Flexible flat cable wrapping aluminum foil device

CN120767072BActive Publication Date: 2026-09-22CHANGSHU HONGBO COMM TECH CO LTD
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Patent Information

Application Number
CN202511080890.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-09-22
Estimated Expiration
2045-08-04

AI Technical Summary

Technical Problem

[0003]针对上述现有技术缺陷,本发明的任务在于提供一种柔性扁平电缆绕包铝箔装置,解决电缆绕包时自身转动以及绕包位置固定不可变的问题

Benefits of technology

将以往电缆转动的方式改为铝箔弯折粘合,不需要电缆或者铝箔转动,没有产品缠绕的发生,适用于各种长度的电缆生产;铝箔服帖位置由电缆输送距离确定,可以根据需要在电缆的各个位置进行铝箔绕包贴敷,适用于多位置粘贴产品的生产。

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a flexible flat cable wrapping aluminum foil device, which comprises a product conveying mechanism for conveying the cable in the length direction of the cable and controlling the cable running distance; a product receiving mechanism arranged at the end of the product conveying mechanism for receiving the cable conveyed by the product conveying mechanism; an aluminum foil grabbing and applying mechanism for adsorbing the aluminum foil and applying the aluminum foil to the surface of the wrapping position of the cable; a wrapping mechanism arranged between the product conveying mechanism and the product receiving mechanism, comprising a first driving mechanism, a second driving mechanism, a third driving mechanism, a supporting plate and a pushing piece, the pushing piece is driven by the third driving mechanism to translate in the left-right direction of the cable, the supporting plate is arranged below the cable, the supporting plate and the pushing piece are driven by the second driving mechanism to lift, and the lifting stroke of the supporting plate is greater than that of the pushing piece, and the first driving mechanism drives the second driving mechanism to translate in the left-right direction of the cable. The application can completely wrap without rotating the cable and realize multi-position wrapping and sticking.
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Description

Technical Field

[0001] This invention relates to a cable wrapping device. Background Technology

[0002] Chinese patent CN117038225A discloses a flexible flat cable auxiliary material wrapping device. This device uses a rotating clamping mechanism to hold the cable, and the auxiliary material is wrapped around the cable by its own rotation. This wrapping method is suitable for shorter cables. When the cable is longer, the cable's rotation causes significant swinging of the cable tail, leading to damage, tangling, and compromised production safety. Furthermore, the relative position between the rotating clamping mechanism and the auxiliary material conveying mechanism is fixed; therefore, the auxiliary material wrapping position is at a fixed distance from the cable end, making it impossible to complete multiple wrappings at different points along the cable's length. Summary of the Invention

[0003] In view of the above-mentioned defects in the prior art, the present invention aims to provide a flexible flat cable wrapping aluminum foil device to solve the problems of cable rotation during wrapping and fixed and unchangeable wrapping position.

[0004] The technical solution of this invention is as follows: A flexible flat cable wrapping aluminum foil device, comprising a product conveying mechanism, a product receiving mechanism, an aluminum foil gripping and applying mechanism, and a wrapping mechanism. The product conveying mechanism conveys the cable along its length and controls the cable travel distance. The product receiving mechanism is located at the end of the product conveying mechanism and is used to receive the cable conveyed by the product conveying mechanism; The aluminum foil gripping and applying mechanism is used to adsorb aluminum foil and apply it to the surface of the cable wrapping position, where the cable is located between the product conveying mechanism and the product receiving mechanism. The wrapping mechanism is located between the product conveying mechanism and the product receiving mechanism, and includes a first driving mechanism, a second driving mechanism, a third driving mechanism, a pallet, and a lever. The lever is connected to the third driving mechanism and is driven by the third driving mechanism to move horizontally in the cable. The pallet is located below the cable. The pallet and the lever are driven to move up and down by the second driving mechanism, and the lifting stroke of the pallet is greater than the lifting stroke of the lever. The first driving mechanism drives the second driving mechanism to move horizontally in the cable.

[0005] Furthermore, the second driving mechanism includes a fixed end and a lifting end. The pallet is fixedly connected to the lifting end, and the fixed end is connected to a lifting slider. The lifting slider is connected to the third driving mechanism. The pallet has a first lifting stroke and a second lifting stroke. When the pallet is in the first lifting stroke, the relative position of the slider and the fixed end remains unchanged. When the pallet is in the second lifting stroke, the slider and the pallet lift synchronously.

[0006] Furthermore, a return spring is provided between the lifting slider and the fixed end. When the support plate is in the second lifting stroke, the support plate presses down on the slider and compresses the return spring.

[0007] Furthermore, the product conveying mechanism includes a pair of upper and lower feeding conveying wheels, with the cable positioned between the feeding conveying wheels during feeding. The product receiving mechanism includes a receiving platform and a pair of upper and lower discharging conveying wheels, with the cable positioned between the discharging conveying wheels during discharging. The receiving platform is aligned with the end of the product conveying mechanism, and a pressing mechanism is provided on the receiving platform. When the cable is wrapped, the pressing mechanism presses the cable tightly against the receiving platform.

[0008] Furthermore, the product conveying mechanism includes a feeding trough and a feeding mechanism. The feeding mechanism is located on the side of the feeding trough. The feeding mechanism includes a lifting and translating mechanism and an adsorption head. The lifting and translating mechanism drives the adsorption head to lift and translate. After the adsorption head adsorbs the cable in the feeding trough, it is lifted and translated so that the end of the cable enters between the feeding conveying wheels.

[0009] Furthermore, the lifting and translating mechanism includes a lifting drive device, a guide fixing frame, a mounting bracket, and a translating drive device. The guide fixing frame is connected to the moving end of the translating drive device. The lifting drive device is fixed to the guide fixing frame. The mounting bracket is slidably connected to the guide fixing frame. The mounting bracket is connected to the lifting end of the lifting drive device through a buffer spring. The suction head is mounted on the mounting bracket.

[0010] Furthermore, the pressing mechanism includes a swing bracket hinged to the receiving platform, a pressing protrusion is provided on the side of the swing bracket facing the product conveying mechanism, a pressing drive device is provided above the receiving platform, and the telescopic end of the pressing drive device is connected to the swing bracket.

[0011] Furthermore, the bottom surface of the pressing protrusion is provided with a rubber pad.

[0012] Furthermore, the aluminum foil gripping and applying mechanism includes a translation module, a lifting module, and an aluminum foil suction head. The translation module drives the lifting module and the aluminum foil suction head to move laterally. The aluminum foil suction head is suspended from the lifting end of the lifting module and guided by the lifting end in the vertical direction. The aluminum foil suction head has a vertical movement gap relative to the lifting end.

[0013] Furthermore, it includes an aluminum foil preparation table, which includes a fixed base and a floating platform. The floating platform is disposed above the fixed base, and a buffer spring is provided between the floating platform and the fixed base.

[0014] Compared with the prior art, the advantages of the technical solution of the present invention are as follows: The traditional cable rotation method has been replaced with aluminum foil bending and bonding, eliminating the need for cable or aluminum foil rotation and preventing product entanglement. This method is suitable for the production of cables of various lengths. The aluminum foil bonding position is determined by the cable conveying distance, allowing aluminum foil wrapping and bonding to be performed at various locations on the cable as needed, making it suitable for the production of products with multiple bonding positions. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0016] Figure 2 This is a schematic diagram of the product conveying mechanism of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0017] Figure 3 This is a schematic diagram of the feeding mechanism of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0018] Figure 4 This is a schematic diagram of the product receiving mechanism of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0019] Figure 5 This is a schematic diagram of the aluminum foil gripping and applying mechanism of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0020] Figure 6 This is a schematic diagram of the aluminum foil feeding mechanism and aluminum foil preparation table structure of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention.

[0021] Figure 7 This is a schematic diagram of the wrapping mechanism of the flexible flat cable wrapping aluminum foil device according to an embodiment of the present invention. Detailed Implementation

[0022] The present invention will be further described below with reference to embodiments, but these are not intended to limit the scope of the invention.

[0023] Please combine Figure 1 As shown, the flexible flat cable aluminum foil wrapping device according to an embodiment of the present invention includes a product conveying mechanism 1, a product receiving mechanism 2, an aluminum foil gripping and applying mechanism 3, a wrapping mechanism 4, an aluminum foil feeding mechanism 5, and an aluminum foil preparation table 6. The flexible flat cable is conveyed to the product receiving mechanism 2 via the product conveying mechanism 1. The product conveying mechanism 1 and the product receiving mechanism 2 are connected end-to-end, and the position between them is the wrapping position of the flexible flat cable. The aluminum foil is provided by the aluminum foil feeding mechanism 5 and prepared on the aluminum foil preparation table 6. The aluminum foil gripping and applying mechanism 3 picks up the aluminum foil from the aluminum foil preparation table 6 and transfers it to the position between the product conveying mechanism 1 and the product receiving mechanism 2, applying it to the surface of the flexible flat cable. At the position between the product conveying mechanism 1 and the product receiving mechanism 2, the wrapping mechanism 3 wraps the aluminum foil around the flexible flat cable.

[0024] Please combine Figure 2 and Figure 3 As shown, in this embodiment, the product conveying mechanism 1 includes a pair of feeding conveying wheels, a feeding trough 101, and a feeding mechanism, wherein the feeding conveying wheels are located at the end of the feeding trough 101, that is, the end facing the product receiving mechanism 2. The feeding conveying wheels include a first feeding conveying wheel 102 located above and a second feeding conveying wheel 103 located below. The first feeding conveying wheel 102 is a driven wheel, and its axle is connected to the cylinder rod of the first cylinder 104. The action of the first cylinder 104 can cause the first feeding conveying wheel 102 to move downward toward the second feeding conveying wheel 103, or move upward away from the second feeding conveying wheel 103. The vertically movable first feeding conveying wheel 102 facilitates the feeding of flexible flat cables between the first feeding conveying wheel 102 and the second feeding conveying wheel 103, avoiding compression damage to the ends of the flexible flat cables. The second feeding conveyor wheel 103 is the driving wheel. When the flexible flat cable is located between the first feeding conveyor wheel 102 and the second feeding conveyor wheel 103, the first feeding conveyor wheel 102 moves down, and the flexible flat cable can be conveyed forward by the rotation of the second feeding conveyor wheel 103. At the same time, the travel distance of the flexible flat cable can be controlled.

[0025] Before being fed between the first feeding conveyor wheel 102 and the second feeding conveyor wheel 103, the flexible flat cable is stacked in the feeding trough 101. The feeding mechanism picks up the flexible flat cable and then feeds it between the first feeding conveyor wheel 102 and the second feeding conveyor wheel 103. The feeding mechanism is located to the side of the feeding trough 101 and includes a lifting and translating mechanism and a suction head 104. The lifting and translating mechanism includes a lifting drive device 105, a guide fixing frame 106, a mounting bracket 107, and a translating drive device 108. The translating drive device 108 is a second cylinder. The cylinder rod end of the second cylinder is a moving end, which is fixedly connected to the guide fixing frame 106. When the translating drive device 108 is activated, it drives the guide fixing frame 106 to translate.

[0026] A vertically oriented third cylinder is fixedly mounted on the guide frame as a lifting drive device 105. Multiple vertically oriented guide sleeves 106a are provided on the guide frame 106. The mounting bracket 107 is slidably connected to the guide frame 106 via the guide sleeves 106a. An adsorption head 104 is fixedly mounted on the top plate of the mounting bracket 107. A through hole is formed in the bottom plate 107a of the mounting bracket 107. The cylinder rod of the third cylinder serves as the lifting end of the lifting drive device 105, and it is downwardly positioned and connected to a guide rod 109. A buffer spring 110 is sleeved on the guide rod 109. The upper end of the buffer spring 110 is connected to the cylinder rod of the third cylinder, and the lower end of the buffer spring 110 is supported by the bottom plate 107a of the mounting bracket 107. When the third cylinder actuates, the buffer spring 110 drives the mounting bracket 107 to move up and down, thereby driving the adsorption head 104 to move up and down. Due to the compressibility of the buffer spring 110, when there are many flexible flat cables in the feeding trough 110, the adsorption head 104 cannot move down after contacting the flexible flat cables, while the cylinder rod of the third cylinder still moves down. Therefore, the descent stroke of the adsorption head is adjusted by compressing the buffer spring 110 to accommodate different numbers of flexible flat cables (with different stacking heights) in the feeding trough 110.

[0027] After the adsorption head 104 adsorbs the flexible flat cable, the cylinder rod of the third cylinder moves upward. Then, the action of the second cylinder moves the flexible flat cable between the first feeding conveyor wheel 102 and the second feeding conveyor wheel 103. After the first feeding conveyor wheel 102 descends and cooperates with the second feeding conveyor wheel 103 to clamp the flexible flat cable, the adsorption head 104 releases the flexible flat cable and returns to its initial position through the action of the second cylinder, ready for the adsorption and conveying of the next flexible flat cable.

[0028] Please combine Figure 4 As shown, a product receiving machine is located at the end of the product conveying mechanism to receive the flexible flat cable conveyed by the product conveying mechanism. The product receiving mechanism includes a receiving platform 201 and a pair of upper and lower discharge conveyor wheels, wherein the receiving platform 201 is aligned with the end of the product conveying mechanism 1. Similar to the feeding conveyor wheels, the discharge conveyor wheels include a first discharge conveyor wheel 202 and a second discharge conveyor wheel 203. The first discharge conveyor wheel 202 is located above the second discharge conveyor wheel 203 and is driven by a fourth cylinder 204 to move closer to or away from the second discharge conveyor wheel 203. The first discharge conveyor wheel 202 is the driven wheel, and the second discharge conveyor wheel 203 is the driving wheel. When the flexible flat cable is located between the first discharge conveyor wheel 202 and the second discharge conveyor wheel 203, and the first discharge conveyor wheel 202 moves closer to the second discharge conveyor wheel 203, the rotation of the second discharge conveyor wheel 203 drives the flexible flat cable to move forward further.

[0029] To ensure the flatness and stability of the flexible flat cable during aluminum foil wrapping and to guarantee the wrapping quality, a pressing mechanism is installed on the receiving platform 201. During cable wrapping, the pressing mechanism presses the cable firmly against the receiving platform 201. Specifically, the pressing mechanism includes a swing bracket 205, with both sides of the swing bracket 205 hinged to the sides of the receiving platform 201. A pressing protrusion 206 is provided on the side of the swing bracket 205 facing the product conveying mechanism. The bottom surface of the pressing protrusion 206 is provided with a rubber pad 207 to prevent hard contact with the flexible flat cable and thus avoid product damage. A pressing drive device 208, which is a fifth cylinder, is located above the receiving platform 201. The telescopic rod of the fifth cylinder is the telescopic end of the pressing drive device 208 and is connected to the swing bracket 205. When the fifth cylinder is activated, it pushes the swing bracket 205 to swing, thereby changing the distance between the bottom surface of the adhesive pad 207 and the receiving platform 201. In this embodiment, when the cylinder rod of the fifth cylinder extends, it pushes the upper part of the swing bracket 205 to move towards the product conveying mechanism 1, thereby pressing the adhesive pad 207 down. In addition, in this embodiment, the fifth cylinder is fixed to the aluminum foil gripping and applying mechanism 3, but this is not necessary; the fifth cylinder can be fixed by the bracket.

[0030] Please combine Figure 5 and Figure 6 As shown, the aluminum foil wrapped around the flexible flat cable is provided by the aluminum foil feeding mechanism 5 and prepared on the aluminum foil preparation table 6. Then, the aluminum foil gripping and applying mechanism 3 picks it up and moves it to the position between the product conveying mechanism 1 and the product receiving mechanism 2, and applies it to the surface of the flexible flat cable. The aluminum foil feeding mechanism 5 is similar to the supply mechanism for auxiliary materials with release paper in the production of flexible flat cables in the prior art. The aluminum foil strip is pasted side by side on the release paper roll, which is hung on the feeding tray 501. After passing around several guide rollers 502, it passes around the front end of the peeling platform 503. The front end of the peeling platform 503 is flat. The release paper turns at a large angle when passing around the front end of the peeling platform 503, and is finally wound up by the winding roller 504. At the front end of the peeling platform 503, the front side of the aluminum foil strip separates from the release paper.

[0031] In front of the stripping platform 503 is an aluminum foil preparation table 6, which includes a fixed base 601 and a floating table 602. The floating table 602 is positioned above the fixed base 601, and a buffer spring 603 is provided between the floating table 602 and the fixed base 601.

[0032] The aluminum foil gripping and applying mechanism 3 includes a translation module, a lifting module, and an aluminum foil suction head 302. The translation module is a first linear module 301, and the lifting module is fixedly mounted on the slider 301a of the first linear module 301. The lifting module includes a sixth cylinder 303. A base plate 304 is fixedly mounted on the slider 301a of the first linear module 301. A guide rail 305 is provided on the base plate 304, and the guide rail 305 cooperates with the guide rail slider 306. A mounting base plate 307 is fixedly mounted on the guide rail slider 306, and the sixth cylinder 303 is fixedly mounted on the mounting base plate 307. The cylinder rod of the sixth cylinder 303 is fixedly connected to the slider 301a (or to the base plate 304). When the sixth cylinder 303 is activated, the mounting base plate 307 constitutes the lifting end of the lifting module, and the extension of the cylinder rod causes the mounting base plate 307 and the sixth cylinder 303 to move downwards. An aluminum foil suction head 302 is suspended from the lower part of the mounting base 303. Specifically, guide posts 307a are provided on both sides of the mounting base 307, and vertical slots 302a are opened on the aluminum foil suction head 302. The guide posts 307a pass through the slots 302a, so the aluminum foil suction head 302 has a vertical clearance relative to the mounting base 307. When the first linear module 301 is activated, it drives the lifting module and the aluminum foil suction head 302 to move horizontally together. When the aluminum foil suction head 302 moves horizontally above the aluminum foil preparation table 6, the sixth cylinder 303 is activated to move the aluminum foil suction head 302 downward. Through the clearance between the aluminum foil suction head 3022 and the mounting base 307 and the vertical movement of the floating table 602, the aluminum foil suction head 302 can pick up the aluminum foil on the floating table 602. After the sixth cylinder 303 retracts, the aluminum foil is removed from the floating table 602. Then, the first linear module 301 moves the aluminum foil to the top of the flexible flat cable between the product conveying mechanism 1 and the product receiving mechanism 2. The sixth cylinder 303 then moves the aluminum foil suction head 302 down again, so that the aluminum foil is applied to the surface of the flexible flat cable.

[0033] After the aluminum foil is applied to the surface of the flexible flat cable, the aluminum foil extends beyond both sides of the flexible flat cable. Please refer to... Figure 7 As shown, the wrapping mechanism 4 causes the extended aluminum foil to fold downwards and be applied to the bottom surface of the flexible flat cable to complete the wrapping.

[0034] Specifically, the wrapping mechanism 4 includes a first drive mechanism, a second drive mechanism, a third drive mechanism, a support plate 401, and a lever 402. The first drive mechanism is a second linear module 403, which is arranged in the left-right direction of the flexible flat cable. A seventh cylinder 4044 is fixedly mounted on the slider 403a of the second linear module 403, and the seventh cylinder 404 is the second drive mechanism. The cylinder rod of the seventh cylinder 404 is the lifting end of the second drive mechanism, and the support plate 401 is fixedly mounted on the top of the cylinder rod. The action of the seventh cylinder 404 causes the support plate 401 to move up and down for lifting.

[0035] The cylinder body of the seventh cylinder 404 is a fixed end. Vertical lifting guide rails 405 are fixedly installed on both sides of the cylinder body of the seventh cylinder 404, and the lifting slider 406 is configured to cooperate with the lifting guide rails 405. A return spring is connected between the lifting slider 406 and the cylinder body of the seventh cylinder 404. In addition, a part of the lifting slider 406 is located below the support plate 401. Under the drive of the seventh cylinder 404, the lifting stroke of the support plate 401 includes two segments, namely a first lifting stroke and a second lifting stroke. In the first lifting stroke, the support plate 401 rises and falls without contacting the lifting slider 406. At this time, the rise and fall of the support plate 401 does not affect the lifting slider 406. When the support plate 401 reaches the bottom of the first lifting stroke, that is, when the support plate 401 contacts the lifting slider 406, the part of the support plate 401 that continues to fall is the second lifting stroke. In the second lifting stroke, the downward movement of the support plate 401 will drive the lifting slider 406 to move downward, and at the same time, the return spring 407 is compressed. When the pallet 401 moves upward during the second lifting stroke, the spring force of the return spring 407 keeps the lifting slider 406 in contact with the pallet 401, so the lifting slider 406 also moves upward. When the pallet 401 moves to the bottom of the first lifting stroke, the return spring 407 returns to its maximum length, and the pallet 401 will separate from the lifting slider 406 if it moves further upward.

[0036] The lifting slider 406 is equipped with an eighth cylinder 408 as the third drive mechanism. The cylinder rod of the eighth cylinder 408 is fixedly connected to the paddle 402. The action of the eighth cylinder causes the two paddles 402 to move closer to each other or separate.

[0037] The process of the wrapping mechanism wrapping aluminum foil around the flexible flat cable is as follows: Initially, the support plate 401 is at its highest position, supporting the flexible flat cable. When the aluminum foil gripping and applying mechanism 3 applies the aluminum foil to the surface of the flexible flat cable, the support of the support plate 401 ensures better application of the aluminum foil. After the aluminum foil gripping and applying mechanism 3 completes the application, the aluminum foil suction head 302 is removed. The lever 402 is positioned above the height of the flexible flat cable and is spread to its maximum distance. Then, the eighth cylinder actuates to move the lever 402 towards the center until the head of the lever 402 is flush with both sides of the flexible flat cable. Subsequently, the seventh cylinder 404 moves, causing the support plate 401 to move downward. During the first lifting stroke, the support plate 401 moves downward alone, leaving space under the flexible flat cable. Then, during the second lifting stroke, the lever 402 moves downward together with the support plate 401. The lever 402 causes the aluminum foil on both sides of the flexible flat cable to bend downward. Then, the second linear module moves, causing the seventh cylinder 404, the eighth cylinder 408, the support plate 401, and the lever 402 to move left and right together. When moving to the left, the lever 402 on the right pushes the bent aluminum foil on the right to adhere to the bottom surface of the flexible flat cable. Then, when moving to the right, the lever 402 on the left pushes the bent aluminum foil on the left to adhere to the bottom surface of the flexible flat cable, completing the wrapping.

Claims

1. A device for wrapping flexible flat cables with aluminum foil, characterized in that, This includes a product conveying mechanism, a product receiving mechanism, an aluminum foil gripping and applying mechanism, and a wrapping mechanism. The product conveying mechanism conveys the cable along the length of the cable and controls the cable travel distance. The product receiving mechanism is located at the end of the product conveying mechanism and is used to receive the cable conveyed by the product conveying mechanism; The aluminum foil gripping and applying mechanism is used to adsorb aluminum foil and apply it to the surface of the cable wrapping position, where the cable is located between the product conveying mechanism and the product receiving mechanism. The wrapping mechanism is located between the product conveying mechanism and the product receiving mechanism, and includes a first drive mechanism, a second drive mechanism, a third drive mechanism, a pallet, and a lever. The lever is connected to the third drive mechanism and is driven by the third drive mechanism to move horizontally along the cable. The pallet is located below the cable. The pallet and the lever are driven to move up and down by the second drive mechanism, and the lifting stroke of the pallet is greater than that of the lever. The second drive mechanism includes a fixed end and a lifting end. The pallet is fixedly connected to the lifting end, and a lifting slider is connected to the fixed end. The lifting slider is connected to the third drive mechanism. The pallet has a first lifting stroke and a second lifting stroke. When the pallet is in the first lifting stroke, the relative position of the lifting slider and the fixed end remains unchanged. When the pallet is in the second lifting stroke, the lifting slider rises and falls synchronously with the pallet, and the first driving mechanism drives the second driving mechanism to translate in the left and right directions of the cable.

2. The flexible flat cable aluminum foil wrapping device according to claim 1, characterized in that, A return spring is provided between the lifting slider and the fixed end. When the support plate is in the second lifting stroke, the support plate presses down on the lifting slider and compresses the return spring.

3. The flexible flat cable wrapping aluminum foil device according to claim 1, characterized in that, The product conveying mechanism includes a pair of upper and lower feeding conveying wheels, with the cable positioned between the feeding conveying wheels during feeding. The product receiving mechanism includes a receiving platform and a pair of upper and lower discharging conveying wheels, with the cable positioned between the discharging conveying wheels during discharging. The receiving platform is aligned with the end of the product conveying mechanism. The receiving platform is equipped with a pressing mechanism, which presses the cable against the receiving platform during cable wrapping.

4. The flexible flat cable wrapping aluminum foil device according to claim 3, characterized in that, The product conveying mechanism includes a feeding trough and a feeding mechanism. The feeding mechanism is located on the side of the feeding trough. The feeding mechanism includes a lifting and translating mechanism and an adsorption head. The lifting and translating mechanism drives the adsorption head to lift, move and translate. After the adsorption head adsorbs the cable in the feeding trough, it is lifted and translated so that the end of the cable enters between the feeding conveying wheels.

5. The flexible flat cable wrapping aluminum foil device according to claim 4, characterized in that, The lifting and translating mechanism includes a lifting drive device, a guide frame, a mounting bracket, and a translating drive device. The guide frame is connected to the moving end of the translating drive device. The lifting drive device is fixed to the guide frame. The mounting bracket is slidably connected to the guide frame. The mounting bracket is connected to the lifting end of the lifting drive device through a buffer spring. The suction head is mounted on the mounting bracket.

6. The flexible flat cable wrapping aluminum foil device according to claim 3, characterized in that, The pressing mechanism includes a swing bracket hinged to the receiving platform. A pressing protrusion is provided on the side of the swing bracket facing the product conveying mechanism. A pressing drive device is provided above the receiving platform. The telescopic end of the pressing drive device is connected to the swing bracket.

7. The flexible flat cable wrapping aluminum foil device according to claim 6, characterized in that, The bottom surface of the pressing protrusion is provided with a rubber pad.

8. The flexible flat cable wrapping aluminum foil device according to claim 1, characterized in that, The aluminum foil gripping and applying mechanism includes a translation module, a lifting module, and an aluminum foil suction head. The translation module drives the lifting module and the aluminum foil suction head to move laterally. The aluminum foil suction head is suspended from the lifting end of the lifting module and guided by the lifting end of the lifting module in the vertical direction. The aluminum foil suction head has a vertical movement gap relative to the lifting end of the lifting module.

9. The flexible flat cable wrapping aluminum foil device according to claim 8, characterized in that, The device includes an aluminum foil preparation table, which comprises a fixed base and a floating platform. The floating platform is positioned above the fixed base, and a buffer spring is provided between the floating platform and the fixed base.

Citation Information

Patent Citations

  • Flexible flat cable auxiliary material wrapping equipment

    CN117038225A

  • SAS cable and production process thereof

    CN108133784A

  • Efficient automatic aluminum foil pasting machine

    CN212570551U