Drilling layout processing system

By introducing a second drive module into the hot-fix rhinestone layout processing system, the rocker assembly is raised and lowered. The hot-fix rhinestones are then adhered to the bottom of the sticker layer by utilizing the adhesive force, which solves the problem of low rhinestone arrangement accuracy and achieves high-precision arrangement of hot-fix rhinestones on the sticker layer.

CN117863766BActive Publication Date: 2025-12-16FOSHAN HUITU MECHANICAL & ELECTRICAL EQUIP TECH CO LTD
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Patent Information

Application Number
CN202410109952.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-26
Publication Date
2025-12-16
Estimated Expiration
2044-01-26

AI Technical Summary

Technical Problem

The rhinestones are not arranged with high precision on the sticker layer of the hot stamping paper because the sticker layer of the hot stamping paper is subjected to tension deformation when pressed, which affects the relative position of the rhinestones.

Method used

By introducing a second drive module into the hot-fix rhinestone layout processing system, the rocker assembly is raised and lowered, so that the layout template fits the bottom of the sticker layer of the hot-fix paper. The adhesive force at the bottom of the sticker layer is used to stick the hot-fix rhinestones, avoiding deformation of the sticker layer by pressing down and improving the layout accuracy.

Benefits of technology

It effectively avoids tension deformation of the sticker layer, improves the arrangement accuracy of hot-fix rhinestones on the sticker layer, and ensures the accuracy of hot-fix rhinestones being pasted on clothing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the field of hot drill layout devices, and discloses a hot drill layout processing system, which comprises a paper unwinding unit and a discharging unit for conveying hot paper, a layout unit arranged between the paper unwinding unit and the discharging unit and used for pressing the bottom of the paper layer of the hot paper, the layout unit comprising a layout frame used for separating the paper layer and the backing paper layer of the hot paper, a rocker assembly arranged at the top of the layout frame and used for fixing at least two layout templates, a first driving module used for driving the rocker assembly to swing alternately on the front and back sides, and a second driving module used for driving the rocker assembly to reciprocatingly lift and lower.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of hot-fixing diamond layout device, and particularly relates to a hot-fixing diamond layout processing system. BACKGROUND

[0002] Hot-fixing diamond processing is a kind of clothing processing technology, that is, a plurality of hot-fixing diamonds are arranged into a specific pattern, and the plurality of arranged hot-fixing diamonds are moved together to the clothing for hot-pressing adhesion, and the hot-fixing paper for adhering the hot-fixing diamonds and the diamond shaking device for arranging the hot-fixing diamonds are usually used to implement the technology, the hot-fixing paper has a two-layer structure, the top layer of the hot-fixing paper is a paste paper layer, and the bottom layer is a backing paper layer, the diamond shaking device stores a plurality of hot-fixing diamonds, the diamond shaking device discharges the plurality of hot-fixing diamonds through shaking and screening, so that the hot-fixing diamonds are arranged into a specific pattern, the paste paper layer of the hot-fixing paper is suspended above the diamond shaking device through a plurality of rollers, after the diamond shaking device arranges the plurality of hot-fixing diamonds into a specific pattern, the paste paper layer of the hot-fixing paper is pressed by a pressure device, so that the paste paper layer is adhered to the top of the plurality of arranged hot-fixing diamonds, the hot-fixing diamonds are adhered, after the adhesion is completed, the external force applied by the pressure device is removed, the paste paper layer of the hot-fixing paper rises to the initial height, then the rollers rotate and wind the hot-fixing paper, the rollers convey the hot-fixing paper, the hot-fixing diamonds are gradually moved away from the diamond shaking device to the rollers on the discharge side under the driving of the hot-fixing paper, the backing paper layer of the hot-fixing paper is combined with the paste paper layer at the rollers on the discharge side, the paste paper layer is adhered to the bottom of the paste paper layer again, the plurality of hot-fixing diamonds are clamped and covered between the backing paper layer and the paste paper layer, and the arranged hot-fixing diamonds on the hot-fixing paper can be moved to the clothing for hot-pressing adhesion through cutting the hot-fixing paper, wherein when the pressure device presses the paste paper layer of the hot-fixing paper, because the height of the rollers is unchanged, the position of the paste paper layer being pressed is gradually lowered relative to the height of the rollers on both sides, the paste paper layer is gradually tightened and deformed, after the top of the hot-fixing diamond is adhered to the paste paper layer, the paste paper layer restores the deformation and the height thereof, at this time, the relative positions of the adjacent hot-fixing diamonds on the paste paper layer change, which affects the arrangement accuracy of the hot-fixing diamonds on the paste paper layer. SUMMARY

[0003] The present application aims to provide a hot-fixing diamond layout processing system, which can avoid the paste paper layer of the hot-fixing paper from being deformed by being pressed, and improve the arrangement accuracy of the hot-fixing diamonds on the paste paper layer.

[0004] The technical scheme provided by the present application is as follows: a hot-fixing diamond layout processing system, comprising a unwinding unit and a discharge unit for conveying hot-fixing paper, and a layout unit arranged between the unwinding unit and the discharge unit and used for pressing the bottom of the paste paper layer of the hot-fixing paper,

[0005] The unwinding unit comprises a unwinding roller arranged on the feeding side of the layout unit and a separation roller arranged between the unwinding roller and the layout unit;

[0006] The discharge unit comprises a discharge rack arranged on the discharge side of the layout unit, a first clamping assembly and a second clamping assembly arranged on the discharge rack for clamping the ironing paper, and a discharge driving module for driving the second clamping assembly to reciprocate between the first clamping assembly and the layout unit; the discharge driving module is fixedly connected with the second clamping assembly, the second clamping assembly is in sliding fit with the discharge rack; the discharge rack is provided with a converging roller between the second clamping assembly and the layout unit, and the converging roller is in rotary fit with the discharge rack.

[0007] The layout unit comprises a layout rack for separating and conveying the paper layer and the backing paper layer of the ironing paper, a rocker assembly arranged on the top of the layout rack for fixing at least two layout templates, a first driving module for driving the rocker assembly to alternately swing on the front and back sides, and a second driving module for driving the rocker assembly to reciprocate up and down; the first driving module is hingedly connected with the layout rack and the bottom of the rocker assembly, respectively; the layout rack is arranged between the unwinding roller and the discharge rack, and a pair of conveying rollers for abutting against the top of the backing paper layer of the ironing paper are arranged on the lower side of the layout rack.

[0008] The second driving module comprises a lifting base arranged on the layout rack, and a pair of lifting cylinders for driving the lifting base to reciprocate up and down; the lifting base is hingedly connected with the bottom of the rocker assembly, the cylinder body of the lifting cylinder is fixedly connected with the layout rack, and the power output end is fixedly connected with the lifting base.

[0009] In the above-mentioned ironing diamond layout processing system, the rocker assembly is provided with a fixed folding plate and a movable folding plate located at the top thereof and both having a U-shaped structure, a third driving module fixedly connected with the rocker assembly for driving the movable folding plate to reciprocate between the front and back sides of the rocker assembly, the side plates on both sides of the movable folding plate are fixedly connected with the third driving module, the fixed folding plate is arranged on the inner side of the movable folding plate and is fixed to the back side of the rocker assembly, the opening of the fixed folding plate faces the movable folding plate, the side plates of the movable folding plate correspond to the side plates of the fixed folding plate one by one and are in sliding fit, and a fitting gap is arranged between the bottom of the movable folding plate and the top of the rocker assembly.

[0010] In the above-mentioned ironing diamond layout processing system, the third driving module comprises a movable seat arranged directly below the side plate of each movable folding plate, and a push-pull cylinder for driving the movable seat to reciprocate between the front and back sides of the rocker assembly; the push-pull cylinder is arranged between the rocker assembly and the movable seat, the cylinder body of the push-pull cylinder is fixedly connected with the bottom of the rocker assembly, and the power output end is fixedly connected with the movable seat.

[0011] In the diamond hot-pressing layout processing system, the first driving module comprises a hinge seat hinged to the rocker assembly, a layout lead screw in rotational cooperation with the hinge seat, and a layout motor fixedly connected to the hinge seat and configured to drive the layout lead screw to rotate in forward and reverse directions; a sleeve is sleeved on the layout lead screw and hinged to the bottom of the rocker assembly, and the sleeve is threadedly connected to the layout lead screw in a movable manner along the axial direction of the layout lead screw.

[0012] In the diamond hot-pressing layout processing system, the rocker assembly is fixedly connected with a first layout template and a second layout template arranged in sequence from the feeding side to the discharging side of the layout frame, the first layout template is provided with a plurality of first layout through holes, and the second layout template is provided with a plurality of second layout through holes and a plurality of blind holes corresponding to the first layout through holes.

[0013] In the diamond hot-pressing layout processing system, the unwinding unit further comprises an unwinding frame arranged at the feeding side of the layout frame, an unwinding driving module configured to drive the unwinding frame to reciprocate along the axial direction of the unwinding roller, and an unwinding deviation correction sensor arranged between the unwinding frame and the layout frame and configured to monitor the edge of the hot-pressing paper; the unwinding driving module is arranged at the bottom of the unwinding frame and fixedly connected to the unwinding frame, and the unwinding deviation correction sensor is electrically connected to the unwinding driving module.

[0014] In the diamond hot-pressing layout processing system, the unwinding driving module comprises an unwinding lead screw extending along the axial direction of the unwinding roller, a moving block sleeved on the unwinding lead screw, and an unwinding motor configured to drive the unwinding lead screw to rotate in forward and reverse directions; the moving block is threadedly connected to the unwinding lead screw in a movable manner and fixedly connected to the bottom of the unwinding frame; and the unwinding deviation correction sensor is electrically connected to the unwinding motor.

[0015] In the diamond hot-pressing layout processing system, the discharging frame is fixedly connected with a first discharging motor and a first discharging lead screw fixedly connected to the power output end of the first discharging motor; the first discharging lead screw extends along the length direction of the discharging frame and is in rotational cooperation with the discharging frame; and the second clamping assembly is threadedly connected to the first discharging lead screw in a movable manner along the length direction of the first discharging lead screw.

[0016] In the diamond hot-pressing layout processing system, the discharging frame is fixedly connected with a discharging deviation correction sensor configured to monitor the edge of the hot-pressing paper; the discharging deviation correction sensor is arranged between the converging roller and the layout frame; the first clamping assembly is provided with a discharging deviation correction assembly fixedly connected to the discharging frame; the first clamping assembly is in sliding cooperation with the discharging deviation correction assembly and is driven by the discharging deviation correction assembly to reciprocate along the width direction of the discharging frame; and the deviation correction assembly is electrically connected to the discharging deviation correction assembly.

[0017] In the hot diamond layout processing system described above, the second clamping assembly is provided with a cutter near one side of the first clamping assembly, the cutter is in sliding fit with the second clamping assembly, and can reciprocate along the width direction of the rack for cutting along the width direction of the straightened sticker.

[0018] After the technical scheme is adopted, the hot diamond layout processing system has the beneficial effects that:

[0019] The second drive module drives the swing base assembly to ascend and descend, and the swing base assembly drives the layout template to ascend and descend. When the swing base assembly ascends, the layout template adheres to the bottom of the sticker layer of the hot paper, and the hot diamonds on the layout template are adhered by the adhesive force of the bottom of the sticker layer, so that the sticker layer is prevented from being deformed and adhered to the layout template below, thereby avoiding the tensile deformation of the sticker layer and improving the arrangement accuracy of the hot diamonds on the sticker layer. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structural schematic view of the hot diamond layout processing system of embodiment 1 of the present application;

[0021] Figure 2 is a structural schematic view of the layout unit of embodiment 1 of the present application;

[0022] Figure 3 is a top view assembly schematic view of the swing base assembly, the movable flap and the fixed flap of embodiment 1 of the present application;

[0023] Figure 4 is a bottom view assembly schematic view of the swing base assembly and the movable flap of embodiment 1 of the present application;

[0024] Figure 5 is an assembly schematic view of the second drive module and the layout rack of embodiment 1 of the present application;

[0025] Figure 6 is a structural schematic view of the first layout template of embodiment 1 of the present application;

[0026] Figure 7 is a structural schematic view of the second layout template of embodiment 1 of the present application; Figure 6 is a partial enlarged view of A of the present application;

[0027] Figure 8 is a structural schematic view of the second layout template of embodiment 1 of the present application;

[0028] Figure 9 is a partial enlarged view of B of the present application; Figure 8

[0029] Figure 10 is a structural schematic view of the unwinding unit of embodiment 1 of the present application;

[0030] ​Figure 11 is a schematic diagram of the arrangement of the unwinding deviation correction sensor and the unwinding drive module of embodiment 1 of the present application;

[0031] Figure 12 is a schematic diagram of the structure of the discharge unit of embodiment 1 of the present application;

[0032] Figure 13 is a schematic diagram of the structure of the second clamping assembly of embodiment 1 of the present application;

[0033] Figure 14 is a schematic diagram of the structure of the first clamping assembly and the deviation correction assembly of embodiment 1 of the present application;

[0034] Figure 15 is an exploded view of the deviation correction assembly of embodiment 1 of the present application.

[0035] Reference signs: 1, unwinding unit; 2, paper; 3, drawing unit; 4, first drawing template; 5, second drawing template; 6, discharge unit;

[0036] 11, unwinding roller; 12, separating roller; 13, unwinding frame; 14, unwinding drive module; 141, unwinding motor; 142, unwinding lead screw; 143, moving block; 15, unwinding deviation correction sensor;

[0037] 21, paper layer; 22, backing paper layer;

[0038] 31, drawing frame; 32, conveying roller; 33, rocker assembly; 34, movable flap; 35, fixed flap; 36, second drive module; 37, first drive module; 38, third drive module;

[0039] 331, rocker top plate; 332, deflection driven module; 3321, first driven turntable; 3322, second driven turntable; 3323, driven rod; 333, rocker bottom plate; 334, deflection driven module; 3341, driven turntable; 3342, driven rod; 335, motor module;

[0040] 341, sealing plate; 342, partition plate;

[0041] 361, lifting base; 362, lifting cylinder;

[0042] 371, drawing motor; 372, hinge seat; 373, drawing lead screw; 374, sleeve;

[0043] 381, movable seat; 382, push-pull cylinder;

[0044] 41, first drawing through hole; 51, avoidance blind hole; 52, second drawing through hole;

[0045] 61, discharge frame; 62, second clamping assembly; 63, first clamping assembly; 64, deviation rectifying assembly; 65, merging roller; 66, discharge deviation rectifying sensor; 67, cutter; 68, rodless cylinder;

[0046] 611, first discharge lead screw; 612, first discharge motor;

[0047] 641, fixed plate; 642, second discharge motor; 643, second discharge lead screw. DETAILED DESCRIPTION

[0048] The technical solutions of the present application will be further described in detail below in combination with specific embodiments, but do not constitute any limitation to the present application.

[0049] Example 1:

[0050] As shown in Figures 1-15 , a hot diamond layout processing system includes a unwinding unit 1 and a discharge unit 6 for conveying hot paper 2, a layout unit 3 arranged between the unwinding unit 1 and the discharge unit 6 for pressing the bottom of the layout paper layer 21 of the hot paper 2,

[0051] As shown in Figure 1 , Figure 10 , and Figure 11 , the unwinding unit 1 includes a unwinding roller 11 arranged on the feeding side of the layout unit 3 and a separating roller 12 arranged between the unwinding roller 11 and the layout unit 3;

[0052] As shown in Figure 1 , Figure 12 , the discharge unit 6 includes a discharge frame 61 arranged on the discharge side of the layout unit 3, a first clamping assembly 63 and a second clamping assembly 62 arranged on the discharge frame 61 for clamping the hot paper 2, and a discharge driving module for driving the second clamping assembly 62 to reciprocate and translate between the first clamping assembly 63 and the layout unit 3; the discharge driving module is fixedly connected with the second clamping assembly 62, and the second clamping assembly 62 is in sliding fit with the discharge frame 61; the discharge frame 61 is provided with a merging roller 65 located between the second clamping assembly 62 and the layout unit 3, and the merging roller 65 is in rotational fit with the discharge frame 61;

[0053] As shown in Figure 1 , Figure 2As shown, the layout unit 3 comprises a layout frame 31 for separating and conveying the sticker layer 21 and the backing paper layer 22 of the ironing paper 2, a rocker assembly 33 for fixing at least two layout templates on the top of the layout frame 31, a first driving module 37 for driving the rocker assembly 33 to swing alternately on the front and back sides, a second driving module 36 for driving the rocker assembly 33 to reciprocate vertically, and the first driving module 37 is hinged to the bottom of the layout frame 31 and the rocker assembly 33 respectively. The layout frame 31 is arranged between the unwinding roller 11 and the discharge frame 61, and a pair of conveying rollers 32 for pressing against the top of the backing paper layer 22 of the ironing paper 2 is arranged on the lower side of the layout frame 31.

[0054] As shown in Figure 1 , Figure 2 and Figure 5 , the second driving module 36 comprises a lifting base 361 arranged on the layout frame 31, and a pair of lifting cylinders 362 for driving the lifting base 361 to reciprocate vertically, the lifting base 361 is hinged to the bottom of the rocker assembly 33, the cylinder body of the lifting cylinder 362 is fixedly connected to the layout frame 31, and the power output end is fixedly connected to the lifting base 361.

[0055] The implementation principle is that the rocker assembly 33 is driven by the second driving module 36 to lift and lower, so that the rocker assembly 33 drives the layout template to lift and lower, when the rocker assembly 33 rises, the layout template is attached to the bottom of the sticker layer 21 of the ironing paper 2, and the ironing drill on the layout template is adhered to the bottom of the sticker layer 21 by the adhesive force of the sticker layer 21, so that the sticker layer 21 is not pressed to deform and tightly adhere to the layout template below, thereby avoiding the tension deformation of the sticker layer 21 and improving the arrangement accuracy of the ironing drill on the sticker layer 21.

[0056] In this embodiment, the top of the cylinder body of the lifting cylinder 362 is fixedly connected to the layout frame 31, the power output end of the lifting cylinder 362 is also arranged on the top of the cylinder body of the lifting cylinder 362, the power output end of the lifting cylinder 362 penetrates through the layout frame 31 and is fixedly connected to the lifting base 361, and the first driving module 37 is arranged on one side of the lifting base 361.

[0057] As shown in 3 and Figure 4 , further improved, the rocker assembly 33 is provided with a fixed folding plate 35 and a movable folding plate 34 located on the top of the rocker assembly 33 and both having a U-shaped structure, a third driving module 38 for driving the movable folding plate 34 to reciprocate between the front and back sides of the rocker assembly 33 is fixedly connected to the rocker assembly 33, the side plates on both sides of the movable folding plate 34 are fixedly connected to the third driving module 38, the fixed folding plate 35 is arranged on the inner side of the movable folding plate 34 and is fixed to the back side of the rocker assembly 33, the opening of the fixed folding plate 35 faces the movable folding plate 34, the side plates of the movable folding plate 34 correspond to the side plates of the fixed folding plate 35 one by one and are in sliding fit, and a matching spacing is arranged between the bottom of the movable folding plate 34 and the top of the rocker assembly 33.

[0058] The spacing is designed to allow for a gap between the rocker assembly 33 and the movable folding plate 34, so that the pattern template can be installed on the top of the rocker assembly 33. After the pattern template is installed on the top of the rocker assembly 33, it fits with the bottom of the movable folding plate 34 with a gap, which prevents the hot-fix rhinestones from falling off and prevents the pattern template from obstructing the movement of the movable folding plate 34.

[0059] Two U-shaped folding plates are used. One folding plate is fixed to the rear side of the rocker assembly 33 to form a fixed folding plate 35, and the other folding plate is fixed to the third drive module 38 of the rocker assembly 33 to form a movable folding plate 34. The openings of the two folding plates face each other and are directly opposite each other. The fixed folding plate 35 is located inside the movable folding plate 34, so that the side plates of the movable folding plate 34 and the side plates of the fixed folding plate 35 have a projected overlap area. The movable folding plate 34 and the fixed folding plate 35 together enclose a frame structure. The third drive module 38 drives the movable folding plate 34 to reciprocate between the front and rear sides of the rocker assembly 33. The movable folding plate 34 slides relative to the rocker assembly 33. Before the rocker arm shakes the rocker assembly 33, the movable folding plate 34... The template is moved to the front of the rocker assembly 33, allowing it to fall into the area of ​​the movable folding plate 34, expanding the coverage of the frame structure and preventing the hot-fix rhinestones from falling off the template. When the hot-fix paper 2 is about to be pressed down on the template, the movable folding plate 34 moves towards the rear of the rocker assembly 33, away from the template and closer to the fixed folding plate 35. The template is located outside the movable folding plate 34, and the movable folding plate 34 will not interfere with the hot-fix paper 2 pressing down on the template. The hot-fix rhinestones on the rocker assembly 33 remain within the frame structure, enabling the partition 342 to reciprocate on the rocker arm, thus preventing the partition 342 from swinging up and the rocker arm from moving. At the same time, it prevents interference with the sticker layer 21 above, reduces space occupation, and improves the positioning accuracy of the hot-fix paper 2.

[0060] The specific structure of the third drive module 38 is as follows: the third drive module 38 includes a movable seat 381 located directly below the side plate of each movable folding plate 34, and a push-pull cylinder 382 that drives the movable seat 381 to reciprocate between the front and rear sides of the rocker assembly 33. The push-pull cylinder 382 is located between the rocker assembly 33 and the movable seat 381. The cylinder body of the push-pull cylinder 382 is fixedly connected to the bottom of the rocker assembly 33, and the power output end is fixedly connected to the movable seat 381.

[0061] like Figure 5 As shown, the specific structure of the first drive module 37 is as follows: the first drive module 37 includes a hinge seat 372 hinged to the rocker assembly 33, a plotting screw 373 rotatably engaged with the hinge seat 372, and a plotting motor 371 fixedly connected to the hinge seat 372 for driving the plotting screw 373 to rotate forward and backward; a sleeve 374 is sleeved on the plotting screw 373 and hinged to the bottom of the rocker assembly 33, and the sleeve 374 is screwed to the plotting screw 373 in a manner that allows it to move along the axial direction of the plotting screw 373.

[0062] In the specific connection, the first drive module 37 is located between the two movable seats 381, that is, the hinge fulcrum between the first drive module 37 and the rocker assembly 33 is also located between the two movable seats 381.

[0063] like Figure 5 As shown, the specific structure of the rocker arm assembly 33 includes a rocker arm base plate 333, a rocker arm top plate 331, a deflection driven module 332, a deflection active module 334, and a motor module 335 for driving the deflection active module 334 to rotate. The bottom of the rocker arm base plate 333 is hinged to the first drive module 37. The rocker arm top plate 331 is located on the lower side of the fixed folding plate 35 and the movable folding plate 34, and slides with the bottom of the movable folding plate 34. The motor module 335 is fixedly connected to the bottom of the rocker arm base plate 333, and the power output end of the motor module 335 passes through the rocker arm base plate 333 and extends between the rocker arm base plate 333 and the rocker arm top plate 331. The deflection driven module 332 and the deflection active module 334 are both located between the rocker arm base plate 333 and the rocker arm top plate 331. The deflection driven module 332 is equipped with... Several, and respectively disposed at the four corners of the rocker assembly 33; the deflection driven module 332 includes a first driven turntable 3321 fixedly connected to the bottom of the rocker top plate 331, a second driven turntable 3322 fixedly connected to the top of the rocker bottom plate 333, and a driven rod 3323 disposed between the first driven turntable 3321 and the second driven turntable 3322, one end of the driven rod 3323 being rotatably engaged with the center of the first driven turntable 3321, and the other end being rotatably engaged with the center of the second driven turntable 3322; the deflection active module 334 includes an active rod 3342 and an active turntable 3341 fixedly connected to the rocker top plate 331, one end of the active rod 3342 being fixedly connected to the power output end of the motor module 335, and the other end being rotatably engaged with the center of the active turntable 3341.

[0064] The base plate 333 and the top plate 331 of the rocker seat generate relative motion through the deflection driven module 332 and the deflection active module 334. The top plate 331 of the rocker seat moves in a circular motion in the horizontal direction relative to the base plate 333, moving in the front, back, left, and right directions in sequence, producing a horizontal swaying effect. During use, the pattern template is installed on the top of the top plate 331 of the rocker seat. After the hot drill is moved onto the pattern template by the swing of the first drive module 37, the horizontal sway of the top plate 331 of the rocker seat causes the hot drill to move randomly horizontally within the area of ​​the movable folding plate 34, accelerating the hot drill's fall into the drill hole of the pattern template.

[0065] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, in specific implementation, the fixed folding plate 35 is provided with at least two, the number of fixed folding plates 35 corresponds to the number of row drawing templates one by one, and the movable plate is fixedly connected with a partition plate 342 located between the adjacent two fixed folding plates 35; the side plate between the two sides of the movable folding plate 34 is fixedly connected with an enclosing plate 341, and the partition plate 342 is fixedly connected with the enclosing plate 341.

[0066] In combination with Figure 6 , Figure 7 , Figure 8 and Figure 9 As shown, in another improvement of the embodiment, the rocker assembly 33 is fixedly connected with a first row drawing template 4 and a second row drawing template 5 arranged in sequence from the feeding side to the discharging side of the row drawing frame 31, a plurality of first row drawing through holes 41 are formed in the first row drawing template 4, and a plurality of second row drawing through holes 52 and a plurality of avoiding blind holes 51 corresponding to the first row drawing holes are formed in the second row drawing template 5.

[0067] The specific structure of the unwinding unit 1 is that the unwinding unit 1 further comprises an unwinding frame 13 arranged at the feeding side of the row drawing frame 31, an unwinding driving module 14 for driving the unwinding frame 13 to reciprocate along the axial direction of the unwinding roller 11, and an unwinding deviation correction sensor 15 arranged between the unwinding frame 13 and the row drawing frame 31 and used for monitoring the edge of the ironing paper 2; the unwinding driving module 14 is arranged at the bottom of the unwinding frame 13 and is fixedly connected with the unwinding frame 13, and the unwinding deviation correction sensor 15 is electrically connected with the unwinding driving module 14.

[0068] The specific structure of the unwinding driving module 14 is that the unwinding driving module 14 comprises an unwinding lead screw 142 extending along the axial direction of the unwinding roller 11, a moving block 143 sleeved on the unwinding lead screw 142, and an unwinding motor 141 driving the unwinding lead screw 142 to rotate forward and reverse; the moving block 143 is threadedly connected with the unwinding lead screw 142 in a movable manner and is fixedly connected with the bottom of the unwinding frame 13; the unwinding deviation correction sensor 15 is electrically connected with the unwinding motor 141.

[0069] When the ironing paper 2 output from the unwinding roller 11 generates deviation in the width direction, the unwinding driving module 14 cooperates with the unwinding deviation correction sensor 15, the unwinding deviation correction sensor 15 triggers the position of the unwinding driving module 14 to be adjusted by monitoring the edge of the ironing paper 2, deviation correction processing is performed, and the output accuracy of the unwinding roller 11 shaft is improved.

[0070] In combination with Figure 1 , Figure 12 , Figure 13 , Figure 14 and Figure 15As shown, as a further improvement of the present embodiment, the discharging rack 61 is fixedly connected with a first discharging motor 612 and a first discharging screw rod 611 fixedly connected with the power output end of the first discharging motor 612, the first discharging screw rod 611 extends along the length direction of the discharging rack 61 and is rotationally matched with the discharging rack 61; the second clamping assembly 62 is threadedly connected with the first discharging screw rod 611 in a movable manner along the length direction of the first discharging screw rod 611.

[0071] Preferably, the discharging rack 61 is fixedly connected with a discharging deviation correction sensor 66 for monitoring the edge of the ironing paper 2, the discharging deviation correction sensor 66 is arranged between the converging roller 65 and the drawing rack 31; the first clamping assembly 63 is provided with a discharging deviation correction assembly 64 fixedly connected with the discharging rack 61, the first clamping assembly 63 is slidingly matched with the discharging deviation correction assembly 64 and is driven to reciprocally translate along the width direction of the discharging rack 61 through the discharging deviation correction assembly 64, the discharging deviation correction sensor 66 is electrically connected with the discharging deviation correction assembly 64.

[0072] The specific structure of the discharging deviation correction assembly 64 is that the discharging deviation correction assembly 64 comprises a fixed plate 641 fixedly connected with the discharging rack 61 and a discharging deviation correction driving module fixedly connected with the fixed plate 641 and used for driving the first clamping assembly 63 to reciprocally translate along the width direction of the discharging rack 61; the first clamping assembly 63 is slidingly matched with the fixed plate 641, and the discharging deviation correction driving module is electrically connected with the discharging deviation correction sensor 66.

[0073] The specific structure of the discharging deviation correction driving module is that the discharging deviation correction driving module comprises a second discharging motor 642 fixedly connected with the fixed plate 641 and a second discharging screw rod 643 fixedly connected with the power output end of the second discharging motor 642, the second discharging screw rod 643 extends along the width direction of the discharging rack 61 and is rotationally matched with the fixed plate 641, the first clamping assembly 63 is threadedly connected with the second discharging screw rod 643 in a movable manner along the length direction of the second discharging screw rod 643, and the second discharging motor 642 is electrically connected with the discharging deviation correction sensor 66.

[0074] As shown, Figure 12As shown, the discharge unit 6 is arranged at the discharge side of the row of drawing frames 31, the paper layer 21 passes above the drawing frames in a straightened state, and then is combined with the backing paper layer 22 to form the ironing paper 2. After the ironing paper 2 passes through the discharge deviation sensor 66 on the discharge frame 61, the ironing paper 2 is fixed on the first clamping assembly 63. When discharging, the second clamping assembly 62 synchronously clamps the ironing paper 2 with the first clamping assembly 63, and then the ironing paper 2 between the first clamping assembly 63 and the second clamping assembly 62 is cut along the width direction of the ironing paper 2 by manual or automatic mode. After the first clamping assembly 63 is released, a piece of ironing paper 2 with double or multi-color ironing diamonds is obtained. At this time, the second clamping assembly 62 continues to clamp the ironing paper 2 and moves towards the first clamping assembly 63. When the second clamping assembly 62 is close to the first clamping assembly 63, the edge of the ironing paper 2 is in the clamping range of the first clamping assembly 63. After the first clamping assembly 63 clamps the ironing paper 2 on the second clamping assembly 62, the second clamping assembly 62 releases the ironing paper 2 and returns to the original position, completing a working cycle. In the working cycle, the first clamping assembly 63 is fixedly connected to the discharge frame 61 through the discharge deviation assembly 64. The discharge deviation assembly 64 is connected with the discharge deviation sensor 66. The discharge deviation sensor 66 monitors the distance between the edge of the ironing paper 2 in the width direction and the discharge deviation assembly 64. When the discharge deviation sensor 66 monitors that the distance between the edge of the ironing paper 2 in the width direction and the discharge deviation assembly 64 is not in the preset interval, that is, the ironing paper 2 deviates, the discharge deviation sensor 66 triggers the discharge deviation assembly 64. The discharge deviation assembly 64 drives the first clamping assembly 63 to move in the width direction of the discharge frame 61, so as to drive the front end of the ironing paper 2 to move in the width direction. Since the ironing paper 2 is in a straightened state, the other part of the ironing paper 2 also moves in the width direction, so as to adjust the relative position of the local paper layer 21 and the backing paper layer 22 at the template, so as to adjust the deviation of the ironing paper 2, avoid continuous deviation of the ironing paper 2, and make the ironing paper 2 superimpose different single-color ironing diamonds on the same positioning basis to form a double or multi-color pattern.

[0075] In combination Figure 11 and Figure 12 As shown, in specific use, the specific structures of the unwinding deviation sensor 15 and the discharge deviation sensor 66 are both U-shaped structures. The to-be-measured object passes between the two ends of the deviation sensor, which is a common sensor type on the market.

[0076] As shown in Figure 13 In the embodiment, the second clamping assembly 62 is provided with a cutter 67 on the side close to the first clamping assembly 63. The cutter 67 is in sliding cooperation with the second clamping assembly 62 and can reciprocate in the width direction of the rack, so as to cut along the width direction of the straightened paper.

[0077] The cutter 6710 is fixedly connected to the power output end of the rodless cylinder 6811.

[0078] The above embodiments are the preferred embodiments of the present application, but the embodiments of the present application are not limited to the above embodiments, and any changes, modifications, substitutions, combinations, simplifications, etc. made without departing from the spirit and principles of the present application shall be equivalent replacement manners and shall be included in the protection scope of the present application.

Claims

1. A hot-fix layout processing system, comprising a feeding unit and a discharging unit for conveying hot-fix paper, and a layout unit arranged between the feeding unit and the discharging unit for pressing the bottom of the paper layer of the hot-fix paper, characterized in that the feeding unit comprises a feeding roller arranged on the feeding side of the layout unit and a separating roller arranged between the feeding roller and the layout unit; the discharging unit comprises a discharging rack arranged on the discharging side of the layout unit, a first clamping assembly and a second clamping assembly arranged on the discharging rack for clamping the hot-fix paper, and a discharging driving module for driving the second clamping assembly to reciprocally translate between the first clamping assembly and the layout unit; the discharging driving module is fixedly connected with the second clamping assembly, the second clamping assembly is slidingly matched with the discharging rack, and the discharging rack is provided with a converging roller between the second clamping assembly and the layout unit, the converging roller being rotationally matched with the discharging rack; the layout unit comprises a layout rack for separately conveying the paper layer and the backing paper layer of the hot-fix paper, a rocker assembly arranged on the top of the layout rack for fixing at least two layout templates, a first driving module for driving the rocker assembly to alternately swing on the front and back sides, and a second driving module for driving the rocker assembly to reciprocally lift and lower; the rocker assembly is driven by the second driving module to drive the layout templates to adhere to the bottom of the paper layer of the hot-fix paper; the first driving module is hingedly connected with the layout rack and the bottom of the rocker assembly, respectively; the layout rack is arranged between the feeding roller and the discharging rack, and a pair of conveying rollers for abutting against the top of the backing paper layer of the hot-fix paper are arranged on the lower side of the layout rack; the second driving module comprises a lifting base arranged on the layout rack, and a pair of lifting cylinders for driving the lifting base to reciprocally lift and lower; the lifting base is hingedly connected with the bottom of the rocker assembly, and the cylinder body of the lifting cylinder is fixedly connected with the layout rack and the power output end thereof is fixedly connected with the lifting base. a fixed folding plate and a movable folding plate are arranged on the rocker assembly and located on the top thereof and have a U-shaped structure, a third driving module for driving the movable folding plate to reciprocally move between the front and back sides of the rocker assembly is fixedly connected with the rocker assembly, the side plates on the two sides of the movable folding plate are fixedly connected with the third driving module, the fixed folding plate is arranged on the inner side of the movable folding plate and is fixed to the back side of the rocker assembly, the opening of the fixed folding plate faces the movable folding plate, the side plates of the movable folding plate correspond to the side plates of the fixed folding plate in a one-to-one manner and are slidingly matched, and a matching gap is arranged between the bottom of the movable folding plate and the top of the rocker assembly. the third driving module comprises a movable seat arranged directly below the side plate of each movable folding plate, and a push-pull cylinder for driving the movable seat to reciprocally translate between the front and back sides of the rocker assembly; the push-pull cylinder is arranged between the rocker assembly and the movable seat, the cylinder body of the push-pull cylinder is fixedly connected with the bottom of the rocker assembly, and the power output end thereof is fixedly connected with the movable seat. ​ 2. The press diamond layout processing system according to claim 1, wherein, ​ 3. The setting system according to claim 2, wherein ​ 4. The setting system of claim 1, wherein The first driving module comprises a hinge seat hinged with the rocker assembly, a patterned screw rod rotationally matched with the hinge seat, and a patterned motor fixedly connected with the hinge seat and used for driving the patterned screw rod to rotate forward and backward.

5. The setting system of claim 1, wherein, The rocker assembly is fixedly connected with a first patterned template and a second patterned template arranged in sequence from the feeding side to the discharging side of the patterned frame, the first patterned template is provided with a plurality of first patterned through holes, and the second patterned template is provided with a plurality of second patterned through holes and a corresponding avoidance blind hole corresponding to the first patterned through holes.

6. The setting system of claim 1, wherein, The unwinding unit further comprises an unwinding frame arranged at the feeding side of the patterned frame, an unwinding driving module used for driving the unwinding frame to reciprocally translate along the axis of the unwinding roller, and an unwinding deviation correction sensor arranged between the unwinding frame and the patterned frame and used for monitoring the edge of the ironed paper.

7. The setting system according to claim 6, wherein The unwinding driving module comprises an unwinding screw rod extending along the axis of the unwinding roller, a moving block sleeved on the unwinding screw rod, and an unwinding motor used for driving the unwinding screw rod to rotate forward and backward.

8. The setting system of claim 1, wherein, The discharging frame is fixedly connected with a first discharging motor, and a first discharging screw rod fixedly connected with the power output end of the first discharging motor, the first discharging screw rod extends along the length direction of the discharging frame and is rotationally matched with the discharging frame.

9. The setting system of claim 8, wherein, The discharging frame is fixedly connected with a discharging deviation correction sensor used for monitoring the edge of the ironed paper, and the discharging deviation correction sensor is arranged between the converging roller and the patterned frame.

10. The setting system of claim 1, wherein, The first clamping assembly is provided with a discharging deviation correction assembly fixedly connected with the discharging frame, the first clamping assembly is slidingly matched with the discharging deviation correction assembly, and is driven by the discharging deviation correction assembly to reciprocally translate along the width direction of the discharging frame, and the deviation correction assembly is electrically connected with the discharging deviation correction assembly. The second clamping assembly is provided with a cutter adjacent to one side of the first clamping assembly, the cutter is slidingly matched with the second clamping assembly and can reciprocally translate along the width direction of the rack, and is used for cutting along the width direction of the straightened sticker.

Citation Information

Patent Citations

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