?
It can improve the hardness and toughness of the material and enhance the fatigue resistance and structural stability of the coupling. ​


How to choose materials according to equipment?

Choose alloy steel for heavy-load and high-temperature, choose engineering plastic for light-load anti-corrosion, and choose rubber for high vibration reduction needs. ​

 

 

 

 

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