Rubbing die cutting device and equipment

By combining die-cutting and printing mechanisms and adopting automated transportation, the problems of large equipment space occupation and low automation level in the production of sweeping machines are solved, realizing automated handling of workpieces and efficient production.

CN223573374UActive Publication Date: 2025-11-21HUIZHOU HONGLIDA TECHNOLOGY IND CO LTD
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Patent Information

Application Number
CN202423272261.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-21
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the current production of sweeping machines, die-cutting and printing are performed by two separate devices, resulting in a space-consuming equipment that requires manual handling, reducing production efficiency and automation levels, and making it prone to errors.

Method used

Design a die-cutting and printing device that combines die-cutting and printing mechanisms and achieves automated workpiece handling through an automated transport mechanism. The device includes a die-cutting mechanism, a printing mechanism, and a transport mechanism, and utilizes a first moving component and an adsorption component to achieve automated transfer and positioning of the workpiece.

Benefits of technology

It has improved the automation level and production efficiency of sweeping machine production, reduced manual intervention, avoided alignment errors during the handling process, and improved the overall production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to equipment related to sweeper production, and particularly relates to a rubbing die cutting device and equipment. A die cutting mechanism and a rubbing mechanism are arranged at the two ends of a rack, the die cutting mechanism comprises a first pressing assembly, a first cutter is arranged on one side of the first pressing assembly, and redundant materials of a workpiece are cut off through the first cutter; the rubbing mechanism comprises a second downward pressing assembly, and the second downward pressing assembly comprises a rubbing piece so as to rub information to the workpiece; the conveying mechanism is arranged and moves above the rack, the conveying mechanism comprises a first moving assembly, and the first moving assembly is arranged between the die cutting mechanism and the rubbing mechanism, so that the workpiece is transferred from the die cutting mechanism to the rubbing mechanism through the first moving assembly. Therefore, die cutting and rubbing of the sweeper are integrated, automatic carrying is achieved, the automation level of sweeper production is improved, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the production related equipment of sweeper, especially relates to a device and equipment are cut out to a kind of expansion. BACKGROUND

[0002] In the process of sweeper production, the newly injection-molded sweeper shell needs to be cut out to remove the extra waste connected to the workpiece, and after cutting out, the sweeper shell also needs to be expanded for subsequent production and installation.

[0003] In the existing technology, cutting and expansion are carried out by two devices respectively, and after cutting, the workpiece is manually transported to the expansion device for expansion. This method makes the production equipment of the sweeper not compact in space, and needs to be transported manually, which makes the automation level of the whole production low and needs the participation of manual work. Meanwhile, frequent alignment also makes the whole production efficiency low and prone to errors. UTILITY MODEL CONTENTS

[0004] In order to improve the production efficiency of the sweeper shell, the utility model provides a device and equipment for cutting and expansion. By combining cutting and expansion, and through automatic transportation, the overall production efficiency and automation level are improved.

[0005] The utility model achieves the following technical means:

[0006] In the first aspect, the utility model provides a device for cutting and expansion, which comprises:

[0007] a rack,

[0008] a cutting mechanism arranged at one end of the rack, the cutting mechanism comprising a first pressing assembly, a first cutter arranged on one side of the first pressing assembly to cut off the excess material of the workpiece by the first cutter;

[0009] an expansion mechanism arranged at the other end of the rack, the expansion mechanism comprising a second pressing assembly, the second pressing assembly comprising an expansion piece to expand information on the workpiece;

[0010] and a conveying mechanism arranged above the rack to move, the conveying mechanism comprising a first moving assembly arranged between the cutting mechanism and the expansion mechanism to transfer the workpiece from the cutting mechanism to the expansion mechanism by the first moving assembly.

[0011] By setting a die-cutting mechanism and a pad printing mechanism at both ends of the rack, the die-cuting mechanism includes a first pressing assembly, one side of the first pressing assembly is provided with a first cutter to cut off the excess material of the workpiece; the pad printing mechanism includes a second pressing assembly, the second pressing assembly includes a pad printing piece to pad print information on the workpiece; and by setting a conveying mechanism, the conveying mechanism is arranged to move above the rack, the conveying mechanism includes a first moving assembly, the first moving assembly is arranged between the die-cuting mechanism and the pad printing mechanism to transfer the workpiece from the die-cuting mechanism to the pad printing mechanism through the first moving assembly. So that the die-cutting and pad printing of the sweeper are integrated together, and automatic handling is realized to improve the automation level of the sweeper production and improve the production efficiency.

[0012] In some embodiments, the first moving assembly is provided with a first moving guide rail and a first moving seat, and the first moving seat is arranged to move on the first moving guide rail.

[0013] Through the first moving seat and the first moving guide rail, the automatic handling of the workpiece is realized, and manual handling is avoided to improve the automation degree of production.

[0014] In some embodiments, the conveying mechanism further includes a second moving assembly and a suction assembly, the second moving assembly is arranged on the first moving seat, the second moving assembly includes a second moving guide rail and a second moving seat, and the suction assembly is arranged on the second moving seat, the suction assembly includes a suction piece to suction and transfer the workpiece.

[0015] Through the second moving assembly and the suction assembly, the suction assembly can be moved to the die-cutting mechanism through the second moving assembly and the workpiece can be suctioned through the suction assembly, avoiding the collision between the conveying mechanism and the die-cuting mechanism.

[0016] In some embodiments, the die-cutting mechanism is further provided with a first placement table to hold the workpiece, the first placement table is arranged directly below the first pressing assembly, and the first placement table is provided with a second cutter on the same side as the first cutter to cut when the first cutter is pressed.

[0017] Through the first placement table to hold the workpiece, and through the first cutter and the second cutter to cut off the excess waste on the workpiece.

[0018] In some embodiments, the first placement table is provided with a first curved placement surface, the first curved placement surface is provided with a first abutting block on the circumferential side to avoid left and right displacement of the workpiece, and the first pressing assembly is provided with a pressing block to press on the workpiece when the first pressing assembly is pressed.

[0019] Through the first curved placement surface to cooperate with the structure of the sweeper, to avoid the workpiece from being squeezed and damaged during the pressing and cutting process.

[0020] In some embodiments, the transferring mechanism further comprises a transferring station, a dyeing station, and a third moving assembly, the transferring station and the dyeing station are arranged adjacently, the third moving assembly is arranged above the transferring station and the dyeing station and is arranged to move above the rack, the third moving assembly comprises a third moving guide rail and a third moving seat, the third moving guide rail is arranged between the transferring station and the dyeing station, the third moving seat is arranged to move on the third moving guide rail, the second pressing assembly is arranged on the third moving seat, and the transferring piece is arranged on the driving end of the second pressing assembly so that the transferring piece contacts or moves away from the transferring station or the dyeing station.

[0021] The third moving assembly is used to move the transferring piece to the dyeing station for dyeing and move the dyed transferring piece to the transferring station, and the transferring piece is used to transfer the workpiece on the transferring station.

[0022] In some embodiments, the transferring station is provided with a second placing table to carry the workpiece, and the second placing table is provided with a second curved placing surface, and the second curved placing surface is provided with a second abutting block on the circumferential side to avoid left and right displacement of the workpiece.

[0023] The second curved placing surface is arranged to prevent the workpiece from moving on the second placing table and causing non-standard transferring.

[0024] In some embodiments, the transferring mechanism further comprises a fourth moving assembly, and the fourth moving assembly comprises a fourth moving guide rail, and the transferring station is arranged to move on the fourth moving guide rail, and one end of the fourth moving guide rail is arranged directly below one end of the third moving guide rail.

[0025] The fourth moving assembly is arranged to move the transferring station away from or close to the dyeing station, and the workpiece can be taken and placed by the first moving assembly at one end of the fourth moving guide rail away from the dyeing station, thereby avoiding collision between the conveying mechanism and the transferring mechanism.

[0026] In some embodiments, the conveying mechanism further comprises a fifth moving assembly, and the fifth moving assembly is arranged on one side of the transferring mechanism, and the fifth moving assembly comprises a conveying belt arranged at the bottom of the rack, and the workpiece is transferred to the conveying belt by the first moving assembly for unloading.

[0027] The fifth moving assembly is used to unload the workpiece after die cutting and transferring.

[0028] In a second aspect, the utility model provides a kind of transferring die cutting equipment, including like the transferring die cutting device of any one in the first aspect, control machine table and feeding device;Control machine table controls die cutting mechanism die cutting workpiece, transferring mechanism transfers workpiece and conveying mechanism transports workpiece;Feeding device automatically feeds workpiece to die cutting mechanism.

[0029] The utility model discloses a kind of transferring die cutting device and equipment, which has the following beneficial effects:

[0030] By setting the die cutting mechanism and the pad printing mechanism at both ends of the frame, the die cutting mechanism comprises a first pressing assembly, one side of the first pressing assembly is provided with a first cutter to cut off more than the material of the workpiece through the first cutter; the pad printing mechanism comprises a second pressing assembly, the second pressing assembly comprises a pad printing piece to pad print information on the workpiece; and by setting the conveying mechanism, the conveying mechanism is arranged to move above the frame, the conveying mechanism comprises a first moving assembly, the first moving assembly is arranged between the die cutting mechanism and the pad printing mechanism, so that the workpiece is transferred from the die cutting mechanism to the pad printing mechanism through the first moving assembly. The die cutting and pad printing of the sweeper are integrated together, and automatic carrying is realized, so as to improve the automation level of the sweeper production and improve the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 It is a side view of the pad printing die cutting device of the utility model Figure 1 ;

[0032] Figure 2 It is a side view of the pad printing die cutting device of the utility model Figure 2 ;

[0033] Figure 3 It is a side view of the pad printing die cutting device of the utility model

[0034] Figure 4 It is a side view of the pad printing die cutting device of the utility model

[0035] Figure 5 It is an enlarged view of part a Figure 4 of the utility model

[0036] Figure 6 It is a top view of the pad printing die cutting device of the utility model

[0037] Figure 7 It is a frame diagram of the pad printing die cutting device of the utility model

[0038] REFERENCE SIGNS:

[0039] 1, frame;

[0040] 2, die cutting mechanism; 21, first pressing assembly; 211, first cutter; 22, first material placing table; 221, second cutter;

[0041] 3, pad printing mechanism; 31, second pressing assembly; 311, pad printing piece; 32, pad printing table; 33, dyeing table; 34, third moving seat; 35, second material placing table; 36, fourth moving guide rail;

[0042] 4, conveying mechanism; 41, first moving seat; 42, second moving guide rail; 43, second moving seat; 44, suction accessory; 45, conveying belt. DETAILED DESCRIPTION

[0043] It should be noted that the embodiments and technical features in the present application can be combined with each other without conflict, and the detailed description in the specific embodiments should be understood as the explanation and illustration of the purpose, technical solutions and advantages of the present application, and should not be regarded as improper limitation on the present application.

[0044] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the specific technical solutions of the present application will be further described in detail below in combination with the drawings in the embodiments of the present application. The following embodiments are used to illustrate the present application, but not to limit the scope of the present application.

[0045] In the embodiments of the present application, the terms "first", "second" are only used for description purpose, and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include one or more of the features. In the description of the embodiments of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0046] In addition, in the embodiments of the present application, the orientation terms such as "upper", "lower", "left" and "right" are defined relative to the orientation of the components shown in the drawings, and it should be understood that these directional terms are relative concepts, which are used for relative description and clarification, and can be changed accordingly according to the change of the orientation of the components placed in the drawings.

[0047] In the embodiments of the present application, unless otherwise explicitly specified and limited, the term "connection" should be understood in a broad sense, for example, "connection" can be fixed connection, or detachable connection, or integral; can be directly connected, or indirectly connected through intermediate medium.

[0048] In the embodiments of the present application, the term "include", "contain" or any other variant thereof is intended to cover non-exclusive inclusion. Without more limitation, the element defined by the sentence "include one" does not exclude the presence of other same elements in the process, method, article or device including the element.

[0049] In the embodiments of the present application, the words such as "exemplary" or "for example" are used to represent as an example, illustration or description. Any embodiment or design scheme described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as more preferred or more advantageous than other embodiments or design schemes. Rather, the words such as "exemplary" or "for example" are intended to present the relevant concept in a specific manner.

[0050] Embodiment 1:

[0051] AsFigure 1 The embodiment shown provides a die-cutting device, which comprises:

[0052] a rack 1,

[0053] a die-cutting mechanism 2 arranged at one end of the rack 1, the die-cutting mechanism 2 comprising a first pressing assembly 21, one side of the first pressing assembly 21 being provided with a first cutter 211 to cut off excess material of the workpiece through the first cutter 211;

[0054] a transfer mechanism 3 arranged at the other end of the rack 1, the transfer mechanism 3 comprising a second pressing assembly 31, the second pressing assembly 31 comprising a transfer member 311 to transfer information to the workpiece;

[0055] and a conveying mechanism 4 arranged above the rack 1 to move, the conveying mechanism 4 comprising a first moving assembly arranged between the die-cutting mechanism 2 and the transfer mechanism 3 to transfer the workpiece from the die-cutting mechanism 2 to the transfer mechanism 3 through the first moving assembly.

[0056] Specifically, the die-cutting mechanism 2 is arranged at one end of the rack 1, the die-cutting mechanism 2 comprising the first pressing assembly 21, one side of the first pressing assembly 21 being provided with the first cutter 211 to cut the circumferential side of the workpiece. Optionally, a plurality of cutters can be arranged, and the pressing cutter is arranged according to the position of the excess material of the workpiece to realize pressing cutting. The first pressing assembly 21 can be a cylinder, a motor or the like, and the first cutter 211 is fixed on the driving end to drive the pressing cutting. Alternatively, a pressing plate is arranged on the driving end, and the first cutter 211 or a plurality of cutters are arranged on the pressing plate to realize integrated cutting, thereby improving the ability to cut off the excess material of the workpiece. The transfer mechanism 3 is arranged at the other end of the rack 1, the transfer mechanism 3 being provided with the second pressing assembly 31 which can be consistent with the first pressing assembly 21, and the transfer member 311 is fixed on the driving end of the second pressing assembly 31. The transfer member 311 is used for dyeing and transfer printing, and the transfer cotton or a laser transfer printing device can be selected. The conveying mechanism 4 is arranged above the rack 1 to realize workpiece transfer. The first moving assembly can be a guide rail and a moving seat, a mechanical hand, a conveying belt and a moving seat, so that the workpiece is transferred from the die-cutting mechanism 2 to the transfer mechanism 3 through the first moving assembly.

[0057] By setting a die-cutting mechanism 2 and a printing mechanism 3 at both ends of the frame 1, the die-cutting mechanism 2 includes a first pressing component 21, with a first cutter 211 on one side to remove excess material from the workpiece; the printing mechanism 3 includes a second pressing component 31, with a printing element 311 to transfer information onto the workpiece; and by setting a transport mechanism 4, which moves above the frame 1, and includes a first moving component positioned between the die-cutting mechanism 2 and the printing mechanism 3, the workpiece is transferred from the die-cutting mechanism 2 to the printing mechanism 3 via the first moving component. This integrates the die-cutting and printing processes of the sweeper, achieving automated handling and improving the automation level and production efficiency of the sweeper production.

[0058] Example 2:

[0059] like Figures 2-6 As shown, this embodiment further optimizes and explains the structure proposed in Embodiment 1, and the difference is as follows:

[0060] In some embodiments, the first moving component is provided with a first moving guide rail (not shown in the figure) and a first moving base 41, the first moving base 41 being disposed to move on the first moving guide rail.

[0061] Specifically, the first moving component is provided with a first moving guide rail and a first moving seat 41. The first moving guide rail is fixed to the upper part of the frame 1, and the first moving seat moves on the first moving guide rail. The first moving seat 41 can be driven by itself to move on the first moving guide rail, or the first moving guide rail can be driven by a linear motor to move the first moving seat 41.

[0062] In some alternative solutions, the first moving guide rail can be composed of multiple pieces spliced ​​together to make the moving direction of the first moving seat 41 more flexible.

[0063] In some alternatives, the first movable seat 41 can be a robotic arm to grasp and move the workpiece.

[0064] The first movable seat 41 and the first movable guide rail enable automated handling of workpieces, avoiding manual handling and improving the level of automation in production.

[0065] In some embodiments, the transport mechanism 4 further includes a second moving component and an adsorption component. The second moving component is disposed on the first moving seat 41 and includes a second moving guide rail 42 and a second moving seat 43. The adsorption component is disposed on the second moving seat 43 and includes an adsorption element 44 to adsorb and transfer the workpiece.

[0066] Specifically, the conveying mechanism further comprises a second moving assembly and an adsorption assembly. The second moving assembly is arranged on the first moving seat 41 to move with the first moving seat 41. Further, a second moving guide rail 42 and a second moving seat 43 are arranged on the second moving assembly. The second moving guide rail 42 is arranged in parallel with the first moving guide rail to further increase the horizontal moving stroke of the adsorption assembly 44 arranged on the second moving seat 43. The adsorption assembly 44 can be an adsorption platform provided with a plurality of vacuum adsorption nozzles to adsorb the workpiece. The vacuum adsorption nozzles can be connected to an external vacuum source to generate a vacuum adsorption force between the adsorption nozzles and the workpiece for gas adsorption.

[0067] Optionally, the adsorption assembly 44 can be replaced by a mechanical gripper to hold the workpiece by clamping the mechanical gripper.

[0068] Through the second moving assembly and the adsorption assembly, the adsorption assembly can be moved into the die-cutting mechanism 2 by the second moving assembly and adsorb the workpiece by the adsorption assembly to avoid collision between the conveying mechanism 4 and the die-cutting mechanism 2.

[0069] In some embodiments, the conveying mechanism 4 further comprises a second moving assembly and an adsorption assembly. The second moving assembly is arranged on the first moving seat 41. The second moving assembly comprises a second moving guide rail 42 and a second moving seat 43. The adsorption assembly is arranged on the second moving seat 43. The adsorption assembly comprises an adsorption assembly 44 to adsorb and transfer the workpiece.

[0070] Specifically, the conveying mechanism 4 further comprises a second moving assembly and an adsorption assembly. The second moving assembly is arranged on the first moving seat 41. The second moving assembly comprises a second moving guide rail 42 and a second moving seat 43. The second moving guide rail 42 is arranged on the second moving seat 43. The first moving guide rail and the first moving guide rail are arranged in parallel to enable the second moving seat 43 to have a longer stroke relative to the first moving seat 41 to extend into the die-cutting mechanism 2 to obtain the workpiece. In this way, the entire conveying mechanism 4 can be prevented from colliding with the die-cutting mechanism 2. In some more specific embodiments, the adsorption assembly comprises an adsorption assembly 44 to adsorb and transfer the workpiece. The adsorption assembly 44 is provided with a vacuum nozzle connected to an external vacuum source to adsorb and move the workpiece.

[0071] In some more preferred embodiments, a mechanical gripper structure can also be used to hold the workpiece by clamping the mechanical gripper to lift the workpiece and transfer it.

[0072] Through the second moving assembly and the adsorption assembly, the adsorption assembly can be moved into the die-cutting mechanism 2 by the second moving assembly and adsorb the workpiece by the adsorption assembly to avoid collision between the conveying mechanism 4 and the die-cutting mechanism 2.

[0073] In some embodiments, the die-cutting mechanism 2 is further provided with a first placement table 22 for containing the workpiece, the first placement table 22 is arranged directly below the first pressing assembly 21, and the first placement table 22 is provided with a second cutting knife 221 on the same side as the first cutting knife 211, so that the first cutting knife 211 is aligned with the second cutting knife 221 when pressed.

[0074] Specifically, the die-cutting mechanism 2 is provided with a first placement table 22 for containing the workpiece, the first placement table 22 is arranged directly below the first pressing assembly 21, so that the first pressing assembly 21 can be pressed on the first placement table 22, and the first placement table 22 is provided with a second cutting knife 221 aligned with the first cutting knife 211, so that the cutting is performed in alignment to avoid incomplete cutting.

[0075] The first placement table 22 carries the workpiece, and the first cutting knife 211 and the second cutting knife 221 cut off the excess waste on the workpiece.

[0076] In some embodiments, the first placement table 22 is provided with a first curved placement surface, the first curved placement surface is provided with a first abutting block on the periphery to prevent the workpiece from moving left and right, and the first pressing assembly 21 is provided with a pressing block to press on the workpiece when the first pressing assembly 21 is pressed.

[0077] Specifically, the first placement table 22 is provided with a first curved placement surface to place the workpiece on the first curved placement surface, and is provided with a first abutting block on the periphery to prevent the workpiece from moving left and right, and is provided with a pressing block to press on the workpiece when the first pressing assembly 21 is pressed, thereby avoiding the instability of cutting caused by the workpiece being lifted during die-cutting.

[0078] The first curved placement surface is used to cooperate with the structure of the sweeper to prevent the workpiece from being squeezed and damaged during the pressing and cutting process.

[0079] In some embodiments, the transfer printing mechanism 3 further includes a transfer printing table 32, a dyeing table 33, and a third moving assembly, the transfer printing table 32 and the dyeing table 33 are arranged adjacent to each other, the third moving assembly is arranged above the transfer printing table 32 and the dyeing table 33 and moves above the rack 1, the third moving assembly includes a third moving guide rail (not shown in the figure) and a third moving seat 34, the third moving guide rail is arranged between the transfer printing table 32 and the dyeing table 33, the third moving seat 34 is arranged on the third moving guide rail to move, the second pressing assembly 31 is arranged on the third moving seat 34, and the transfer printing member 311 is arranged on the driving end of the second pressing assembly 31 to make the transfer printing member 311 contact or move away from the transfer printing table 32 or the dyeing table 33.

[0080] Specifically, the third moving assembly and the first moving assembly can be structurally consistent, and more specifically, are arranged above the pad printing table 32 and the dyeing table 33. The second pressing assembly 31 is arranged on the third moving seat 34, and the pressing mode and structure of the second pressing assembly 31 can be arranged to be consistent with those of the first pressing assembly 21. The driving end of the second pressing assembly 31 is connected to the pad printing piece 311 to perform information pad printing. The pad printing piece 311 can be pad printing cotton. After dyeing on the dyeing table 33, the pad printing piece 311 is moved to the pad printing table 32 to perform pad printing on the workpiece on the pad printing table 32.

[0081] The third moving assembly moves the pad printing piece 311 to the dyeing table 33 for dyeing, and moves the dyed pad printing piece 311 to the pad printing table 32 to perform pad printing on the workpiece on the pad printing table 32 by the pad printing piece 311.

[0082] In some embodiments, the pad printing table 32 is provided with a second workpiece placing table 35 to carry the workpiece. The second workpiece placing table 35 is provided with a second curved workpiece placing surface. The second curved workpiece placing surface is provided with a second abutting block on the periphery to avoid left and right displacement of the workpiece.

[0083] Specifically, the pad printing table 32 is provided with a second workpiece placing table 35 consistent with the first workpiece placing table 22, which can be used to place the workpiece for pad printing.

[0084] By arranging the second curved workpiece placing surface, the workpiece on the second workpiece placing table 35 will not move to cause non-standard pad printing.

[0085] In some embodiments, the pad printing mechanism 3 further comprises a fourth moving assembly. The fourth moving assembly comprises a fourth moving guide rail 36. The pad printing table 32 is arranged on the fourth moving guide rail 36 to move. One end of the fourth moving guide rail 36 is arranged directly below one end of the third moving guide rail.

[0086] Specifically, the fourth moving assembly can be structurally consistent with the first moving assembly. The difference is that the fourth moving assembly is arranged below the rack 1 to move, and more specifically, is arranged below the pad printing table 32 to provide movement of the pad printing table 32, so that the pad printing table 32 can move away from or close to the dyeing table 33. A linear motor can be used to control the movement. The fourth moving guide rail 36 is provided with a pad printing position and a workpiece taking position. The pad printing position is located directly below one end of the third moving guide rail. The workpiece taking position is located at one end of the fourth moving guide rail 36 away from the dyeing table 33 to take the workpiece. The arrangement of the fourth moving guide rail 36 can avoid collision between the transportation mechanism 4 and the pad printing mechanism 3.

[0087] By arranging the fourth moving assembly, the pad printing table 32 can move away from or close to the dyeing table 33. The workpiece taking and placing of the workpiece first moving assembly can be performed at one end of the fourth moving guide rail 36 away from the dyeing table 33 to avoid collision between the transportation mechanism 4 and the pad printing mechanism 3.

[0088] In some embodiments, the transport mechanism 4 further includes a fifth moving component, which is disposed on one side of the printing mechanism 3. The fifth moving component includes a transport belt 45, which is disposed at the bottom of the frame 1. The printed workpiece is moved to the transport belt 45 for loading and unloading by the first moving component.

[0089] Specifically, the fifth moving component includes a conveyor belt 45, which is disposed on one side of the printing mechanism 3 and can be further disposed parallel to the fourth moving guide rail 36, so that after the printing is completed, the workpiece is taken out by the first moving component and placed on the fifth moving component, thereby realizing the unloading of the workpiece.

[0090] The fifth moving component is used to unload the die-cut and printed workpiece.

[0091] Example 3:

[0092] like Figure 7 As shown, this embodiment proposes a printing and die-cutting device based on the structures proposed in Embodiments 1 and 2, including a printing and die-cutting apparatus as described in any of the first aspects, a control machine, and a feeding device; the control machine controls the die-cutting mechanism 2 to die-cut the workpiece, the printing mechanism 3 to print the workpiece, and the transport mechanism 4 to transport the workpiece; the feeding device automatically feeds the workpiece to the die-cutting mechanism 2.

[0093] Specifically, an automatic feeding device is provided, which can feed the workpiece with the same structure as the transport mechanism 4. After the workpiece is moved to the die-cutting mechanism 2 for die-cutting, it will be automatically followed up. At the same time, a control machine can be provided to control the coordinated movement of the transport mechanism 4, the die-cutting mechanism 2, the printing mechanism 3, etc. More specifically, when the workpiece is fed to the die-cutting mechanism 2, it is transported to the printing mechanism 3 by the transport mechanism 4. After the printing mechanism 3 prints the workpiece, it is unloaded and transported by the transport mechanism 4.

[0094] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments. The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made based on the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A printing and die-cutting device, characterized in that, include: Rack (1), Die-cutting mechanism (2) is provided at one end of the frame (1). The die-cutting mechanism (2) includes a first pressing component (21). A first cutter (211) is provided on one side of the first pressing component (21) to cut off excess material from the workpiece through the first cutter (211). The imprinting mechanism (3) is disposed at the other end of the frame (1). The imprinting mechanism (3) includes a second pressing component (31), which includes an imprinting element (311) to imprint information onto the workpiece. The transport mechanism (4) is located above the frame (1) and moves. The transport mechanism (4) includes a first moving component, which is located between the die-cutting mechanism (2) and the printing mechanism (3) to transfer the workpiece from the die-cutting mechanism (2) to the printing mechanism (3) via the first moving component.

2. The die-cutting apparatus according to claim 1, characterized in that, The first moving component is provided with a first moving guide rail and a first moving seat (41), and the first moving seat (41) is mounted on the first moving guide rail and moves.

3. The die-cutting apparatus according to claim 2, characterized in that, The transport mechanism (4) further includes a second moving component and an adsorption component. The second moving component is disposed on the first moving seat (41) and includes a second moving guide rail (42) and a second moving seat (43). The adsorption component is disposed on the second moving seat (43) and includes an adsorption element (44) to adsorb the workpiece.

4. The printing and die-cutting device according to claim 1, characterized in that, The die-cutting mechanism (2) is also provided with a first platform (22) to hold the workpiece. The first platform (22) is located directly below the first pressing component (21). A second cutting blade (221) is provided on the same side of the first platform (22) and the first cutting blade (211) so that the first cutting blade (211) is aligned with the second cutting blade (221) when it is pressed down.

5. The printing and die-cutting apparatus according to claim 4, characterized in that, The first placement platform (22) is provided with a first curved placement surface, and a first abutting block is provided on the periphery of the first curved placement surface to avoid the workpiece shifting to the left or right. The first pressing component (21) is provided with a pressing block so that the pressing block presses on the workpiece when the first pressing component (21) presses down.

6. The die-cutting apparatus according to claim 1, characterized in that, The printing mechanism (3) further includes a printing table (32), a dyeing table (33), and a third moving component. The printing table (32) and the dyeing table (33) are arranged adjacent to each other. The third moving component is arranged above the printing table (32) and the dyeing table (33) and moves above the frame (1). The third moving component includes a third moving guide rail and a third moving seat (34). The third moving guide rail is arranged between the printing table (32) and the dyeing table (33). The third moving seat (34) moves on the third moving guide rail. The second pressing component (31) is arranged on the third moving seat (34). The printing piece (311) is arranged on the driving end of the second pressing component (31) so that the printing piece (311) contacts or moves away from the printing table (32) or the dyeing table (33).

7. The printing and die-cutting apparatus according to claim 6, characterized in that, The printing table (32) is provided with a second platform (35) to support the workpiece. The second platform (35) is provided with a second curved surface. A second abutment block is provided on the periphery of the second curved surface to prevent the workpiece from shifting to the left or right.

8. The die-cutting apparatus according to claim 6, characterized in that, The printing mechanism (3) further includes a fourth moving component, which includes a fourth moving guide rail (36). The printing table (32) is mounted on the fourth moving guide rail (36) and moves. One end of the fourth moving guide rail (36) is located directly below one end of the third moving guide rail.

9. The printing and die-cutting apparatus according to claim 1, characterized in that, The transport mechanism (4) further includes a fifth moving component, which is located on one side of the printing mechanism (3). The fifth moving component includes a transport belt (45), which is located at the bottom of the frame (1). The printed workpiece is moved to the transport belt (45) for loading and unloading by the first moving component.

10. A printing and die-cutting device, characterized in that, Includes the printing and die-cutting device, control unit, and feeding device as described in any one of claims 1-9; the control unit controls the die-cutting mechanism (2) to die-cut the workpiece, the printing mechanism (3) to print the workpiece, and the transport mechanism (4) to transport the workpiece; the feeding device automatically feeds the workpiece to the die-cutting mechanism (2).