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Compression spring manufactured from music wire with 39.5 coils and closed ends. This spring features an O.D. of 0.083", and an I.D. of 0.064".


Label | Value |
---|---|
Brand | Century Spring |
Display Name | 75798 |
Ends | Closed |
Finish | None |
Free Length | 0.984 in |
Inside Diameter | 0.064 in |
Material | Music Wire |
Outside Diameter | 0.083 in |
Part Type | Metric |
Rate | 0.902 lbs/in |
SKU | 75798CS |
Solid Length | 0.399 in |
Suggested Max Deflection | 0.833 in |
Suggested Max Load | 0.751 lbf |
Total Coils | 39.5 |
Wire Diameter | 0.01 in |
Label | Value |
---|---|
Brand | Century Spring |
Display Name | 75798 |
Ends | Closed |
Finish | None |
Free Length | 24.99 mm |
Inside Diameter | 1.63 mm |
Material | Music Wire |
Outside Diameter | 2.11 mm |
Part Type | Metric |
Rate | 0.16 N/mm |
SKU | 75798CS |
Solid Length | 10.13 mm |
Suggested Max Deflection | 21.16 mm |
Suggested Max Load | 3.34 N |
Total Coils | 39.5 |
Wire Diameter | 0.25 mm |
The 75798CS compression spring is a meticulously engineered component designed for a wide range of industrial applications requiring reliable performance and durability. Crafted from premium 0.01" diameter music wire, the 75798 spring design exhibits reliable strength across its 39.5 active coils, withstanding repeated compression cycles with a maximum load of 0.751 lbf without succumbing to fatigue.
We manufacture the 75798 design to provide a compression spring that is 0.984" long at rest and provides a consistent rate of 0.902 lbs/in along its recommended maximum of 0.833" deflection. For best results, your application should fully accommodate the inner (0.064") and outer (0.083") diameters of this spring and be designed for its closed end configuration.
We manufacture the 75798 design to provide a compression spring that is 0.984" long at rest and provides a consistent rate of 0.902 lbs/in along its recommended maximum of 0.833" deflection. For best results, your application should fully accommodate the inner (0.064") and outer (0.083") diameters of this spring and be designed for its closed end configuration.