Spring Type Spring Type |
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![]() | Compression |
System of Measurement System of Measurement |
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Length Length | Show |
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Length Length | Hide |
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End Type End Type |
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![]() | Closed |
Material Material |
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Rate Rate |
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Energy Capacity Energy Capacity |
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Hardness Hardness |
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Maximum Temperature Maximum Temperature |
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Minimum Temperature Minimum Temperature |
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Color Color |
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![]() | Black |
Compressed OD @ Maximum Load Compressed OD@ Maximum Load |
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Width Width |
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As you squeeze a compression spring, it pushes back to return to its original length. Rate is the amount of force required for every inch of compression or, for metric springs, millimeter of compression. The higher the rate, the harder it is to compress the spring.
For technical drawings and 3-D models, click on a part number.
Wire | ||||||||||
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OD | ID | Dia. | Compressed Lg. @ Max. Load | Max. Load, lbs. | Rate, lbs./in. | Material | End Type | Pkg. Qty. | Pkg. | |
2.188" Lg. | ||||||||||
0.59" | 0.51" | 0.04" | 0.38" | 6.8 | 3.8 | Music-Wire Steel | Closed | 12 | 0000000 | 000000 |
These springs are more corrosion resistant than standard compression springs. They're also easier to compress than standard compression springs. As you squeeze a compression spring, it pushes back to return to its original length. Rate is the amount of force required for every inch of compression or, for metric springs, millimeter of compression. The higher the rate, the harder it is to compress the spring.
302 stainless steel springs have good corrosion resistance.
For technical drawings and 3-D models, click on a part number.
OD | ID | Wire Dia. | Compressed Lg. @ Max. Load | Max. Load, lbs. | Rate, lbs./in. | Material | End Type | Pkg. Qty. | Pkg. | |
2.188" Lg. | ||||||||||
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0.594" | 0.512" | 0.041" | 0.39" | 5.68 | 3.17 | 302 Stainless Steel | Closed | 6 | 00000000 | 00000 |
Mount these springs on their side to absorb impact in a small amount of space. Differently sized screw holes on either side allow for mounting flexibility. Springs are a polyester/rubber blend that is wear, oil, and fuel resistant.
Energy is calculated based on the direction of your load. For an object that is dropped, energy equals the weight of the item multiplied by distance dropped. For an object moving horizontally, energy equals half of the mass of the item multiplied by velocity squared (1/2 mv²).
For technical drawings and 3-D models, click on a part number.
Mounting Hole Dia. | ||||||||||||||
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Lg. | OD | Wd. | Compressed Lg. @ Max. Load | Compressed OD @ Max. Load | Max. Load, lbs. | Energy Capacity, in.-lbs. | (A) | (B) | Mounting Fasteners Included | Material | Hardness | Temperature Range, °F | Each | |
2.188" | 2.48" | 1.7" | 0.47" | 3.43" | 200 | 100 | 0.22" | 0.38" | No | Polyester/Rubber Blend | Durometer 40D | -40° to 120° | 0000000 | 000000 |