CN222020397U - A self-replaceable ceramic wire-passing device for processing moisture-proof cables - Google Patents

A self-replaceable ceramic wire-passing device for processing moisture-proof cables Download PDF

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Publication number
CN222020397U
CN222020397U CN202323492118.4U CN202323492118U CN222020397U CN 222020397 U CN222020397 U CN 222020397U CN 202323492118 U CN202323492118 U CN 202323492118U CN 222020397 U CN222020397 U CN 222020397U
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China
Prior art keywords
guide groove
rod
rotating support
ceramic wire
support rod
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CN202323492118.4U
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Chinese (zh)
Inventor
朱正斌
吴敏
戴明
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Guizhou Qianyuan Cable Co ltd
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Guizhou Qianyuan Cable Co ltd
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Priority to CN202323492118.4U priority Critical patent/CN222020397U/en
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Abstract

The utility model discloses a self-replacement ceramic wire passing device for processing a moistureproof cable, belonging to the technical field of auxiliary devices for cable production; the wire drawing machine comprises an upright post arranged between the wire drawing machine and the winding machine; a cantilever rod is arranged on the upright post; a support backboard is arranged at the extending end of the cantilever rod; the front side end face and the rear side end face of the support backboard are respectively provided with a rotating support rod and a motor; the motor can drive the rotating support rod to rotate on a vertical plane; the side surfaces of the upper end and the lower end of the rotating support rod are respectively provided with a first guide groove; the ceramic wire passing plate is movably arranged on the rotating support rod through a first guide groove; the upper top surface of the cantilever rod is provided with a second guide groove; the second guide groove and the first guide groove are positioned on the same plane; the top of the cantilever rod is also provided with an electric control push rod which can stretch and retract along the length direction of the cantilever rod; the utility model effectively solves the problems of low manual operation efficiency and increased labor cost of the current device which is lack of automatic and quick replacement of the ceramic wire passing board.

Description

Self-replacement ceramic wire passing device for processing dampproof cable
Technical Field
The utility model relates to the technical field of auxiliary devices for cable production, in particular to a self-replacement ceramic wire passing device for processing a moistureproof cable.
Background
The copper wire processed by the wire drawing machine is required to be wound into a copper wire coil and then transferred to other processing equipment; the copper wire is inconvenient to use a roller as a pressure bearing piece due to the metal characteristic of the copper wire, so that ceramic parts are mostly used as devices for changing the moving direction of the copper wire after the copper wire is pulled from a wire drawing machine, and the ceramic parts also need to be replaced after being used for a certain time; most of the current ceramic parts are arranged on a cantilever structure, and when the ceramic parts are replaced, the ceramic parts are required to be stopped firstly and the previous ceramic plate is detached for installation, so that a certain stop cost is increased for the whole production; thus, a device capable of automatically and rapidly replacing ceramic wire passing boards is currently required.
Disclosure of utility model
The technical problems to be solved by the utility model are as follows: the utility model provides a processing dampproofing cable's from change formula pottery device of passing a line to solve and lack at present and to be able to change ceramic wire board device fast automatically, the problem of manual operation inefficiency and increase human cost.
In order to solve the problems, the utility model provides the following technical scheme:
A self-replacing ceramic wire passing device for processing a moistureproof cable; the wire drawing machine comprises an upright post arranged between the wire drawing machine and the winding machine; a cantilever rod is arranged on the upright post; a support backboard is arranged at the extending end of the cantilever rod; the front side end face and the rear side end face of the support backboard are respectively provided with a rotating support rod and a motor; the output end of the motor is connected to the middle part of the rotating support rod, and the motor can drive the rotating support rod to rotate on a vertical plane; the side surfaces of the upper end and the lower end of the rotating support rod are respectively provided with a first guide groove; the ceramic wire passing plate is movably arranged on the rotating support rod through a first guide groove; the upper top surface of the cantilever rod is provided with a second guide groove; the second guide groove and the first guide groove are positioned on the same plane; the top of the cantilever rod is also provided with an electric control push rod which can stretch and retract along the length direction of the cantilever rod.
Preferably, the support backboard is an L-shaped board structure; the vertical plate of the support backboard is arranged in the middle of the end face of the cantilever rod; the motor is arranged at the included angle position of the L-shaped plate, and the output end of the motor penetrates out of the L-shaped plate and is connected to the rotating support rod; the cantilever rod and the support backboard are of an integrated structure which are fixedly connected.
Preferably, the rotating support rod is of a structure with symmetrical left and right ends; the opposite end side surfaces of the rotating support rod and the cantilever rod are of matched arc-shaped curved surface structures.
Preferably, the first guide groove is of a through groove structure; the shape of the cross section of the inner cavity of the first guide groove is reverse T-shaped; a positioning groove is further formed in the first guide groove at the inner bottom side close to the port at one side.
Preferably, the front side of the second guide groove, which is close to the electric control push rod, is provided with a countersunk hole for placing the bottom of the ceramic wire passing plate, the middle part of the second guide groove is provided with a variable-diameter transition groove, and the rear side of the second guide groove is provided with an inverted T-shaped structure which is identical to the structure of the first guide groove.
Preferably, the ceramic wire passing plate comprises a step-shaped sliding block with the same shape as the first guide groove; a flat plate is arranged at the top of the sliding block; the other side of the flat plate is provided with a plurality of positioning grooves, and ceramic chucks with the same specification are arranged on the positioning grooves.
The utility model has the beneficial effects that:
The utility model designs a device capable of automatically replacing a ceramic wire passing plate, which is characterized in that a motor and a rotating rod driven by the motor are additionally arranged on an original cantilever rod, and a guide groove is arranged at a corresponding position of the rotating rod for limiting the ceramic wire passing plate; meanwhile, the push rod is arranged on the cantilever rod so as to push the unused ceramic wire passing plate to a designated position, and then the position of the new ceramic wire passing plate and the position of the ceramic wire passing plate to be replaced can be converted through the rotation of the rotary rod.
Drawings
FIG. 1 is a schematic view of the structure of the present utility model in an embodiment;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic three-dimensional view of the apparatus of FIG. 1;
FIG. 4 is an exploded view of the device of FIG. 3;
fig. 5 is a schematic structural view of the rotating strut and the ceramic wire passing plate in the present embodiment;
Reference numerals illustrate: 1. the device comprises an upright post, 2, a cantilever rod, 3, a supporting backboard, 4, a rotating support rod, 5, a motor, 6, a ceramic wire passing board, 7 and an electric control push rod.
Detailed Description
The utility model will be further described with reference to the accompanying drawings and specific examples:
Examples:
Referring to fig. 1, the present embodiment provides a self-replacing ceramic wire passing device for processing moisture-proof cables; the wire drawing machine comprises an upright post 1 arranged between a wire drawing machine and a winding machine; a cantilever rod 2 is arranged on the upright post 1; a support backboard 3 is arranged on the extending end of the cantilever rod 2; the front side end face and the rear side end face of the support backboard 3 are respectively provided with a rotating support rod 4 and a motor 5; the output end of the motor 5 is connected to the middle part of the rotating support rod 4, and the motor 5 can drive the rotating support rod 4 to rotate on a vertical plane; the side surfaces of the upper end and the lower end of the rotating support rod 4 are respectively provided with a first guide groove 4A; the ceramic wire passing plate 6 is movably arranged on the rotating support rod 4 through a first guide groove 4A; a second guide groove 2A is formed in the upper top surface of the cantilever rod 2; the second guide groove 2A and the first guide groove 4A are positioned on the same plane; an electric control push rod 7 which can stretch and retract along the length direction is also arranged on the top of the cantilever rod 2. The motor 5 and the electric control push rod 7 in the embodiment are powered by an external power supply. In addition, in the present embodiment, in order to facilitate recovery of the consumed ceramic wire passing plate, it is conceivable to provide a collecting vessel at the lower side of the projecting end of the rotating strut 4.
The support backboard 3 is of an L-shaped plate structure; the vertical plate of the support backboard 3 is arranged in the middle of the end face of the cantilever rod 2; the motor 5 is arranged at the included angle position of the L-shaped plate, and the output end of the motor 5 penetrates out of the L-shaped plate and is connected to the rotating support rod 4; the cantilever rod 2 and the support backboard 3 are of an integrated structure which are fixedly connected.
The rotating support rod 4 has a structure with symmetrical left and right ends; the opposite end sides of the rotating support rod 4 and the cantilever rod 2 are of matched arc-shaped curved surface structures.
The first guide groove 4A is of a through groove structure; the shape of the cross section of the inner cavity of the first guide groove is reverse T-shaped; a positioning groove 4B is also provided in the first guide groove 4A near the inner bottom side of the one-side port.
The front side of the second guide groove 2A, which is close to the electric control push rod 7, is provided with a countersunk hole for placing the bottom of the ceramic wire passing plate, the middle part of the second guide groove is provided with a variable-diameter transition groove, and the rear side of the second guide groove is provided with an inverted T-shaped structure which is identical to the structure of the first guide groove 4A.
The ceramic wire passing plate 6 comprises a step-shaped sliding block with the same shape as the first guide groove 4A; a flat plate is arranged at the top of the sliding block; the other side of the flat plate is provided with a plurality of positioning grooves, and ceramic chucks with the same specification are arranged on the positioning grooves.
When the device disclosed by the embodiment is used for replacing the ceramic wire passing plate, a new ceramic wire passing plate is only required to be placed at the front end of the second guide groove; after the copper wire is taken down from the current ceramic wire passing plate, the electric control push rod pushes the new ceramic wire passing plate to the position from the positioning groove along the first guide groove at the upper top of the rotating support rod, and the previous ceramic wire passing plate is pushed away from the rotating support rod at the moment; after the electric control push rod is reset, the motor controls the rotating support rod to rotate 180 degrees, and the new ceramic wire passing plate replaces the position of the ceramic wire passing plate to be replaced, which is positioned at the lower side of the rotating support rod, to work; and the ceramic wire passing plate to be replaced is rotated to the upper side edge of the rotating support rod to wait to be pushed out by the next new ceramic wire passing plate.

Claims (6)

1. A self-changing ceramic wire passing device for processing moisture-proof cables comprises an upright post (1) arranged between a wire drawing machine and a winding machine; a cantilever rod (2) is arranged on the upright post (1); the method is characterized in that: a supporting backboard (3) is arranged at the extending end of the cantilever rod (2); the front side end face and the rear side end face of the support backboard (3) are respectively provided with a rotating support rod (4) and a motor (5); the output end of the motor (5) is connected to the middle part of the rotating support rod (4), and the motor (5) can drive the rotating support rod (4) to rotate on a vertical plane; the side surfaces of the upper end and the lower end of the rotating support rod (4) are respectively provided with a first guide groove (4A); the ceramic wire passing plate (6) is movably arranged on the rotating support rod (4) through a first guide groove (4A); the upper top surface of the cantilever rod (2) is provided with a second guide groove (2A); the second guide groove (2A) and the first guide groove (4A) are positioned on the same plane; the top of the cantilever rod (2) is also provided with an electric control push rod (7) which can stretch and retract along the length direction.
2. A self-replacing ceramic wire bonding apparatus for processing moisture resistant cable according to claim 1, wherein: the support backboard (3) is of an L-shaped plate structure; the vertical plate of the support backboard (3) is arranged in the middle of the end face of the cantilever rod (2); the motor (5) is arranged at the included angle position of the L-shaped plate, and the output end of the motor (5) penetrates out of the L-shaped plate and is connected to the rotating support rod (4); the cantilever rod (2) and the support backboard (3) are of an integrated structure which are fixedly connected.
3. A self-replacing ceramic wire bonding apparatus for processing moisture resistant cable according to claim 1, wherein: the rotating support rod (4) is of a structure with symmetrical left and right ends; the opposite end side surfaces of the rotating support rod (4) and the cantilever rod (2) are of matched arc-shaped curved surface structures.
4. A self-replacing ceramic wire bonding apparatus for processing moisture resistant cable according to claim 1, wherein: the first guide groove (4A) is of a through groove structure; the shape of the cross section of the inner cavity of the first guide groove is reverse T-shaped; a positioning groove (4B) is further arranged on the inner bottom side of the first guide groove (4A) close to the port on one side.
5. A self-replacing ceramic wire bonding apparatus for processing moisture resistant cable according to claim 1, wherein: the front side of the second guide groove (2A) close to the electric control push rod (7) is a countersunk hole for placing the bottom of the ceramic wire passing plate, the middle part of the second guide groove is a transition groove with variable diameter, and the rear side of the second guide groove is an inverted T-shaped structure identical to the structure of the first guide groove (4A).
6. A self-replacing ceramic wire bonding apparatus for processing moisture resistant cable according to claim 1, wherein: the ceramic wire passing plate (6) comprises a step-shaped sliding block with the same shape as the first guide groove (4A); a flat plate is arranged at the top of the sliding block; the other side of the flat plate is provided with a plurality of positioning grooves, and ceramic chucks with the same specification are arranged on the positioning grooves.
CN202323492118.4U 2023-12-21 2023-12-21 A self-replaceable ceramic wire-passing device for processing moisture-proof cables Active CN222020397U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323492118.4U CN222020397U (en) 2023-12-21 2023-12-21 A self-replaceable ceramic wire-passing device for processing moisture-proof cables

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323492118.4U CN222020397U (en) 2023-12-21 2023-12-21 A self-replaceable ceramic wire-passing device for processing moisture-proof cables

Publications (1)

Publication Number Publication Date
CN222020397U true CN222020397U (en) 2024-11-19

Family

ID=93434761

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323492118.4U Active CN222020397U (en) 2023-12-21 2023-12-21 A self-replaceable ceramic wire-passing device for processing moisture-proof cables

Country Status (1)

Country Link
CN (1) CN222020397U (en)

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