Clover®Dome Spring Washers
- Material for springs
- What is the difference between a conventional Disc Spring and a Clover®Dome Disc Spring?
- Can Clover®Dome disc springs be stacked?
- What material is the Clover®Dome disc spring made of?
- What load travel curves do Clover®Dome Disc Springs have?
- Febrotec Search
- What are the force tolerances of Clover®Dome disc springs?
Part Number | Outer ø | Inner ø | Thickness | Unloaded Length | Loaded Length | Force at L1 | Force Max. at Flat | Material Code | Stock | |||
---|---|---|---|---|---|---|---|---|---|---|---|---|
Da | Di | t | L0 | L1 | F1 | Fplan | Available | |||||
[mm] | [mm] | [mm] | [mm] | [mm] | [N] | [N] |
|
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0BC0709-025-S | 18.01 | 6.48 | 0.64 | 1.96 | 0.97 | 315.85 | 431 | 1.4568 (17-7 PH) |
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Details | ||
0BC0343-020-S | 8.71 | 4.29 | 0.51 | 1.02 | 0.64 | 290 | 463 | 1.4568 (17-7 PH) |
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Details | ||
0BC0750-026-S | 19.08 | 9.65 | 0.56 | 1.75 | 0.93 | 258.15 | 569 | 1.4568 (17-7 PH) |
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Details | ||
0BC0500-022-S | 12.7 | 6.48 | 0.56 | 1.27 | 0.74 | 379.25 | 596 | 1.4568 (17-7 PH) |
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Details | ||
0BC0875-030-S | 22.25 | 11.23 | 0.76 | 2.03 | 1.08 | 512.2 | 716 | 1.4568 (17-7 PH) |
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Details | ||
0BC0437-022-S | 11.1 | 5.59 | 0.56 | 1.19 | 0.72 | 454.4 | 725 | 1.4568 (17-7 PH) |
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Details | ||
0BC1000-033-S | 25.43 | 12.83 | 0.84 | 2.29 | 1.2 | 568.05 | 792 | 1.4568 (17-7 PH) |
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Details | ||
0BC0500-026-S | 12.7 | 6.48 | 0.66 | 1.37 | 0.84 | 497.1 | 796 | 1.4568 (17-7 PH) |
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Details | ||
0BC0750-030-S | 19.08 | 9.65 | 0.76 | 1.85 | 1.04 | 572.75 | 899 | 1.4568 (17-7 PH) |
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Details | ||
0BC0875-033-S | 22.25 | 11.23 | 0.84 | 2.11 | 1.16 | 661.45 | 1036 | 1.4568 (17-7 PH) |
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Details | ||
0BC1000-037-S | 25.43 | 12.83 | 0.94 | 2.39 | 1.3 | 840.25 | 1170 | 1.4568 (17-7 PH) |
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Details | ||
0BC0750-033-S | 19.08 | 9.65 | 0.84 | 1.93 | 1.11 | 767.35 | 1205 | 1.4568 (17-7 PH) |
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Details |
Our Clover®Dome springs allow a higher spring deflection than a conventional disc spring.
Clover®Dome Material
- 17-7PH per AMS 5529 stainless steel
- A long service life is ensured using clean surfaces during production