Wave coil spring and method for additively manufacturing thereof
US-2022381311-A1 · Dec 1, 2022 · US
US9360074B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9360074-B2 |
| Application number | US-201314385081-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 12, 2013 |
| Priority date | Mar 12, 2012 |
| Publication date | Jun 7, 2016 |
| Grant date | Jun 7, 2016 |
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Official abstract text for this publication.
The present invention provides a wave spring and a load adjusting method therefor in which a ratio of a spring constant can be freely adjusted. In a wave spring, a high mountain portion and a low mountain portion form a combination, and the combination is repeatedly formed along a circumferential direction. A valley portion is formed between the mountain portions. Since distance between mountain portions is constant in the conventional design of wave springs, the ratios of spring constant are only specific values (plot indicated by ∘). In contrast, in the design of the wave spring, since the pitch angle A of the high mountain portion and the pitch angle B of the low mountain portion can be changed in the combination, the ratio can be freely adjusted.
Opening claim text (preview).
The invention claimed is: 1. A load adjusting method for a wave spring, comprising: repeatedly forming a combination including plural kinds of mountain portions having different heights from each other; wherein in the design of each combination, the total number of the combinations forming the wave spring is decided, pitch angles of the plural kinds of mountain portions forming each combination are established, and a valley portion is established between adjacent ones of the plural kinds of mountain portions, wherein a flat portion is formed in at least one of the valley portions of the wave spring, the flat portion has a predetermined pitch angle and lies in the same plane with the valley portion, whereby load is adjusted, wherein the flat portion is connected to a foot of one of the mountain portions such that the flat portion is on a tangent line of the foot. 2. The load adjusting method for a wave spring according to claim 1 , wherein the plural kinds of mountain portions for at least one combination includes a high-mountain portion and a low-mountain portion, and the flat portion is adjacent to the high-mountain portion. 3. A wave spring comprising: repeatedly formed combinations including plural kinds of mountain portions having different heights from each other; wherein in each combination, pitch angles of the plural kinds of mountain portions are different from each other and a valley portion is established between adjacent ones of the plural kinds of mountain portions, wherein a flat portion is formed in at least one of the valley portions of the wave spring, the flat portion has a predetermined pitch angle and lies in the same plane with the valley portion, wherein the flat portion is connected to a foot of one of the mountain portions such that the flat portion is on a tangent line of the foot. 4. The wave spring according to claim 3 , wherein the plural kinds of mountain portions for at least one combination includes a high-mountain portion and a low-mountain portion, and the flat portion is adjacent to the high-mountain portion. 5. A load adjusting method for a wave spring, comprising: repeatedly forming a combination including plural kinds of mountain portions having different heights from each other; wherein in the design of each combination, the total number of the combinations forming the wave spring is decided, pitch angles of the plural kinds of mountain portions forming each combination are established, and a valley portion is formed between adjacent ones of the plural kinds of mountain portions, wherein a flat portion having a predetermined angle is formed in at least one of the valley portions of the wave spring, whereby the pitch angle of one of the plural kinds of mountain portions adjacent to the flat portion is reduced from the established pitch angle. 6. The load adjusting method for a wave spring according to claim 5 , wherein the flat portion lies in the same plane with the valley portion.
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