Ribbon self-assembling machine convenient to use

By setting a spacing adjustment mechanism on the cable tie machine, the problem of misalignment at both ends of the strip-shaped items to be bundled during the bundling process of the fully automatic cable tie machine is solved, realizing automatic adaptation to bundling of different lengths and bundling areas, and simplifying the operation steps.

CN223672893UActive Publication Date: 2025-12-16XIAMEN UZONE AUTO DEVICES CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520166871.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-12-16
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

When fully automatic cable ties are used to bundle different strips of items, the two ends of the strips are not set to restrict them, which results in the two ends being misaligned after bundling. This requires manual adjustment, which is cumbersome.

Method used

The spacing adjustment mechanism includes a horizontal 'I'-shaped slide plate, a vertical plate and a spacer plate. The slider and slide plate are connected by screws to adjust the spacing of the spacer plates, which restricts the two ends of the strip to be bundled and adapts to different lengths and bundling areas.

Benefits of technology

This avoids misalignment at both ends of the strip-shaped items to be bundled during the bundling process, simplifies the operation, and reduces the need for manual adjustments.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223672893U_ABST
    Figure CN223672893U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of ribbon self-assembling machines, in particular to a ribbon self-assembling machine convenient to use, which comprises a top plate, a spacing adjusting mechanism is arranged on the top plate, and the spacing adjusting mechanism comprises a transverse I-shaped chute plate, a longitudinal vertical plate and a spacing plate. By arranging the four spacing plates in the adjusting mechanism, the two ends of the strip-shaped to-be-bundled piece are located among the four spacing plates, that is, the situation that the two ends of the strip-shaped to-be-bundled piece are not aligned in the bundling process is avoided, and therefore the situation that the two ends of the strip-shaped to-be-bundled piece are manually aligned subsequently is avoided; through the arrangement of the adjusting mechanism, the I-shaped sliding plate slides on the transverse I-shaped sliding groove plate and is locked through the first screws, the distance between the four spacing plates can be adjusted to be matched with the lengths of different strip-shaped to-be-bundled pieces, the spacing plates slide on the sliding blocks and are locked through the second screws, and the bundling area of the different strip-shaped to-be-bundled pieces can be adjusted, so that the bundling efficiency of the strip-shaped to-be-bundled pieces is improved, and the bundling efficiency of the strip-shaped to-be-bundled pieces is improved. And the requirements of different strip-shaped to-be-bundled pieces can be met through adjustment.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application relates to the technical field of strap self-assembly machines, in particular to a strap self-assembly machine convenient to use. BACKGROUND

[0002] The strap self-assembly machine generally refers to a full-automatic strap machine, which is an important equipment in modern industrial production. When the full-automatic strap machine is started, the main motor starts to operate, and simultaneously drives the cam set of the electric heating unit, the cam piece on the side of the tensioning cam and the speed reducer to start to act. The packaged object is basically located at the middle position of the packaging machine. First, the right top body rises to press the front end of the strap, tightens the strap and binds the object. After the strap is tightened, the heating piece extends into the middle position between the two straps, and the strap is melted and bonded together through heating. After the binding is completed, the machine automatically sends out the bound object.

[0003] Through retrieval, the full-automatic strapping machine disclosed by Chinese Patent No. CN214452060U comprises a strapping machine body, the upper end of the strapping machine body is fixedly connected with a control panel, the lower end of the strapping machine body is provided with a supporting mechanism, the supporting mechanism comprises an outer sleeve, the upper end of the outer sleeve is welded with a sealing ring, the inner part of the outer sleeve is inserted with a supporting rod, the outer side of the supporting rod in the inner part of the outer sleeve is provided with a first spring, the lower end of the supporting rod is fixedly connected with a first piston, and the lower part of the first piston in the inner part of the outer sleeve is fixedly connected with a first limiting ring. The full-automatic strapping machine can effectively reduce the problem of too large shaking amplitude of the strapping machine, so that the product is not easy to slide or deviate, the qualified rate of strapping is improved, and the risk of product damage is reduced.

[0004] For the related technology in the above, the inventor finds that the patent has the following defects:

[0005] In the process of strapping different strip-shaped to-be-strapped pieces by the full-automatic strap machine, since the full-automatic strap machine does not set a limiting piece for the two ends of the strip-shaped to-be-strapped piece, the two ends are not aligned after being strapped, and some of the bundled strip-shaped to-be-strapped pieces may slide from the middle, so that manual alignment of the two ends of the strip-shaped to-be-strapped piece is required after strapping, which is very cumbersome.

[0006] Therefore, in view of the above problems, the applicant provides a strap self-assembly machine convenient to use. CONTENT OF THE UTILITY MODEL

[0007] In order to solve the problems mentioned in the background art, the application provides a strap self-assembly machine convenient to use.

[0008] The strap self-assembly machine convenient to use provided by the application adopts the following technical scheme:

[0009] The utility model provides a convenient to use's ribbon self -assembly machine, including top plate, be provided with interval adjusting mechanism on the top plate, interval adjusting mechanism includes transverse'' word type sliding groove board, vertical plate and interval plate, transverse'' word type sliding groove board slidingly connects with'' word type sliding board, transverse'' word type sliding groove board is connected with screw one and is pressed to the top surface of'' word type sliding board,

[0010] The sliding groove is formed on the interval plate and is connected to the sliding block. The interval plate is connected to the sliding block by a screw.

[0011] Optionally, the automatic ribbon machine is composed of an operation table, a conveying belt one, a conveying belt two and a support. The top of the automatic ribbon machine is fixedly connected with four operation tables. The operation table is respectively installed with the conveying belt one and the conveying belt two. The support is fixedly connected between the two operation tables on the same horizontal line.

[0012] Optionally, the top of the support is fixedly connected with the bottom end of the multi-stage electric push rod input end. The output end of the multi-stage electric push rod is fixedly connected with the top plate. The top plate is fixedly connected with the transverse'' word type sliding groove plate on both sides. The multi-stage electric push rod is connected with the power supply.

[0013] Optionally, the top inner and outer walls of the two transverse'' word type sliding groove plates are penetrated with threaded holes. The threaded holes are connected with the screw one.

[0014] Optionally, the two transverse'' word type sliding groove plates are slidingly connected with a'' word type sliding plate. The side of the two'' word type sliding plates away from each other is fixedly connected with the'' U''type fixed rod.

[0015] Optionally, the vertical plate is composed of a sliding block and a'' U''type top plate. The tenth of the top of the vertical plate is the'' U''type top plate. The top surface of the'' U''type fixed rod is fixedly connected with the middle part of the'' U''type top plate. The second tenth of the vertical plate is the sliding block. The interval plate is connected with the screw two through the threaded hole one on the sliding block.

[0016] Optionally, the two sliding blocks are slidingly connected with two sliding grooves. The number of the interval plate is four. The conveying belt one and the conveying belt two are placed with the strip-shaped to-be-bundled piece. The bottom surface of the four interval plates is attached to the transmission belt of the conveying belt one and the conveying belt two. The strip-shaped to-be-bundled piece is placed between the four interval plates.

[0017] In summary, the application has the following beneficial technical effects:

[0018] 1. This utility model, by adjusting the four partition plates in the mechanism, ensures that both ends of the strip to be bundled are located between the four partition plates, thus avoiding misalignment of the two ends of the strip to be bundled during the bundling process, thereby avoiding the need for manual alignment of the two ends of the strip to be bundled later.

[0019] 2. This utility model, through the setting of the adjustment mechanism, allows the "I"-shaped sliding plate to slide on the horizontal "I"-shaped sliding groove plate and be locked by screw one, so that the spacing of the four partition plates can be adjusted to adapt to the length of different strip-shaped items to be bundled. The partition plates slide on the slider and are locked by screw two, so that the bundling area of ​​different strip-shaped items to be bundled can be adjusted. By adjustment, different requirements of strip-shaped items to be bundled can be met. Attached Figure Description

[0020] Figure 1 This is one of the overall structural schematic diagrams in the embodiments of this application;

[0021] Figure 2 This is the second overall structural schematic diagram in the embodiments of this application;

[0022] Figure 3 This is a schematic diagram of the spacing adjustment mechanism in an embodiment of this application;

[0023] Figure 4 This is a schematic diagram of the disassembled structure of the spacing adjustment mechanism in an embodiment of this application;

[0024] Figure 5 This is a schematic diagram of the longitudinal vertical plate and the partition plate structure in the embodiments of this application;

[0025] Figure 6 This is an embodiment of the present application. Figure 5 A magnified schematic diagram of the structure at point A.

[0026] Reference numerals in the attached diagram: 1. Fully automatic cable tie machine; 100. Operating table; 101. Conveyor belt one; 102. Conveyor belt two; 103. Support frame; 2. Multi-stage electric push rod; 3. Top plate; 4. Horizontal "I"-shaped sliding groove plate; 40. Threaded hole; 5. Screw one; 6. "I"-shaped sliding plate; 7. "U"-shaped fixing rod; 8. Vertical plate; 80. Slider; 81. "U"-shaped top plate; 9. Spacer plate; 90. Slide groove; 10. Screw two; 11. Strip-shaped items to be bundled. Detailed Implementation

[0027] The following is in conjunction with the appendix Figures 1-6 This application will be described in further detail.

[0028] This application discloses a convenient self-assembling cable tie machine.

[0029] like Figures 1-6As shown, a convenient self-assembling cable tie machine includes a top plate 3, on which a spacing adjustment mechanism is provided. The spacing adjustment mechanism includes a horizontal "I"-shaped slide plate 4, a vertical plate 8, and a spacer plate 9. The horizontal "I"-shaped slide plate 4 is slidably connected to an "I"-shaped sliding plate 6, and the horizontal "I"-shaped slide plate 4 is threadedly connected to a screw 5, which abuts against the top surface of the "I"-shaped sliding plate 6.

[0030] The partition plate 9 has a groove 90, which is slidably connected to the slider 80. The partition plate 9 is located on the groove 90 and is threaded with a screw 10, which abuts against one side of the slider 80.

[0031] Please see Figure 1 and Figure 2 It also includes a fully automatic cable tie machine 1, which consists of an operating table 100, a first conveyor belt 101, a second conveyor belt 102 and a support 103. Four operating tables 100 are fixedly connected to the top of the box of the fully automatic cable tie machine 1. The first conveyor belt 101 and the second conveyor belt 102 are respectively installed on the operating table 100. The support 103 is fixedly connected between two operating tables 100 on the same horizontal line.

[0032] Both conveyor belt 2 102 and conveyor belt 101 are externally powered. The purpose of conveyor belt 2 102 and conveyor belt 101 is to place the strip-shaped items to be bundled 11 on conveyor belt 2 102 and conveyor belt 101. The loose strip-shaped items to be bundled 11 are then bundled into bundles by the fully automatic cable tie machine 1. The bundles then flow out as conveyor belt 2 102 and conveyor belt 101 are started. The bundling principle and internal structure of the fully automatic cable tie machine 1 are existing technologies and will not be described in detail here.

[0033] Please see Figures 1 to 3 The top of the bracket 103 is fixedly connected to the bottom end of the input end of the multi-stage electric push rod 2. The output end of the multi-stage electric push rod 2 is fixedly connected to the top plate 3. The top plate 3 is fixedly connected to the horizontal "I"-shaped sliding plate 4 on both sides. The multi-stage electric push rod 2 is connected to an external power supply. Threaded holes 40 are passed through the inner and outer walls of the top of the two horizontal "I"-shaped sliding plates 4. Screws 5 are threaded into the threaded holes 40. The bottom end of the threaded holes 40 is in close contact with the "I"-shaped sliding plate 6 to complete the positioning of the "I"-shaped sliding plate 6.

[0034] Please see Figure 3 and Figure 4Two horizontal "I"-shaped sliding plates 4 are each slidably connected to an "I"-shaped sliding plate 6. "U"-shaped fixing rods 7 are fixedly connected to the opposite sides of the two "I"-shaped sliding plates 6. The vertical plate 8 consists of a slider 80 and a "U"-shaped top plate 81. One-tenth of the top section of the vertical plate 8 is the "U"-shaped top plate 81. The top surface of the "U"-shaped fixing rod 7 is fixedly connected to the middle section of the "U"-shaped top plate 81. The top tenth of the vertical plate 8... The second section is a slider 80. A partition plate 9 is located on the slider 80 and has a threaded hole 1. A screw 2 10 is threaded into the threaded hole 1. Two slide grooves 90 are slidably connected to both sliders 80. There are four partition plates 9. Strip-shaped bundles 11 are placed on the conveyor belt 1 101 and the conveyor belt 2 102. The bottom surfaces of the four partition plates 9 are attached to the conveyor belts of the conveyor belt 1 101 and the conveyor belt 2 102. Strip-shaped bundles 11 are placed between the four partition plates 9.

[0035] First, as shown in the attached diagram of the instruction manual. Figure 2 The strip-shaped component 11 to be bundled, as shown, is placed between the four spacers 9 through the "U"-shaped fixing rod 7. The fully automatic cable tie machine 1 is started to complete the bundling of the loose spacers 9. The setting of the four spacers 9 effectively restricts the two ends of the strip-shaped component 11 to be bundled, thus avoiding misalignment at both ends during the bundling process. If the four spacers 9 are not set, it is easy for the operator to place the loose spacers 9 between the second conveyor belt 102 and the first conveyor belt 101, resulting in misalignment at both ends. After the bundling is completed, manual alignment of the two ends is required.

[0036] After the bundling is completed, the multi-stage electric push rod 2 is activated, causing the input end of the multi-stage electric push rod 2 to extend from the output end and lift upwards. The output end of the multi-stage electric push rod 2 drives the top plate 3, the horizontal "I"-shaped sliding groove plate 4, the screw 5, the "I"-shaped sliding plate 6, the "U"-shaped fixing rod 7, the vertical plate 8, and the partition plate 9 to lift simultaneously. The four partition plates 9 rise above the bundled strip-shaped bundle 11. Then, the second conveyor belt 102 and the first conveyor belt 101 are activated to facilitate the flow of the strip-shaped bundle 11. Here, the multi-stage electric push rod 2 is set to drive the above structure to lift and lower synchronously, thereby completing the restriction of the strip-shaped bundle 11.

[0037] When dealing with strip-shaped items 11 of different lengths and binding areas, adjustments can be made through the following steps:

[0038] Loosen screw 5 to allow the I-shaped sliding plate 6 to slide outward on the horizontal I-shaped sliding groove plate 4, thereby extending the distance between the four partition plates 9 to accommodate strips of different lengths to be bundled 11. Then tighten screw 5 to lock it to the top surface of the I-shaped sliding plate 6.

[0039] By loosening screw 210, the two adjacent spacer plates 9 slide on slider 80, and slide the two spacer plates 9 to a position far apart from each other. Then, screw 210 is used to lock them onto the spacer plates 9, thereby increasing the area of ​​the four spacer plates 9 that can accommodate the strip-shaped bundle 11.

[0040] The implementation principle of a convenient self-assembly cable tie machine according to an embodiment of this application is as follows:

[0041] First, as shown in the attached diagram of the instruction manual. Figure 2 The strip-shaped component 11 to be bundled, as shown, is placed between the four spacers 9 through the "U"-shaped fixing rod 7. The fully automatic cable tie machine 1 is started to complete the bundling of the loose spacers 9. The setting of the four spacers 9 effectively restricts the two ends of the strip-shaped component 11 to be bundled, thus avoiding misalignment at both ends during the bundling process. If the four spacers 9 are not set, it is easy for the operator to place the loose spacers 9 between the second conveyor belt 102 and the first conveyor belt 101, resulting in misalignment at both ends. After the bundling is completed, manual alignment of the two ends is required.

[0042] After the bundling is completed, the multi-stage electric push rod 2 is activated, causing the input end of the multi-stage electric push rod 2 to extend from the output end and lift upwards. The output end of the multi-stage electric push rod 2 drives the top plate 3, the horizontal "I"-shaped sliding groove plate 4, the screw 5, the "I"-shaped sliding plate 6, the "U"-shaped fixing rod 7, the vertical plate 8, and the partition plate 9 to lift simultaneously. The four partition plates 9 rise above the bundled strip-shaped bundle 11. Then, the second conveyor belt 102 and the first conveyor belt 101 are activated to facilitate the flow of the strip-shaped bundle 11. Here, the multi-stage electric push rod 2 is set to drive the above structure to lift and lower synchronously, thereby completing the restriction of the strip-shaped bundle 11.

[0043] When dealing with strip-shaped items 11 of different lengths and binding areas, adjustments can be made through the following steps:

[0044] Loosen screw 5 to allow the I-shaped sliding plate 6 to slide outward on the horizontal I-shaped sliding groove plate 4, thereby extending the distance between the four partition plates 9 to accommodate strips of different lengths to be bundled 11. Then tighten screw 5 to lock it to the top surface of the I-shaped sliding plate 6.

[0045] By loosening screw 210, the two adjacent spacer plates 9 slide on slider 80, and slide the two spacer plates 9 to a position far apart from each other. Then, screw 210 locks them on the spacer plates 9, thereby increasing the area of ​​the four spacer plates 9 that can accommodate the strip-shaped bundle 11. By adjusting according to the above steps, the adjustment mechanism can be adapted to different lengths and bundle areas.

[0046] The above are all preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: all equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.

Claims

1. A self-assembly machine for cable ties, characterized in that: Includes a top plate (3), on which a spacing adjustment mechanism is provided. The spacing adjustment mechanism includes a horizontal "I"-shaped slide plate (4), a vertical plate (8) and a partition plate (9). The horizontal "I"-shaped slide plate (4) is slidably connected to an "I"-shaped sliding plate (6). The horizontal "I"-shaped slide plate (4) is threadedly connected to a screw (5) and abuts against the top surface of the "I"-shaped sliding plate (6). The partition plate (9) is provided with a sliding groove (90), which is slidably connected to the slider (80). The partition plate (9) is located on the sliding groove (90) with a screw (10) threadedly connected and abuts against one side of the slider (80).

2. A self-assembly machine of cable tie according to claim 1, characterized in that: It also includes a fully automatic cable tie machine (1), which consists of an operating table (100), a first conveyor belt (101), a second conveyor belt (102), and a support (103). The top of the box of the fully automatic cable tie machine (1) is fixedly connected to four operating tables (100). The first conveyor belt (101) and the second conveyor belt (102) are respectively installed on the operating table (100). The support (103) is fixedly connected between two operating tables (100) on the same horizontal line.

3. A self-assembly machine for cable ties according to claim 2, wherein: The top of the bracket (103) is fixedly connected to the bottom end of the input end of the multi-stage electric push rod (2), and the output end of the multi-stage electric push rod (2) is fixedly connected to the top plate (3). The top plate (3) is fixedly connected to the horizontal "I"-shaped sliding groove plate (4) on both sides. The multi-stage electric push rod (2) is connected to an external power source.

4. A self-assembly machine for cable ties according to claim 3, wherein: Both of the two horizontal "I"-shaped slide plates (4) have threaded holes (40) running through their top inner and outer walls, and the threaded holes (40) are threaded with screws (5).

5. A self-assembly machine for cable ties according to claim 4, wherein: Each of the two transverse "I"-shaped sliding plates (4) is slidably connected to an "I"-shaped sliding plate (6), and each of the two "I"-shaped sliding plates (6) is fixedly connected to a "U"-shaped fixing rod (7) on the side away from each other.

6. A self-assembly machine for cable ties according to claim 5, wherein: The longitudinal vertical plate (8) is composed of a slider (80) and a "U"-shaped top plate (81). One-tenth of the top of the longitudinal vertical plate (8) is the "U"-shaped top plate (81). The top surface of the "U"-shaped fixing rod (7) is fixedly connected to the middle part of the "U"-shaped top plate (81). Two-tenths of the longitudinal vertical plate (8) is the slider (80). The partition plate (9) is located on the slider (80) and has a threaded hole. The threaded hole is threaded with a screw (10).

7. A self-assembly machine for cable ties according to claim 6, wherein: Two slide grooves (90) are slidably connected to each of the two sliders (80). There are four partition plates (9). Strip-shaped bundles (11) are placed on the first conveyor belt (101) and the second conveyor belt (102). The bottom surfaces of the four partition plates (9) are attached to the conveyor belts of the first conveyor belt (101) and the second conveyor belt (102). Strip-shaped bundles (11) are placed between the four partition plates (9).

Citation Information

Patent Citations

  • Full-automatic strapping machine

    CN214452060U