Automatic pressing device for wire harness storage box

By designing the automatic pressing device of the wiring harness storage box, the existing wiring harness storage devices have solved the problem of large area and complex structure, and achieved saving of storage area and improving production efficiency.

CN222876673UActive Publication Date: 2025-05-16ANHUI HAORUI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421978702.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-05-16
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The existing wiring harness storage devices cover a large area and complex storage structure, which makes it difficult to retrieve and maintain, and the transfer is time-consuming and labor-intensive, which is not conducive to production.

Method used

An automatic pressing device for wire harness storage box is designed, including a main frame, upper box part, box body part, connection part, pressing part and control part. Through the overall arrangement of these components, the reduction of storage area, simplification of structure and rapid transfer are achieved.

Benefits of technology

It realizes savings in storage area, simplifies the storage and access and maintenance process, is suitable for rapid batch transfer, reduces production costs and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a wire harness storage box automatic press-fit device, including main body frame, upper box part, box body part, link part, press-fit part and control part, main body frame includes base, press-fit seat, pillar and compressor, upper box part includes electric roll shaft 1, electric roll shaft 2, universal ball and push rod motor 1, and box body part includes electric roll shaft 1, electric roll shaft 2, universal ball and push rod motor 1. The box body part comprises a second rectangular container, an inner base plate and a pressing plate, the connecting part comprises a lifting mechanism and a connecting plate fixing mechanism, and the pressing part comprises an inner base plate pressing mechanism and a pressing plate mounting mechanism. The occupation of the storage area is greatly reduced; the wire harness transfer device is simple in structure, convenient to store and take, suitable for rapid batch transfer, small in mutual interference between wire harnesses and convenient and rapid to use, thereby reducing the production cost and improving the production efficiency.
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Description

Technical Field

[0001] The utility model relates to the field of wire harness production, in particular to an automatic pressing device for a wire harness storage box. Background Art

[0002] A wiring harness is a combination of multiple wires or cables tied together, used to transmit electricity, signals or data. At present, when storing wiring harnesses, closed storage is mostly adopted, such as the integrated wiring harness storage device disclosed in Chinese patent CN210556735U, which includes a box body, a first groove is opened at the bottom of the inner wall of the box body, and the left and right sides of the inner wall of the first groove are fixedly connected with bearings, a rotating shaft is passed through the bearing, and the opposite surfaces of the two rotating shafts are respectively fixedly connected with a first threaded column and a second threaded column; by setting a movable component, the fixed plate can be driven to move up and down. The device adopts a dual-axis motor, a movable component and a winding column, which realizes the purpose of storing the wiring harness in an orderly manner while making the winding column drive the wiring harness to rise and fall.

[0003] When used, the above-mentioned wire harness storage device still has the following defects:

[0004] First, the storage device occupies a large area and is not suitable for bulk storage;

[0005] Second, the storage structure of the storage device is complex, which makes it difficult to retrieve and maintain;

[0006] Third, the transfer of storage devices is difficult, time-consuming and labor-intensive, and is not conducive to production. Utility Model Content

[0007] The utility model provides an automatic pressing device for a wire harness storage box, which can effectively solve the problems mentioned in the background technology.

[0008] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0009] The utility model relates to an automatic pressing device for a wire harness storage box, comprising a main body frame, an upper box part, a box body part, a connecting part, a pressing part and a control part.

[0010] Furthermore, the main frame includes a base, a press-fit seat, a support and a compressor. The base includes a rectangular hollow container, and a rectangular through hole is arranged on the upper bottom plate of the base. The support is arranged on the lower bottom plate of the base. The press-fit seat is arranged on the upper bottom plate of the base, including a rectangular container, and a "U"-shaped opening through groove is symmetrically arranged on the left and right sides of the base, and a rectangular through hole is symmetrically arranged on the front side plate. A rectangular through hole is also arranged on the front side plate. The compressor is arranged in the base.

[0011] Furthermore, the upper box part includes an electric roller shaft 1, an electric roller shaft 2, a universal ball and a push rod motor 1. The electric roller shaft 1 and the electric roller shaft 2 are equidistantly arranged on the base and are distributed in an "L" shape; the electric roller shaft 1 and the electric roller shaft 2 are perpendicular to each other; the universal ball is equidistantly arranged on the base to connect the electric roller shaft 1 and the electric roller shaft 2; the push rod motor 1 is arranged on the base, located on the left side of the universal ball, and a strip push plate is arranged on its movable end.

[0012] Furthermore, the box body includes a rectangular container 2, an inner pad and a pressure plate. The left and right plates of the rectangular container 2 are symmetrically provided with two "U"-shaped opening through grooves, and the front and rear plates are symmetrically provided with one strip slide groove; the inner pad includes a rectangular connecting plate and an arc-shaped side plate; the arc-shaped side plate is provided on both sides of the rectangular connecting plate; the outer diameter of the inner pad is smaller than the inner diameter of the rectangular container 2; the pressure plate is slidably connected in the strip slide groove 1.

[0013] Furthermore, the connecting part includes a rising mechanism and a fixed connecting plate mechanism.

[0014] Furthermore, the lifting mechanism includes an electric lifting device 1 and a connection box structure. The electric lifting device 1 is arranged in the base; the connection box structure is arranged on the movable end of the electric lifting device 1, including a connection box, a push rod motor 5, a push rod motor 2 and an electric roller shaft 3; the connection box includes a rectangular hollow container 2, on which a rectangular through hole 4 and a circular pin hole 1 are arranged on the upper bottom plate; the push rod motor 5 is arranged in the connection box, and a limit pin is arranged on the movable end; the limit pin is slidably connected in the circular pin hole 1; the push rod motor 2 is arranged in the connection box, and a mounting plate is arranged on the movable end; the electric roller shaft 3 is equidistantly arranged on the mounting plate, and is slidably connected in the rectangular through hole 4.

[0015] Furthermore, the fixed connection plate mechanism includes a press-fit limit plate, a connecting column and an "n"-shaped mounting frame. The press-fit limit plates are fixedly connected by the connecting column; the press-fit limit plate is arranged in the press-fit seat through the "n"-shaped mounting frame, and an "L"-shaped opening through groove is arranged at the lower end thereof, so that the lower end of the press-fit limit plate is adapted to the inner diameter of the connection box.

[0016] Furthermore, the pressing part includes an inner pad pressing mechanism and a pressing plate mounting mechanism.

[0017] Furthermore, the inner pad pressing mechanism includes a feeding structure 1 and a calling pressing structure. The feeding structure 1 includes a feeding box, an "L"-shaped support plate and an electromagnet 1; the feeding box includes a rectangular container 4, a "U"-shaped opening through slot 3 is arranged on its side plate, and an iron sheet 1 is arranged on the bottom plate; the "L"-shaped support plate is arranged on the front side plate of the pressing seat; the electromagnet 1 is arranged on the "L"-shaped support plate and is adapted to the iron sheet 1. The calling pressing structure includes a screw stepper motor, a movable carrier plate, an electric telescopic rod and a vacuum suction cup 1; the screw stepper motor is arranged in the pressing seat through a mounting frame; the movable carrier plate is arranged in the pressing seat through a sliding rod 1, and its lower bottom surface is connected to the nut seat of the screw stepper motor; the electric telescopic rod is arranged on the lower bottom surface of the movable carrier plate; the vacuum suction cup 1 is arranged on the movable end of the electric telescopic rod.

[0018] Furthermore, the pressing plate installation mechanism includes a feeding structure 2 and a pressing plate installation structure. The feeding structure 2 includes a pressing plate box, a limiting frame and a screw lift. The pressing plate box includes a rectangular container 3, a rectangular through hole 5 and a limiting block are arranged on the lower bottom plate, and a "U"-shaped opening through slot 4 is symmetrically arranged on the left plate and the right plate; the screw lift and the limiting frame are arranged in the pressing seat; the limiting frame is adapted to the pressing plate box; the screw lift is located below the limiting frame, and its movable end is slidably connected in the rectangular through hole 5. The pressing plate installation structure includes a push rod motor 3, a push rod motor 4 and a vacuum suction cup 2; the push rod motor 3 is arranged on the side plate of the pressing seat, and an "L"-shaped push plate is arranged on its movable end; a circular pin hole 2 is arranged on the "L"-shaped push plate; the push rod motor 4 is arranged on the "L"-shaped push plate; the vacuum suction cup 2 is arranged on the movable end of the push rod motor 4, and is slidably connected in the circular pin hole 2; the vacuum suction cup 1, the vacuum suction cup 2 and the compressor are connected through an electromagnetic valve.

[0019] Furthermore, the control part includes a control mechanism, a feedback mechanism and a PLC controller. The control mechanism includes a start switch, a fixed switch, a press switch and a pause switch. The feedback mechanism includes a plurality of distance sensor modules.

[0020] Furthermore, an electric lifting device 2 is added between the push rod motor 1 and the base.

[0021] Advantages compared to the prior art:

[0022] In the utility model, the following functions are realized through the overall arrangement of the main frame, the upper box part, the box body part, the connecting part, the pressing part and the control part:

[0023] Firstly, the detachable setting of the main frame and the box body greatly reduces the storage area occupied.

[0024] Secondly, the box body has a simple structure, convenient access and easy maintenance.

[0025] Thirdly, the box body is suitable for rapid batch transfer, with less interference between wiring harnesses, and convenient and quick use, thereby reducing production costs and improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a schematic diagram of the partial cross-sectional structure of the utility model from top view Figure 1 ;

[0027] Figure 2 This is a schematic diagram of the partial cross-sectional structure of the utility model from top view Figure 2 ;

[0028] Figure 3 This is a schematic diagram of a partial cross-sectional structure of the utility model;

[0029] Figure 4 This is a schematic diagram of a partially enlarged cross-sectional structure of the utility model;

[0030] Figure 5 This is a schematic diagram of the top view of the box body of the utility model;

[0031] Figure 6 The utility model system structure diagram Figure 1 ;

[0032] Figure 7 The utility model system structure diagram Figure 2 .

[0033] In the figure: 101. base, 102. pressing seat, 201. electric roller shaft 1, 202. electric roller shaft 2, 203. universal ball, 204. push rod motor 1, 301. rectangular container 2, 302. inner pad, 303. pressing plate, 401. electric lifting device 1, 402. connection box, 403. push rod motor 5, 404. push rod motor 2, 405. electric roller shaft 3, 406. pressing limit plate, 501. feeding box, 502. screw stepper motor, 503. movable carrier, 504. electric telescopic rod, 505. pressing plate box, 506. limit frame, 507. screw lift, 508. push rod motor 3, 509. push rod motor 4. DETAILED DESCRIPTION

[0034] Example 1, refer to the attached Figure 1-7 , an automatic pressing device for a wire harness storage box, comprising a main frame, an upper box part, a box body part, a connecting part, a pressing part and a control part.

[0035] The main frame includes a base 101, a press seat 102, a support column and a compressor.

[0036] The base 101 includes a rectangular hollow container.

[0037] A rectangular through hole is arranged on the upper bottom plate of the rectangular hollow container.

[0038] The support column is disposed on the lower bottom plate of the base 101 .

[0039] The pressing seat 102 is disposed on the upper bottom plate of the base 101 .

[0040] The press-fit seat 102 includes a rectangular container.

[0041] A U-shaped opening through groove is symmetrically arranged on the left side plate and the right side plate of the rectangular container.

[0042] Rectangular through holes two are symmetrically arranged on the front side plate of the rectangular container one.

[0043] A rectangular through hole three is arranged on the front side plate of the rectangular container one.

[0044] The compressor is disposed in the base 101 .

[0045] The upper box part includes an electric roller shaft 1 201 , an electric roller shaft 202 , a universal ball 203 and a push rod motor 1 204 .

[0046] The first electric roller shaft 201 and the second electric roller shaft 202 are equidistantly arranged on the base 101 and are distributed in an "L" shape.

[0047] The electric roller shaft 1 201 and the electric roller shaft 2 202 are perpendicular to each other.

[0048] The universal balls 203 are equidistantly arranged on the base 101 for connecting the electric roller shaft 1 201 and the electric roller shaft 2 202 .

[0049] The push rod motor 204 is arranged on the base 101 and is located on the left side of the universal ball 203 ; a strip push plate is arranged on the movable end of the push rod motor 204 .

[0050] The box body includes a rectangular container 301 , an inner pad 302 and a pressing plate 303 .

[0051] Two "U"-shaped opening through grooves are symmetrically arranged on the left and right plates of the second rectangular container 301.

[0052] The front side plate and the rear side plate of the second rectangular container 301 are symmetrically provided with a strip slide groove 1.

[0053] The inner pad 302 includes a rectangular connecting plate and an arc-shaped side plate; the arc-shaped side plates are arranged on both sides of the rectangular connecting plate; the outer diameter of the inner pad 302 is smaller than the inner diameter of the rectangular container 2 301 .

[0054] The pressing plate 303 is slidably connected in the strip-shaped sliding groove 1.

[0055] The connecting part comprises a rising mechanism and a fixed connecting plate mechanism.

[0056] The lifting mechanism includes an electric lifting device 401 and a connection box structure.

[0057] The electric lifting device 401 is disposed in the base 101 .

[0058] The connection box structure is arranged on the movable end of the electric lifting device 401.

[0059] The connection box structure includes a connection box 402, a push rod motor five 403, a push rod motor two 404 and an electric roller shaft three 405.

[0060] The connection box 402 includes a rectangular hollow container 2.

[0061] A rectangular through hole four and a circular pin hole one are arranged on the upper bottom plate of the rectangular hollow container two.

[0062] The push rod motor 5 403 is arranged in the connection box 402; and a limit pin is arranged on the movable end of the push rod motor 5 403.

[0063] The limiting pin is slidably connected in the circular pin hole 1.

[0064] The push rod motor 2 404 is disposed in the connection box 402 , and a mounting plate is disposed on the movable end of the push rod motor 2 404 .

[0065] The electric roller shaft three 405 is equidistantly arranged on the mounting plate; the electric roller shaft three 405 is slidably connected in the rectangular through hole four.

[0066] The fixed connecting plate mechanism includes a pressing limit plate 406, a connecting column and an "n"-shaped mounting frame.

[0067] The pressing limit plates 406 are fixedly connected by connecting columns.

[0068] The pressing limit plate 406 is disposed in the pressing seat 102 via an “n”-shaped mounting frame.

[0069] An “L”-shaped opening through slot is provided at the lower end of the pressing and limiting plate 406 , so that the lower end of the pressing and limiting plate 406 is matched with the inner diameter of the connection box 402 .

[0070] The pressing part includes an inner pad pressing mechanism and a pressing plate mounting mechanism.

[0071] The inner pad pressing mechanism comprises a feeding structure and a calling pressing structure.

[0072] The feeding structure 1 includes a feeding box 501, an "L"-shaped support plate and an electromagnet 1.

[0073] The loading box 501 includes a rectangular container 4; a U-shaped opening through slot 3 is arranged on the side plate of the rectangular container 4; and an iron sheet 1 is arranged on the bottom plate of the rectangular container 4.

[0074] The “L”-shaped support plate is disposed on the front side plate of the press-fit seat 102 .

[0075] The electromagnet one is arranged on the "L"-shaped supporting plate and is matched with the iron sheet one.

[0076] The pressing structure comprises a screw stepping motor 502, a movable carrier plate 503, an electric telescopic rod 504 and a vacuum suction cup.

[0077] The screw stepper motor 502 is arranged in the press-fit seat 102 through a mounting frame.

[0078] The movable carrier plate 503 is arranged in the press-fit seat 102 through a slide rod 1; the bottom surface of the movable carrier plate 503 is connected to the nut seat of the screw stepping motor 502 through a connecting piece.

[0079] The electric telescopic rod 504 is disposed on the lower bottom surface of the movable carrier plate 503 .

[0080] The vacuum suction cup 1 is arranged on the movable end of the electric telescopic rod 504 .

[0081] The connecting piece comprises a "C"-shaped connecting frame, a connecting sliding block, a second sliding rod and a reset spring.

[0082] The second slide bar is arranged on a "C"-shaped connecting frame.

[0083] The connecting slider is slidably connected to the sliding rod 2, and is connected to the “C”-shaped connecting frame via a return spring, so as to drive the movable carrier plate 503 .

[0084] The pressing plate installation mechanism comprises a feeding structure 2 and a pressing plate installation structure.

[0085] The second feeding structure includes a pressing plate box 505 , a limiting frame 506 and a screw lift 507 .

[0086] The platen box 505 includes a rectangular container three.

[0087] A rectangular through hole five and a limit block are arranged on the lower bottom plate of the rectangular container three; and a U-shaped open through groove four are symmetrically arranged on the left plate and the right plate of the rectangular container three.

[0088] The screw lift 507 and the limit frame 506 are arranged in the pressing seat 102 .

[0089] The limiting frame 506 is matched with the pressing plate box 505 .

[0090] The screw lift 507 is located below the limiting frame 506; the movable end of the screw lift 507 is slidably connected to the rectangular through hole five.

[0091] The pressure plate installation structure includes a push rod motor 3 508, a push rod motor 4 509 and a vacuum suction cup 2.

[0092] The push rod motor 3 508 is arranged on the side plate of the pressing seat 102; an "L"-shaped push plate is arranged on the movable end of the push rod motor 3 508.

[0093] A second circular pin hole is arranged on the "L"-shaped push plate.

[0094] Push rod motor 4 509 is arranged on the "L" shaped push plate.

[0095] The vacuum suction cup 2 is arranged on the movable end of the push rod motor 4 509; the vacuum suction cup 2 is slidably connected in the circular pin hole 2.

[0096] The vacuum suction cup 1, the vacuum suction cup 2 and the compressor are connected through a solenoid valve.

[0097] The control part includes control mechanism, feedback mechanism and PLC controller.

[0098] The control mechanism includes a start switch, a fixed switch, a press switch and a pause switch.

[0099] The start switch, the fixing switch, the pressing switch and the pause switch are arranged on the side plate of the feeding seat.

[0100] The feedback mechanism includes a distance sensor module 1 and a distance sensor module 2.

[0101] The distance sensor module 1 is equidistantly arranged on the push rod motor 1 204 , and is used to assist the PLC controller in detecting the position of the rectangular container 2 301 .

[0102] The distance sensor module 2 is arranged on the connection box structure to assist the PLC controller in detecting the position of the second rectangular container 301 .

[0103] The screw stepper motor described in the utility model comprises a servo motor, a ball screw pair and a nut seat; a screw transmission is performed between the servo motor and the ball screw pair; the ball screw pair comprises a combination of a ball screw, a ball nut, a rotating steel ball and a circulating part; and the nut seat is connected to the ball nut of the ball screw pair.

[0104] Working principle and usage:

[0105] The first step is pre-setting:

[0106] Press the start switch to perform a no-load test.

[0107] The inner pad 302 is stacked in the connection box 402 in order; the pressing plate 303 is stacked in the loading box 501 in order, and placed in the pressing seat 102. After that, the fixing switch is pressed, and the PLC controller outputs a signal to the electromagnet 1. The electromagnet 1 is started to complete the fixing of the connection box 402.

[0108] Place the rectangular container 2 301 containing the wire harness on the electric roller shaft 1 201 in order.

[0109] Step 2: Lamination:

[0110] Press the pressing switch, and the PLC controller outputs a signal to the electric roller shaft 201.

[0111] The electric roller shaft 1 201 is started, so that the rectangular container 2 301 reaches above the universal ball 203. The distance sensor module 1 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the push rod motor 1 204 and the electric roller shaft 2 202. The push rod motor 1 204 pushes the rectangular container 2 301 onto the electric roller shaft 2 202 in an orderly manner, and the electric roller shaft 2 202 is started.

[0112] When the rectangular container 2 301 reaches the connection box structure, the distance sensor module 2 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the electric lifting device 1 401, the push rod motor 5 403, and the push rod motor 2 404. The push rod motor 2 404 drives the electric roller shaft 3 405 to move downward, and the push rod motor 5 403 drives the limit pin to move upward to limit the rectangular container 2 301; the electric lifting device 1 401 delays and drives the connection box structure to move upward until the "L"-shaped opening slot at the lower end of the pressing limit plate 406 is located in the rectangular container 2 301.

[0113] The PLC controller delays the output signal to the screw stepping motor 502, the electric telescopic rod 504, and the vacuum suction cup 1.

[0114] The electric telescopic rod 504 on the movable carrier plate 503 is started, so that the vacuum suction cup 1 contacts the inner pad 302; the solenoid valve is started, the vacuum suction cup 1 grabs the inner pad 302, and the electric telescopic rod 504 drives the inner pad 302 to move upward; the screw stepper motor 502 drives the movable carrier plate 503 to move above the rectangular container 2 301; the electric telescopic rod 504 presses the inner pad 302 into the rectangular container 2 301.

[0115] The PLC controller outputs signals to the screw lift 507, the push rod motor three 508, the push rod motor four 509, and the vacuum suction cup two.

[0116] Push rod motor four 509 drives vacuum suction cup two to move downward, so that vacuum suction cup two contacts with pressure plate 303, the solenoid valve is started, vacuum suction cup two grabs pressure plate 303, push rod motor three 508 delays pushing pressure plate 303 into the slide groove of rectangular container two 301, the electric telescopic rod 504 is reset in order (first the left side, then the right side, and finally the middle), and the movable end of the screw lift 507 delays moving up a unit distance.

[0117] Finally, the electric lifting device 401 drives the connection box structure to reset, the push rod motor 404 drives the electric roller shaft 405 to move upward, the push rod motor 403 drives the limit pin to reset, the electric roller shaft 405 and the electric roller shaft 2 202 are started in order to transfer the rectangular container 2 301 out of the pressing seat 102 to facilitate subsequent transfer.

[0118] Embodiment 2, based on embodiment 1, an electric lifting device 2 is additionally provided between the push rod motor 1 204 and the base 101 .

Claims

1. An automatic pressing device for a wire harness storage box, characterized in that: The invention comprises a main frame, an upper box part, a box body part, a connection part, a pressing part and a control part; the main frame comprises a base (101), a pressing seat (102), a support and a compressor; the upper box part comprises an electric roller shaft (201), an electric roller shaft (202), a universal ball (203) and a push rod motor (204); the box body part comprises a rectangular container (301), an inner pad (302) and a pressing plate (303); the connection part comprises a rising mechanism and a fixed connecting plate mechanism; the rising mechanism comprises an electric lifting device (401) and a connecting box structure; the electric lifting device (401) is arranged in the base (101); the connecting box structure is arranged in the electric lifting device (401) and the connecting box structure is arranged in the electric lifting device (401). The movable end of the movable lifting device (401) includes a connection box (402), a push rod motor (5) (403), a push rod motor (2) (404) and an electric roller shaft (3) (405); the fixed connection plate mechanism includes a pressing limit plate (406), a connecting column and an "n"-shaped mounting frame; the pressing limit plates (406) are fixedly connected by the connecting column; the pressing limit plate (406) is arranged in the pressing seat (102) through the "n"-shaped mounting frame, and an "L"-shaped opening through groove is arranged at the lower end; the pressing part includes an inner pad pressing mechanism and a pressing plate mounting mechanism; the inner pad pressing mechanism includes a feeding structure (1) and a retrieval pressing structure; the pressing plate mounting mechanism includes a feeding structure (2) and a pressing plate mounting structure.

2. According to claim 1, a wire harness storage box automatic pressing device is characterized in that: The connection box (402) comprises a rectangular hollow container 2, on the upper bottom plate of which a rectangular through hole 4 and a circular pin hole 1 are arranged; a push rod motor 5 (403) is arranged in the connection box (402), and a limit pin is arranged on the movable end of the push rod motor; the limit pin is slidably connected in the circular pin hole 1; a push rod motor 2 (404) is arranged in the connection box (402), and a mounting plate is arranged on the movable end of the push rod motor; and a motorized roller shaft 3 (405) is arranged on the mounting plate.

3. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The base (101) comprises a rectangular hollow container, on the upper bottom plate of which a rectangular through hole is arranged; a support is arranged on the lower bottom plate of the base (101); a pressing seat (102) is arranged on the upper bottom plate of the base (101), comprising a rectangular container, on the left side plate and the right side plate of which a "U"-shaped opening through groove is arranged, and on the front side plate a second rectangular through hole and a third rectangular through hole are arranged.

4. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The first electric roller shaft (201) and the second electric roller shaft (202) are arranged on the base (101) and are distributed in an "L" shape; the first electric roller shaft (201) and the second electric roller shaft (202) are perpendicular to each other; the universal ball (203) is arranged on the base (101); the first push rod motor (204) is arranged on the base (101) and is located on the left side of the universal ball (203), and a strip push plate is arranged on the movable end thereof.

5. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The left and right sides of the rectangular container (301) are provided with two U-shaped opening grooves, and the front and rear sides are provided with one strip-shaped slide groove; the inner pad (302) comprises a rectangular connecting plate and an arc-shaped side plate; the arc-shaped side plate is provided on both sides of the rectangular connecting plate; and the pressing plate (303) is slidably connected in the strip-shaped slide groove.

6. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The feeding structure 1 comprises a loading box (501), an "L"-shaped support plate and an electromagnet 1; the loading box (501) comprises a rectangular container 4, a side plate of which is provided with a "U"-shaped opening through slot 3, and a bottom plate of which is provided with an iron sheet 1; the "L"-shaped support plate is arranged on the front side plate of the pressing seat (102); the electromagnet 1 is arranged on the "L"-shaped support plate and is adapted to the iron sheet 1.

7. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The pressing structure comprises a screw stepping motor (502), a movable carrier plate (503), an electric telescopic rod (504) and a vacuum suction cup; the screw stepping motor (502) is arranged in the pressing seat (102) through a mounting frame; the movable carrier plate (503) is arranged in the pressing seat (102) through a sliding rod, and its lower bottom surface is connected to the nut seat of the screw stepping motor (502); the electric telescopic rod (504) is arranged on the lower bottom surface of the movable carrier plate (503); and the vacuum suction cup is arranged on the movable end of the electric telescopic rod (504).

8. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The feeding structure 2 comprises a pressing plate box (505), a limiting frame (506) and a screw lift (507); the pressing plate box (505) comprises a rectangular container 3, a rectangular through hole 5 and a limiting block are arranged on the bottom plate thereof, and a U-shaped opening through groove 4 is arranged on the left plate and the right plate; the screw lift (507) and the limiting frame (506) are arranged in the pressing seat (102); the limiting frame (506) is adapted to the pressing plate box (505); the screw lift (507) is located below the limiting frame (506), and its movable end is slidably connected in the rectangular through hole 5.

9. The automatic pressing device for a wire harness storage box according to claim 1, characterized in that: The pressing plate installation structure comprises a push rod motor three (508), a push rod motor four (509) and a vacuum suction cup two; the push rod motor three (508) is arranged on the side plate of the pressing seat (102), and an "L"-shaped push plate is arranged on its movable end; a circular pin hole two is arranged on the "L"-shaped push plate; the push rod motor four (509) is arranged on the "L"-shaped push plate; and the vacuum suction cup two is arranged on the movable end of the push rod motor four (509).

10. The automatic pressing device for a wire harness storage box according to claim 5, characterized in that: The outer diameter of the inner pad (302) is smaller than the inner diameter of the second rectangular container (301).

Citation Information

Patent Citations

  • Integrated wire harness storage device

    CN210556735U