CN117226795A - Wire hanging machine for new energy automobile wire harness production - Google Patents

Wire hanging machine for new energy automobile wire harness production Download PDF

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Publication number
CN117226795A
CN117226795A CN202311521279.3A CN202311521279A CN117226795A CN 117226795 A CN117226795 A CN 117226795A CN 202311521279 A CN202311521279 A CN 202311521279A CN 117226795 A CN117226795 A CN 117226795A
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CN
China
Prior art keywords
wire
hanging
wire hanging
telescopic rod
wire harness
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Granted
Application number
CN202311521279.3A
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Chinese (zh)
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CN117226795B (en
Inventor
张心祎
胡竣理
刘亮
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Changzhou Fengguo Golden Crocodile Cable Co ltd
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Changzhou Fengguo Golden Crocodile Cable Co ltd
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Application filed by Changzhou Fengguo Golden Crocodile Cable Co ltd filed Critical Changzhou Fengguo Golden Crocodile Cable Co ltd
Priority to CN202311521279.3A priority Critical patent/CN117226795B/en
Publication of CN117226795A publication Critical patent/CN117226795A/en
Application granted granted Critical
Publication of CN117226795B publication Critical patent/CN117226795B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The application belongs to the technical field of wire hanging machines, in particular to a wire hanging machine for producing a new energy automobile wire harness; comprising the following steps: the wire hanging frames are arranged in pairs, a plurality of groups of wire hanging frames are arranged in pairs, a support is fixedly arranged between the plurality of groups of wire hanging frames, and the support is used for keeping the stability of the plurality of groups of wire hanging frames; the line hanging machine for the production of the new energy automobile wire harness further comprises: an automatic lifting unit; according to the wire harness lifting device, the automatic lifting units are arranged on each wire hanging frame and comprise wire hanging hooks, the wire hanging hooks on each group of wire hanging frames are arranged correspondingly, the wire harness stretches across the wire hanging hooks corresponding to each group of wire hanging frames, and the automatic lifting units can lift the wire hanging hooks according to the needs, so that the wire harness is lifted; make the pencil hang to highly hanging wire frame, be difficult for disordered, and convenient operation, automatic lifting.

Description

Wire hanging machine for new energy automobile wire harness production
Technical Field
The application belongs to the technical field of wire hanging machines, and particularly relates to a wire hanging machine for producing a new energy automobile wire harness.
Background
The new energy automobile wire harness is an electric wire harness system applied to a new energy automobile; the new energy automobile wire harness is a system consisting of a series of wires, cables and connectors, and is used for connecting various electric and electronic equipment and transmitting power and signals;
when producing new energy automobile pencil, in order to convenient assembling and be difficult for making workshop chaotic, place new energy automobile pencil on the hanging rack generally, be convenient for the workman to take, traditional hanging rack is usually shorter, however new energy automobile pencil length is longer generally, utilizes short hanging rack still can lead to the messy condition of pencil, and uses high hanging rack then can lead to new energy automobile pencil hanging inconvenient, take inconvenient problem.
In view of the above, the present application solves the above technical problems by providing a wire hanging machine for producing a wire harness of a new energy automobile.
Disclosure of Invention
In order to make up for the defects of the prior art, the wire harness of the new energy automobile is hung on a wire hanging frame with higher height; the application provides a wire hanging machine for producing a new energy automobile wire harness.
The technical scheme adopted for solving the technical problems is as follows: wire hanging machine that new energy automobile pencil produced includes: the wire hanging frames are arranged in pairs, a plurality of groups of wire hanging frames are arranged in pairs, a support is fixedly arranged between the plurality of groups of wire hanging frames, and the support is used for keeping the stability of the plurality of groups of wire hanging frames; the line hanging machine for the production of the new energy automobile wire harness further comprises: the wire harness lifting device comprises an automatic lifting unit, wherein each wire hanging frame is provided with an automatic lifting unit, each automatic lifting unit comprises wire hanging hooks, the wire hanging hooks on each group of wire hanging frames are arranged in a mutually corresponding mode, a wire harness stretches across the wire hanging hooks corresponding to each group of wire hanging frames, and the automatic lifting unit can lift the wire hanging hooks according to requirements so as to lift the wire harness; the wire harness can be hung to a high hanging frame, disorder is not easy to occur, operation is convenient, and the wire harness is automatically lifted;
the application comprises a plurality of groups of wire hanging frames, each group of two wire hanging frames, and the wire harness of the new energy automobile is hung on the wire hanging hooks of each group of two wire hanging frames.
Preferably, the automatic lifting unit includes: a plurality of fixing grooves are vertically formed in each wire hanging frame, and each fixing groove is correspondingly provided with a wire hanging hook; the conveying frames are fixedly arranged on one surface, close to each other, of each group of wire hanging frames, and the side surfaces of the conveying frames are transparent; lifting blocks are arranged on each conveying frame and can move up and down along the conveying frames; and the sliding blocks are arranged in each fixing groove, can slide along the lifting blocks and can move up and down by the action of the lifting block belt.
Preferably, each sliding block is fixedly connected with a first telescopic rod, the other end of the first telescopic rod is fixedly connected with a first block, and the other side of the first block is fixedly connected with a wire hanging hook.
Preferably, a first horn is fixedly connected to the wire hanging frame at a position which is far away from one side of the conveying frame and corresponds to the sliding block in each fixed groove, and a second telescopic rod is fixedly arranged in each first horn; the end part of the rod body of the second telescopic rod is provided with a locking hole; a first hole is formed in the part of each sliding block corresponding to the second telescopic rod body, a first cavity is formed in each sliding block, a T-shaped rod is connected in the first cavity in a sliding mode, the T-shaped rod can enter the first hole and corresponds to the locking hole, a first spring is fixedly connected between the T-shaped rod and the end portion of the first cavity, and the T-shaped rod is made of a material capable of being adsorbed; the permanent magnet is fixedly connected with one end of the first telescopic rod body, which is positioned inside the first telescopic rod barrel.
Preferably, the section of the lifting block is trapezoid, and the sliding block is provided with a trapezoid groove matched with the lifting block;
the hanging wire frames are provided with a plurality of fixing grooves, and the positions of the fixing grooves on the hanging wire frames are consistent; namely, the wire hooks corresponding to each group of wire hanging frames are positioned at the same height, and the new energy automobile wire harness is arranged between the two wire hanging hooks at the same height; the lifting block can move up and down, and the driving mode can be screw-nut pair driving; the extension of the second telescopic rod can push the sliding block to the lifting block, and specifically comprises the following steps: the lifting block corresponds to a certain fixed slot, the second telescopic rod is extended, the second telescopic rod body is inserted into the first hole, the T-shaped rod is inserted into the locking hole to realize locking, and then the second telescopic rod is extended continuously to push the sliding block to move onto the lifting block and move to the end part of the lifting block far away from the fixed slot, and enough space is reserved for the wire harness to move up and down when the second telescopic rod is far away from the end part of the fixed slot; the first telescopic rod is shortened, the permanent magnet is close to the T-shaped rod, and the T-shaped rod is made of a material which can be adsorbed, such as iron; the T-shaped rod is attracted and separated from the locking hole, and then the second telescopic rod is shortened to be separated from the first hole, so that the movement of the lifting block is not interfered; when the lifting block drives the sliding block to ascend and needs to enter the fixed groove, the first telescopic rod stretches first, the T-shaped rod enters the first hole under the action of the first spring, the second telescopic rod stretches the rod body of the second telescopic rod into the first hole and can be locked, and then the second telescopic rod shortens and can pull the sliding block into the fixed groove; the section of the lifting block is trapezoid, and a trapezoid groove matched with the lifting block is formed in the sliding block, so that the sliding block cannot be separated from the lifting block when sliding relative to the lifting block; it should be noted that: when the sliding block is separated from the fixed groove and enters the fixed groove, the first telescopic rod always needs to perform telescopic operation, and the purpose is that the first telescopic rod cannot be interfered by other wire harnesses when the wire harnesses are transported up and down; when the wire hanging and the wire taking operation are performed, the lifting blocks can be accurately aligned with the corresponding fixing grooves;
when the wire hanging is carried out, the sliding block is firstly sent to the lifting block, the lifting block is used for conveying the sliding block to the bottom of the wire hanging frame through the wire hanging hooks, then the wire harness is placed on the wire hanging hooks on two sides to be put on, then the lifting block is lifted and conveyed to the highest layer, the sliding block is pulled to the fixing groove by the second telescopic rod, and the fixing groove is matched with the sliding block and the first telescopic rod to play a fixing role; and the wire hanging is completed by the same method, when the wire harness needs to be taken down, if the high-rise wire harness needs to be taken down, the second telescopic rod pushes the sliding block to the end part of the lifting block, then the first telescopic rod is shortened, so that the wire harness to be taken out avoids the interference of the lower-layer wire harness, and meanwhile, the T-shaped rod is separated from the locking hole, the second telescopic rod body is retracted, and then the lifting block is lowered to take the wire; this setting realizes hanging the pencil to the high string rack of height, has realized taking arbitrary layer pencil simultaneously.
Preferably, the end part of each wire hanging hook is rotatably connected with a baffle plate, and the connecting part is provided with a torsion spring.
Preferably, one end, close to the wire hanging hook, of the barrel of the first-number telescopic rod is fixedly connected with a first-number rope, a first-number channel is formed in the rod body of the first-number telescopic rod, the first-number block and the wire hanging hook, and the other end of the first-number rope penetrates through the first-number channel and is fixedly connected with the inside of the rotating part of the baffle;
when the torsion spring does not store force, the baffle is close to the wire hanging hook, namely the torsion spring has a movement trend of enabling the baffle to rotate towards the position close to the wire hanging hook; the other end of the first rope penetrates through the first channel and is fixedly connected with the inside of the rotating part of the baffle, the first rope is pulled to enable the baffle to rotate against the elastic force of the torsion spring, the first telescopic rod can be shortened during wire hanging operation, at the moment, the first telescopic rod body pulls the first rope to enable the baffle to rotate away from the wire hanging hook, a wire harness can be placed on the wire hanging hook, after hanging and lifting, the first telescopic rod stretches, the first rope is released, the baffle presses the wire harness under the action of the torsion spring, and then the wire harness limiting is achieved; similarly, when the wire harness is taken down, the first telescopic rod is shortened, and the baffle cancels the pressing action on the wire harness, so that the wire harness can be taken.
Preferably, one side, away from each other, of the wire hanging hooks corresponding to each group of wire hanging frames is fixedly connected with a third telescopic rod, and the end part of each third telescopic rod is fixedly connected with a supporting plate; a second cavity is formed between the first telescopic rod body and one end, close to the wire hanging hook, of the first telescopic rod body; the first channel is used for communicating the third telescopic rod cylinder with the second cavity and is filled with hydraulic oil;
when the first telescopic rod stretches, hydraulic oil in the second cavity enters the third telescopic rod to stretch the third telescopic rod, and the supporting plate is driven to prop up the side face of the wire harness, namely the width of the wire harness which is put on the two wire hanging frames is increased at the moment, and when the first telescopic rod is shortened, the width of the wire harness is reduced; when the wire hanging operation is performed, after the upper sliding block and the wire hanging hook enter the fixed groove, the first telescopic rod is extended, namely the width of the upper wire harness is increased at the moment, and then the lower wire harness is extended when being lifted (the first telescopic rod can be shortened when being lifted, and then the wire harness is extended after reaching the required height), so that the influence on the lifting of the lower wire harness is reduced due to the wire harness with the increased width of the upper layer, namely the obstruction is reduced; similarly, when the wire harness is taken down, the corresponding first telescopic rod is shortened, the corresponding wire harness is reduced in width, the contact between two sides of the wire harness and other wire harnesses is reduced, and then the obstruction is reduced, so that the wire harness is taken down more conveniently.
The beneficial effects of the application are as follows:
1. according to the wire hanging machine for the production of the wire harnesses of the new energy automobile, the automatic lifting units are arranged on each wire hanging frame and comprise the wire hanging hooks, the wire hanging hooks on each group of wire hanging frames are correspondingly arranged, the wire harnesses are arranged on the wire hanging hooks corresponding to each group of wire hanging frames in a crossing manner, and the automatic lifting units can lift the wire hanging hooks according to the needs, so that the wire harnesses are lifted; make the pencil hang to highly hanging wire frame, be difficult for disordered, and convenient operation, automatic lifting.
2. When the new energy automobile wire harness production used wire hanging machine is used for wire hanging, the sliding block is firstly sent to the lifting block, the lifting block is used for conveying the sliding block to the bottom of the wire hanging frame through the wire hanging hook, then the wire harness is placed on the wire hanging hooks on two sides to be lapped, the lifting block is lifted and conveyed to the highest layer, the sliding block is pulled to the fixing groove by the second telescopic rod, and the fixing groove is matched with the sliding block and the first number block to play a fixing role; and the wire hanging is completed by the same method, when the wire harness needs to be taken down, if the high-rise wire harness needs to be taken down, the second telescopic rod pushes the sliding block to the end part of the lifting block, then the first telescopic rod is shortened, so that the wire harness to be taken out avoids the interference of the lower-layer wire harness, and meanwhile, the T-shaped rod is separated from the locking hole, the second telescopic rod body is retracted, and then the lifting block is lowered to take the wire; this setting realizes hanging the pencil to the high string rack of height, has realized taking arbitrary layer pencil simultaneously.
Drawings
The application is further described below with reference to the accompanying drawings.
FIG. 1 is a perspective view of the present application;
FIG. 2 is a perspective view of a hanging wire rack of the present application;
FIG. 3 is a perspective view of the slider, the hook and the first telescoping rod of the present application;
FIG. 4 is a cross-sectional view of the slider, the wire hook and the first telescoping rod of the present application;
FIG. 5 is an enlarged view of a portion of FIG. 4 at A;
FIG. 6 is an enlarged view of a portion at B of FIG. 4;
FIG. 7 is a top cross-sectional view of the hanger of the present application at a fixed slot;
FIG. 8 is an enlarged view of a portion of FIG. 7 at C;
in the figure: 1. a wire hanging frame; 11. a bracket; 2. an automatic lifting unit; 21. a wire hanging hook; 22. a fixing groove; 3. a conveying frame; 31. lifting blocks; 4. a sliding block; 41. a first telescopic rod; 42. a first block; 5. a first horn; 51. a second telescopic rod; 52. a locking hole; 53. a first hole; 54. a first cavity; 55. a T-bar; 56. a first spring; 57. a permanent magnet; 6. a baffle; 7. a first rope; 71. a first channel; 8. a third telescopic rod; 81. a support plate; 82. and a second cavity.
Detailed Description
The application is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the application easy to understand.
As shown in fig. 1 and 2, the wire hanging machine for producing the new energy automobile wire harness of the application comprises: the wire hanging frames 1 are arranged in pairs, a plurality of groups of wire hanging frames 1 are arranged in pairs, a bracket 11 is fixedly arranged between the plurality of groups of wire hanging frames 1, and the bracket 11 is used for keeping the stability of the plurality of groups of wire hanging frames 1; the used hanging wire machine of new energy automobile pencil production still includes: the automatic lifting units 2 are arranged on each wire hanging frame 1, each automatic lifting unit 2 comprises wire hanging hooks 21, the wire hanging hooks 21 on each group of wire hanging frames 1 are arranged correspondingly, a wire harness spans the wire hanging hooks 21 corresponding to each group of wire hanging frames 1, and the automatic lifting units 2 can lift the wire hanging hooks 21 according to the requirement, so that the wire harness is lifted;
when the novel energy automobile wire harness is in work, in order to facilitate assembly and prevent workshop confusion, the novel energy automobile wire harness is usually placed on the wire hanging frame 1, so that workers can conveniently take the novel energy automobile wire harness, the traditional wire hanging frame 1 is usually shorter, the novel energy automobile wire harness is longer, the novel energy automobile wire harness is still messy due to the short wire hanging frame 1, and the novel energy automobile wire harness is inconvenient to hang and take due to the high wire hanging frame 1; the automatic lifting units 2 are arranged on each wire hanging frame 1, each automatic lifting unit 2 comprises wire hanging hooks 21, the wire hanging hooks 21 on each group of wire hanging frames 1 are correspondingly arranged, a wire harness spans across the wire hanging hooks 21 corresponding to each group of wire hanging frames 1, and the automatic lifting units 2 can lift the wire hanging hooks 21 according to the requirement, so that the wire harness is lifted; the wire harness can be hung to the wire hanging frame 1 with high height, disorder is not easy, operation is convenient, and the wire harness is automatically lifted;
the application comprises a plurality of groups of wire hanging frames 1, each group of two wire hanging frames 1, and a new energy automobile wire harness is arranged on a wire hanging hook 21 of each group of two wire hanging frames 1.
As a specific embodiment of the present application, as shown in fig. 2, 3, and 4, the automatic lifting unit 2 includes: a plurality of fixing grooves 22 are vertically formed in each wire hanging frame 1, and each fixing groove 22 is correspondingly provided with a wire hanging hook 21; the conveying frames 3 are fixedly arranged on one surface of each group of hanging wire frames 1, which is close to each other, and the side surfaces of the conveying frames 3 are transparent; a lifting block 31 is arranged on each conveying frame 3, and the lifting blocks 31 can move up and down along the conveying frames 3; the sliding blocks 4 are arranged in each fixed groove 22, and the sliding blocks 4 can slide along the lifting blocks 31 and can move up and down by the lifting blocks 31;
as shown in fig. 3 and 4, each sliding block 4 is fixedly connected with a first telescopic rod 41, the other end of the first telescopic rod 41 is fixedly connected with a first block 42, and the other side of the first block 42 is fixedly connected with a wire hanging hook 21;
as shown in fig. 3, 4, 7 and 8, a first horn 5 is fixedly connected to the side, away from the conveying frame 3, of the hanging wire frame 1 corresponding to the position of the sliding block 4 in each fixed groove 22, and a second telescopic rod 51 is fixedly arranged in each first horn 5; the rod body end of the second telescopic rod 51 is provided with a locking hole 52; a first hole 53 is formed in the part of each sliding block 4 corresponding to the rod body of the second telescopic rod 51, a first cavity 54 is formed in each sliding block 4, a T-shaped rod 55 is connected in the first cavity 54 in a sliding mode, the T-shaped rod 55 can enter the first hole 53 and corresponds to the locking hole 52, a first spring 56 is fixedly connected between the T-shaped rod 55 and the end portion of the first cavity 54, and the T-shaped rod 55 is made of a material capable of being adsorbed; one end of the rod body of the first telescopic rod 41, which is positioned in the cylinder body of the first telescopic rod 41, is fixedly connected with a permanent magnet 57;
as shown in fig. 3, the section of the lifting block 31 is trapezoid, and the sliding block 4 is provided with a trapezoid groove matched with the lifting block 31;
during operation, the wire hanging frame 1 is provided with a plurality of fixing grooves 22, and the positions of the fixing grooves 22 on the wire hanging frame 1 are consistent; namely, the wire hanging hooks 21 corresponding to each group of wire hanging frames 1 are positioned at the same height, and the new energy automobile wire harness is arranged between the two wire hanging hooks 21 at the same height; the lifting block 31 can move up and down, and the driving mode can be screw-nut pair driving; the second telescopic rod 51 is extended to push the sliding block 4 onto the lifting block 31, specifically: the lifting block 31 corresponds to a certain fixed groove 22 in position, the second telescopic rod 51 is extended, the rod body of the second telescopic rod 51 is inserted into the first hole 53, the T-shaped rod 55 is inserted into the locking hole 52 to realize locking, then the second telescopic rod 51 is extended continuously to push the sliding block 4 to move onto the lifting block 31 and move to the end part of the lifting block 31 far away from the fixed groove 22, and enough space is reserved for the wire harness to move up and down at the end part far away from the fixed groove 22; subsequently, the first telescopic rod 41 is shortened, the permanent magnet is close to the T-shaped rod 55, and the T-shaped rod 55 is made of an adsorbable material, such as iron; the T-shaped rod 55 is attracted and separated from the locking hole 52, and then the second telescopic rod 51 is shortened to be separated from the first hole 53, so that the movement of the lifting block 31 is not interfered; when the lifting block 31 drives the sliding block 4 to ascend and needs to enter the fixed groove 22, the first telescopic rod 41 is firstly extended, the T-shaped rod 55 enters the first hole 53 under the action of the first spring 56, at the moment, the second telescopic rod 51 is extended, the rod body of the second telescopic rod 51 enters the first hole 53 and can be locked, and then the second telescopic rod 51 is shortened and can pull the sliding block 4 into the fixed groove 22; the section of the lifting block 31 is trapezoid, and the sliding block 4 is provided with a trapezoid groove matched with the lifting block 31, so that the sliding block 4 cannot be separated from the lifting block 31 when sliding relative to the lifting block 31; it should be noted that: when the sliding block 4 is separated from the fixed groove 22 and enters the fixed groove 22, the first telescopic rod 41 always needs to perform telescopic operation, and the purpose is that the first telescopic rod is not interfered by other wire harnesses when the wire harnesses are transported up and down, and because the wire hangers 21 are uniformly distributed up and down and all hang the wire harnesses, when the upper layer wants to transport and take down the wire harnesses, the operation can avoid the wire harnesses hung on the lower layer, and further the descending operation can be performed; during the wire hanging and wire taking operation, the lifting blocks 31 can be accurately aligned with the corresponding fixing grooves 22;
when the wire hanging is carried out, the sliding block 4 is firstly sent to the lifting block 31, the lifting block 31 conveys the sliding block 4 to the bottom of the wire hanging frame 1 through the wire hanging hooks 21, then the wire harness is placed on the wire hanging hooks 21 on two sides to be lapped, then the lifting block 31 ascends and is conveyed to the highest layer, the sliding block 4 is pulled to the fixing groove 22 by the second telescopic rod 51, and the fixing groove 22 is matched with the sliding block 4 and the first block 42 to play a fixing role; and the wire hanging is completed by the same method, when the wire harness needs to be taken down, if the high-rise wire harness needs to be taken down, the second telescopic rod 51 pushes the sliding block 4 to the end part of the lifting block 31, then the first telescopic rod 41 is shortened, so that the wire harness to be taken down avoids the interference of the lower-rise wire harness, meanwhile, the T-shaped rod 55 is separated from the locking hole 52, the rod body of the second telescopic rod 51 is retracted, and then the lifting block 31 is lowered, so that the wire can be taken down; this setting realizes hanging the pencil to high string rack 1, has realized taking arbitrary layer pencil simultaneously.
As a specific embodiment of the present application, as shown in fig. 4 and 5, the end of each wire hook 21 is rotatably connected with a baffle 6 and the connection part is provided with a torsion spring;
as shown in fig. 4, 5 and 6, one end, close to the wire hanging hook 21, of the barrel body of the first telescopic rod 41 is fixedly connected with a first rope 7, a first channel 71 is formed in the rod body of the first telescopic rod 41, in the first block 42 and in the wire hanging hook 21, and the other end of the first rope 7 passes through the first channel 71 and is fixedly connected with the inside of the rotating part of the baffle 6;
when the torsion spring does not store force during operation, the baffle plate 6 is close to the wire hanging hook 21, namely the torsion spring has a movement tendency to enable the baffle plate 6 to rotate towards the wire hanging hook 21; the other end of the first rope 7 passes through the first channel 71 and is fixedly connected with the inside of the rotating part of the baffle 6, the first rope 7 is pulled to enable the baffle 6 to rotate against the elastic force of the torsion spring, the first telescopic rod 41 can be shortened during the wire hanging operation, at the moment, the rod body of the first telescopic rod 41 pulls the first rope 7 to enable the baffle 6 to rotate away from the wire hanging hook 21, a wire harness can be placed on the wire hanging hook 21, after the wire hanging is completed, the first telescopic rod 41 is stretched, the first rope 7 is released, and the baffle 6 presses the wire harness under the action of the torsion spring, so that the limit of the wire harness is realized; similarly, when the wire harness is taken down, the first telescopic rod 41 is shortened, and the damper 6 cancels the pressing of the wire harness so that the wire harness can be taken.
As a specific embodiment of the present application, as shown in fig. 4, 6 and 7, a third telescopic rod 8 is fixedly connected to a side, away from each other, of the wire hanging hooks 21 corresponding to each group of wire hanging frames 1, and a supporting plate 81 is fixedly connected to an end of each third telescopic rod 8; a second cavity 82 is formed between the rod body of the first telescopic rod 41 and one end, close to the wire hanging hook 21, of the barrel body of the first telescopic rod 41; the first channel 71 communicates the cylinder of the third telescopic rod 8 with the second cavity 82 and is filled with hydraulic oil;
when the first telescopic rod 41 is extended in operation, hydraulic oil in the second cavity 82 enters the third telescopic rod 8 to extend to drive the supporting plate 81 to support the side face of the wire harness, namely the width of the wire harness which is put on the two wire hanging frames 1 is increased at the moment, and when the first telescopic rod 41 is shortened in the same way, the width of the wire harness is reduced; when the upper sliding block 4 and the wire hanging hook 21 enter the fixed groove 22 in the wire hanging operation, the first telescopic rod 41 is extended, namely the width of the upper wire harness is increased at the moment, and then the lower wire harness is lifted (when lifted, the first telescopic rod 41 can be shortened and then extended after reaching the required height), so that the influence on the lifting of the lower wire harness is reduced due to the wire harness with the increased width of the upper wire harness, namely the obstruction is reduced; similarly, when the wire harness is taken down, the corresponding first telescopic rod 41 is shortened, the corresponding wire harness is reduced in width, the contact between two sides of the wire harness and other wire harnesses is reduced, and then the obstruction is reduced, so that the wire harness is taken down more conveniently.

Claims (8)

1. Wire hanging machine that new energy automobile pencil produced includes:
the wire hanging frames (1) are arranged in pairs, a plurality of groups of wire hanging frames (1) are arranged in pairs, a support (11) is fixedly arranged between the plurality of groups of wire hanging frames (1), and the support (11) is used for keeping the stability of the plurality of groups of wire hanging frames (1);
the method is characterized in that: the line hanging machine for the production of the new energy automobile wire harness further comprises:
automatic lifting unit (2), every all be provided with automatic lifting unit (2) on hanging wire frame (1), automatic lifting unit (2) are including hanging wire hook (21), every group hanging wire hook (21) on hanging wire frame (1) correspond each other and set up, and the pencil spanned and arranged in every group hanging wire hook (21) that hanging wire frame (1) corresponds, automatic lifting unit (2) can lifting hanging wire hook (21) as required, and then lifting pencil.
2. The wire hanging machine for producing the wire harness of the new energy automobile according to claim 1, wherein: the automatic lifting unit (2) comprises:
a plurality of fixing grooves (22) are vertically formed in each wire hanging frame (1), and each fixing groove (22) is correspondingly provided with a wire hanging hook (21);
the wire hanging frames (1) are fixedly arranged on one surface, close to each other, of each group of the conveying frames (3), and the side surfaces of the conveying frames (3) are transparent; a lifting block (31) is arranged on each conveying frame (3), and the lifting blocks (31) can move up and down along the conveying frames (3);
the sliding blocks (4) are arranged in each fixing groove (22), and the sliding blocks (4) can slide along the lifting blocks (31) and can move up and down by the lifting blocks (31) in a belt action mode.
3. The wire hanging machine for producing the wire harness of the new energy automobile according to claim 2, wherein: every sliding block (4) fixedly connected with a number one telescopic link (41), the other end of a number one telescopic link (41) is fixedly connected with a number one block (42), the opposite side of a number one block (42) is fixedly connected with a wire hanging hook (21).
4. The wire hanging machine for producing the wire harness of the new energy automobile according to claim 3, wherein: a first number barrel (5) is fixedly connected to the position, away from one side of the conveying frame (3), of the wire hanging frame (1) and corresponding to the sliding block (4) in each fixing groove (22), and a second number telescopic rod (51) is fixedly arranged in each first number barrel (5); a locking hole (52) is formed in the end part of the rod body of the second telescopic rod (51); a first hole (53) is formed in the position, corresponding to the rod body of the second telescopic rod (51), of each sliding block (4), a first cavity (54) is formed in each sliding block (4), a T-shaped rod (55) is connected in the first cavity (54) in a sliding mode, the T-shaped rod (55) can enter the first hole (53) and corresponds to the locking hole (52), a first spring (56) is fixedly connected between the T-shaped rod (55) and the end portion of the first cavity (54), and the T-shaped rod (55) is made of a material capable of being adsorbed; one end of the rod body of the first telescopic rod (41) positioned inside the cylinder body of the first telescopic rod (41) is fixedly connected with a permanent magnet (57).
5. The wire hanging machine for producing the new energy automobile wire harness according to claim 4, wherein: the section of the lifting block (31) is trapezoid, and the sliding block (4) is provided with a trapezoid groove matched with the lifting block (31).
6. The wire hanging machine for producing the new energy automobile wire harness according to claim 5, wherein: the end part of each wire hanging hook (21) is rotatably connected with a baffle plate (6), and a torsion spring is arranged at the connecting part.
7. The wire hanging machine for producing the new energy automobile wire harness according to claim 6, wherein: one end, close to a wire hanging hook (21), of the barrel inside of the first telescopic rod (41) is fixedly connected with a first rope (7), a first channel (71) is formed inside a rod body of the first telescopic rod (41), inside a first block (42) and inside the wire hanging hook (21), and the other end of the first rope (7) penetrates through the first channel (71) and is fixedly connected with the inside of a rotating part of the baffle plate (6).
8. The wire hanging machine for producing the wire harness of the new energy automobile according to claim 7, wherein: one side, away from each other, of the wire hanging hooks (21) corresponding to each group of wire hanging frames (1) is fixedly connected with a third telescopic rod (8), and the end part of each third telescopic rod (8) is fixedly connected with a supporting plate (81); a second cavity (82) is formed between the rod body of the first telescopic rod (41) and one end, close to the wire hanging hook (21), inside the cylinder body of the first telescopic rod (41); the first channel (71) is used for communicating the cylinder body of the third telescopic rod (8) with the second cavity (82) and is filled with hydraulic oil.
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