A spring machine compression spring auxiliary core seat installation structure

Through the design of the spring machine compression spring auxiliary core seat installation structure, the curve gauge assembly, cutter assembly and compression spring auxiliary core seat are allowed to move to the left, solving the problem of the terminal wire plate being unable to cooperate after being damaged, and realizing the multiple use of the terminal wire plate and cost reduction.

CN117000920BActive Publication Date: 2025-09-23李书云 +1
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Patent Information

Application Number
CN202310708996.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-14
Publication Date
2025-09-23
Estimated Expiration
2043-06-14

AI Technical Summary

Technical Problem

In the prior art, the right end of the terminal wire plate is easily damaged by a cutter, resulting in its shortened length and inability to cooperate with the compression spring auxiliary core seat. Frequent replacement is required, resulting in waste and increased costs.

Method used

A spring machine compression spring auxiliary core seat installation structure is designed. Through the cooperation of the curve gauge assembly, cutter assembly, compression spring auxiliary core seat and adjustment device, these components are allowed to move or adjust to the left. The damaged terminal wire plate can be reinstalled and used after thinning.

Benefits of technology

The waste of the terminal wire plate is reduced, the production cost of the spring is lowered, and the multiple use and maintenance convenience of the components are achieved.

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Abstract

The present invention discloses a spring machine compression spring auxiliary core seat installation structure. The structural design of the present invention is reasonable, (1) the second left and right adjustment device drives the curve gauge assembly to move to the left. (2) The cutter assembly moves to the left, and the third screw hole of the cutter assembly is connected to the second screw hole on the left end of the lifting movable end through a screw. (3) The first left and right adjustment device drives the compression spring auxiliary core seat to move to the left, so as to drive the core rod on the compression spring auxiliary core seat to move to the left. In the process of making the steel wire into a spring, even if the right end of the terminal wire plate is easily damaged by other tools due to its thinness, since the curve gauge assembly, the cutter assembly, and the spring auxiliary core seat can all move to the left or be adjusted to the left to participate in the spring production, the operator can remove the damaged terminal wire plate, thin its right end, and then reinstall it for use. It is easy to use, reduces the waste of the terminal wire plate, saves consumables, and reduces the production cost of the spring.
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Description

Technical Field

[0001] The present invention relates to the technical field of spring manufacturing, in particular to a spring machine compression spring auxiliary core seat installation structure. Background Art

[0002] See also Figure 12 The prior art is to pass the steel wire (6) to the right through the inside of the head end wire plate (303), between the upper wire feeding wheel (301) and the lower wire feeding wheel (302), and the inside of the terminal wire plate (304). The upper wire feeding wheel (301) and the lower wire feeding wheel (302) cooperate to drive the steel wire (6) to the right. The curve gauge tool (401) of the curve gauge assembly (4) rolls the steel wire (6) output from the terminal wire plate (304) into a spring (7). A core rod (11) is provided on the compression spring auxiliary core seat (2). The core rod (11) and The cutter (502) of the cutter assembly (5) cooperates to cut the connection point between the steel wire (6) and the spring (7), and finally the spring (7) is formed; wherein, the right side wall of the pitch push rod (14) is detachably mounted with a tungsten steel rod (15), and one end of the pitch push rod (14) passes through the inner side of the fixed panel (1) and is connected to the movable end of the cylinder. According to the need to adjust the pitch of the spring (7), the movable end of the cylinder can push the pitch push rod (14) to move back and forth, thereby driving the tungsten steel rod (15) to adjust the pitch of the spring (7) generated by the steel wire (6).

[0003] The defects of the above-mentioned prior art are as follows: in the process of making the steel wire (6) into the spring (7), the right end of the terminal wire plate (304) is easily damaged by other cutting tools due to its thinness, thereby shortening the length of the terminal wire plate (304) and making it unable to cooperate with the core rod (11) on the compression spring auxiliary core seat (2) whose position is always fixed. At this time, if it is desired to restore normal operation, a terminal wire plate (304) of the same length as the original must be replaced, and then the damaged terminal wire plate (304) is no longer used, resulting in the need to frequently replace a new terminal wire plate (304), resulting in a large amount of waste of the terminal wire plate (304) and increasing the production cost of the spring (7). Summary of the Invention

[0004] The object of the present invention is to provide a spring machine compression spring auxiliary core seat installation structure to solve the technical problem in the prior art that in the process of making a spring from a steel wire, the right end of the terminal wire plate is easily damaged by other cutting tools due to its thinness, thereby shortening the length of the terminal wire plate and making it unable to cooperate with the core rod on the compression spring auxiliary core seat whose position is always fixed. At this time, if normal operation is to be restored, a terminal wire plate with the same length as the original must be replaced, and the damaged terminal wire plate is no longer used, resulting in the need to frequently replace a new terminal wire plate, causing a large amount of waste of the terminal wire plate and increasing the production cost of the spring.

[0005] The lifting mechanism is a bottom surface of the lifting mechanism, and the lifting mechanism is a bottom surface of the lifting mechanism, and the lifting mechanism is a bottom surface of the lifting mechanism, and the lifting mechanism is a bottom surface of the lifting mechanism. Two left and right adjustment devices are driven and cooperated, and the second left and right adjustment device can drive the curve gauge assembly to move left and right, and the curve gauge tool of the curve gauge assembly can roll the steel wire output from the terminal wire board into a spring; the cutter assembly cooperates with the lifting mechanism, and the lifting mechanism is provided with a lifting movable end at one end facing the compression spring auxiliary core seat, and the lifting movable end is provided with a plurality of second screw holes distributed along the left and right, and the end of the cutter assembly away from the compression spring auxiliary core seat is provided with a third screw hole, and the third screw hole is connected to any one of the plurality of second screw holes by a screw; the compression spring auxiliary core seat cooperates with the first left and right adjustment device, and the first left and right adjustment device can drive the compression spring auxiliary core seat to move left and right, and the compression spring auxiliary core seat is provided with a core rod, and the core rod can cooperate with the cutter assembly to cut off the connection point between the steel wire and the spring.

[0006] Furthermore, a movable opening is provided on the fixed panel where the compression spring auxiliary core seat is located, the compression spring auxiliary core seat is arranged on the outer side surface of the fixed panel, and the first left-right adjustment device is arranged on the inner side surface of the fixed panel; the outward end of the compression spring auxiliary core seat is provided with the core rod, and the inward end of the compression spring auxiliary core seat is connected to the first left-right adjustment device, and the first left-right adjustment device can drive the compression spring auxiliary core seat to move left and right in the movable opening.

[0007] Furthermore, the first left and right adjustment device includes a fixed block and a sliding block, the fixed block is fixed to the inner side of the fixed panel, the fixed block is provided with a slide rail extending left and right, the sliding block is provided with a slide groove adapted to the slide rail, the sliding block can slide left and right relative to the fixed block, and the compression spring auxiliary core seat is fixed on the sliding block.

[0008] Furthermore, the interior of the fixed block is provided with a sliding opening that passes through from front to back, the upper and lower inner walls of the sliding opening are respectively provided with the sliding rails extending from left to right, the upper and lower sides of the sliding block are respectively provided with the sliding grooves, either side of the left and right sides of the sliding opening is set as an opening, and the other side is set as an installation side wall.

[0009] Furthermore, the mounting side wall of the sliding opening is provided with a rotatable screw, the length of the screw extends left and right, and a first screw hole is provided on a side wall of the sliding block close to the screw. One end of the screw close to the sliding block is threadedly connected to the first screw hole, and the end of the screw away from the sliding block passes through the mounting side wall of the sliding block and rotates with the bearing, and the bearing is fixed to the mounting side wall of the sliding block.

[0010] Furthermore, the sliding block is provided with a core seat installation channel running through the front and back, the compression spring auxiliary core seat is arranged in the core seat installation channel, the outward end of the compression spring auxiliary core seat is provided with a core rod, and the inward end of the compression spring auxiliary core seat is connected and fixed to one end of the connecting rod; the other end of the connecting rod is provided with a U-shaped groove with a U-shaped opening facing the right, and the U-shaped groove cooperates with the limiting rod extending up and down, and the front and rear outer walls of the limiting rod are limitedly cooperated with the front and rear inner walls of the U-shaped groove, and the U-shaped groove can move left and right relative to the limiting rod.

[0011] Furthermore, the interior of the compression spring auxiliary core seat is provided with a core rod installation channel running through from front to back, and the upper and lower sides of the outward end of the core rod installation channel are respectively provided with fourth screw holes, and the fourth screw holes can cooperate with screws to lock the core rod installed in the core rod installation channel.

[0012] Furthermore, push pitch rods extending forward and backward are respectively provided above and below the terminal wire board, and a tungsten steel rod is detachably installed on the right side wall of the push pitch rod. One end of the push pitch rod passes through the inner side of the fixed panel and is connected to the movable end of the cylinder. The tungsten steel rod can adjust the spring pitch generated by the steel wire.

[0013] Furthermore, cutter assemblies are respectively provided on the upper and lower sides of the compression spring auxiliary core seat, and the cutter assembly includes a cutter seat and a cutter. The top of the cutter seat is provided with the third screw hole, and the third screw hole is set as a waist-shaped hole. The bottom end of the cutter seat is provided with the cutter, and the top end of the cutter seat can cooperate with the core rod to cut off the connection point between the steel wire and the spring.

[0014] Furthermore, the fixed panel and the casing enclose an inner cavity, and a base is provided at the bottom of the fixed panel and the casing.

[0015] In summary, the application of the technical solution of the present invention has the following beneficial effects: the structural design of the present invention is reasonable, (1) the curve gauge assembly is driven and coordinated with the second left and right adjustment device; thus, the curve gauge assembly can be driven to the left by the second left and right adjustment device. (2) the cutter assembly is coordinated with the lifting mechanism, and the lifting mechanism is provided with a lifting movable end at one end facing the compression spring auxiliary core seat, and the lifting movable end is provided with a plurality of second screw holes distributed along the left and right sides. The end of the cutter assembly away from the compression spring auxiliary core seat is provided with a third screw hole, and the third screw hole is connected to any one of the plurality of second screw holes by screws; thus, the cutter assembly can be moved to the left, and the third screw hole of the cutter assembly is connected to the second screw hole at the left end of the lifting movable end by screws. (3) the compression spring auxiliary core seat is coordinated with the first left and right adjustment device; thus, the first left and right adjustment device can be used to drive the compression spring auxiliary core seat to move to the left, thereby driving the core rod on the compression spring auxiliary core seat to move to the left. From this analysis, it can be seen that in the process of making the steel wire into a spring, even if the right end of the terminal wire board is easily damaged by other cutting tools due to its thinness, thereby shortening the length of the terminal wire board, but since the curve gauge assembly, cutter assembly, and spring auxiliary core seat of the present invention can all move to the left or be adjusted to the left to participate in the spring production, the operator can remove the damaged terminal wire board, thin its right end and reinstall it for use, which is convenient to use, and there is no need to worry about the problem that the terminal wire board is shortened and cannot cooperate with other components after being damaged. Therefore, the damaged terminal wire board can be used multiple times, reducing the waste of the terminal wire board, saving consumables, and reducing the production cost of the spring. BRIEF DESCRIPTION OF THE DRAWINGS

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

[0017] Figure 2 This is a schematic diagram of the first three-dimensional structure of the present invention when the base is removed;

[0018] Figure 3 This is a schematic diagram of the second three-dimensional structure of the present invention when the base is removed;

[0019] Figure 4 This is a schematic diagram of the third three-dimensional structure of the present invention when the base is removed;

[0020] Figure 5 yes Figure 4 Schematic diagram of the local three-dimensional structure;

[0021] Figure 6 This is a schematic diagram of the three-dimensional structure of the present invention when the base and part of the housing are removed;

[0022] Figure 7 yes Figure 6 Schematic diagram of the local three-dimensional structure;

[0023] Figure 8 It is a schematic diagram of the three-dimensional structure of the first left-right adjustment device of the present invention when it cooperates with the compression spring auxiliary core seat;

[0024] Figure 9 This is a schematic diagram of the three-dimensional structure of the first left-right adjustment device of the present invention when the sliding block is removed;

[0025] Figure 10 It is a schematic diagram of the three-dimensional structure of the sliding block of the first left-right adjustment device of the present invention;

[0026] Figure 11 This is a schematic diagram of the three-dimensional structure of the present invention when the base, part of the housing, and the sliding block are removed;

[0027] Figure 12 This is a schematic diagram of the three-dimensional structure of the present invention when a spring is made of steel wire;

[0028] Explanation of reference numerals: 1-fixed panel, 101-movable opening, 2-compression spring auxiliary core seat, 201-core rod installation channel, 202-fourth screw hole, 3-wire feeding assembly, 301-upper wire feeding wheel, 302-lower wire feeding wheel, 303-first end wire plate, 304-terminal wire plate, 4-curve gauge assembly, 401-curve gauge tool, 5-cutter assembly, 501-cutter seat, 5011-third screw hole, 502-cutter, 6-steel wire, 7-spring, 8-first left and right adjustment device, 80 1-fixed block, 8011-slide rail, 8012-sliding opening, 802-sliding block, 8021-slide groove, 8022-core seat mounting channel, 803-screw, 804-first screw hole, 805-bearing, 9-second left and right adjustment device, 10-lifting mechanism, 1011-lifting movable end, 1012-second screw hole, 11-core rod, 12-connecting rod, 1201-U-shaped groove, 13-limit rod, 14-pitch push rod, 15-tungsten steel rod, 16-casing, 17-base. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention, but this does not constitute a limitation on the protection scope of the present invention.

[0030] In the present invention, for a clearer description, the following explanation is made: the observer faces the Figure 1For observation, the left side of the observer is set as left, the right side of the observer is set as right, the front of the observer is set as front, the back of the observer is set as back, the top of the observer is set as top, and the bottom of the observer is set as bottom. It should be noted that the terms "front end", "rear end", "left side", "right side", "middle", "top", "bottom" and the like in the text indicate directions or positional relationships based on the directions or positional relationships set in the accompanying drawings. They are only for the convenience of clearly describing the present invention, and do not indicate or imply that the structures or components referred to must have a specific direction or be constructed in a specific direction. Therefore, they cannot be understood as limiting the present invention. In addition, the terms "first", "second", "third", and "fourth" are only used for the purpose of clarifying or simplifying the description, and cannot be understood as indicating or implying relative importance or quantity.

[0031] See also Figures 1 to 12, This embodiment provides a spring machine compression spring auxiliary core seat installation structure, including a fixed panel 1, a compression spring auxiliary core seat 2 is provided on the fixed panel 1, a wire feeding assembly 3 is provided on the left side of the compression spring auxiliary core seat 2, a curve gauge assembly 4 is provided on the right side of the compression spring auxiliary core seat 2, and a cutter assembly 5 is provided on at least one of the upper and lower sides of the compression spring auxiliary core seat 2; the wire feeding assembly 3 includes an upper wire feeding wheel 301 and a lower wire feeding wheel 302 distributed along the upper and lower sides, a head end wire plate 303 is provided on the left side between the upper wire feeding wheel 301 and the lower wire feeding wheel 302, and a terminal wire plate 304 is provided on the right side between the upper wire feeding wheel 301 and the lower wire feeding wheel 302, and the steel wire 6 can pass through the inside of the head end wire plate 303, between the upper wire feeding wheel 301 and the lower wire feeding wheel 302, and the inside of the terminal wire plate 304 to the right in sequence, and the upper wire feeding wheel 301 and the lower wire feeding wheel 302 can cooperate to drive the steel wire 6 to be transported to the right; the curve gauge assembly 4 and the second left and right adjustment The device 9 drives and cooperates, and the second left and right adjustment device 9 can drive the curve gauge assembly 4 to move left and right. The curve gauge tool 401 of the curve gauge assembly 4 can roll the steel wire 6 output from the terminal wire board 304 into a spring 7; the cutter assembly 5 cooperates with the lifting mechanism 10, and the lifting mechanism 10 is provided with a lifting movable end 1011 at one end facing the compression spring auxiliary core seat 2, and the lifting movable end 1011 is provided with several second screw holes 1012 distributed along the left and right. The end of the cutter assembly 5 away from the compression spring auxiliary core seat 2 is provided with a third screw hole 5011, and the third screw hole 5011 is connected to any one of the several second screw holes 1012 by a screw; the compression spring auxiliary core seat 2 cooperates with the first left and right adjustment device 8, and the first left and right adjustment device 8 can drive the compression spring auxiliary core seat 2 to move left and right. The compression spring auxiliary core seat 2 is provided with a core rod 11, and the core rod 11 can cooperate with the cutter assembly 5 to cut off the connection point between the steel wire 6 and the spring 7. Function: (1) The curve gauge assembly cooperates with the second left-right adjustment device; thus, the curve gauge assembly can be driven to the left by the second left-right adjustment device. (2) The cutter assembly cooperates with the lifting mechanism, and the lifting mechanism is provided with a lifting movable end at one end facing the compression spring auxiliary core seat, and the lifting movable end is provided with a plurality of second screw holes distributed along the left and right sides. The end of the cutter assembly away from the compression spring auxiliary core seat is provided with a third screw hole, and the third screw hole is connected to any one of the plurality of second screw holes by screws; thus, the cutter assembly can be moved to the left, and the third screw hole of the cutter assembly is connected to the second screw hole at the left end of the lifting movable end by screws. (3) The compression spring auxiliary core seat cooperates with the first left-right adjustment device; thus, the first left-right adjustment device can be used to drive the compression spring auxiliary core seat to move to the left, thereby driving the core rod on the compression spring auxiliary core seat to move to the left.From this analysis, it can be seen that in the process of making the steel wire into a spring, even if the right end of the terminal wire board is easily damaged by other cutting tools due to its thinness, thereby shortening the length of the terminal wire board, but since the curve gauge assembly, cutter assembly, and spring auxiliary core seat of the present invention can all move to the left or be adjusted to the left to participate in the spring production, the operator can remove the damaged terminal wire board, thin its right end and reinstall it for use, which is convenient to use, and there is no need to worry about the problem that the terminal wire board is shortened and cannot cooperate with other components after being damaged. Therefore, the damaged terminal wire board can be used multiple times, reducing the waste of the terminal wire board, saving consumables, and reducing the production cost of the spring. Preferably, the head end wire plate 303 may include a front smooth plate and a rear wire trough plate, and the terminal wire plate 304 may include an upper smooth plate and a lower wire trough plate, and the steel wire 6 passes through the wire trough between the front smooth plate and the rear wire trough plate, and the wire trough between the upper smooth plate and the lower wire trough plate; the upper wire feeding wheel 301 and the lower wire feeding wheel 302 are driven by a motor to rotate synchronously, wherein the upper wire feeding wheel 301 may be smooth, and the outer circumference of the lower wire feeding wheel 302 may have a wire trough for placing the steel wire 6.

[0032] Specifically, a movable opening 101 is provided on the fixed panel 1 where the compression spring auxiliary core seat 2 is located. The compression spring auxiliary core seat 2 is provided on the outer side surface of the fixed panel 1, and the first left-right adjustment device 8 is provided on the inner side surface of the fixed panel 1. The outward end of the compression spring auxiliary core seat 2 is provided with a core rod 11, and the inward end of the compression spring auxiliary core seat 2 is connected to the first left-right adjustment device 8. The first left-right adjustment device 8 can drive the compression spring auxiliary core seat 2 to move left and right within the movable opening 101. Function: Driven by the first left-right adjustment device 8, the compression spring auxiliary core seat 2 moves left and right within the movable opening 101. In this article, the inner side surface of the fixed panel 1 refers to the front, and the outer side surface refers to the rear.

[0033] Specifically, the first left-right adjustment device 8 includes a fixed block 801 and a sliding block 802. The fixed block 801 is fixed to the inner side of the fixed panel 1. The fixed block 801 is provided with a slide rail 8011 extending left and right. The sliding block 802 is provided with a slide groove 8021 adapted to the slide rail 8011. The sliding block 802 can slide left and right relative to the fixed block 801. The compression spring auxiliary core holder 2 is fixed to the sliding block 802. Function: The left-right movement of the sliding block 802 along the slide rail 8011 causes the sliding block 802 to synchronously drive the left-right movement of the compression spring auxiliary core holder 2.

[0034] Specifically, fixed block 801 has a sliding opening 8012 extending from front to back within its interior. Slide rails 8011 extend left and right along the upper and lower inner walls of sliding opening 8012, respectively. Slide slots 8021 are provided on the upper and lower sides of sliding block 802. Either side of sliding opening 8012 serves as an opening, while the other serves as a mounting wall. Function: The provision of upper and lower slide rails 8011 prevents sliding block 802 from rotating, but rather from sliding left and right along them.

[0035] Specifically, a rotatable screw 803 is provided on the mounting side wall of the sliding opening 8012. The screw 803 extends left and right. A first screw hole 804 is provided on a side wall of the sliding block 802 near the screw 803. The end of the screw 803 near the sliding block 802 is threadedly connected to the first screw hole 804. The end of the screw 803 away from the sliding block 802 passes through the mounting side wall of the sliding block 802 and then rotatably engages with a bearing 805. The bearing 805 is fixed to the mounting side wall of the sliding block 802. Function: By rotating the screw 803, the screw 803 is threadedly engaged with the first screw hole 804 of the sliding block 802, thereby driving the sliding block 802 to move left and right along the slide rail 8011. The sliding block 802 simultaneously drives the compression spring to assist the core holder 2 in moving left and right.

[0036] Specifically, the sliding block 802 is provided with a core seat mounting channel 8022 extending from front to back. The compression spring auxiliary core seat 2 is disposed in the core seat mounting channel 8022. The outward end of the compression spring auxiliary core seat 2 is provided with a core rod 11, and the inward end of the compression spring auxiliary core seat 2 is fixedly connected to one end of a connecting rod 12. The other end of the connecting rod 12 is provided with a U-shaped groove 1201 with a U-shaped opening facing right. The U-shaped groove 1201 cooperates with a limiting rod 13 extending vertically. The front and rear outer walls of the limiting rod 13 are limitedly engaged with the front and rear inner walls of the U-shaped groove 1201, and the U-shaped groove 1201 can move left and right relative to the limiting rod 13. Function: By providing the connecting rod, the front and rear movement of the compression spring auxiliary core seat 2 relative to the core seat mounting channel 8022 can be limited. By providing the U-shaped groove 1201, the compression spring auxiliary core seat 2 can move left and right together with the sliding block 802.

[0037] Specifically, the compression spring auxiliary core holder 2 has a core rod installation passage 201 extending from front to back. Fourth screw holes 202 are provided on the upper and lower sides of the outward end of the core rod installation passage 201. The fourth screw holes 202 engage screws that lock the core rod 11 installed within the core rod installation passage 201. Function: By tightening a screw through the fourth screw holes 202, the core rod 11 is securely secured.

[0038] Specifically, a push pitch rod 14 extending forward and backward is provided above and below the terminal wire plate 304, and a tungsten steel rod 15 is detachably installed on the right side wall of the push pitch rod 14. One end of the push pitch rod 14 passes through the inner side of the fixed panel 1 and is connected to the movable end of the cylinder. The tungsten steel rod 15 can adjust the pitch of the spring 7 generated by the steel wire 6. Function: The tungsten steel rod 15 is generally located on the side of the produced spring 7 close to the fixed panel 1. At this time, the spring 7 is continuously extending in the direction away from the fixed panel 1, thereby driving the push pitch rod 14 to move forward and backward through the movable end of the cylinder, thereby driving the tungsten steel rod 15 to push the spring 7 away from the fixed panel 1 during production, so that the tungsten steel rod 15 can adjust the pitch of the spring 7 generated by the steel wire 6 to become larger to adapt to the required spring pitch; when there is no tungsten steel rod 15, the spring 7 produced is a spring with dense pitch.

[0039] Specifically, the upper and lower sides of the compression spring auxiliary core holder 2 are respectively provided with a cutter assembly 5, which includes a cutter seat 501 and a cutter 502. The top of the cutter seat 501 is provided with a third screw hole 5011, which is configured as a waist-shaped hole. The bottom of the cutter seat 501 is provided with a cutter 502. The top of the cutter seat 501 can cooperate with the core rod 11 to cut the connection point between the steel wire 6 and the spring 7. Function: By providing the upper and lower cutter assemblies 5, the upper cutter assembly 5 and the core rod 11 can cooperate to cut the right-handed spring 7, while the lower cutter assembly 5 and the core rod 11 can cooperate to cut the left-handed spring 7. The waist-shaped hole facilitates fine-tuning of the position of the cutter seat 501.

[0040] Specifically, the fixed panel 1 and the housing 16 enclose an inner cavity, and a base 17 is provided at the bottom of the fixed panel 1 and the housing 16. Function: The housing can protect the internal structural components.

[0041] Preferably, the present invention may further include a fully automatic wire feeding stand, and utilize the fully automatic wire feeding stand to provide spring steel wire 6 with a diameter of 0.08 to 0.8 mm, so that the size of the produced spring can be selected as required.

[0042] It should be noted that, since the spring machine for making springs is a very conventional device in this field, other structures of the spring machine compression spring auxiliary core seat installation structure, such as the curve gauge assembly (which can also be called other names as long as the function is the same) that can roll the steel wire 6 into the spring 7 or the second left and right adjustment device, the lifting mechanism, etc. can all refer to the existing technology, and the present invention will not go into details here.

[0043] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications are also considered to be within the scope of protection of the present invention.

Claims

1. A spring machine compression spring auxiliary core seat mounting structure, comprising a fixed panel (1), characterized in that: The fixed panel (1) is provided with a compression spring auxiliary core seat (2), a wire feeding assembly (3) is provided on the left side of the compression spring auxiliary core seat (2), a curve gauge assembly (4) is provided on the right side of the compression spring auxiliary core seat (2), and a cutter assembly (5) is provided on at least one of the upper and lower sides of the compression spring auxiliary core seat (2); the wire feeding assembly (3) comprises an upper wire feeding wheel (301) and a lower wire feeding wheel (302) distributed along the upper and lower sides, a head end wire plate (303) is provided on the left side between the upper wire feeding wheel (301) and the lower wire feeding wheel (302), and the upper wire feeding wheel (301) and the lower wire feeding wheel (302) are provided on the left side. A terminal wire plate (304) is provided on the right side between the wire feeding wheel (301) and the lower wire feeding wheel (302), and the steel wire (6) can pass through the interior of the head end wire plate (303), between the upper wire feeding wheel (301) and the lower wire feeding wheel (302), and the interior of the terminal wire plate (304) in sequence to the right. The upper wire feeding wheel (301) and the lower wire feeding wheel (302) can cooperate to drive the steel wire (6) to be transported to the right; the curve gauge assembly (4) is driven and cooperated with the second left and right adjustment device (9), and the second left and right adjustment device ( 9) can drive the curve gauge assembly (4) to move left and right, and the curve gauge tool (401) of the curve gauge assembly (4) can roll the steel wire (6) output from the terminal wire board (304) into a spring (7); the cutter assembly (5) cooperates with the lifting mechanism (10), and the lifting mechanism (10) is provided with a lifting movable end (1011) at one end facing the compression spring auxiliary core seat (2), and the lifting movable end (1011) is provided with a plurality of second screw holes (1012) distributed along the left and right sides, and the cutter assembly (5) is away from the A third screw hole (5011) is provided at one end of the compression spring auxiliary core seat (2), and the third screw hole (5011) is connected to any one of the plurality of second screw holes (1012) by a screw; the compression spring auxiliary core seat (2) cooperates with a first left-right adjustment device (8), and the first left-right adjustment device (8) can drive the compression spring auxiliary core seat (2) to move left and right, and a core rod (11) is provided on the compression spring auxiliary core seat (2), and the core rod (11) can cooperate with the cutter assembly (5) to cut the connection point between the steel wire (6) and the spring (7).

2. The spring machine compression spring auxiliary core seat installation structure according to claim 1, characterized in that: A movable opening (101) is provided on the fixed panel (1) where the compression spring auxiliary core seat (2) is located, the compression spring auxiliary core seat (2) is arranged on the outer side of the fixed panel (1), and the first left-right adjustment device (8) is arranged on the inner side of the fixed panel (1); the outward end of the compression spring auxiliary core seat (2) is provided with the core rod (11), and the inward end of the compression spring auxiliary core seat (2) is connected to the first left-right adjustment device (8), and the first left-right adjustment device (8) can drive the compression spring auxiliary core seat (2) to move left and right in the movable opening (101).

3. The spring machine compression spring auxiliary core seat installation structure according to claim 2, characterized in that: The first left-right adjustment device (8) comprises a fixed block (801) and a sliding block (802), wherein the fixed block (801) is fixed to the inner side surface of the fixed panel (1), the fixed block (801) is provided with a slide rail (8011) extending left and right, the sliding block (802) is provided with a slide groove (8021) adapted to the slide rail (8011), the sliding block (802) can slide left and right relative to the fixed block (801), and the compression spring auxiliary core seat (2) is fixed to the sliding block (802).

4. The spring machine compression spring auxiliary core seat installation structure according to claim 3, characterized in that: The interior of the fixed block (801) is provided with a sliding opening (8012) that passes through from front to back, and the upper and lower inner walls of the sliding opening (8012) are respectively provided with the sliding rails (8011) extending from left to right, and the upper and lower inner walls of the sliding block (802) are respectively provided with the sliding grooves (8021), and either side of the left and right sides of the sliding opening (8012) is set as an opening, and the other side is set as a mounting side wall.

5. The spring machine compression spring auxiliary core seat installation structure according to claim 4, characterized in that: A rotatable screw rod (803) is provided on the mounting side wall of the sliding opening (8012), and the length of the screw rod (803) extends left and right. A first screw hole (804) is provided on a side wall of the sliding block (802) close to the screw rod (803), and one end of the screw rod (803) close to the sliding block (802) is threadedly connected to the first screw hole (804). The end of the screw rod (803) away from the sliding block (802) passes through the mounting side wall of the sliding block (802) and rotates with the bearing (805), and the bearing (805) is fixed to the mounting side wall of the sliding block (802).

6. The spring machine compression spring auxiliary core seat mounting structure according to any one of claims 3 to 5, characterized in that: The sliding block (802) is provided with a core seat installation channel (8022) that passes through from front to back, and the compression spring auxiliary core seat (2) is arranged in the core seat installation channel (8022). The outward end of the compression spring auxiliary core seat (2) is provided with a core rod (11), and the inward end of the compression spring auxiliary core seat (2) is connected and fixed to one end of the connecting rod (12); the other end of the connecting rod (12) is provided with a U-shaped groove (1201) with a U-shaped opening facing right, and the U-shaped groove (1201) cooperates with a limiting rod (13) extending up and down, and the front and rear outer walls of the limiting rod (13) are limitedly matched with the front and rear inner walls of the U-shaped groove (1201), and the U-shaped groove (1201) can move left and right relative to the limiting rod (13).

7. The spring machine compression spring auxiliary core seat mounting structure according to any one of claims 1 to 5, characterized in that: The interior of the compression spring auxiliary core seat (2) is provided with a core rod installation channel (201) that passes through from front to back, and the upper side and lower side of the outward end of the core rod installation channel (201) are respectively provided with fourth screw holes (202), and the fourth screw holes (202) can be matched with screws to lock the core rod (11) installed in the core rod installation channel (201).

8. The spring machine compression spring auxiliary core seat mounting structure according to any one of claims 1 to 5, characterized in that: A push pitch rod (14) extending forward and backward is provided above and below the terminal wire plate (304), respectively. A tungsten steel rod (15) is detachably mounted on the right side wall of the push pitch rod (14). One end of the push pitch rod (14) passes through the inner side of the fixed panel (1) and is connected to the movable end of the cylinder. The tungsten steel rod (15) can adjust the pitch of the spring (7) generated by the steel wire (6).

9. The spring machine compression spring auxiliary core seat mounting structure according to any one of claims 1 to 5, characterized in that: The upper and lower sides of the compression spring auxiliary core seat (2) are respectively provided with a cutter assembly (5), and the cutter assembly (5) includes a cutter seat (501) and a cutter (502). The top end of the cutter seat (501) is provided with the third screw hole (5011), and the third screw hole (5011) is set as a waist-shaped hole. The bottom end of the cutter seat (501) is provided with the cutter (502), and the top end of the cutter seat (501) can cooperate with the core rod (11) to cut the connection point between the steel wire (6) and the spring (7).

10. The spring machine compression spring auxiliary core seat installation structure according to any one of claims 1 to 5, characterized in that: The fixed panel (1) and the housing (16) enclose an inner cavity, and a base (17) is provided at the bottom of the fixed panel (1) and the housing (16).

Citation Information

Patent Citations

  • Spring machine pressure spring auxiliary core seat mounting structure

    CN220144654U