Rotary support for supporting plate of gold stamping die-cutting machine

By designing a rotating bracket for the support plate of the hot stamping die-cutting machine, the problem of time-consuming and labor-intensive manual replacement of the die-cutting plate was solved, enabling fast and safe replacement of the die-cutting plate and improving the production efficiency and equipment stability of the hot stamping die-cutting machine.

CN223519767UActive Publication Date: 2025-11-07YUTIAN ZHONGYI PRINTING MASCH MFG CO LTD
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Patent Information

Application Number
CN202423162374.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-07
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The replacement of honeycomb panels in traditional hot stamping die-cutting machines requires manual operation, which is time-consuming and labor-intensive, and is prone to safety hazards and structural damage due to human factors, making it difficult to meet production efficiency requirements.

Method used

Design a rotating bracket for a hot stamping die-cutting machine support plate, including a bracket, a flipping frame, and a load-bearing frame. Through the plate changing position on the flipping frame and multiple load-bearing frame installation positions, the die-cutting plate can be quickly disassembled and installed. Combined with the adjustment of the horizontal and vertical moving plates, it can adapt to die-cutting plates of different sizes. Locking pins and support rollers are used to reduce friction and wear and ensure accurate positional correspondence.

Benefits of technology

It enables efficient, safe, and convenient operation of die-cutting plate replacement, shortens plate replacement time, improves the working efficiency and production continuity of hot stamping die-cutting machines, and reduces equipment maintenance costs.

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Abstract

The utility model relates to the technical field of gold stamping die-cutting machines, and provides a rotary support for a supporting plate of a gold stamping die-cutting machine, which comprises a support, a roll-over stand and a bearing frame, the roll-over stand is rotatably arranged on the support, a plate changing position is arranged on the roll-over stand and corresponds to a plate loading position of the gold stamping die-cutting machine, and the bearing frame is slidably arranged on the roll-over stand and corresponds to the plate loading position of the gold stamping die-cutting machine. The overturning frame is used for installing a die-cutting plate honeycomb plate, after the overturning frame rotates, one bearing frame is arranged at a plate replacing position, and after the bearing frames slide, the bearing frames are used for sliding to a plate installing position of the gold stamping die-cutting machine. By means of the technical scheme, the problem that in the prior art, time and labor are wasted when a die-cutting plate honeycomb plate of a gold stamping die-cutting machine is manually replaced is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a gilding die cutting machine technical field, specifically, relates to a kind of rotary support for gilding die cutting machine support plate. BACKGROUND

[0002] In modern manufacturing industry, gilding process is widely used in packaging, printing, decoration and other industries, and different products require different specifications of gilding effect, which leads to the need to replace different size die cutting plate gilding plate according to the size, shape and other requirements of various products. For example, packaging industry, cosmetic packaging, food packaging, electronic product packaging and other patterns, positions and sizes of gilding have their own requirements, so gilding machine needs to frequently replace die cutting plate gilding plate to adapt to different packaging products.

[0003] Traditional gilding die cutting machine die cutting plate honeycomb plate replacement needs manual extraction of old plate, and then inserts new plate to the plate mounting position of gilding die cutting machine. This process requires operators to have certain skills and experience, otherwise it is easy to make mistakes, and the structure of its bearing frame may be damaged when extracting old plate. When aligning and mounting plate position, it is also easy to be affected by human factors, such as operator fatigue, lack of concentration, etc., resulting in hand slipping during plate mounting, causing personal safety and damage to die cutting plate and honeycomb plate.

[0004] Traditional manual replacement method cannot meet the requirements of gilding industry for production efficiency, and a rotary support for gilding die cutting machine support plate is needed to perform more safe and efficient die cutting plate replacement operation. UTILITY MODEL CONTENTS

[0005] The utility model provides a kind of rotary support for gilding die cutting machine support plate, solve the problem of time-consuming and laborious manual replacement of gilding die cutting machine die cutting plate honeycomb plate in the related art.

[0006] The technical scheme of the utility model is as follows: a kind of rotary support for gilding die cutting machine support plate, including support, turnover frame and bearing frame, the turnover frame is rotationally arranged on the support, the turnover frame has plate replacement position, the plate replacement position is used to correspond with the plate mounting position of gilding die cutting machine, the bearing frame is slidably arranged on the turnover frame, for installing die cutting plate honeycomb plate, the bearing frame is multiple, after the turnover frame rotates, for making certain one bearing frame be placed in the plate replacement position, after the bearing frame slides, for sliding to the plate mounting position of gilding die cutting machine.

[0007] Optionally, it further includes horizontal moving plate and vertical moving plate, the horizontal moving plate is movably arranged on the bearing frame in horizontal direction, the vertical moving plate is movably arranged on the horizontal moving plate in vertical direction, the horizontal moving plate, the vertical moving plate and the bearing frame are used to accommodate die cutting plate.

[0008] Optionally, the bearing frame has a plurality of fixing holes one, the horizontal moving plate has fixing holes two, the fixing holes one correspond to the fixing holes two, and the horizontal moving plate is fixed through the fixing holes one and the fixing holes two.

[0009] The horizontal moving plate has a plurality of fixing holes three, the longitudinal moving plate has fixing holes four, the fixing holes three correspond to the fixing holes four, and the longitudinal moving plate is fixed through the fixing holes three and the fixing holes four.

[0010] Optionally, the bearing frame has a plurality of pressing plates, and the pressing plates are used for pressing the die cutting plate.

[0011] Optionally, the bearing frame, the horizontal moving plate and the longitudinal moving plate are provided with clamping plates, and a plurality of clamping plates are used for clamping the die cutting plate together.

[0012] Optionally, the support roller is further included, the support roller is rotatably arranged on the turnover frame, the support roller is a plurality of, the bearing frame has a sliding rail, and the support roller abuts against the sliding rail.

[0013] Optionally, the locking pin is further included, the locking pin is slidably arranged on the turnover frame, the bearing frame has a locking groove, the locking pin enters or leaves the locking groove after sliding, and the bearing frame is locked, and the locking pin has a pulling rod.

[0014] Optionally, the rotating disc, the locking block and the telescopic cylinder are further included, the rotating disc is arranged on the turnover frame, the rotating disc is distributed with a plurality of locking notches along the circumference of the rotating disc, the locking block is slidably arranged on the support, the locking block enters or leaves the locking notches after sliding, and the turnover frame is locked, and the telescopic cylinder is arranged on the support, and the telescopic cylinder is connected with the locking block through the telescopic end.

[0015] Optionally, the standby locking block is further included, the standby locking block is slidably arranged on the support, the standby locking block enters or leaves the locking notches after sliding, and the turnover frame is locked, and the standby locking block has a handle.

[0016] Optionally, the bearing frame has a handle.

[0017] The working principle and beneficial effects of the gilding die cutting machine support plate are as follows:

[0018] The gilding die cutting machine support plate is installed on one side of the gilding die cutting machine through the rotating support. The rotating support mainly comprises a support, a turnover frame and a bearing frame. The turnover frame can rotate around the support, and the turnover frame has a plate changing position. The plate changing position corresponds to the plate mounting position of the gilding die cutting machine. The bearing frame is used for mounting the die cutting plate, and the turnover frame has a plurality of (two are taken as an example) mounting positions for mounting the bearing frame, so that the bearing frame can slide on the turnover frame.

[0019] When the die cutting plate or honeycomb plate of the gilding die cutting machine needs to be replaced, first rotate the turnover frame to move the empty bearing frame mounting position to the plate replacement position. Since the plate replacement position corresponds to the gilding die cutting machine plate mounting position, the bearing frame with the old die cutting plate in the gilding die cutting machine can be extracted and directly slid onto the empty bearing frame mounting position of the turnover frame at this time, so that the disassembly of the old die cutting plate is completed.

[0020] Then, the turnover frame is rotated by 180 degrees, so that the bearing frame with the new die cutting plate pre-installed is moved to the plate replacement position. Subsequently, the bearing frame is slid from the plate replacement position to the plate mounting position of the gilding die cutting machine, and the new die cutting plate is installed, realizing the replacement of the die cutting plate.

[0021] By providing a plurality of bearing frame mounting positions on the turnover frame and by means of the design of the plate replacement position, after the old die cutting plate is extracted, the plate mounting position does not need to be re-aligned as in the traditional way, but only needs to be simply turned over to install the new die cutting plate, greatly shortening the plate replacement time, making the replacement operation more continuous, effectively improving the working efficiency of the entire gilding die cutting machine, and meeting the needs of frequent replacement of die cutting plates or honeycomb plates in modern gilding die cutting production.

[0022] The plate replacement position accurately corresponds to the plate mounting position of the gilding die cutting machine, and whether it is to install a new die cutting plate or to disassemble an old die cutting plate, the position of each plate mounting can be ensured to be accurate. Compared with the traditional manual replacement of die cutting plates and honeycomb plates, it is safer and more convenient, and improves the plate replacement work efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0023] The above characteristics, technical features, advantages and implementation modes of the present application will be further described in a clear and understandable manner in combination with the preferred embodiments and the accompanying drawings.

[0024] Figure 1 It is a structural schematic view of a rotating support for a gilding die cutting machine support plate;

[0025] Figure 2 It is a structural schematic view of a rotating support for a gilding die cutting machine support plate; Figure 1 It is an enlarged view of position A in the middle;

[0026] Figure 3 It is a structural schematic view of the top of the bearing frame;

[0027] Figure 4 It is a structural schematic view of the bottom of the bearing frame;

[0028] Figure 5 It is a structural schematic view of the top of the bearing frame; Figure 4 It is an enlarged view of position B;

[0029] Figure 6 It is a structural schematic view of the top of the bearing frame;

[0030] Figure 7The structure diagram of the rotating disc.

[0031] In the figure: 1, support, 2, turnover frame, 3, bearing frame, 4, plate changing position, 5, transverse moving plate, 6, longitudinal moving plate, 7, fixed hole one, 8, fixed hole two, 9, fixed hole three, 10, fixed hole four, 11, pressing plate, 12, clamping plate, 13, supporting roller, 14, sliding rail, 15, locking pin, 16, locking groove, 17, lever, 18, rotating disc, 19, locking block, 20, telescopic cylinder, 21, locking notch, 22, spare locking block, 23, handle, 24, pull handle. DETAILED DESCRIPTION

[0032] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the specific embodiments of the present application will be described below with reference to the drawings. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.

[0033] In order to make the drawing simple, only the parts related to the present application are shown in the drawings, which do not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the parts with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0034] In this paper, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0035] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.

[0036] Reference Figures 1-7For the first embodiment of the utility model, propose a kind of rotary support for gilding die-cutting machine support plate, including support 1, turnover frame 2 and bearing frame 3, the turnover frame 2 is rotationally arranged on the support 1, the turnover frame 2 has plate position 4, the plate position 4 is used to correspond with the plate loading position of gilding die-cutting machine, the bearing frame 3 is slidably arranged on the turnover frame 2, for installing die-cutting plate honeycomb board, the bearing frame 3 is multiple, after the turnover frame 2 rotates, for making certain one bearing frame 3 be placed in the plate position 4, after the bearing frame 3 slides, for sliding to the plate loading position of gilding die-cutting machine.

[0037] In the embodiment, the rotary support for gilding die-cutting machine support plate is installed on one side of the gilding die-cutting machine. The rotary support mainly consists of support 1, turnover frame 2 and bearing frame 3. The turnover frame 2 can rotate around the support 1. The turnover frame 2 has a plate position 4, which corresponds to the plate loading position of the gilding die-cutting machine. The bearing frame 3 is used to install die-cutting plates. The turnover frame 2 has multiple (two as an example here) mounting positions for installing the bearing frame 3, allowing the bearing frame 3 to slide on the turnover frame 2.

[0038] When it is necessary to replace the die-cutting plate or honeycomb plate of the gilding die-cutting machine, first rotate the turnover frame 2 to move the idle bearing frame 3 mounting position to the plate position 4. Since the plate position 4 corresponds to the plate loading position of the gilding die-cutting machine, at this time, the bearing frame 3 with the old die-cutting plate in the gilding die-cutting machine can be pulled out and directly slid onto the idle bearing frame 3 mounting position on the turnover frame 2, thus completing the disassembly of the old die-cutting plate.

[0039] Then, rotate the turnover frame 2 by 180 degrees to move the bearing frame 3 with the new die-cutting plate pre-installed to the plate position 4. Subsequently, slide this bearing frame 3 from the plate position 4 to the plate loading position of the gilding die-cutting machine, and the new die-cutting plate is installed, realizing the replacement of the die-cutting plate.

[0040] By setting multiple bearing frame 3 mounting positions on the turnover frame 2 and with the design of the plate position 4, after pulling out the old die-cutting plate, it is not necessary to re-align the plate loading position as in the traditional way, but only needs to be simply turned over to install the new die-cutting plate, greatly shortening the replacement time and making the replacement operation more continuous, effectively improving the working efficiency of the entire gilding die-cutting machine, meeting the needs of frequent replacement of die-cutting plates or honeycomb plates in modern gilding die-cutting production.

[0041] The plate position 4 accurately corresponds to the plate loading position of the gilding die-cutting machine, and whether it is to install a new die-cutting plate or disassemble an old die-cutting plate, it can ensure the accurate position of each plate loading. Compared with the traditional manual replacement of die-cutting plates and honeycomb plates, it is safer and more convenient, improving the plate replacement work efficiency.

[0042] Further, the carrying frame 3 is provided with a plurality of fixed holes 7, the transverse moving plate 5 is provided with fixed holes 8, the fixed holes 7 correspond to the fixed holes 8, and the fixed holes 8 are used for fixing the transverse moving plate 5.

[0043] In the embodiment, the carrying frame 3 is square, the transverse moving plate 5 can move along the transverse direction of the carrying frame 3, and the longitudinal moving plate 6 can move along the longitudinal direction of the transverse moving plate 5. When installing the die-cutting plate, when different sizes of the die-cutting plate are encountered, the transverse position of the transverse moving plate 5 on the carrying frame 3 and the longitudinal position of the longitudinal moving plate 6 on the transverse moving plate 5 can be adjusted, so that the space formed between the transverse moving plate 5, the longitudinal moving plate 6 and the carrying frame 3 can be adapted to the size of the die-cutting plate.

[0044] By adjusting the positions of the transverse moving plate 5 and the longitudinal moving plate 6 in different directions, the size of the space formed between them and the carrying frame 3 can be flexibly changed, so that various sizes of the die-cutting plate can be easily adapted, the compatibility of the rotating support 1 for different sizes of the die-cutting plate is enhanced, and the carrying frame 3 does not need to be specially customized for different sizes of the die-cutting plate, thereby reducing the cost.

[0045] Further, the carrying frame 3 is provided with a plurality of fixed holes 7, the transverse moving plate 5 is provided with fixed holes 8, the fixed holes 7 correspond to the fixed holes 8, and the fixed holes 8 are used for fixing the transverse moving plate 5.

[0046] The transverse moving plate 5 is provided with a plurality of fixed holes 9, the longitudinal moving plate 6 is provided with fixed holes 10, the fixed holes 9 correspond to the fixed holes 10, and the fixed holes 10 are used for fixing the longitudinal moving plate 6.

[0047] Further, the carrying frame 3 is provided with a plurality of fixed holes 7, the transverse moving plate 5 is provided with fixed holes 8, the fixed holes 7 correspond to the fixed holes 8, and the fixed holes 8 are used for fixing the transverse moving plate 5.

[0048] Further, the carrying frame 3, the transverse moving plate 5 and the longitudinal moving plate 6 are provided with clamping plates 12, and a plurality of clamping plates 12 are used for clamping the die-cutting plate.

[0049] In this embodiment, the bearing frame 3 is provided with a row of fixed holes 7, and the transverse plate 5 is provided with corresponding fixed holes 8. When the position of the transverse plate 5 needs to be adjusted to adapt to the size of the die-cutting plate, the operator moves the transverse plate 5 to the appropriate position, at which time the fixed holes 7 and the fixed holes 8 correspond to each other. Then, using a positioning pin or a bolt or other fastener, it is simultaneously passed through the fixed holes 8 and the corresponding fixed holes 7, so that the transverse plate 5 is firmly fixed on the bearing frame 3 at the current position. For the longitudinal plate 6, the transverse plate 5 has a plurality of fixed holes 9, and the longitudinal plate 6 has fixed holes 10. After the longitudinal plate 6 is adjusted to a position suitable for the size of the die-cutting plate, the fixed holes 9 correspond to the fixed holes 10, and similarly, a suitable fastener is passed through the two groups of fixed holes to stabilize the longitudinal plate 6 at the current position. When the fastener is a bolt, the fixed holes can be adaptively designed as threaded holes.

[0050] A plurality of pressing plates 11 are provided around the bearing frame 3, and these pressing plates 11 are detachable. After the die-cutting plate is placed in the space formed by the bearing frame 3, the transverse plate 5 and the longitudinal plate 6, the pressing plates 11 are installed on the bearing frame 3, and the pressure provided by the pressing plates 11 tightly presses the die-cutting plate to prevent the die-cutting plate from loosening during the working process. At the same time, the bearing frame 3, the transverse plate 5 and the longitudinal plate 6 are all provided with clamping plates 12, and these clamping plates 12 are L-shaped. When the die-cutting plate is placed in position, a plurality of clamping plates 12 jointly clamp the die-cutting plate from different sides. The bending part of the L-shaped clamping plate 12 can well position the die-cutting plate, further enhancing the stability of clamping the die-cutting plate, and ensuring that the die-cutting plate can be stably located in the bearing frame 3 during the entire working process.

[0051] Through the design of the fixed holes, the transverse plate 5 and the longitudinal plate 6 can be accurately fixed in the appropriate position, ensuring to provide an accurate accommodation space for the die-cutting plate. This fixing method is simple and effective, which can avoid displacement of the transverse plate 5 and the longitudinal plate 6 due to vibration and other factors during the operation of the gilding and die-cutting machine, ensuring the stability of the entire structure and creating good conditions for the stable installation of the die-cutting plate. The use of the pressing plate 11 exerts pressure on the die-cutting plate from above, making the die-cutting plate tightly adhere to the bearing frame 3. Combined with the clamping of the die-cutting plate from the side by a plurality of clamping plates 12, the die-cutting plate is effectively fixed from different directions. This multi-dimensional fixing method greatly enhances the fixing effect of the die-cutting plate in the bearing frame 3, effectively prevents the die-cutting plate from shaking and displacing during the working process, and ensures the accuracy of the die-cutting process.

[0052] Further, it further includes a support roller 13, which is rotatably provided on the turnover frame 2, and the support roller 13 is a plurality of support rollers, and the bearing frame 3 is provided with a sliding rail 14, and the support roller 13 abuts against the sliding rail 14.

[0053] In this embodiment, when the carrying frame 3 is sliding on the turnover frame 2, such as when the die-cutting plate or honeycomb plate is replaced, the carrying frame 3 needs to be moved to the plate replacement position 4 or from the plate replacement position 4 to the gilding and die-cutting machine plate mounting position. During this process, the sliding rail 14 on the carrying frame 3 is in close abutment with the supporting roller 13. At this time, the carrying frame 3 is sliding on the supporting roller 13, rather than directly generating sliding friction with the turnover frame 2.

[0054] Through the cooperation of the supporting roller 13 and the sliding rail 14, direct sliding friction between the carrying frame 3 and the turnover frame 2 is avoided. This design greatly reduces the wear between the two, and also ensures that the position accuracy of the carrying frame 3 each time it moves is not affected by changes in friction. This is conducive to improving the efficiency and accuracy of die-cutting plate and honeycomb plate replacement. In long-term frequent replacement operations, the structural integrity of the turnover frame 2 and the carrying frame 3 can be effectively protected, the service life of the two can be prolonged, and the maintenance cost and replacement frequency of the equipment can be reduced.

[0055] Further, a locking pin 15 is slidingly arranged on the turnover frame 2. The carrying frame 3 has a locking groove 16. The locking pin 15 enters or exits the locking groove 16 after sliding, and is used to lock the carrying frame 3. The locking pin 15 has a lever 17.

[0056] In this embodiment, after the carrying frame 3 is installed on the turnover frame 2, especially when the turnover frame 2 needs to be turned over, the carrying frame 3 may slide forward and backward on the turnover frame 2 due to the influence of gravity. At this time, the operator can slide the lever 17 on the locking pin 15 to make the locking pin 15 slide on the turnover frame 2. When the locking pin 15 slides to a position where it enters the locking groove 16 of the carrying frame 3, the carrying frame 3 is firmly locked and its forward and backward movement is limited. When the carrying frame 3 needs to be moved, the lever 17 is again pulled to make the locking pin 15 slide out of the locking groove 16, thereby unlocking the carrying frame 3, and the carrying frame 3 can normally slide on the turnover frame 2.

[0057] The lever 17 is used to control the sliding of the locking pin 15, which is simple and convenient to operate. The operator can easily lock and unlock without the need for complex tools or cumbersome steps, which is conducive to improving work efficiency. In particular, during frequent die-cutting plate and honeycomb plate replacement, the locking and unlocking of the carrying frame 3 can be quickly completed, making the entire plate replacement process smoother.

[0058] Further, the device further comprises a rotating disc 18, locking blocks 19 and telescopic cylinders 20, wherein the rotating disc 18 is arranged on the turnover frame 2, the rotating disc 18 is provided with a plurality of locking openings 21 along the circumferential direction of the rotating disc 18, the locking blocks 19 are arranged on the support frame 1 and are capable of sliding into or out of the locking openings 21 to lock the turnover frame 2, and the telescopic cylinders 20 are arranged on the support frame 1 and are connected to the locking blocks 19.

[0059] Further, the device further comprises backup locking blocks 22, wherein the backup locking blocks 22 are arranged on the support frame 1 and are capable of sliding into or out of the locking openings 21 to lock the turnover frame 2, and the backup locking blocks 22 are provided with handles 23.

[0060] Further, the carrying frame 3 is provided with a handle 24.

[0061] In the embodiment, the rotating disc 18 is arranged on the turnover frame 2 and is capable of rotating around the center of the rotating disc 18 on the support frame 1, and the rotating disc 18 is provided with a plurality of locking openings 21 along the circumferential direction of the rotating disc 18. When the turnover frame 2 rotates to a specific angle, the telescopic cylinders 20 start to work and push the telescopic ends to make the locking blocks 19 connected to the telescopic ends slide on the support frame 1 and enter into the locking openings 21 of the rotating disc 18, so as to lock the rotating disc 18 and prevent the turnover frame 2 from rotating continuously.

[0062] If the telescopic cylinders 20 fail during use, the backup locking blocks 22 can be used. The backup locking blocks 22 are capable of sliding on the support frame 1, and the handles 23 of the backup locking blocks 22 can be manually operated to make the backup locking blocks 22 slide and enter into the locking openings 21 of the rotating disc 18 to lock the rotating disc 18 and prevent the turnover frame 2 from rotating randomly.

[0063] In addition, the carrying frame 3 is provided with a handle 24. When the carrying frame 3 needs to be moved, the operator can hold the handle 24 to conveniently slide the carrying frame 3, whether the carrying frame 3 is slid from the plate changing position 4 to the plate loading position of the gilding machine or vice versa, and the handle 24 provides convenience for the operation.

[0064] When the telescopic cylinder 20 is working normally, the automatic locking of the turnover frame 2 can be realized, and the operation efficiency is improved. When a special situation such as a telescopic cylinder 20 failure occurs, the manual operation design of the standby locking block 22 can ensure that the equipment can still be normally locked, the adaptability of the equipment to the emergency situation is enhanced, and the safety of the whole gilding die-cutting machine working process is ensured. The handle 24 on the bearing frame 3 is designed in full consideration of the convenience of the operator in actual operation. When the bearing frame 3 is moved, the handle 24 provides a stable holding point for the operator, so that the operation is more relaxed and accurate, which is beneficial to improve the speed and accuracy of the die-cutting plate and honeycomb plate replacement, and further improve the production efficiency.

[0065] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application. They should be covered in the scope of the claims of the present application.

Claims

1. A rotary support for a gilding die-cutting machine support plate, characterized in that, Including support (1), turnover frame (2) and bearing frame (3), the turnover frame (2) is rotationally arranged on the support (1), the turnover frame (2) has a plate changing position (4) thereon, the plate changing position (4) is used for corresponding with the plate loading position of the gilding die-cutting machine, the bearing frame (3) is slidingly arranged on the turnover frame (2), and is used for mounting die-cutting plate honeycomb plate, the bearing frame (3) is multiple, after the turnover frame (2) is rotated, for making a certain bearing frame (3) be placed in the plate changing position (4), after the bearing frame (3) is slid, for sliding to the plate loading position of the gilding die-cutting machine.

2. The rotary support for a gilding die-cutting machine support plate according to claim 1, characterized in that, Also including horizontal moving plate (5) and longitudinal moving plate (6), the horizontal moving plate (5) is movably arranged on the bearing frame (3) along the horizontal direction, the longitudinal moving plate (6) is movably arranged on the horizontal moving plate (5) along the longitudinal direction, the horizontal moving plate (5), the longitudinal moving plate (6) and the bearing frame (3) are used for accommodating die-cutting plate.

3. The rotary support for a gilding die-cutting machine support plate according to claim 2, characterized in that, The bearing frame (3) has a plurality of fixed holes one (7) thereon, the horizontal moving plate (5) has fixed holes two (8) thereon, the fixed holes one (7) correspond to the fixed holes two (8), and are used for fixing the horizontal moving plate (5); The horizontal moving plate (5) has a plurality of fixed holes three (9) thereon, the longitudinal moving plate (6) has fixed holes four (10) thereon, the fixed holes three (9) correspond to the fixed holes four (10), and are used for fixing the longitudinal moving plate (6).

4. The rotary support for a support plate of a die-cutting machine with gilding according to claim 3, characterized in that, The bearing frame (3) has a plurality of pressing plates (11) thereon, and the pressing plates (11) are used for pressing die-cutting plate.

5. The rotary support for a gilding die-cutting machine support plate according to claim 4, characterized in that, The bearing frame (3), the horizontal moving plate (5) and the longitudinal moving plate (6) are all provided with clamping plates (12), and a plurality of clamping plates (12) are used for jointly clamping die-cutting plate.

6. The rotary support for a gilding die-cutting machine support plate according to claim 1, characterized in that, Also including support roller (13), the support roller (13) is rotationally arranged on the turnover frame (2), the support roller (13) is multiple, the bearing frame (3) has sliding rails (14) thereon, and the support roller (13) abuts against the sliding rails (14).

7. The rotary support for a gilding die-cutting machine support plate according to claim 1, characterized in that, Also including locking pin (15), the locking pin (15) is slidingly arranged on the turnover frame (2), the bearing frame (3) has locking grooves (16) thereon, the locking pin (15) enters or escapes from the locking grooves (16) after sliding, and is used for locking the bearing frame (3), and the locking pin (15) has a lever (17) thereon.

8. The rotary support for a gilding die-cutting machine support plate according to claim 1, characterized in that, Also including turntable (18), locking block (19) and telescopic cylinder (20), the turntable (18) is arranged on the turnover frame (2), the turntable (18) is distributed with a plurality of locking notches (21) along the circumferential direction thereof, the locking block (19) is slidingly arranged on the support (1), the locking block (19) enters or escapes from the locking notches (21) after sliding, and is used for locking the turnover frame (2), and the telescopic cylinder (20) is arranged on the support (1), and the telescopic end of the telescopic cylinder (20) is connected with the locking block (19).

9. The rotary support for a gilding die-cutting machine support plate according to claim 8, characterized in that, Also included is a spare locking block (22) slidingly arranged on the support (1), which, after sliding, enters or exits the locking aperture (21) for locking the turnover frame (2), said spare locking block (22) being provided with a handle (23).

10. The rotary support for a gilding die-cutting machine support plate according to claim 1, characterized in that, The carrying frame (3) is provided with a handle (24).