A press spring machine with a measuring cutting mechanism

By introducing a measuring and cutting mechanism into the spring compression machine, and utilizing a combination of a rotating block, a limiting shell, and a measuring ruler, the problem of substandard spring length was solved, achieving precise control of spring length and stable production.

CN224294589UActive Publication Date: 2026-05-29JIANGSU XIANGYING HARDWARE SPRING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU XIANGYING HARDWARE SPRING CO LTD
Filing Date
2025-06-26
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing compression spring machines often produce springs that are either too long or too short, requiring remaking and causing inconvenience.

Method used

A compression spring machine with a measuring and cutting mechanism was designed, including a support structure, a telescopic structure and a measuring structure. The combination of a rotating block, a limiting shell, a threaded rod and a measuring ruler enables precise adjustment and limiting of the spring length.

Benefits of technology

This achieves precise control of spring length, avoiding the need for remanufacturing due to exceeding or falling short of the standard, and improving production efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to spring presser machine technical field, concretely is a kind of spring presser machine with measuring cutting mechanism, it includes: support structure, telescopic structure and measuring structure, the first connecting disc inside rotation connection rotating block in support structure, the rotating block outside inserts and connects the clamping block in telescopic structure, the movable connection threaded rod in the limit shell inside connected to the clamping block side, by rotating rod rotation connection in second rotating groove, can make threaded rod be limited in limit shell, when threaded rod rotates, can drive threaded ring to move back and forth, when threaded ring moves back and forth, drive the movement of the measuring scale connected to the side of backing plate, when measuring scale moves to the required position, backing plate then limits the outside of limit shell so that spring can be processed to the required position, wherein measuring scale is inserted in the slot can limit measuring scale, by the clamping block of rotating block and the limit shell side with bolt connection can make limit shell can replace thickness.
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Description

Technical Field

[0001] This utility model relates to the field of spring compression machine technology, specifically a spring compression machine with a measuring and cutting mechanism. Background Technology

[0002] Compression spring machines generally refer to mechanical equipment used to produce compression springs. They have evolved into automatic and CNC types. Based on their functional characteristics, they are classified as compression spring machines, extension spring machines, computer spring machines, disc machines, and special spring machines such as serpentine spring machines and torsion spring machines. Based on their drive method, they are classified as semi-automatic, automatic, CNC, and fully computer-controlled.

[0003] However, when existing compression spring machines are in operation, if the spring is not restricted, it is easy to exceed the required length of the spring to be produced, or the produced spring is too short to meet the required length, so it is troublesome to remake it.

[0004] Therefore, in order to solve the above problems, a compression spring machine with a measuring and cutting mechanism is proposed. Utility Model Content

[0005] The purpose of this utility model is to provide a spring compression machine with a measuring and cutting mechanism to solve the problem mentioned in the background art that when the spring compression machine is working, it is easy to exceed the required length of the spring if the spring is not restricted, or the spring produced is too short to meet the required length, so it is troublesome to remake it.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a compression spring machine with a measuring and cutting mechanism, comprising: a support structure, a telescopic structure, and a measuring structure. A rotating block is rotatably connected inside a first connecting disc in the support structure. A locking block in the telescopic structure is inserted into the outside of the rotating block. A threaded rod is movably connected inside a limiting shell connected to one side of the locking block. A threaded ring in the measuring structure is movably connected to the outside of the threaded rod. A measuring ruler is connected to the outside of the threaded ring by a pad.

[0007] Preferably, the upper end of the base in the support structure is bolted to the first connecting plate, and one side of the first connecting plate is bolted to the drive motor.

[0008] Preferably, the other side of the first connecting plate is connected to the rotating block by a coupling, the outer side of the rotating block is hollowed out by threads, one side of the base is connected to the first support rod by bolts, the upper end of the first support rod is connected to the second connecting plate by bolts, and the interior of the second connecting plate is hollowed out to form a first rotating groove.

[0009] Preferably, the interior of the second connecting plate is hollowed out to form a first threaded groove, and the upper end of the second connecting plate is hollowed out to form a slot. A rotating bolt is rotatably connected inside the first threaded groove, and the rotating bolt is rotatably connected inside the third threaded groove.

[0010] Preferably, the outer side of the limiting shell in the telescopic structure is hollowed out to form a sliding groove, a locking block is welded to one side of the limiting shell, the inside of the locking block is hollowed out to form a second threaded groove, one side of the inside of the limiting shell is hollowed out to form a second rotating groove, and the other side of the inside of the limiting shell is hollowed out to form a third rotating groove.

[0011] Preferably, a rotating rod is movably connected inside the second rotating groove, a threaded rod is welded to one side of the rotating rod, a handle is welded to one side of the threaded rod, a first limiting ring is movably connected inside the third rotating groove, a rotating ring is welded to one side of the first limiting ring, a second support rod is welded to the outside of the rotating ring, a third threaded groove is welded to one side of the second support rod, and a second limiting ring is welded to one side of the limiting shell.

[0012] Preferably, a pad is welded to the outside of the threaded ring in the measuring structure, a tapered pad is bolted to one side of the pad, and a measuring ruler is bolted to one side of the pad.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model is provided with a rotating block, a limiting shell, a rotating bolt, a second connecting plate, and a third threaded groove. The rotating block is connected to a locking block on one side of the limiting shell by bolts, which allows the limiting shell to be changed in thickness, and the size of the spring to be adjusted. The third threaded groove, which is connected to the second connecting plate and the rotating ring on one side by the rotating bolt, can limit one side of the limiting shell, so that the limiting shell will not be tilted when rotating, and the spring is more stable when it is processed.

[0015] 2. This utility model comprises a rotating rod, a second rotating groove, a limiting shell, a threaded ring, a pad, a measuring ruler, and a slot. The rotating rod is rotatably connected to the second rotating groove, which limits the threaded rod within the limiting shell. When the threaded rod rotates, it drives the threaded ring to move back and forth. As the threaded ring moves back and forth, it drives the measuring ruler connected to one side of the pad to move. When the measuring ruler moves to the desired position, the pad limits the outer side of the limiting shell, allowing the spring to be machined to the desired position. The measuring ruler is inserted into the slot, which limits its movement. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0017] Figure 2 This is a three-dimensional exploded view of the structure of this utility model;

[0018] Figure 3 This is a three-dimensional structural diagram of the support structure of this utility model;

[0019] Figure 4 This is a three-dimensional exploded view of the telescopic structure of this utility model;

[0020] Figure 5 This is a three-dimensional schematic diagram of the measuring structure of this utility model;

[0021] Figure 6 This is a three-dimensional schematic diagram of the rotating ring structure of this utility model.

[0022] In the diagram: 1. Support structure; 101. Base; 102. First connecting plate; 103. Drive motor; 104. Rotating block; 105. First support rod; 106. Second connecting plate; 107. First rotating groove; 108. First threaded groove; 109. Slot; 110. Rotating bolt; 2. Telescopic structure; 201. Limiting shell; 202. Slide groove; 203. Locking block; 204. Second threaded groove; 205. Second rotating groove; 206. Third rotating groove; 207. Rotating ring; 208. First limiting ring; 209. Second support rod; 210. Third threaded groove; 211. Threaded rod; 212. Rotating rod; 213. Handle; 214. Second limiting ring; 3. Measuring structure; 301. Threaded ring; 302. Pad; 303. Conical pad; 304. Measuring ruler. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figure 1-6 One embodiment provided by this utility model:

[0025] A compression spring machine with a measuring and cutting mechanism includes: a support structure 1, a telescopic structure 2, and a measuring structure 3. A rotating block 104 is rotatably connected inside a first connecting plate 102 in the support structure 1. A locking block 203 in the telescopic structure 2 is inserted into the outside of the rotating block 104. A threaded rod 211 is movably connected inside a limiting shell 201 connected to one side of the locking block 203. A threaded ring 301 in the measuring structure 3 is movably connected to the outside of the threaded rod 211. The threaded ring 301 is connected to a measuring ruler 304 by a pad 302 on the outside.

[0026] Furthermore, the upper end of the base 101 in the support structure 1 is bolted to the first connecting plate 102, and the first connecting plate 102 is bolted to one side of the drive motor 103, which is used to rotate the rotating block 104.

[0027] Furthermore, the other side of the first connecting plate 102 is connected to the rotating block 104 by a coupling. The outer thread of the rotating block 104 is hollowed out. The first support rod 105 is bolted to one side of the base 101. The upper end of the first support rod 105 is bolted to the second connecting plate 106. The interior of the second connecting plate 106 is hollowed out to form a first rotating groove 107. The rotating block 104 is used to drive the telescopic structure 2 to rotate. The first support rod 105 is used to support the second rotating plate 106. The first rotating groove 107 is used to rotate the handle 213 and the threaded rod 211.

[0028] Furthermore, the interior of the second connecting plate 106 is hollowed out to form a first threaded groove 108, and the upper end of the second connecting plate 106 is hollowed out to form a slot 109. The first threaded groove 108 is rotatably connected to a rotating bolt 110, and the rotating bolt 110 is rotatably connected to a third threaded groove 210. The first threaded groove 108 is used to rotatably connect the rotating bolt 110, the slot 109 is used to movably connect the measuring ruler 304, and the rotating bolt 110 is used to connect the third threaded groove 210 to the second connecting plate 106.

[0029] Furthermore, the outer side of the limiting shell 201 in the telescopic structure 2 is hollowed out to form a sliding groove 202. A locking block 203 is welded to one side of the limiting shell 201. The inside of the locking block 203 is hollowed out to form a second threaded groove 204. One side of the inside of the limiting shell 201 is hollowed out to form a second rotating groove 205. The other side of the inside of the limiting shell 201 is hollowed out to form a third rotating groove 206. The limiting shell 201 is used to movably connect the threaded rod 211. The sliding groove 202 is used to movably connect the measuring structure 3. The locking block 203 is used to insert and connect to the outside of the rotating block 104. The second threaded groove 204 is used to connect the rotating block 104 and the locking block 203 with bolts. The second rotating groove 205 is used to rotatably connect the rotating rod 212. The third rotating groove 206 is used to movably connect the first limiting ring 208.

[0030] Furthermore, a rotating rod 212 is movably connected inside the second rotating groove 205. A threaded rod 211 is welded to one side of the rotating rod 212, and a handle 213 is welded to one side of the threaded rod 211. A first limiting ring 208 is movably connected inside the third rotating groove 206. A rotating ring 207 is welded to one side of the first limiting ring 208, and a second support rod 209 is welded to the outside of the rotating ring 207. A third threaded groove 210 is welded to one side of the second support rod 209. A second limiting ring 214 is welded to one side of the limiting shell 201. The first limiting ring 208 connected to one side of the rotating ring 207 is used to support one side of the limiting shell 201. The second support rod 209 is used to support the rotating ring 207. The third threaded groove 210 is used to rotatably connect the rotating bolt 110. The second limiting ring 214 is used to insert the material for making the spring and to limit one side of the spring so that the spring is not easily affected during manufacturing.

[0031] Furthermore, in the measuring structure 3, a pad 302 is welded to the outside of the threaded ring 301. A tapered pad 303 is bolted to one side of the pad 302, and a measuring ruler 304 is bolted to the other side of the pad 302. The threaded ring 301 is used to rotate and connect to the outside of the threaded rod 211 so that the threaded ring 301 can drive the pad 302 to move back and forth. The tapered pad 303 is used to support the pad 302, and the measuring ruler 304 is used to measure the length of the spring.

[0032] Working principle: When in use, first turn the handle 213, which drives the threaded rod 211 to rotate. When the threaded rod 211 rotates, it drives the threaded ring 301 to move back and forth. When the threaded ring 301 moves back and forth, it drives the measuring ruler 304 to adjust back and forth through the pad 302 connected to the outside, so that the measuring ruler 304 measures it. When the desired position is reached, the rotation can be stopped, and the pad 302 is used to hold the desired position. Then, insert the material for making the spring into the second limiting ring 214, and start the drive motor 103. The drive motor 103 drives the rotating block 104 to rotate. When the rotating block 104 rotates, it drives the limiting shell 201 to rotate. The limiting shell 201 drives the steel wire for making the spring to rotate, so that it is formed into a spring.

[0033] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or equivalent variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are considered equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.

Claims

1. A spring compression machine with a measuring and cutting mechanism, comprising: The support structure (1), the telescopic structure (2), and the measuring structure (3) are characterized in that: the first connecting plate (102) in the support structure (1) is rotatably connected to the rotating block (104), the outer side of the rotating block (104) is inserted into the locking block (203) in the telescopic structure (2), the inner side of the limiting shell (201) connected to the locking block (203) is movably connected to the threaded rod (211), the outer side of the threaded rod (211) is movably connected to the threaded ring (301) in the measuring structure (3), and the outer side of the threaded ring (301) is connected to the measuring ruler (304) by a pad (302).

2. A compression spring machine with a measuring and cutting mechanism according to claim 1, characterized in that: The upper end of the base (101) in the support structure (1) is bolted to the first connecting plate (102), and the drive motor (103) is bolted to one side of the first connecting plate (102).

3. A spring compression machine with a measuring and cutting mechanism according to claim 2, characterized in that: The first connecting plate (102) is connected to the rotating block (104) on the other side by a coupling. The rotating block (104) has its outer threads hollowed out. The base (101) is connected to the first support rod (105) by bolts on one side. The upper end of the first support rod (105) is connected to the second connecting plate (106) by bolts. The second connecting plate (106) is hollowed out to form the first rotating groove (107).

4. A spring compression machine with a measuring and cutting mechanism according to claim 3, characterized in that: The second connecting plate (106) is hollowed out to form a first threaded groove (108), and the upper end of the second connecting plate (106) is hollowed out to form a slot (109). A rotating bolt (110) is rotatably connected inside the first threaded groove (108), and the rotating bolt (110) is rotatably connected inside the third threaded groove (210).

5. A compression spring machine with a measuring and cutting mechanism according to claim 1, characterized in that: The outer side of the limiting shell (201) in the telescopic structure (2) is hollowed out to form a sliding groove (202). A locking block (203) is welded to one side of the limiting shell (201). The inside of the locking block (203) is hollowed out to form a second threaded groove (204). One side of the inside of the limiting shell (201) is hollowed out to form a second rotating groove (205). The other side of the inside of the limiting shell (201) is hollowed out to form a third rotating groove (206).

6. A compression spring machine with a measuring and cutting mechanism according to claim 5, characterized in that: The second rotating groove (205) is movably connected to a rotating rod (212). A threaded rod (211) is welded to one side of the rotating rod (212). A handle (213) is welded to one side of the threaded rod (211). The third rotating groove (206) is movably connected to a first limiting ring (208). A rotating ring (207) is welded to one side of the first limiting ring (208). A second support rod (209) is welded to the outside of the rotating ring (207). A third threaded groove (210) is welded to one side of the second support rod (209). A second limiting ring (214) is welded to one side of the limiting shell (201).

7. A compression spring machine with a measuring and cutting mechanism according to claim 1, characterized in that: The measuring structure (3) has a threaded ring (301) with a welded pad (302) on the outside. A tapered pad (303) is bolted to one side of the pad (302), and a measuring ruler (304) is bolted to one side of the pad (302).