Spring braiding all-in-one machine

By designing the feeding, loading, positioning, and receiving sections of the integrated spring braiding machine, and utilizing guide plates and pressure rollers to press springs one by one into the material strip and wind them into a disc, the problem of inconvenience in spring braiding in the existing technology is solved, and convenient spring packaging is realized.

CN223736331UActive Publication Date: 2025-12-30SHENZHEN HUIKE AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423251131.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-30
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In the existing technology, springs are not conducive to pressing each piece into the tape during tape packaging, which leads to inconvenience in material retrieval later.

Method used

A spring tape feeding machine was designed, comprising a feeding section, a feeding section, a stationary section, and a receiving section. The stationary section uses a guide plate and a pressure roller to press the springs one by one into the tape. The guide groove and the pressure roller ensure that the ends of the springs are pressed onto the tape. The receiving section then winds the springs into a disc.

Benefits of technology

It enables individual spring insertion and convenient material retrieval, has a simple structure, and is suitable for springs to be wound into discs for packaging, thus improving packaging efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of braid packaging, and discloses a spring braid all-in-one machine which comprises a discharging part, a feeding part, a material fixing part and a material collecting part which are arranged on a machine frame, the discharging part and the material collecting part are arranged on the two opposite sides of the material fixing part respectively, at least part of the feeding part is arranged between the discharging part and the material fixing part, and at least part of the material collecting part is arranged between the feeding part and the material fixing part. A material belt wound into a disc sequentially passes through the feeding part and the material fixing part through the discharging part and then is conveyed into the material collecting part, and springs are pressed on the material belt one by one through the material fixing part. The material fixing part comprises a material fixing frame body and a material fixing guide piece, the material fixing guide piece is composed of two material guide plates oppositely arranged on the material fixing frame body, the two opposite inner sides of the two material guide plates are each provided with a material guide groove in the length direction of the material guide plate, and a material belt penetrates through the material guide grooves and is connected with the material fixing frame body through a connecting rod. And a material pressing wheel piece is arranged on the bottom side of the upper side wall of the material guide groove. According to the scheme, the structure is simple, and springs can be conveniently pressed into a material belt one by one for packaging.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of braiding packaging, and particularly relates to a spring braiding integrated machine. BACKGROUND

[0002] Braiding packaging is to put the bulk product into the carrier tape after detection, reversing, clamping and other stations, and wind into a disc, which is the product of continuous upgrading and refinement and high integration of packaging technology. At present, when the spring is braided and packaged, the spring is fed through a feeder, the transmitted spring is stacked, which is not conducive to braiding, and the whole spring is pressed on the tape, which is inconvenient for later material taking. Therefore, a spring braiding integrated machine with simple structure and facilitating spring braiding is needed. SUMMARY

[0003] To solve the problems in the prior art, the utility model provides a novel spring braiding integrated machine to solve the problem of not being conducive to spring braiding in the prior art.

[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0005] A spring braiding integrated machine is used to press the spring into the tape one by one for packaging, which comprises a material placing part, a material feeding part, a material fixing part and a material collecting part arranged on a rack, the material placing part and the material collecting part are arranged on the opposite sides of the material fixing part, the material feeding part is at least partially arranged between the material placing part and the material fixing part, the tape wound into a disc is sequentially passed through the material feeding part and the material fixing part through the material placing part, and is transmitted into the material collecting part, and the spring is pressed on the tape one by one by the material fixing part.

[0006] The material fixing part comprises a material fixing frame body and a material fixing guide, the material fixing guide is composed of two guide plates arranged oppositely on the material fixing frame body, the opposite inner sides of the two guide plates are provided with guide grooves along the length direction of the guide plates, the tape passes through the guide grooves, and the bottom side of the upper side wall of the guide groove is provided with a material pressing wheel.

[0007] Further, the material fixing frame body comprises two vertical frames arranged in parallel, and the two guide plates are arranged on the upper sides of the two vertical frames in parallel.

[0008] Further, the two guide plates have a spacing therebetween.

[0009] Further, the material pressing wheel comprises an elastic support, a material pressing seat and a material pressing roller, the upper end of the elastic support is connected with the bottom side of the upper side wall of the guide groove, the material pressing seat is arranged at the lower end of the elastic support, and the material pressing roller is rotatably arranged on the material pressing seat.

[0010] Furthermore, the elastic support includes a telescopic sleeve and a spring element, the spring element being sleeved on the telescopic sleeve, and the two ends of the telescopic sleeve being connected to the bottom side of the upper sidewall of the guide groove and the pressure seat, respectively.

[0011] Furthermore, the two uprights are equipped with symmetrical material conveying lines, each material conveying line including a conveying motor, a conveying wheel assembly, and a conveyor belt. The conveying wheel assembly and the conveyor belt are located on the inner side of the uprights, and the conveying motor is located on the outer side of the uprights. Its working end is connected to a roller of the conveying wheel assembly to drive the conveyor belt.

[0012] Furthermore, the feeding section includes a feeding bracket, a feeding mounting base, a feeding drive, and a feeding roller. The feeding bracket is fixed on the frame, the feeding mounting base is located on the top of the feeding bracket, the feeding mounting base rotatably provides a feeding shaft, the feeding drive is located on the side of the feeding mounting base and its working end is connected to the feeding shaft, and the feeding roller is located on the feeding bracket and below the feeding mounting base.

[0013] Furthermore, the receiving section and the discharging section have the same structure, and the receiving roller of the receiving section has an "I" shaped structure that is large at both ends and small in the middle.

[0014] Furthermore, the feeding section includes a vibratory feeder assembly, a flat vibratory assembly, a feeding seat, and a conveyor seat. The conveyor seat is located on the side of the feeding bracket of the discharging section. The upper side of the conveyor seat is provided with a conveyor groove. The material belt led out by the discharging section passes through the conveyor groove and enters the guide groove.

[0015] The vibratory feeder assembly is disposed on the side of the feeder seat, the flat vibratory feeder assembly is disposed at the outlet of the vibratory feeder assembly, the feeder seat is disposed at the outlet of the flat vibratory feeder assembly, and the feeder seat is located on the upper side of the feeder seat.

[0016] Furthermore, a clamping assembly is provided on the side of the feed seat. The clamping assembly includes a clamping moving unit and a clamping unit. The clamping unit is disposed at the working end of the clamping moving unit to place the spring in the feed seat onto the material strip located in the feed groove.

[0017] The beneficial effect of the prior art is that, by adopting the above scheme, the spring coiling and packaging machine has simple structure, is suitable for spring coiling and packaging, the material disc with coiled material belt is first sleeved on the material placing shaft of the material placing part, the empty material disc is then sleeved on the material collecting shaft of the material collecting part, the material belt is passed through the material feeding part and the material fixing part, the spring is placed on the material belt by the material feeding part, the material belt with the spring is passed through the material guide grooves of the two material guide plates, the two ends of the spring are pressed on the material belt by the material pressing wheel, the material belt after loading is fixed on the empty material disc, the empty material disc is driven to rotate by the material collecting part, so that the material belt after loading is coiled into a disc, and the spring coiling and packaging machine has good market application value. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a spring and belt integrated machine structure schematic view of an embodiment of the utility model;

[0019] Figure 2 is a material placing part structure schematic view of an embodiment of the utility model; Figure 1

[0020] Figure 3 is a material feeding part structure schematic view of an embodiment of the utility model; Figure 1

[0021] Figure 4 is a material fixing part structure schematic view one of an embodiment of the utility model; Figure 1

[0022] Figure 5 is a material fixing part structure schematic view two of an embodiment of the utility model; Figure 1

[0023] Figure 6 is a material fixing guide structure schematic view of an embodiment of the utility model; Figure 1

[0024] In the drawing, 1, rack; 2, material placing part; 21, material placing support; 22, material placing mounting seat; 23, material placing driving part; 24, material placing shaft; 25, material placing roller; 3, material feeding part; 31, material passing seat; 32, material passing groove; 33, vibration disc assembly; 34, flat vibration assembly; 35, material feeding seat; 36, clamping assembly; 37, clamping moving unit; 38, clamping unit; 4, material fixing part; 41, material fixing frame body; 411, vertical frame; 42, material fixing guide; 421, material guide plate; 422, material guide groove; 423, material pressing wheel; 424, elastic support; 425, material pressing seat; 426, material pressing roller; 43, material fixing transmission line; 431, transmission motor; 432, transmission wheel group; 433, transmission belt; 5, material collecting part. DETAILED DESCRIPTION

[0025] ​​​​​For the person skilled in the art to understand the utility model, the specific implementation mode of the utility model is described below in conjunction with the drawings. The preferred embodiments of the utility model are shown in the drawings. However, the utility model can be realized in many different forms and is not limited to the embodiments described in the specification. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0026] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "mounting", "fixed", "top", "connected" and similar expressions used in the specification are only for illustrative purposes.

[0027] Unless otherwise defined, all technical and scientific terms used in the specification are the same as the meanings commonly understood by those skilled in the art to which the utility model belongs. The terms used in the specification of the utility model are only for the purpose of describing the specific embodiments and are not used to limit the utility model.

[0028] One embodiment of the utility model is, as shown in Figure 1 , 4 The spring and tape integrated machine is used for making springs press into the tape one by one for packaging, comprising a material placing part 2, a material feeding part 3, a material fixing part 4 and a material collecting part 5 arranged on a rack 1, the material placing part 2 and the material collecting part 5 are arranged on the opposite sides of the material fixing part 4 respectively, the material feeding part 3 is arranged at least partially between the material placing part 2 and the material fixing part 4, the material tape wound into a disc is sequentially passed through the material feeding part 3 and the material fixing part 4 through the material placing part 2, and is transmitted into the material collecting part 5, and the springs are pressed on the material tape one by one by the material fixing part 4.

[0029] The material fixing part 4 comprises a material fixing rack body 41 and a material fixing guide 42, the material fixing guide 42 is composed of two material guide plates 421 arranged oppositely on the material fixing rack body 41, the opposite two inner sides of the two material guide plates 421 are provided with material guide grooves 422 along the length direction of the material guide plates 421, the material tape passes through the material guide grooves 422, and the bottom side of the upper side wall of the material guide groove 422 is provided with a material pressing wheel 423.

[0030] The spring and tape integrated machine of the scheme is suitable for spring winding into a disc for packaging. First, the material disc with the wound material tape is sleeved on the material feeding shaft 24 of the material feeding part 2, and then the empty material disc is sleeved on the material collecting shaft of the material collecting part 5. The material tape passes through the material feeding part 3 and the material setting part 4. The spring is placed on the material tape by the material feeding part 3. The material tape with the spring passes through the material guide grooves 422 of the two material guide plates 421. The two ends of the spring are pressed on the material tape by the material pressing wheel part 423. The end of the material tape after loading is fixed on the empty material disc. The empty material disc is driven to rotate by the material collecting part 5, so that the material tape after loading is wound into a disc.

[0031] In the embodiment, as shown in the figure, Figure 5 The material setting frame body 41 includes two parallel vertical frames 411. The two material guide plates 421 are parallelly arranged on the upper sides of the two vertical frames 411.

[0032] Specifically, the material setting part 4 is located in the middle of the rack 1. The material feeding part 2 is located on the left side of the rack 1, and the material collecting part 5 is located on the right side. The material tape is conveyed from left to right. The two vertical frames 411 are parallelly arranged on the front and back of the material tape conveying direction, so that the front and back ends of the material tape pass through the material guide grooves 422 of the two material guide plates 421.

[0033] In the embodiment, as shown in the figure, Figure 4 The two material guide plates 421 have a spacing therebetween.

[0034] Specifically, the width of the material guide plate 421 is less than 1 / 2 of the width of the material tape. The groove width of the material guide groove 422 is less than 1 / 2 of the width of the material tape. When the material tape with the spring passes through the material guide grooves 422 of the two material guide plates 421, the two ends of the spring are in the material guide grooves 422, so that the two ends of the spring are pressed on the material tape by the material pressing wheel part 423, facilitating the taking of the material from the material tape later.

[0035] In the embodiment, as shown in the figure, Figure 6 The material pressing wheel part 423 includes an elastic support 424, a material pressing seat 425, and a material pressing roller 426. The upper end of the elastic support 424 is connected with the bottom side of the upper side wall of the material guide groove 422. The material pressing seat 425 is arranged on the lower end of the elastic support 424. The material pressing roller 426 is rotatably arranged on the material pressing seat 425.

[0036] Specifically, at least one material pressing wheel part 423 is arranged inside the material guide groove 422 along the length direction thereof. The material pressing roller 426 has a gap with the upper surface of the bottom side wall of the material guide groove 422, facilitating the passage of the material tape from the upper surface of the bottom side wall of the material guide groove 422.

[0037] In the embodiment, as shown in the figure,Figure 6 As shown, the elastic support 424 comprises a telescopic sleeve and a spring element, the spring element is sleeved on the telescopic sleeve, and two ends of the telescopic sleeve are connected with the bottom side of the upper side wall of the material guide groove 422 and the material pressing seat 425 respectively.

[0038] Specifically, the elastic support 424 comprises an upper end seat, a lower end seat, a telescopic sleeve and a spring element, the upper end seat and the lower end seat are arranged at two ends of the telescopic sleeve respectively, and the spring element is sleeved on the telescopic sleeve, and upper and lower ends of the spring element are in abutment with the upper end seat and the lower end seat respectively.

[0039] Specifically, when the spring-loaded material belt passes through the material guide grooves 422 of the two material guide plates 421, the spring-loaded material belt is conveyed along the upper surface of the lower side wall of the material guide groove 422, the spring end portion is slightly higher than the material pressing roller 426, and as the material belt is conveyed, the spring end portion rolls off the material pressing roller 426 to press the two end portions of the spring on the material belt.

[0040] In the embodiment, as shown in the figure, Figure 5 As shown, the two stands 411 are provided with symmetrical material positioning transmission lines 43, the material positioning transmission line 43 comprises a transmission motor 431, a transmission wheel set 432 and a transmission belt 433, the transmission wheel set 432 and the transmission belt 433 are arranged on the inner side of the stand 411, and the transmission motor 431 is arranged on the outer side of the stand 411, the working end of the transmission motor 431 is connected with a roller of the transmission wheel set 432 to drive the transmission belt 433.

[0041] Specifically, the transmission motor 431 is a stepping motor, and the two ends of the lower side wall of the material guide groove 422 are provided with a through opening, so that the transmission belt 433 passes through the through opening and is conveyed along the upper surface of the lower side wall of the material guide groove 422.

[0042] In the embodiment, as shown in the figure, Figure 2 As shown, the material feeding part 2 comprises a material feeding support 21, a material feeding mounting seat 22, a material feeding driving element 23 and a material feeding roller shaft 25, the material feeding support 21 is fixed on the rack 1, the material feeding mounting seat 22 is arranged on the top of the material feeding support 21, the material feeding mounting seat 22 is rotationally arranged with a material feeding rotating shaft 24, the material feeding driving element 23 is arranged on the side of the material feeding mounting seat 22, the working end of the material feeding driving element 23 is connected with the material feeding rotating shaft 24, and the material feeding roller shaft 25 is arranged on the material feeding support 21 and located on the lower side of the material feeding mounting seat 22.

[0043] Specifically, the feeding mounting base 22 and the feeding roller 25 are located on the front side of the feeding bracket 21, and the feeding drive 23 is located on the rear side of the feeding bracket 21. It is a geared motor. The feeding shaft 24 is fitted with a feeding baffle. When loading, the front feeding baffle is removed, the material tray with the material strip wound is placed on the feeding shaft 24, the front feeding baffle is then installed, and the material strip is tensioned and positioned by the feeding roller 25 before being fed into the fixed material section 4.

[0044] In this embodiment, as Figure 1 , 2 As shown, the receiving part 5 and the discharging part 2 have the same structure. The receiving roller of the receiving part 5 is an "I" shaped structure with large ends and small middle.

[0045] Specifically, the receiving section 5 and the discharging section 2 are arranged opposite to each other. The diameter of the rollers at both ends of the receiving roller of the receiving section 5 is larger than the diameter of the middle part of the receiving roller. The material belt carrying the spring is driven by the fixed material transmission line 43 to pass through the guide grooves 422 of the two guide plates 421. The two ends of the receiving roller contact the two sides of the material belt. The wheel parts at both ends of the receiving roller continue to press the two ends of the spring. Then, it is introduced into the material tray on the receiving shaft for tape weaving. During the receiving process, two receiving baffles block the two sides of the material tray to prevent the material belt from skewing as it winds around.

[0046] In this embodiment, as Figure 3 As shown, the feeding section 3 includes a vibratory feeder assembly 33, a flat vibratory feeder assembly 34, a feeding seat 35, and a feeder seat 31. The feeder seat 31 is disposed on the side of the feeding bracket 21 of the feeding section 2. The upper side of the feeder seat 31 is provided with a feed groove 32. The material belt led out by the feeding section 2 passes through the feed groove 32 and enters the guide groove 422.

[0047] The vibratory feeder assembly 33 is disposed on the side of the feeder seat 31, the flat vibration assembly 34 is disposed at the outlet of the vibratory feeder assembly 33, the loading seat 35 is disposed at the outlet of the flat vibration assembly 34, and the loading seat 35 is located on the upper side of the feeder seat 31.

[0048] Specifically, the overfeeding seat 31 is arranged at the right side of the feeding support 21 of the feeding part 2, the vibration disc assembly 33, the flat vibration assembly 34 and the feeding seat 35 are arranged at the rear side of the overfeeding seat 31, the springs are fed by the vibration disc assembly 33, the disordered springs are transferred from the vibration disc assembly 33 to the flat vibration assembly 34, and the springs are transferred one by one into the feeding seat 35 by the flat vibration assembly 34, the feeding seat 35 is provided with at least one feeding groove corresponding to the material channel of the flat vibration assembly 34, and the outlet of the feeding groove of the feeding seat 35 is located at the upper side of the overfeeding groove 32, so that the springs fall into the material belt passing through the overfeeding groove 32.

[0049] In the embodiment, as shown in the figure, the side edge of the overfeeding seat 31 is provided with a clamping assembly 36, the clamping assembly 36 comprises a clamping moving unit 37 and a clamping unit 38, the clamping unit 38 is arranged at the working end of the clamping moving unit 37, so as to put the springs in the feeding seat 35 into the material belt in the overfeeding groove 32. Figure 3

[0050] Specifically, the clamping moving unit 37 comprises a Y-axis driving module and a Z-axis driving module, the Y-axis driving module and the Z-axis driving module drive the clamping unit 38 to move in Y direction and Z direction in the form of screw rod driving or air cylinder driving.

[0051] Specifically, the clamping unit 38 drives the springs to move in the form of clamping, and a finger air cylinder drives the finger to clamp the springs in the feeding seat 35.

[0052] It should be noted that each of the above technical features can be combined with each other to form various embodiments not listed above, which are all considered to be within the scope of the description of the present application; and for those skilled in the art, the above description can be improved or changed, and all these improvements and changes should belong to the protection scope of the appended claims of the present application.​

Claims

1. A spring and tape integrated machine for pressing springs into a tape one by one for packaging, characterized in that: The device comprises a material feeding part (2), a material loading part (3), a material setting part (4) and a material collecting part (5) arranged on a rack (1), the material feeding part (2) and the material collecting part (5) are arranged on the opposite sides of the material setting part (4), the material loading part (3) is arranged between the material feeding part (2) and the material setting part (4), the material belt wound into a coil is sequentially transmitted through the material loading part (3) and the material setting part (4) to the material collecting part (5), and the spring is pressed on the material belt by the material setting part (4); The material setting part (4) comprises a material setting frame (41) and a material setting guide (42), the material setting guide (42) is composed of two material guide plates (421) arranged on the material setting frame (41), the opposite inner sides of the two material guide plates (421) are provided with material guide grooves (422) along the length direction of the material guide plates (421), the material belt passes through the material guide grooves (422), and the bottom side of the upper side wall of the material guide groove (422) is provided with a material pressing wheel (423).

2. The spring-braid integrated machine according to claim 1, wherein The material setting frame (41) comprises two vertical frames (411) arranged in parallel, and the two material guide plates (421) are arranged on the upper sides of the two vertical frames (411) in parallel.

3. The spring-braid integrated machine according to claim 2, wherein The two material guide plates (421) have a spacing therebetween.

4. The spring-braid integrated machine according to claim 1, wherein The material pressing wheel (423) comprises an elastic support (424), a material pressing seat (425) and a material pressing roller (426), the upper end of the elastic support (424) is connected with the bottom side of the upper side wall of the material guide groove (422), the material pressing seat (425) is arranged on the lower end of the elastic support (424), and the material pressing roller (426) is rotatably arranged on the material pressing seat (425).

5. The spring-braid integrated machine according to claim 4, wherein The elastic support (424) comprises a telescopic sleeve and a spring, the spring is sleeved on the telescopic sleeve, and the two ends of the telescopic sleeve are connected with the bottom side of the upper side wall of the material guide groove (422) and the material pressing seat (425) respectively.

6. The spring-braid integrated machine according to claim 2, wherein Symmetrical material setting transmission lines (43) are arranged on the two vertical frames (411), the material setting transmission line (43) comprises a transmission motor (431), a transmission wheel set (432) and a transmission belt (433), the transmission wheel set (432) and the transmission belt (433) are arranged on the inner side of the vertical frame (411), and the transmission motor (431) is arranged on the outer side of the vertical frame (411), the working end of the transmission motor (431) is connected with a roller of the transmission wheel set (432) to drive the transmission belt (433).

7. The spring-braid integrated machine of claim 1, wherein, The feeding section (2) includes a feeding bracket (21), a feeding mounting base (22), a feeding drive (23), and a feeding roller (25). The feeding bracket (21) is fixed on the frame (1). The feeding mounting base (22) is located on the top of the feeding bracket (21). The feeding mounting base (22) is rotatably mounted with a feeding shaft (24). The feeding drive (23) is located on the side of the feeding mounting base (22), and its working end is connected to the feeding shaft (24). The feeding roller (25) is located on the feeding bracket (21) and is located on the lower side of the feeding mounting base (22).

8. The spring-braid integrated machine according to claim 7, wherein The receiving part (5) and the discharging part (2) have the same structure. The receiving roller of the receiving part (5) is an "I" shaped structure with large ends and small middle.

9. The spring-braid integrated machine of claim 1, wherein, The feeding section (3) includes a vibratory feeder assembly (33), a flat vibratory assembly (34), a feeding seat (35), and a feeder seat (31). The feeder seat (31) is located on the side of the feeding bracket (21) of the feeding section (2). The feeder seat (31) has a feeder groove (32) on its upper side. The material belt led out by the feeding section (2) passes through the feeder groove (32) and enters the guide groove (422). The vibratory feeder assembly (33) is disposed on the side of the feeder seat (31), the flat vibratory assembly (34) is disposed at the outlet of the vibratory feeder assembly (33), the feeder seat (35) is disposed at the outlet of the flat vibratory assembly (34), and the feeder seat (35) is located on the upper side of the feeder seat (31).

10. The spring-braid integrator of claim 9, wherein, A clamping assembly (36) is provided on the side of the feed seat (31). The clamping assembly (36) includes a clamping moving unit (37) and a clamping unit (38). The clamping unit (38) is located at the working end of the clamping moving unit (37) to place the spring in the feed seat (35) onto the material strip located in the feed groove (32).