CN210824696U - Traction mechanism for conductive foam production equipment - Google Patents

Traction mechanism for conductive foam production equipment Download PDF

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Publication number
CN210824696U
CN210824696U CN201921439581.3U CN201921439581U CN210824696U CN 210824696 U CN210824696 U CN 210824696U CN 201921439581 U CN201921439581 U CN 201921439581U CN 210824696 U CN210824696 U CN 210824696U
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fixing frame
roller
wall
fixing
lifting plate
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CN201921439581.3U
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Chinese (zh)
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王维玉
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Jiangsu Leizidun Material Technology Co ltd
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Jiangsu Leizidun Material Technology Co ltd
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Abstract

The utility model belongs to the technical field of conductive foam production, in particular to a traction mechanism for conductive foam production equipment, which comprises a workbench, a first fixing frame, a second fixing frame, a lifting plate and two motors, wherein the first fixing frame and the second fixing frame are symmetrically welded at two ends of the top of the workbench, the inner wall of the first fixing frame is rotationally connected with a first roller and a second roller which are symmetrically arranged, the top of the inner wall of the second fixing frame is rotationally connected with a third roller, and the bottom of the inner wall of the second fixing frame is slidably connected with the lifting plate; the cooperation through first cylinder and second cylinder is drawn the electrically conductive bubble cotton, prevents that the product from piling up the phenomenon at the in-process ejection of compact that pulls, and simple structure shortens the distance between squeeze roll and the third cylinder and forms the extrusion to the electrically conductive bubble cotton, makes the cotton atress of electrically conductive bubble, prevents that it is in disorder at the in-process that pulls, has also avoided the tensile risk that leads to the product to damage of product atress among the prior art.

Description

Traction mechanism for conductive foam production equipment
Technical Field
The utility model belongs to the technical field of the cotton production of electrically conductive bubble, concretely relates to drive mechanism for cotton production facility of electrically conductive bubble.
Background
The flame-retardant sponge is wrapped with conductive cloth, and after a series of treatments, the flame-retardant sponge has good surface conductivity, can be easily fixed on a device to be shielded by an adhesive tape, has different section shapes, installation methods, UL grades and shielding materials with shielding efficiency, and can be selected from aluminum foil cloth foam, conductive fiber cloth foam, gold-plated cloth foam, carbon-plated cloth foam and the like.
Chinese patent with publication number CN206254467U proposes a traction mechanism of a tractor for producing heat insulation strips, which can automatically realize the traction operation of heat insulation strips, time and labor are saved, and efficiency is improved, but in the patent, the product is clamped by a clamp plate, the clamp plate slides on a screw rod to pull the product, and the product is sent out from a forming device after being processed and formed and is in a motion state, and is easy to form and stack after being clamped by the clamp plate, and the sliding speed of the clamp plate is inconsistent with the discharging speed when sliding on the screw rod, so that the product is easy to be stretched, and the product quality is affected.
SUMMERY OF THE UTILITY MODEL
To solve the problems set forth in the background art described above. The utility model provides a cotton for production facility drive mechanism of electrically conductive bubble has and pulls and prevent in disorder characteristics to the product.
In order to achieve the above object, the utility model provides a following technical scheme: a traction mechanism for conductive foam production equipment comprises a workbench, a first fixing frame, a second fixing frame, a lifting plate and two motors, wherein the first fixing frame and the second fixing frame are symmetrically welded at the two ends of the top of the workbench, the inner wall of the first fixing frame is rotatably connected with a first roller and a second roller which are symmetrically arranged, the top of the inner wall of the second fixing frame is rotatably connected with a third roller, the bottom of the inner wall of the second fixing frame is slidably connected with the lifting plate, the two ends of the lifting plate are integrally formed with fixing plates, the lifting plate slides on the inner wall of the second fixing frame through the fixing plates, an extrusion roller is arranged between the two fixing plates, the extrusion roller is rotatably connected with the inner wall of the fixing plates, and the two motors are respectively fixed on the outer walls of the first fixing frame and the second fixing frame, output shafts are fixed at the output ends of the two motors, one of the output shafts penetrates through the outer wall of the first fixing frame and is fixedly connected with the first roller, the other output shaft penetrates through the outer wall of the second fixing frame and is fixedly connected with the third roller, and the motors are electrically connected with an external power supply.
Preferably, a traction passage is arranged between the first roller and the second roller.
Preferably, the second fixing frame is provided with a groove matched with the fixing plate.
Preferably, the outer walls of the two fixing plates are integrally formed with support lugs, and the fixing plates are slidably connected with the second fixing frame through the support lugs.
Preferably, a cylinder is fixed at the position, corresponding to the second fixing frame, of the bottom of the workbench, a telescopic rod is fixed at the output end of the cylinder, the telescopic rod penetrates through the workbench and is fixed at the bottom of the lifting plate, and the cylinder is pneumatically connected with an external air source.
Preferably, the inner wall of the groove is provided with a sliding groove matched with the support lug.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses the inner wall of well first mount rotates and is connected with symmetrical first cylinder and second cylinder, gets into behind product machine-shaping and pulls the passageway, and motor work makes the output shaft of fixing at its output rotate, drives simultaneously and fixes the first cylinder rotation at the output shaft, pulls the electrically conductive bubble cotton through the cooperation of first cylinder and second cylinder, prevents that the product ejection of compact from piling up the phenomenon at the traction in-process, simple structure, and it is convenient to use.
2. The utility model discloses well lifter plate passes through the fixed plate and slides the inner wall at the second mount, when using, the telescopic link at its output is stretched out in the drive of cylinder work, makes the lifter plate of fixing on the telescopic link carry out linear displacement simultaneously, and the lifter plate rises, shortens the distance between squeeze roll and the third cylinder, to the cotton extrusion that forms of electrically conductive bubble, makes the cotton atress of electrically conductive bubble, prevents that the electrically conductive bubble is cotton in disorder at the traction in-process, has also avoided the tensile risk that leads to the product damage of product atress among the prior art.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the present invention;
FIG. 3 is a schematic structural view of a lifting plate of the present invention;
fig. 4 is a schematic structural view of the middle lifting plate and the second fixing frame of the present invention.
In the figure: 1. a work table; 11. a cylinder; 2. a first fixing frame; 201. a traction channel; 21. a first drum; 22. a second drum; 3. a second fixing frame; 301. a groove; 302. a chute; 31. a third drum; 4. a lifting plate; 41. a fixing plate; 42. a squeeze roll; 43. supporting a lug; 5. a motor; 51. and an output shaft.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative labor belong to the protection scope of the present invention, in the present invention, for convenience of description, the description of the relative position relationship of each component is described according to the layout mode of the drawings in the specification, such as: the positional relationship of front, rear, upper, lower, left, right, etc. is determined in accordance with the specification layout direction.
Referring to fig. 1-4, the present invention provides the following technical solutions: a traction mechanism for conductive foam production equipment comprises a workbench 1, a first fixing frame 2, a second fixing frame 3, a lifting plate 4 and two motors 5, wherein the first fixing frame 2 and the second fixing frame 3 which are symmetrical are welded at two ends of the top of the workbench 1, the inner wall of the first fixing frame 2 is rotatably connected with a first roller 21 and a second roller 22 which are symmetrical, the top of the inner wall of the second fixing frame 3 is rotatably connected with a third roller 31, the bottom of the inner wall of the second fixing frame 3 is slidably connected with the lifting plate 4, two ends of the lifting plate 4 are respectively and integrally formed with a fixing plate 41, the lifting plate 4 slides on the inner wall of the second fixing frame 3 through the fixing plate 41, a squeezing roller 42 is arranged between the two fixing plates 41, the squeezing roller 42 is rotatably connected on the inner wall of the fixing plate 41, the two motors 5 are respectively fixed on the outer walls of the first fixing frame 2 and the second fixing frame 3, output ends of the, one of the output shafts 51 penetrates through the outer wall of the first fixing frame 2 to be fixedly connected with the first roller 21, the other output shaft 51 penetrates through the outer wall of the second fixing frame 3 to be fixedly connected with the third roller 31, and the motor 5 is electrically connected with an external power supply.
In this embodiment, the inner wall of the first fixing frame 2 is rotatably connected with a first roller 21 and a second roller 22 which are symmetrical, the top of the inner wall of the second fixing frame 3 is rotatably connected with a third roller 31, the product enters the traction channel 201 after being processed and formed, the motor 5 works to rotate the output shaft 51 fixed at the output end thereof, and simultaneously drives the first roller 21 fixed on the output shaft 51 to rotate, the conductive foam is dragged through the cooperation of the first roller 21 and the second roller 22, the product discharge accumulation phenomenon is prevented in the traction process, the structure is simple, the use is convenient, the bottom of the inner wall of the second fixing frame 3 is slidably connected with the lifting plate 4, the fixing plates 41 are integrally formed at both ends of the lifting plate 4, the lifting plate 4 slides on the inner wall of the second fixing frame 3 through the fixing plates 41, the squeezing roller 42 is arranged between the two fixing plates 41, the squeezing roller 42 is rotatably connected, when using, the telescopic link of fixing at its output is driven in the work of cylinder 11 stretches out, make simultaneously and fix lifter plate 4 on the telescopic link and carry out linear displacement, lifter plate 4 slides on second mount 3 through the cooperation of journal stirrup 43 and spout 302, be convenient for adjust the distance between squeeze roll 42 and the third cylinder 31, electrically conductive bubble is cotton to pass through between squeeze roll 42 and the third cylinder 31, squeeze roll 42 and third cylinder 31 form the extrusion to electrically conductive bubble, make the cotton atress of electrically conductive bubble, prevent that electrically conductive bubble is cotton in the in-process of pulling in disorder, the tensile risk that leads to the product to damage of product atress among the prior art has also been avoided.
In this embodiment, motor 5 work makes the output shaft 51 who fixes at its output rotate, drive the first cylinder 21 who fixes on output shaft 51 simultaneously and rotate, the cooperation through first cylinder 21 and second cylinder 22 is pull the electrically conductive bubble cotton, prevent product ejection of compact phenomenon of piling up at the in-process of pulling, cylinder 11 work drives the telescopic link of fixing at its output and stretches out, make simultaneously and fix lifter plate 4 on the telescopic link and carry out linear displacement, lifter plate 4 slides on second mount 3 through the cooperation of journal stirrup 43 with spout 302, be convenient for adjust the distance between squeeze roll 42 and third cylinder 31, motor 5's model is kVXN085-140, cylinder 11's model is MKA 32-20R.
Specifically, have between first cylinder 21 and the second cylinder 22 and draw passageway 201, the product processing gets into and draws passageway 201 after the shaping, draws the electrically conductive bubble cotton through the cooperation of first cylinder 21 with second cylinder 22, prevents to pull the in-process product ejection of compact and piles up the phenomenon.
Specifically, the second fixing frame 3 is provided with a groove 301 matched with the fixing plate 41, so that the lifting plate 4 can slide on the second fixing frame 3 conveniently.
Specifically, the outer walls of the two fixing plates 41 are integrally formed with the support lugs 43, the fixing plates 41 are slidably connected with the second fixing frame 3 through the support lugs 43, and the lifting plate 4 slides on the second fixing frame 3 through the cooperation of the support lugs 43 and the sliding grooves 302, so that the distance between the squeezing roller 42 and the third roller 31 can be conveniently adjusted.
Specifically, the cylinder 11 is fixed at the position corresponding to the second fixing frame 3 at the bottom of the workbench 1, the telescopic rod is fixed at the output end of the cylinder 11, the telescopic rod penetrates through the workbench 1 and is fixed at the bottom of the lifting plate 4, the cylinder 11 is pneumatically connected with an external air source, the telescopic rod fixed at the output end of the cylinder 11 is driven to extend when the cylinder 11 works, and meanwhile the lifting plate 4 fixed on the telescopic rod is enabled to perform linear displacement.
Specifically, the inner wall of the groove 301 is provided with a sliding groove 302 matched with the support lug 43, and the lifting plate 4 slides on the second fixing frame 3 through the matching of the support lug 43 and the sliding groove 302, so that the distance between the squeezing roller 42 and the third roller 31 can be conveniently adjusted.
The utility model discloses a theory of operation and use flow: after the utility model is installed, the device is used after being electrified and ventilated, the product enters a traction channel 201 after being processed and formed, the motor 5 works to rotate the output shaft 51 fixed at the output end thereof and simultaneously drives the first roller 21 fixed on the output shaft 51 to rotate, the conductive foam is dragged through the matching of the first roller 21 and the second roller 22, the product discharge accumulation phenomenon is prevented in the traction process, the structure is simple, the use is convenient, the cylinder 11 works to drive the telescopic rod fixed at the output end thereof to extend, simultaneously, the lifting plate 4 fixed on the telescopic rod carries out linear displacement, the lifting plate 4 slides on the second fixing frame 3 through the matching of the support lug 43 and the sliding groove 302, the distance between the squeeze roller 42 and the third roller 31 is convenient to adjust, the conductive foam passes through the space between the squeeze roller 42 and the third roller 31, the distance between the squeeze roller 42 and the third roller 31 is reduced to extrude the conductive foam, make the cotton atress of electrically conductive bubble, prevent that the electrically conductive bubble is cotton in traction process in disorder, motor 5 work makes the output shaft 51 who fixes at its output rotate, drives the third cylinder 31 of fixing on output shaft 51 simultaneously and rotates, pulls the transportation to the electrically conductive bubble cotton, has avoided the tensile risk that leads to the product to damage of product atress among the prior art.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a cotton for production facility drive mechanism of electrically conductive bubble, includes workstation (1), first mount (2), second mount (3), lifter plate (4) and two motors (5), its characterized in that: the top of the workbench (1) is welded with the first fixing frame (2) and the second fixing frame (3) in a symmetrical mode, the inner wall of the first fixing frame (2) is connected with the first roller (21) and the second roller (22) in a symmetrical mode in a rotating mode, the top of the inner wall of the second fixing frame (3) is connected with the third roller (31) in a rotating mode, the bottom of the inner wall of the second fixing frame (3) is connected with the lifting plate (4) in a sliding mode, fixing plates (41) are integrally formed at two ends of the lifting plate (4), the lifting plate (4) slides on the inner wall of the second fixing frame (3) through the fixing plates (41), squeezing rollers (42) are arranged between the two fixing plates (41), the squeezing rollers (42) are connected to the inner wall of the fixing plates (41) in a rotating mode, the motors (5) are fixed to the outer walls of the first fixing frame (2) and the second fixing frame (3) respectively, output shafts (51) are fixed to output ends of the two motors (5), one of the output shafts (51) penetrates through the outer wall of the first fixing frame (2) and is fixedly connected with the first roller (21), the other output shaft (51) penetrates through the outer wall of the second fixing frame (3) and is fixedly connected with the third roller (31), and the motors (5) are electrically connected with an external power supply.
2. The traction mechanism for the conductive foam production equipment according to claim 1, characterized in that: a traction channel (201) is arranged between the first roller (21) and the second roller (22).
3. The traction mechanism for the conductive foam production equipment according to claim 1, characterized in that: the second fixing frame (3) is provided with a groove (301) matched with the fixing plate (41).
4. The traction mechanism for the conductive foam production equipment according to claim 3, characterized in that: the outer wall of the two fixing plates (41) is integrally formed with a support lug (43), and the fixing plates (41) are connected with the second fixing frame (3) in a sliding mode through the support lugs (43).
5. The traction mechanism for the conductive foam production equipment according to claim 1, characterized in that: the air cylinder (11) is fixed at the position, corresponding to the second fixing frame (3), of the bottom of the workbench (1), the telescopic rod is fixed at the output end of the air cylinder (11) and penetrates through the workbench (1) to be fixed at the bottom of the lifting plate (4), and the air cylinder (11) is pneumatically connected with an external air source.
6. The traction mechanism for the conductive foam production equipment as claimed in claim 4, wherein the traction mechanism comprises: the inner wall of the groove (301) is provided with a sliding groove (302) matched with the support lug (43).
CN201921439581.3U 2019-09-02 2019-09-02 Traction mechanism for conductive foam production equipment Active CN210824696U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921439581.3U CN210824696U (en) 2019-09-02 2019-09-02 Traction mechanism for conductive foam production equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921439581.3U CN210824696U (en) 2019-09-02 2019-09-02 Traction mechanism for conductive foam production equipment

Publications (1)

Publication Number Publication Date
CN210824696U true CN210824696U (en) 2020-06-23

Family

ID=71278532

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921439581.3U Active CN210824696U (en) 2019-09-02 2019-09-02 Traction mechanism for conductive foam production equipment

Country Status (1)

Country Link
CN (1) CN210824696U (en)

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