Coil spring assembly

US11339844B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11339844-B2
Application numberUS-201916982738-A
CountryUS
Kind codeB2
Filing dateMar 26, 2019
Priority dateMar 29, 2018
Publication dateMay 24, 2022
Grant dateMay 24, 2022

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A seat member has a seat portion, a receiving surface of which comes into contact with a bearing surface of an end turn portion, a mounting shaft portion protruded from the receiving surface of the seat portion, and an enlarged diameter portion formed at the front end of the mounting shaft portion for guiding press-fitting, in a cross section along an axial direction of a coil spring, an outer diameter of the enlarged diameter portion is set larger than an inner diameter of the end turn portion and an axial length of the enlarged diameter portion is set so that at least a maximum diagonal length of the seat member is larger than an inter-element wire distance.

First claim

Opening claim text (preview).

The invention claimed is: 1. A coil spring assembly comprising: a coil spring that is provided with a respective end turn portion at each end of a body portion and a respective seat member attached to the coil spring at each of the end turn portions rotatably around an axis, wherein each of the seat members has a seat portion, a receiving surface of which comes into contact with a bearing surface of the corresponding end turn portion, a mounting shaft portion protruded from the receiving surface of the seat portion, and an enlarged diameter portion formed at a front end of the mounting shaft portion for guiding press-fitting, an outer diameter of the enlarged diameter portion being larger than an outer diameter of the mounting shaft portion, in a cross section along an axial direction of the coil spring, each of the seat members is configured so that the outer diameter of the enlarged diameter portion is set larger than an inner diameter of the corresponding end turn portion and an axial length of the enlarged diameter portion is set so that at least a maximum diagonal length of the seat member is larger than an inter-element wire distance, the inter-element wire distance is a length of a straight line spanning between diametral innermost points at a 0.5-turn and a 1.0-turn of each of the end turn portions in a winding direction of the element wire of the coil spring, the enlarged diameter portion of each of the seat members has a proximal straight portion having a side face extending straight along the axial direction of the coil spring and a distal end portion having a side face which is chamfered or tapered, the maximum diagonal length of each of the seat members is a length of a straight line intersecting a central axis of the seat member and extending from a point of contact between an outer periphery of the element wire at the 0.5 turn of the end turn portion and the mounting shaft portion to an edge defined by a meeting of the respective side faces of the straight and distal end portions of the enlarged diameter portion of the seat member, and an axial length of the straight portion of each of the seat members is longer than an axial length of the distal end portion and is 0.5-0.94 times a short diameter of the element wire of the coil spring. 2. The coil spring assembly according to claim 1 , wherein the element wire of the coil spring has an oval cross section, a coil outer diameter side of which is configured by a semi-circular sectional shape portion of the element wire. 3. The coil spring assembly according to claim 1 , wherein: a maximum outer diameter of each of the enlarged diameter portions is set smaller than the inter-element wire distance of each of the end turn portions. 4. The coil spring assembly according to claim 1 , wherein the coil spring has a respective transition portion between the body portion and each of the end turn portions, each of the end turn portions being formed up to a first turn so as to be reduced in diameter relative to the body portion, each of the transition portions gradually enlarged in diameter from respective the end turn portion to the body portion, each of the mounting shaft portions is set to have an axial length defining a clearance or a zero-clearance between the enlarged diameter portion of the seat member and the respective end turn portion in a free state in which the end turn portion is fitted to the mounting shaft portion and the bearing surface of the end turn portion is in contact with the receiving surface of the seat portion, and each of the transition portions circumvents the enlarged diameter portion in a state in which the bearing surface of the respective end turn portion is in contact with the receiving surface of the seat portion. 5. The coil spring assembly according to claim 1 , wherein the seat member has a hole axially extending from a front end of the enlarged diameter portion. 6. The coil spring assembly according to claim 5 , wherein the hole is a bottomed hole. 7. The coil spring assembly according to claim 1 , wherein the axial length of the enlarged diameter portion of each of the seat members is greater than the short diameter of the element wire of the coil spring. 8. The coil spring assembly according to claim 1 , wherein d>(a+b)/2 in which d is an inner diameter of each of the end turn portions, a is a maximum outer diameter of each of the enlarged diameter portions and b is an outer diameter each of the mounting shaft portions. 9. A coil spring assembly comprising: a coil spring that is provided with a respective end turn portion at each end of a body portion and a respective seat member attached to the coil spring at each of the end turn portions rotatably around an axis, wherein each of the seat members has a seat portion, a receiving surface of which comes into contact with a bearing surface of a respective one of the end turn portions, a mounting shaft portion protruded from the receiving surface of the seat portion, and an enlarged diameter portion formed at a front end of the mounting shaft portion for guiding press-fitting, each of the enlarged diameter portions has a proximal straight portion having a side face extending straight along an axial direction of the coil spring, and a distal end portion, a side face of the distal end portion being chamfered shape or tapered, an axial length of each of the straight portions is 0.5 times or more a short diameter of an element wire of the coil spring, and a maximum outer diameter of each of the enlarged diameter portions is set smaller than an inter-element wire distance of each of the end turn portions, the inter-element wire distance being a length of a straight line spanning between diametral innermost points at a 0.5-turn and a 1.0-turn of each of the end turn portions in a winding direction of the element wire of the coil spring. 10. The coil spring assembly according to claim 9 , wherein the element wire of the coil spring has an oval cross section, a coil outer diameter side of which is configured by a semi-circular sectional shape portion of the element wire. 11. The coil spring assembly according to claim 9 , wherein the coil spring has a respective transition portion between the body portion and each of the end turn portions, each of the end turn portions being formed up to a first turn so as to be reduced in diameter relative to the body portion, each of the transition portions gradually enlarged in diameter from the respective end turn portion to the body portion, each of the mounting shaft portions is set to have an axial length defining a clearance or a zero-clearance between the enlarged diameter portion of the respective seat member and the respective end turn portion in a free state in which the end turn portion is fitted to the mounting shaft portion and the bearing surface of the end turn portion is in contact with the receiving surface of the seat portion, and each of the transition portions circumvents the respective enlarged diameter portion in a state in which the bearing surface of the respective end turn portion is in contact with the receiving surface of the respective seat portion. 12. The coil spring assembly according to claim 9 , wherein each of the seat members has a hole axially extending from the distal end portion of the enlarged diameter portion. 13. The coil spring assembly according to claim 12 , wherein each of the holes is a bottomed hole. 14. The coil spring assembly according to claim 9 , wherein the axial length of the straight portion of each of the seat members is greater than the axial length of the distal end portion, and

Assignees

Inventors

Classifications

  • B60K17/00Primary

    Arrangement or mounting of transmissions in vehicles · CPC title

  • having internal abutment means · CPC title

  • F16F1/125Primary

    where the end coils of the spring engage an axial insert (F16F1/126, F16F1/128 take precedence) · CPC title

  • Specific functional characteristics in numerical form or in the form of equations · CPC title

  • characterised by the cross-section of the wire · CPC title

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Frequently asked questions

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What does patent US11339844B2 cover?
A seat member has a seat portion, a receiving surface of which comes into contact with a bearing surface of an end turn portion, a mounting shaft portion protruded from the receiving surface of the seat portion, and an enlarged diameter portion formed at the front end of the mounting shaft portion for guiding press-fitting, in a cross section along an axial direction of a coil spring, an outer …
Who is the assignee on this patent?
Nhk Spring Co Ltd
What technology area does this patent fall under?
Primary CPC classification B60K17/00. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue May 24 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).