CN215587501U - Attenuation machine for staple steel wire - Google Patents

Attenuation machine for staple steel wire Download PDF

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Publication number
CN215587501U
CN215587501U CN202121351179.7U CN202121351179U CN215587501U CN 215587501 U CN215587501 U CN 215587501U CN 202121351179 U CN202121351179 U CN 202121351179U CN 215587501 U CN215587501 U CN 215587501U
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China
Prior art keywords
steel wire
motor
rotating
machine
drawbench
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CN202121351179.7U
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Chinese (zh)
Inventor
冯岚
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Shaoxing Baisheng Stationery Co ltd
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Shaoxing Baisheng Stationery Co ltd
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Priority to CN202121351179.7U priority Critical patent/CN215587501U/en
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Abstract

The utility model discloses a drawbench for staple steel wires, which comprises a drawbench body with a built-in cavity, a bracket arranged at one side of the drawbench body, a transmission piece erected on the drawbench body and a drawbench rotatably arranged in the drawbench body, wherein the top surface of the drawbench body is provided with a pressing rod in a swinging manner; a reset piece is fixed on the top surface of the fine drawing machine body; solved when the drawbench feed end steel wire piles up, multiunit steel wire jam feed end can appear, thereby follow-up needs personnel to carry out the rewinding with the steel wire, personnel are at the in-process to the steel wire rewinding, can consume the problem of personnel's a large amount of time, order about the depression bar through the pressing piece that sets up on the drawbench body and press down the steel wire, prevent that multiunit steel wire from entering into the feed end together in, save personnel's labour, order about the threaded rod through utilizing fifth motor simultaneously and drive the removal dish and remove, increase the effect of arranging of rolling dish to the steel wire rolling.

Description

Attenuation machine for staple steel wire
Technical Field
The utility model relates to the technical field of staple steel wire drawing equipment, in particular to a drawing machine for staple steel wires.
Background
A drawbench belongs to a metal wire drawing machine for processing staples in the metal product equipment industry, and is widely applied to the production and preprocessing treatment of metal products such as steel wires, rope making wires, prestressed steel wires, standard parts and the like, the existing drawbench generally transmits the steel wires into the drawbench by utilizing a feeding piece, when the steel wires enter the drawbench, the steel wires are drawn by utilizing the drawbench, but when the feeding piece transmits the steel wires into the drawbench, because the steel wires are wound on a winding disc, and when the steel wires are transmitted into the drawbench, a plurality of groups of steel wires on the winding disc enter the drawbench together, so that the steel wires at the feeding end in the drawbench are accumulated, when the steel wires at the feeding end of the drawbench are accumulated, a plurality of groups of steel wires block the feeding end, so that a subsequent worker needs to recool the steel wires, and the worker recoils in the recoils of the steel wires, it takes a lot of time for the personnel.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a staple steel wire attenuator, which solves the problems that when steel wires at a feed end of the attenuator are accumulated, a plurality of groups of steel wires are wound to block the feed end, so that a worker needs to rewind the steel wires subsequently, and a great amount of time is consumed by the worker in the rewinding process of the steel wires.
The technical purpose of the utility model is realized by the following technical scheme:
a drawbench for steel wires of staples comprises a drawbench body with a built-in cavity, a bracket which is arranged at one side of the drawbench body and can support the steel wires, a transmission piece which is erected on the drawbench body and is used for transmitting the steel wires on the bracket to enter the drawbench body, and a drawbench which is rotatably arranged in the drawbench body and is used for drawing workpieces,
a pressing rod with one end opposite to the steel wire on the bracket is arranged on the top surface of the fine drawing machine body in a swinging manner;
a reset piece is fixed on the top surface of the fine drawing machine body, one end of the reset piece is connected with the pressing rod, and the pressing rod can move downwards;
the piece that resets can order about the depression bar and press the steel wire on the support.
Preferably, the pressing rod is cylindrical, and the pressing rod is obliquely arranged on the top surface of the fine drawing machine body.
Preferably, the reset piece comprises a sliding block arranged on the fine drawing machine body in a sliding mode and a spring telescopic rod fixed on the top surface of the sliding block and connected with the pressing rod at one end, a lead screw in threaded fit with the sliding block is arranged in the fine drawing machine body in a rotating mode, a first motor connected with the lead screw is fixed in the fine drawing machine body, and an output shaft of the first motor can drive the sliding block to move when rotating.
Preferably, the transmission piece is including erectting on the attenuation machine body and the L type support frame that one end is located the support top and fixing on the attenuation machine body and be the rotation piece of relative setting with attenuation machine body feed end, be fixed with on the L type support frame and be the feed port of relative setting with the support on the steel wire, rotate and can order about the steel wire when rotating and enter into in the attenuation machine body feed end through the feed port.
Preferably, the rotating part comprises a stretching wheel rotatably arranged on the fine drawing machine body and a rotating wheel rotatably arranged on the fine drawing machine body and arranged opposite to the stretching wheel, a second motor connected with the rotating wheel is fixed on the fine drawing machine body, and an output shaft of the second motor can drive the rotating wheel to rotate when rotating.
As preferred, draw the fine part including rotatory setting in drawing fine machine body and be a plurality of swiveling wheels of relative setting and fix at the third motor that draws fine machine body in and be connected with the swiveling wheel, it is rotatory third motor output shaft is in order to make its drive swiveling wheel rotate, leave the gap that supplies the steel wire to get into between the swiveling wheel, swiveling wheel gap width is advanced squarely along the steel wire and is progressively reduced in proper order.
Preferably, the winding disc is vertically arranged in the cavity in a lifting mode, the moving disc is slidably arranged in the cavity, the top surface of the moving disc is rotatably connected with the winding disc, a fourth motor connected with the winding disc is fixed in the moving disc, the winding disc can be driven to rotate when the fourth motor output shaft rotates, a threaded rod in threaded fit with the moving disc is arranged in the cavity in a rotating mode, a fifth motor connected with the threaded rod is fixed in the cavity, and the threaded rod can be driven to rotate when the fifth motor output shaft rotates.
Preferably, the top surface of the fine drawing machine body is provided with a material taking port communicated with the cavity, and the material taking port is provided with a hinged door in a swinging mode.
The utility model has the beneficial effects that: compared with the prior art, the steel wire winding machine has the advantages that the pressing piece arranged on the fine drawing machine body drives the pressing rod to press the steel wires, so that the steel wires are guided and arranged, multiple groups of steel wires are prevented from entering the feeding end together to be blocked and stacked, the intertwining is avoided, the fine drawing processing of the steel wires is smoother, the labor force of personnel is saved, meanwhile, the fifth motor is used for driving the threaded rod to drive the movable disc to move, and the winding effect of the winding disc on the steel wires is improved.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment;
fig. 2 is a schematic view of an embodiment threaded rod.
Reference numerals: 1. a attenuator body; 2. a support; 3. a transport member; 4. a pull-out piece; 5. a pressing lever; 6. A reset member; 7. a slider; 8. a spring telescopic rod; 9. a lead screw; 10. a first motor; 11. an L-shaped support frame; 12. a rotating member; 13. a feed port; 14. a stretching wheel; 15. a rotating wheel; 16. a second motor; 17. A rotating wheel; 18. a third motor; 19. a winding disc; 20. a movable tray; 21. a fourth motor; 22. a threaded rod; 23. a fifth motor; 25. a hinged door.
Detailed Description
The following description is only a preferred embodiment of the present invention, and the protection scope is not limited to the embodiment, and any technical solution that falls under the idea of the present invention should fall within the protection scope of the present invention. It should also be noted that modifications and embellishments within the scope of the utility model may occur to those skilled in the art without departing from the principle of the utility model.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly on the other element or be indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or be indirectly connected to the other element.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
Referring to fig. 1 to 2, a staple steel wire attenuator comprises an attenuator body 1 with a built-in cavity, a support 2 arranged on one side of the attenuator body 1 and capable of supporting a steel wire, a transmission member 3 erected on the attenuator body 1 and used for transmitting the steel wire on the support 2 into the attenuator body 1, and an attenuator 4 rotatably arranged in the attenuator body 1 and used for attenuating a workpiece,
a pressing rod 5 with one end opposite to the steel wire on the bracket 2 is arranged on the top surface of the fine drawing machine body 1 in a swinging way;
a reset piece 6 with one end connected with the pressing rod 5 and used for the pressing rod 5 to move downwards is fixed on the top surface of the fine drawing machine body 1;
the reset piece 6 can drive the pressing rod 5 to press the steel wire on the bracket 2.
The pressing rod 5 is cylindrical, the pressing rod 5 is obliquely arranged on the top surface of the fine drawing machine body 1, and the pressing rod 5 is cylindrical, so that the friction force between a steel wire and the pressing rod 5 is reduced.
Reset 6 sets up sliding block 7 on the attenuation machine body 1 and fixes at sliding block 7 top surface and one end in the spring telescopic link 8 that press the depression bar 5 to be connected including sliding, 1 internal rotation of attenuation machine body is provided with the lead screw 9 with 7 screw-thread fit of sliding block, 1 internal fixation of attenuation machine body has the first motor 10 of being connected with lead screw 9, can order about sliding block 7 to remove when first motor 10 output shaft rotates, orders about sliding block 7 through utilizing first motor 10 to remove, orders about the height of spring telescopic link 8 auxiliary adjustment press the depression bar 5 through sliding block 7, and the personnel of being convenient for adjust the position of press the depression bar 5, exert decurrent power to the press the depression bar 5 through spring telescopic link 8 simultaneously, are convenient for press the depression bar 5 to press the steel wire, save personnel's labour.
Transmission piece 3 is including erectting on drawbench body 1 and one end is located the L type support frame 11 of support 2 top and fixing on drawbench body 1 and be the rotation piece 12 of relative setting with drawbench body 1 feed end, be fixed with on the L type support frame 11 and be the feed port 13 of relative setting with support 2 on the steel wire, rotate and can order about the steel wire when 12 rotate and enter into in the drawbench body 1 feed end through feed port 13, fix a position the steel wire through utilizing the feed port, enter into in the drawbench body 1 through utilizing rotation piece 12 drive steel wire, rational in infrastructure, save personnel's labour.
Rotate piece 12 including rotatory setting on the drawbench body 1 tensile wheel 14 and the rotatory setting on the drawbench body 1 and be relative rotation wheel 15 that sets up with tensile wheel 14, be fixed with the second motor 16 who is connected with rotation wheel 15 on the drawbench body 1, second motor 16 output shaft can order about rotation wheel 15 when rotating, orders about rotation wheel 15 through utilizing second motor 16 to rotate, makes rotation wheel 15 drive the steel wire and removes, saves personnel's labour.
Draw fine part 4 including the rotatory setting in drawing fine machine body 1 and be a plurality of swiveling wheels 17 of relative setting and fix the third motor 18 of drawing fine machine body 1 in and being connected with swiveling wheel 17, rotatory 18 output shafts of third motor are so that its drive swiveling wheel 17 rotates, leave the gap that supplies the steel wire to get into between the swiveling wheel 17, swiveling wheel 17 gap width is degressive in proper order along the steel wire square advance, orders about swiveling wheel 17 through utilizing third motor 18 to rotate, when making the steel wire pass through the gap between the swiveling wheel 17, the gap extrudees the steel wire, reaches the steel wire tapering, and is rational in infrastructure, sparingly personnel's labour.
The winding disc 19 is vertically arranged in the cavity in an ascending and descending mode, the moving disc 20 with the top surface rotationally connected with the winding disc 19 is arranged in the cavity in a sliding mode, the fourth motor 21 connected with the winding disc 19 is fixed in the moving disc 20, the winding disc 19 can be driven to rotate when the output shaft of the fourth motor 21 rotates, the threaded rod 22 in threaded fit with the moving disc 20 is arranged in the cavity in a rotating mode, the fifth motor 23 connected with the threaded rod 22 is fixed in the cavity, the threaded rod 22 can be driven to rotate when the output shaft of the fifth motor 23 rotates, the winding disc 19 is driven to rotate by utilizing the fourth motor 21, the winding disc 19 winds steel wires, and in the winding process of the steel wires, the fifth motor 23 is used for driving the threaded rod 22 to drive the moving disc 20 to drive the winding disc 19 to move, and the arrangement sequence of the steel wires in the winding disc 19 is increased.
Draw thin quick-witted body 1 top surface seted up with the communicating material mouth of taking of cavity, it is provided with hinged door 25 to take the material mouth to go up the swing, through opening hinged door 25, is collecting the steel wire on rolling dish 19 through taking the material mouth, and the personnel of being convenient for collect the steel wire, save personnel's labour.
In order to draw the steel wire, the steel wire enters the feeding port, the steel wire enters the drawing wheel 14 through the feeding port, when the steel wire enters the drawing wheel 14, the drawing wheel 14 draws the steel wire, after the steel wire is drawn, the steel wire enters the rotating wheel 15, the second motor 16 is started, the rotating wheel 15 is driven to rotate by the second motor 16, the rotating wheel 15 drives the steel wire to enter gaps of the rotating wheel 17 through the feeding end of the attenuator body 1, because the widths of the gaps of the rotating wheel 17 among the steel wires are gradually reduced, when the steel wire enters the rotating wheel 17, the third motor 18 is started, the steel wire is driven to move on the rotating wheel 17 by the third motor 18, the rotating wheel 17 extrudes the steel wire, after the steel wire is extruded, the steel wire becomes thin, and then the steel wire enters the winding disc 19, the fourth motor 21 is started, the winding disc 19 is driven to rotate by the fourth motor 21, the winding disc 19 is enabled to wind the steel wires, the fifth motor 23 is started in the winding process of the steel wires, the threaded rod 22 is driven to rotate by the fifth motor 23, the threaded rod 22 drives the moving disc 20 to assist in driving the winding disc 19 to move, and arrangement of the steel wires is achieved.
The above embodiments are illustrative of the present invention, and are not intended to limit the present invention, and any simple modifications of the present invention are within the scope of the present invention.

Claims (8)

1. A staple steel wire is with drawing thin machine, including the body of the drawing thin machine (1) with built-in cavity pocket, set up in one side of body of the drawing thin machine (1) and can carry on the support (2) to the steel wire, erect on the body of the drawing thin machine (1) and is used for transmitting the transmission piece (3) that the steel wire on the support (2) enters into the body of the drawing thin machine (1) and rotate and set up in the body of the drawing thin machine (1) and is used for drawing the thin piece (4) to the work piece, characterized by that, the top surface of the body of the drawing thin machine (1) swings and is equipped with a front end and located and is opposite to steel wire on the support (2) and is set up above and pressure-bearing on the steel wire coil (5);
a reset piece (6) with one end connected with the pressing rod (5) and used for the pressing rod (5) to move downwards is fixed on the top surface of the fine drawing machine body (1);
reset piece (6) can drive press lever (5) and follow the steel wire and be up-and-down reciprocating motion to press the steel wire on support (2).
2. The attenuator for staple steel wire according to claim 1, wherein the pressing rod (5) is cylindrical, and the pressing rod (5) is obliquely disposed on the top surface of the attenuator body.
3. The attenuation machine for the staple steel wire according to claim 1, characterized in that the reset member (6) comprises a sliding block (7) slidably disposed on the attenuation machine body and a spring telescopic rod (8) fixed on the top surface of the sliding block (7) and having one end slidably connected to the pressing rod (5), a lead screw (9) threadedly engaged with the sliding block (7) is rotatably disposed in the attenuation machine body (1), a first motor (10) connected to the lead screw (9) is fixed in the attenuation machine body (1), and the output shaft of the first motor (10) can drive the sliding block (7) to move when rotating.
4. The attenuation machine for the steel wire of the staple according to claim 1, wherein the transmission member (3) comprises an L-shaped support frame (11) erected on the attenuation machine body (1) and having one end positioned above the support (2), and a rotating member (12) fixed on the attenuation machine body (1) and arranged opposite to the feeding end of the attenuation machine body (1), wherein a feeding hole (13) arranged opposite to the steel wire on the support (2) is fixed on the L-shaped support frame (11), and the rotating member (12) can drive the steel wire to enter the feeding end of the attenuation machine body through the feeding hole (13) when rotating.
5. The staple wire attenuator according to claim 4, wherein the rotating member (12) comprises a tension wheel (14) rotatably disposed on the attenuator body and a rotating wheel (15) rotatably disposed on the attenuator body (1) and opposite to the tension wheel (14), the attenuator body (1) is fixed with a second motor (16) connected to the rotating wheel (15), and an output shaft of the second motor (16) can drive the rotating wheel (15) to rotate when rotating.
6. The staple wire attenuator according to claim 1, characterized in that the attenuator 4 comprises a plurality of rotating wheels 17 rotatably disposed in the attenuator body 1 and disposed oppositely, and a third motor 18 fixed in the attenuator body 1 and connected to the rotating wheels 17, wherein an output shaft of the third motor 18 is rotated to drive the rotating wheels 17 to rotate, a gap for the steel wire to enter is reserved between the rotating wheels 17, and the gap widths of the rotating wheels 17 decrease in sequence along the advancing square of the steel wire.
7. The wire reducing machine for the staple steel wires according to claim 1, wherein a winding disc (19) is vertically and vertically arranged in the cavity, a moving disc (20) with a top surface rotationally connected with the winding disc (19) is slidably arranged in the cavity, a fourth motor (21) connected with the winding disc (19) is fixed in the moving disc (20), an output shaft of the fourth motor (21) can drive the winding disc (19) to rotate when rotating, a threaded rod (22) in threaded fit with the moving disc (20) is rotatably arranged in the cavity, a fifth motor (23) connected with the threaded rod (22) is fixed in the cavity, and an output shaft of the fifth motor (23) can drive the threaded rod (22) to rotate when rotating.
8. The attenuation machine for the steel wire of the staple according to claim 1, characterized in that a material taking port communicated with the cavity is formed in the top surface of the attenuation machine body (1), and a hinged door (25) is arranged on the material taking port in a swinging mode.
CN202121351179.7U 2021-06-17 2021-06-17 Attenuation machine for staple steel wire Active CN215587501U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121351179.7U CN215587501U (en) 2021-06-17 2021-06-17 Attenuation machine for staple steel wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121351179.7U CN215587501U (en) 2021-06-17 2021-06-17 Attenuation machine for staple steel wire

Publications (1)

Publication Number Publication Date
CN215587501U true CN215587501U (en) 2022-01-21

Family

ID=79875472

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121351179.7U Active CN215587501U (en) 2021-06-17 2021-06-17 Attenuation machine for staple steel wire

Country Status (1)

Country Link
CN (1) CN215587501U (en)

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A Fine Drawing Machine for Staple Wire

Granted publication date: 20220121

Pledgee: Zhejiang Shaoxing Hengxin Rural Commercial Bank Co.,Ltd.

Pledgor: SHAOXING BAISHENG STATIONERY Co.,Ltd.

Registration number: Y2024330000643

PE01 Entry into force of the registration of the contract for pledge of patent right