Pressure-adjustable transfer paper embossing equipment

By introducing hydraulic components and a buffer frame into the transfer paper embossing equipment, the pressure of the embossing component can be adjusted, solving the problem of fixed pressing force in conventional equipment, improving the adaptability and ease of operation of the equipment, and reducing maintenance costs.

CN224044743UActive Publication Date: 2026-03-27ZHEJIANG CHUANGHAO NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Conventional embossing equipment uses a fixed pressing force, which is difficult to adjust appropriately according to processing needs.

Method used

A device comprising a processing table, a gantry frame, a hydraulic assembly, a buffer frame, and an embossing assembly is designed. The combination of the hydraulic assembly and the buffer frame enables vertical adjustment and buffering of the embossing assembly. The cooperation between the adjusting bolt and the buffer spring enables fine pressure adjustment.

Benefits of technology

The pressure of the embossing components is adjustable, which improves the adaptability and ease of operation of the equipment, while also facilitating structural disassembly and maintenance and reducing manufacturing costs.

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Abstract

The utility model discloses pressure-adjustable transfer paper embossing equipment, and relates to the technical field of transfer paper processing, the pressure-adjustable transfer paper embossing equipment comprises a processing table and a buffer framework, a portal frame is erected on the top of the processing table, hydraulic assemblies are vertically installed at the bottom of the portal frame in a bilateral symmetry mode, and the buffer framework is connected to the bottoms of the hydraulic assemblies; the end, close to the perpendicular central axis of the machining table, of the buffering frame is connected with an embossing assembly. According to the transfer printing paper embossing equipment capable of adjusting the pressure, a buffer framework is arranged, the operation stroke of a hydraulic push rod is fixed, an adjusting bolt connected with the top of the buffer framework is matched, the relative distance between an embossing plate main body mounted at the bottom of a combined seat and a table plate is adjusted through screwing of the adjusting bolt, and meanwhile under structural cooperation of a buffer spring; and the downward pressing force generated when the hydraulic assembly drives the hydraulic assembly to be pushed downwards to the surface of the machining table can be effectively adjusted, so that the using flexibility and convenience of the device structure are guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of embossing equipment of transfer paper, and specifically to a kind of adjustable pressure embossing equipment of transfer paper. BACKGROUND

[0002] Transfer paper refers to transfer a kind of paper printed with pattern, and the pattern of the paper can be transferred to other surfaces. Usually, the paper must be wet first, and the front is transferred downward. The transfer paper is tightly attached to the second layer surface, and then the backing paper is removed. Industrial or mass-produced ceramics often use this transfer paper for decoration. The term "transfer printing" also includes the transfer process. As for surrealism transfer, it refers to a process in which an artist applies opaque watercolor paint to a piece of paper, places another piece of paper on top of it, and then presses on several places on the second piece of paper before lifting it up. This technique can create effects similar to exotic flowers, mineral deposits or sponges.

[0003] Conventional embossing equipment has a fixed pressing force due to structural limitations, making it difficult to adjust the pressing force as needed. SUMMARY

[0004] The utility model aims to provide a kind of adjustable pressure embossing equipment of transfer paper to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of adjustable pressure embossing equipment of transfer paper, including processing table and buffer frame, the top of the processing table is erected with gantry, and the bottom of the gantry is vertically installed with hydraulic assembly left and right symmetrically, the buffer frame is connected to the bottom of hydraulic assembly, and the buffer frame is connected with embossing assembly at one end near the vertical central axis of processing table, the buffer frame includes guide column, fixed seat, buffer seat and buffer spring, the bottom of the guide column is provided with fixed seat, and the middle segment of the guide column is connected with buffer seat, and buffer spring is arranged between the bottom of one end of buffer seat and the top of fixed seat.

[0006] Further, the processing table includes base, combined socket, table plate and butt joint groove, the top of the left and right ends of the base is vertically provided with combined socket, and the top surface of the combined socket is installed with table plate, and the top surface of the table plate is left and right symmetrically provided with butt joint groove.

[0007] Further, the gantry includes beam member, support pile, link bolt and support inclined pile, the bottom of the beam member is left and right symmetrically connected with support pile, and support pile and beam member are vertically screw-connected with beam member at the link of support pile and beam member, and the middle part of the front and back sides of support pile is connected with support inclined pile.

[0008] Further, the beam member, the support pile, the connecting bolt and the support inclined pile are movably connected, and the top surface structure of the support pile is matched with the bottom surface structure of one end of the beam member.

[0009] Further, the inner surface structure of the combined socket is matched with the outer surface structure of the bottom end of the support pile, and the support pile is movably connected to the top end of the base at one end of the support pile, and the inner surface structure of the butt joint groove is matched with the bottom surface structure of the fixed base.

[0010] Further, the hydraulic assembly comprises a hydraulic push rod, a first connecting base and a second connecting base, the top of the embossing assembly is provided with the first connecting base, and the bottom of the first connecting base is provided with the second connecting base.

[0011] Further, the embossing assembly comprises an adjusting bolt, a connecting base, a combined base and an embossing plate body, the bottom of the adjusting bolt is connected with the connecting base, the bottom of the connecting base is connected with the combined base, and the bottom of the combined base is provided with the combined base.

[0012] Further, the processing table, the gantry, the hydraulic assembly, the buffer frame and the embossing assembly are movably connected with each other, the second connecting base is movably installed at the top of the buffer base, the guide column penetrates through one end of the buffer base vertically, the buffer spring is sleeved on the lower end of the guide column, and the adjusting bolt is vertically screwed through the end of the buffer base away from the guide column, and the second connecting base is movably connected to the top end of the combined base.

[0013] The utility model provides a kind of adjustable pressure transfer paper embossing equipment, with the following beneficial effects:

[0014] 1, the utility model, the top end of embossing assembly is connected with buffer frame, wherein adjusting bolt is vertically screwed in one end of buffer base, by vertically screwing adjusting bolt, the relative distance between entire embossing assembly and processing table in vertical direction can be adjusted, and since the operation stroke of the structure of hydraulic assembly itself is fixed distance, the pressure effect of embossing assembly on the surface of gantry can be finely adjusted, and buffer spring is arranged on the top of fixed base and the bottom of one end of buffer base, so that the structure can provide the down pressure buffer of embossing assembly on the surface of processing table as far as possible, to further assist the pressure effect of embossing assembly on the surface of gantry.

[0015] 2、The utility model discloses, because each structural member such as processing platform, gantry, hydraulic assembly, buffer framework and embossing assembly adopts movable structure and connects each other, wherein the movable connection between the lower end of the support inclined pile and the top surface of one end of the support inclined pile, and the insertion structure between the bottom end of the support pile and the combined socket, make that the whole gantry has sufficient combined stability with the processing platform, and also facilitate the structure split, and the movable connection between the hydraulic assembly and the cross beam component and between the hydraulic assembly and the buffer seat, realize the structural connection of the gantry and the buffer framework, in addition, the structure dismounting between the adjusting bolt, the link seat, the combined seat and the embossing plate main part also has, so that the structural member can be independently split, to facilitate the structure maintenance, convenient operation can also be connected and be simplified reasonably, control the manufacturing cost properly. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the body shaft side view structural schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper;

[0017] Figure 2 It is the processing platform structural schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper;

[0018] Figure 3 It is the gantry three-dimensional structure schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper;

[0019] Figure 4 It is the hydraulic assembly three-dimensional structure schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper;

[0020] Figure 5 It is the buffer framework three-dimensional structure schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper;

[0021] Figure 6 It is the embossing assembly three-dimensional structure schematic diagram of the embossing equipment of the utility model of adjustable pressure transfer paper.

[0022] In the drawing: 1, processing platform;101, base;102, combined socket;103, table board;104, butt joint groove;2, gantry;201, cross beam component;202, support pile;203, link bolt;204, support inclined pile;3, hydraulic assembly;301, hydraulic push rod;302, first connecting seat;303, second connecting seat;4, buffer framework;401, guide column;402, fixed seat;403, buffer seat;404, buffer spring;5, embossing assembly;501, adjusting bolt;502, link seat;503, combined seat;504, embossing plate main body. DETAILED DESCRIPTION

[0023] The embodiments of the present application will be further described in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0024] As shown in Figures 1 to 6 A pressure-adjustable embossing equipment for transfer paper, comprising a processing table 1 and a buffer frame 4, a gantry 2 is erected on the top of the processing table 1, and a hydraulic assembly 3 is vertically installed on the bottom of the gantry 2 in a left-right symmetrical manner, the buffer frame 4 is connected to the bottom of the hydraulic assembly 3, and the buffer frame 4 is connected with an embossing assembly 5 at one end close to the vertical central axis of the processing table 1, the buffer frame 4 comprises a guide column 401, a fixed seat 402, a buffer seat 403 and a buffer spring 404, the bottom of the guide column 401 is provided with the fixed seat 402, the middle section of the guide column 401 is connected with the buffer seat 403, and the buffer spring 404 is arranged between the bottom of one end of the buffer seat 403 and the top of the fixed seat 402, the embossing assembly 5 comprises an adjusting bolt 501, a connecting seat 502, a combination seat 503 and an embossing plate body 504, the bottom of the adjusting bolt 501 is connected with the connecting seat 502, the bottom of the connecting seat 502 is connected with the combination seat 503, and the bottom of the combination seat 503 is provided with the combination seat 503, the processing table 1, the gantry 2, the hydraulic assembly 3, the buffer frame 4 and the embossing assembly 5 are movably connected with each other, the second connecting seat 303 is movably installed on the top of the buffer seat 403, the guide column 401 vertically penetrates one end of the buffer seat 403, the buffer spring 404 is sleeved on the lower end of the guide column 401, and the adjusting bolt 501 vertically penetrates one end of the buffer seat 403 away from the guide column 401, the second connecting seat 303 is movably connected to one end of the top of the combination seat 503, the adjusting bolt 501 is vertically screwed, so that the relative distance between the entire embossing assembly 5 and the processing table 1 in the vertical direction can be adjusted, and since the operating stroke of the hydraulic assembly 3 is a fixed distance, the pressure effect of the embossing assembly 5 on the surface of the gantry 2 can be finely adjusted.

[0025] As shown in Figures 1 to 6As shown, the processing table 1 includes a base 101, a combination socket 102, a table plate 103, and a docking groove 104. The base 101 has combination sockets 102 vertically opened at the top of both its left and right ends, and the table plate 103 is mounted on the top surface of the combination sockets 102. The top surface of the table plate 103 has docking grooves 104 symmetrically opened on the left and right sides. The gantry frame 2 includes a crossbeam component 201, support piles 202, connecting bolts 203, and support inclined piles 204. The bottom of the crossbeam component 201 is symmetrically connected to the support piles 202, and the crossbeam component 201 is vertically threaded at the connection between the support piles 202 and the crossbeam component 201. Support inclined piles 204 are connected to the middle of the front and rear sides of the support piles 202. The crossbeam component 201, support piles 202, connecting bolts 203, and support inclined piles 204 are movably connected, and the top surface structure of the support piles 202 is connected to the crossbeam. The bottom surface structures of one end of component 201 are matched with each other, the inner surface structure of the combined socket 102 is matched with the outer surface structure of the bottom end of the support pile 202, and the end of the support pile 202 away from the support pile 202 is movably connected to the top end of the base 101. The inner surface structure of the docking groove 104 is matched with the bottom surface structure of the fixed seat 402. The hydraulic component 3 includes a hydraulic push rod 301, a first connecting seat 302 and a second connecting seat 303. The top of the embossing component 5 is equipped with the first connecting seat 302, and the bottom of the first connecting seat 302 is equipped with the second connecting seat 303. Since the various structural components such as the processing table 1, the gantry 2, the hydraulic component 3, the buffer frame 4 and the embossing component 5 are connected to each other by a movable structure, it is easy to disassemble the structural components independently for structural maintenance. It is convenient to operate and the docking can be reasonably simplified.

[0026] In summary, as Figures 1 to 6 As shown, in use, the adjustable pressure transfer paper embossing device first inserts the support pile 202 vertically into the middle of the combination socket 102 at one end of the base 101. At the same time, two sets of support inclined piles 204 are connected to the front and rear ends of the support pile 202 respectively. With the combination of the base 101 structure, a triangular structure is formed between the support pile 202, the support inclined pile 204 and the base 101. Then, the bottom end of one end of the crossbeam component 201 is connected to the top of the support pile 202, and the crossbeam component 201 and the support pile 202 are connected and fixed using the connecting bolt 203.

[0027] Then, the hydraulic push rod 301 is fixed to one end of the bottom of the crossbeam component 201 using the first connecting seat 302 at the top and bolts. At the same time, the lower end of the hydraulic push rod 301 is installed in the middle of the top of the buffer seat 403 using the second connecting seat 303. Then, the buffer frame 4 connected with the embossing component 5 is connected to the processing table 1 by using the fixing seat 402 at the bottom of the guide column 401 and the docking groove 104 to mate with each other and bolts.

[0028] Then according to the need of use, the adjusting bolt 501 connected with the combination seat 503 by the adapter seat 502 is vertically screwed in the inside of one end of the buffer seat 403, so as to adjust the embossing plate body 504 at the bottom of the combination seat 503, control the relative distance between the embossing plate body 504 and the table plate 103, and drive the buffer seat 403 and the embossing assembly 5 to vertically press along the surface of the guide column 401 during the vertical pushing of the hydraulic assembly 3, until the embossing plate body 504 is pressed on the surface of the table plate 103, so as to perform embossing treatment on the transfer paper placed on the surface of the table plate 103.

[0029] The embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the present application and its practical application, and to enable others skilled in the art to understand the present application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. An embossing apparatus for embossing transfer paper, comprising a processing table (1) and a buffer frame (4), characterized in that: The top of the processing table (1) is erected with a gantry (2), and the bottom of the gantry (2) is vertically installed with a hydraulic assembly (3) left and right symmetrically, the buffer frame (4) is connected to the bottom of the hydraulic assembly (3), and the buffer frame (4) is connected with the embossing assembly (5) near one end of the vertical central axis of the processing table (1), the buffer frame (4) comprises a guide column (401), a fixed seat (402), a buffer seat (403) and a buffer spring (404), the bottom of the guide column (401) is provided with the fixed seat (402), the middle segment of the guide column (401) is connected with the buffer seat (403), and the bottom of one end of the buffer seat (403) and the top of the fixed seat (402) are provided with the buffer spring (404).

2. The embossing apparatus of claim 1, wherein, The processing table (1) comprises a base (101), a combined socket (102), a table plate (103) and a butt joint groove (104), the top of the left and right ends of the base (101) is vertically provided with a combined socket (102), and the top surface of the combined socket (102) is installed with a table plate (103), and the top surface of the table plate (103) is left and right symmetrically provided with a butt joint groove (104).

3. A pressure-adjustable embossing apparatus for transfer paper according to claim 2, characterized in that The gantry (2) comprises a beam member (201), a support pile (202), a connecting bolt (203) and a support inclined pile (204), the bottom of the beam member (201) is left and right symmetrically connected with the support pile (202), and the support pile (202) and the beam member (201) are vertically and threadedly connected with the beam member (201) at the connecting place, and the front and rear middle parts of the support pile (202) are connected with the support inclined pile (204).

4. The embossing apparatus of claim 3, wherein the pressure adjustment mechanism comprises a plurality of rollers, each of the plurality of rollers being rotatably coupled to the frame and having a diameter that is less than the diameter of the plurality of rollers disposed between the frame and the platen. The beam member (201), the support pile (202), the connecting bolt (203) and the support inclined pile (204) are movably connected, and the top surface structure of the support pile (202) is matched with the bottom surface structure of one end of the beam member (201).

5. A pressure-adjustable embossing apparatus for transfer paper according to claim 4, wherein The inner surface structure of the combined socket (102) is matched with the bottom end outer surface structure of the support pile (202), and the end of the support pile (202) away from the support pile (202) is movably connected to the top end of the base (101), and the inner surface structure of the butt joint groove (104) is matched with the bottom surface structure of the fixed seat (402).

6. The embossing apparatus of claim 1, wherein, The hydraulic assembly (3) comprises a hydraulic push rod (301), a first connecting seat (302) and a second connecting seat (303), the top of the embossing assembly (5) is installed with the first connecting seat (302), and the bottom of the first connecting seat (302) is installed with the second connecting seat (303).

7. A pressure-adjustable embossing apparatus for transfer paper according to claim 6, characterized in that The embossing assembly (5) comprises an adjusting bolt (501), a connecting seat (502), a combined seat (503) and an embossing plate body (504), the bottom of the adjusting bolt (501) is connected with the connecting seat (502), the bottom of the connecting seat (502) is connected with the combined seat (503), and the bottom of the combined seat (503) is installed with the combined seat (503).

8. A pressure-adjustable embossing apparatus for transfer paper according to claim 7, characterized in that The processing platform (1), gantry (2), hydraulic assembly (3), buffer frame (4) and embossing assembly (5) are movably connected with each other, the second connecting seat (303) is movably installed in the middle of the top of the buffer seat (403), the guide column (401) vertically penetrates one end of the buffer seat (403), the buffer spring (404) is sleeved on the lower end of the guide column (401), and the adjusting bolt (501) vertically penetrates the end of the buffer seat (403) away from the guide column (401), and the second connecting seat (303) is movably connected to the top end of the combined seat (503).