CN218436331U - Die cutting device for single-layer conductive cloth - Google Patents

Die cutting device for single-layer conductive cloth Download PDF

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Publication number
CN218436331U
CN218436331U CN202222616879.5U CN202222616879U CN218436331U CN 218436331 U CN218436331 U CN 218436331U CN 202222616879 U CN202222616879 U CN 202222616879U CN 218436331 U CN218436331 U CN 218436331U
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China
Prior art keywords
processing platform
die cutting
cutting device
outside
lead screw
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CN202222616879.5U
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Chinese (zh)
Inventor
智茂升
赵雅静
王云飞
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Tianjin Nixing Electronics Co ltd
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Tianjin Nixing Electronics Co ltd
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Priority to CN202222616879.5U priority Critical patent/CN218436331U/en
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Abstract

The utility model relates to an electrically conductive auxiliary device field of processing of cloth is used to individual layer, and discloses a cutting device of electrically conductive cloth of individual layer, and processing platform bottom fixed surface installs well hollow frame, and the inboard middle-end of well hollow frame rotates installs two-way lead screw, and the activity sleeve has been cup jointed in the equal activity in two-way lead screw outside both ends, and the equal fixed mounting in every activity sleeve outside top surface has the transmission piece, and the equal slidable mounting in processing platform top both ends surface has the sliding plate. The utility model discloses a servo motor's drive and drive two-way lead screw and rotate the back thereupon, make it can drive the movable sleeve that is located its both sides when rotating and synchronous horizontally in cavity frame inside removal thereupon, and then can be automatic and synchronous carry out the interval regulation to two sets of sliding plates and support the jam, and then reduce the operator and install required labour to the cross cutting mould and consume simultaneously, avoid the cross cutting mould to receive the unilateral when installing and move and take place the displacement, influence subsequent extrusion cross cutting quality.

Description

Die cutting device for single-layer conductive cloth
Technical Field
The utility model is suitable for an electrically conductive auxiliary device field for cloth processing of individual layer, in particular to electrically conductive cutting device of cloth of individual layer.
Background
At present, a single-layer conductive fabric is made of fiber fabric as a base material, and is subjected to pre-treatment and then is subjected to metal plating to have metal characteristics, so that the conductive fabric becomes conductive fiber fabric.
At present when carrying out the cross cutting use to the electrically conductive cloth of individual layer, need place the cross cutting mould in cross cutting platform surface in advance, carry out extrusion processing to electrically conductive cloth afterwards and handle, and when placing the fixed to the mould of unidimensional not, need the manual limit structure who is located the machine surface of operator to adjust, and can't accomplish the both sides stop gear in the manual adjustment process and adjust the processing in step, very easily lead to the mould to receive the power of supporting of unilateral and take place the side at cross cutting platform surface and move and influence subsequent processing. Therefore, a single-layer conductive fabric die cutting device is provided.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides a cutting device of electrically conductive cloth of individual layer can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a cutting device of electrically conductive cloth of individual layer, includes the processing platform, the equal vertical fixed mounting in processing platform top both sides surface has the guide bar, and the quantity of guide bar is four groups, fixed mounting has the hydraulic control case between the guide bar top, slidable mounting has the cross cutting stripper plate between the guide bar outside, processing platform bottom fixed surface installs well cavity frame, the inboard middle-end of well cavity frame rotates installs two-way lead screw, the equal activity in two-way lead screw outside both ends has cup jointed movable sleeve, every the equal fixed mounting in movable sleeve outside top surface has the transmission piece, the equal slidable mounting in processing platform top both ends surface has the sliding plate, and transmission piece top and sliding plate bottom fixed connection, every the equal fixed mounting in the inboard top surface of sliding plate has to tight board.
As an alternative of this application technical scheme, well hollow frame outside top fixed surface installs servo motor, and the servo motor transmission shaft is connected with two-way lead screw outside is fixed, support tight board bottom fixed surface and install pressure sensor, the one end fixed surface that the processing platform top is close to servo motor installs the singlechip.
As an alternative scheme of this application, pressure sensor's signal output part is connected with the signal input part of singlechip, the signal output part of singlechip is connected with servo motor's signal input part.
As an alternative scheme of this application technical scheme, every it all bonds and installs anti-skidding friction pad to support tight inboard surface, every sliding plate outside top surface slope fixed mounting has the bracing piece, and the bracing piece top with support tight outside fixed connection.
As an alternative scheme of this application technical scheme, every the equal fixed mounting in movable sleeve outside top surface has the transmission piece, the spacing groove has all been seted up at machining platform outside both ends, and transmission piece slidable mounting is in the spacing inslot portion.
Compared with the prior art, the utility model discloses following beneficial effect has:
the utility model discloses a cutting device of single-layer conductive fabric, after driving two-way lead screw through servo motor's drive and rotating thereupon, can be in the structural action of two-way lead screw, make it can drive the movable sleeve that is located its both sides when rotating and move in the hollow frame of synchronous level thereupon, and then can be automatic and synchronous carry out interval control to two sets of sliding plates and support the tie plate, and then reduce the operator and install required labour to the die cutting mould and consume, avoid the die cutting mould to receive unilateral when installing and support and move and take place the displacement, influence subsequent extrusion die cutting quality;
the pressure sensor is used for detecting pressure information generated by contact between the inner side of the abutting plate and the outer side of the die cutting die, and the single chip microcomputer is used for controlling the operation start and stop of the servo motor, so that the operation control automation of the whole device can be further improved, and the labor consumption required by the control of the whole device is reduced.
Drawings
Fig. 1 is a schematic view of the overall structure of the die cutting device for single-layer conductive fabric of the present invention;
fig. 2 is the schematic view of the cross-sectional structure of the processing platform of the die cutting device for single-layer conductive fabric of the present invention.
Reference numerals are as follows: 1. a processing platform; 2. a guide rod; 3. a hydraulic control box; 4. die cutting the extrusion plate; 5. a hollow frame; 6. a bidirectional screw rod; 7. a movable sleeve; 8. a sliding plate; 9. a transmission block; 10. a support bar; 11. a propping plate; 12. an anti-slip friction pad; 13. a pressure sensor; 14. a single chip microcomputer; 15. a servo motor; 16. a limiting groove.
Detailed Description
As shown in fig. 1-2, the die cutting device for the single-layer conductive fabric comprises a processing platform 1, wherein guide rods 2 are vertically and fixedly mounted on the surfaces of two sides of the top of the processing platform 1, the guide rods 2 are four in number, a hydraulic control box 3 is fixedly mounted between the tops of the guide rods 2, and a die cutting extrusion plate 4 is slidably mounted between the outer sides of the guide rods 2.
In this technical scheme (shown through fig. 1 and fig. 2), well cavity frame 5 outside top fixed surface installs servo motor 15, and servo motor 15 transmission shaft is connected with two-way lead screw 6 outside is fixed, support tight board 11 bottom fixed surface and install pressure sensor 13, one end fixed surface that processing platform 1 top is close to servo motor 15 installs singlechip 14, pressure sensor 13's signal output part is connected with singlechip 14's signal input part, singlechip 14's signal output part is connected with servo motor 15's signal input part.
In the technical scheme, pressure information generated by contact between the inner side of the abutting plate 11 and the outer side of the die cutting die is detected through the pressure sensor 13, and the single chip microcomputer 14 controls the operation start and stop of the servo motor 15, so that the operation control automation of the whole device can be further improved, and the labor consumption required by the control of the whole device is reduced.
In this technical scheme (shown through fig. 1 and fig. 2), 1 bottom fixed surface of processing platform has well hollow frame 5, well hollow frame 5 inboard middle-end is rotated and is installed two-way lead screw 6, the activity sleeve 7 has all been cup jointed in 6 outside both ends of two-way lead screw, the equal fixed surface in 7 outside top of every activity sleeve has transmission block 9, the equal slidable mounting in 1 top both ends surface of processing platform has sliding plate 8, and the transmission block 9 top is connected with the stationary phase in 8 bottoms of sliding plate, the equal fixed surface in 8 inboard top of every sliding plate has and supports tight board 11.
In the technical scheme, the transmission rationality of the whole device is ensured through the structural action of the bidirectional screw rod 6 and the transmission action of the transmission block 9.
In the present technical solution (as shown in fig. 1 and 2), an anti-skid friction pad 12 is adhered to the inner side surface of each abutting plate 11, a support rod 10 is obliquely and fixedly installed on the top surface of the outer side of each sliding plate 8, and the top of the support rod 10 is fixedly connected with the outer side of the abutting plate 11.
In this technical solution, the stability of the abutting plate 11 after the contact with the cutting die is ensured by the structural action of the anti-slip friction pad 12.
In some technical solutions (shown in fig. 1 and 2), the top surface of the outer side of each movable sleeve 7 is fixedly provided with a transmission block 9, the two ends of the outer side of the processing platform 1 are both provided with a limiting groove 16, and the transmission blocks 9 are slidably mounted inside the limiting grooves 16.
In the technical scheme, the driving reasonability of the whole device is ensured by the guiding and limiting effect of the limiting groove 9 on the driving block 9.
When the die cutting device works, a die cutting die needing to be fixedly installed and processed is placed at the top of the processing platform 1, the die cutting die is located between the inner sides of the two groups of abutting plates 11, the single chip microcomputer 14 is turned on through an external control switch to operate and control the servo motor 15 to start, the two-way screw rod 6 is driven to rotate along with the two-way screw rod, the movable sleeves 7 located on the two sides of the two-way screw rod are driven to synchronously move in the hollow frame 5 along with the two-way screw rod by combining the structural action of the two-way screw rod 6, then the two groups of sliding plates 8 and the abutting plates 11 can be automatically and synchronously subjected to interval adjustment under the transmission action of the transmission block 9 until the inner sides of the abutting plates 11 abut against the outer side surface of the die cutting die and are fixedly installed, the synchronous hydraulic controller 3 drives the die cutting extrusion plate 4 to descend, and single-layer conductive cloth raw materials located between the die and the inner sides of the die cutting die are subjected to extrusion die cutting and forming processing.

Claims (5)

1. The utility model provides a cutting device of electrically conductive cloth of individual layer, includes processing platform (1), its characterized in that: guide rods (2) are vertically and fixedly installed on the surfaces of two sides of the top of the processing platform (1), the number of the guide rods (2) is four, a hydraulic control box (3) is fixedly installed between the tops of the guide rods (2), and a die cutting extrusion plate (4) is slidably installed between the outer sides of the guide rods (2);
processing platform (1) bottom fixed surface installs well hollow frame (5), well hollow frame (5) inboard middle-end rotates installs two-way lead screw (6), two-way lead screw (6) outside both ends all movably sleeve (7), every the equal fixed surface in movable sleeve (7) outside top has transmission piece (9), the equal slidable mounting in processing platform (1) top both ends surface has sliding plate (8), and transmission piece (9) top is connected with sliding plate (8) bottom fixed phase, every the equal fixed mounting in sliding plate (8) inboard top surface has to support tight board (11).
2. The die cutting device for single-layer conductive cloth according to claim 1, wherein: well hollow frame (5) outside top fixed surface installs servo motor (15), and servo motor (15) transmission shaft and two-way lead screw (6) outside fixed connection, support tight board (11) bottom fixed surface and install pressure sensor (13), one end fixed surface that machining platform (1) top is close to servo motor (15) installs singlechip (14).
3. The die cutting device for single-layer conductive cloth according to claim 2, wherein: the signal output end of the pressure sensor (13) is connected with the signal input end of the single chip microcomputer (14), and the signal output end of the single chip microcomputer (14) is connected with the signal input end of the servo motor (15).
4. The die cutting device for single-layer conductive cloth according to claim 1, wherein: the inner side surface of each abutting plate (11) is provided with an anti-skid friction pad (12) in an adhering mode, the top surface of the outer side of each sliding plate (8) is obliquely and fixedly provided with a supporting rod (10), and the top of each supporting rod (10) is fixedly connected with the outer side of the abutting plate (11).
5. The die cutting device for single-layer conductive cloth according to claim 1, wherein: every the equal fixed mounting in activity sleeve (7) outside top surface has transmission piece (9), spacing groove (16) have all been seted up at processing platform (1) outside both ends, and transmission piece (9) slidable mounting is inside in spacing groove (16).
CN202222616879.5U 2022-09-30 2022-09-30 Die cutting device for single-layer conductive cloth Active CN218436331U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222616879.5U CN218436331U (en) 2022-09-30 2022-09-30 Die cutting device for single-layer conductive cloth

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222616879.5U CN218436331U (en) 2022-09-30 2022-09-30 Die cutting device for single-layer conductive cloth

Publications (1)

Publication Number Publication Date
CN218436331U true CN218436331U (en) 2023-02-03

Family

ID=85085573

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222616879.5U Active CN218436331U (en) 2022-09-30 2022-09-30 Die cutting device for single-layer conductive cloth

Country Status (1)

Country Link
CN (1) CN218436331U (en)

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