Spring structure and method for preparing closing-gap spring structure

TWI934625BActive Publication Date: 2026-08-01唐 瑋勗
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Patent Information

Authority / Receiving Office
TW · TW
Patent Type
Patents
Current Assignee / Owner
唐 瑋勗
Filing Date
2025-05-27
Publication Date
2026-08-01

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    Figure TWG2TB001903970_003
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Abstract

This disclosure provides a spring structure and a method for manufacturing the same. The spring structure includes a helical portion, a first support, and a second support. The helical portion is composed of at least one spring coil, and a projection of the helical portion is circular. An extension direction of the end of the first support connected to the helical portion intersects an axis of the helical portion. An extension direction of the end of the second support connected to the helical portion intersects an axis of the helical portion. This improves the structural stability of the spring structure.
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Claims

1. A spring structure comprising: a helical portion composed of at least one spring coil, wherein a projection of the helical portion is circular; a first support, wherein an extension direction of one end of the first support connected to the helical portion intersects an axis of the helical portion; and a second support, wherein an extension direction of one end of the second support connected to the helical portion intersects the axis of the helical portion; wherein, The first bracket includes a first connecting segment and a first tail segment, one end of the first connecting segment being connected to one end of the spiral portion, and the other end of the first connecting segment being connected to the first tail segment; wherein, the second bracket includes a second connecting segment and a second tail segment, one end of the second connecting segment being connected to the other end of the spiral portion, and the other end of the second connecting segment being connected to the second tail segment; wherein, the other end of the first connecting segment and the first tail segment are connected to form a first angle, and the other end of the second connecting segment and the second tail segment are connected to form a second angle.

2. The spring structure as claimed in claim 1, wherein the first support is in a straight line and the second support is in a straight line.

3. The spring structure as claimed in claim 2, wherein a length of the first support is not equal to a length of the second support.

4. The spring structure as claimed in claim 1, wherein the first angle is not equal to the second angle.

5. The spring structure as claimed in claim 1, wherein a first cross-section of the first bracket is rectangular and a second cross-section of the second bracket is rectangular.

6. A method for manufacturing a spring structure, comprising: providing a metal wire including a first region, a second region, and a third region, wherein the second region is located between the first region and the third region; twisting the second region corresponding to an axis to obtain a helical portion, wherein a projection of the helical portion is circular; bending a connection between the first region and the second region to form a first support in the first region, wherein an extension direction of one end of the first support connected to the helical portion intersects the axis; and bending a connection between the third region and the second region to form a second support in the third region, wherein an extension direction of one end of the second support connected to the helical portion intersects the axis, thereby forming a spring structure; wherein... After the junction of the third region and the second region is bent, the first bracket is concave to form a first connecting segment and a first tail segment, and the second bracket is concave to form a second connecting segment and a second tail segment, wherein one end of the first connecting segment is connected to one end of the spiral portion, the other end of the first connecting segment is connected to the first tail segment, one end of the second connecting segment is connected to the other end of the spiral portion, and the other end of the second connecting segment is connected to the second tail segment.