Dual-machine combined type thermal dye sublimation printing equipment capable of being used in split mode

By designing a dual-machine combined thermal sublimation printing equipment that can be used separately, the problem that existing equipment cannot have both single-sided and double-sided printing functions is solved, and the flexible combination of equipment and diversified printing routes are realized, which reduces production costs and improves work efficiency.

CN222845060UActive Publication Date: 2025-05-09SHENYANG GAOTONG TECH CO LTD
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Patent Information

Application Number
CN202422014351.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-05-09
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

Existing thermal sublimation inkjet printing equipment cannot have both single-sided and double-sided printing functions, resulting in frequent procurement of large amounts of equipment when meeting diverse printing needs, increasing production work costs.

Method used

A two-machine combined thermal sublimation printing device that can be separated and used is designed, including a first printing device body and a second printing device body that can be connected through combination. Both have independent usage modes and combined usage modes, and can be combined into an efficient double-sided printing device.

Benefits of technology

It is realized as two single-sided printing and color development equipment separately, and can also be combined into an efficient double-sided printing equipment to adapt to different printing needs, save costs, improve work efficiency and printing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses double-machine combined type thermal dye sublimation printing equipment capable of being used in a split manner, which comprises a first printing equipment body and a second printing equipment body which can be connected in a combined manner, and is characterized in that the first printing equipment body and the second printing equipment body have an independent use mode and a combined use mode; the independent use mode comprises an upper feeding mode and a lower feeding mode. The single-sided printing and developing integrated device can be used as two single-sided printing and developing integrated devices respectively, can also be combined into a high-efficiency double-sided printing device, can adapt to different printing requirements through flexible configuration and combination, realizes diversified printing routes, increases the practicability of the device, is novel in structure, saves the cost, improves the working efficiency, and is suitable for popularization and application. And smoothness and stability of the working process are ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of thermal sublimation printing, in particular to a dual-machine combined thermal sublimation printing device that can be separated for use. Background Art

[0002] Commonly used thermal sublimation inkjet printing equipment often cannot have the functions of single-sided and double-sided printing at the same time. However, there are more and more diversified printing needs nowadays. To meet today's needs, both single-sided printing and double-sided printing are required. Frequent purchase of large quantities of equipment has greatly increased the production cost. For this reason, we proposed a design solution of two thermal sublimation printing and color development integrated combined equipment, aiming to solve existing problems, save costs, and improve printing efficiency and quality. Utility Model Content

[0003] The purpose of the utility model is to solve the problem that the existing single-sided and double-sided printing functions cannot be simultaneously provided, and nowadays there are more and more diversified printing demands. To meet the current demand of both single-sided printing and double-sided printing at the same time, a large number of equipments need to be purchased frequently, thus greatly increasing the production cost. A dual-machine combined thermal sublimation printing device that can be split for use is proposed.

[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0005] A dual-machine combined thermal sublimation printing device that can be separated for use, comprising a first printing device body and a second printing device body that can be connected by combination, characterized in that the first printing device body and the second printing device body have an independent use mode and a combined use mode, and the independent use mode has an upper feeding mode and a lower feeding mode;

[0006] In standalone mode:

[0007] The first printing device body includes two sets of feeding systems, namely a first upper feeding system and a first lower feeding system;

[0008] The first printing device body also includes a first driving system, a first angle rod, a first material guide rod A, a first material guide rod B, a first material guide rod C, a first material guide rod D, a first material guide rod E, a first material receiving system, a first printing vehicle, a first printing table, a first auxiliary color fixing box, and a first main color fixing box;

[0009] The second printing device body includes two sets of feeding systems, namely a second upper feeding system and a second lower feeding system;

[0010] The second printing device body also includes a second driving system, a second corner rod, a second material guide rod A, a second material guide rod B, a second material guide rod C, a second material guide rod D, a second material guide rod E, a second material receiving system, a second printing vehicle, a second printing table, a second auxiliary color fixing box and a second main color fixing box.

[0011] Furthermore, the combination use modes include two types, namely a "first combination mode" and a "second combination mode".

[0012] Furthermore, the "first combination mode" is composed of the first upper material unloading system, the first material guide rod A, the first material guide rod B, the first corner rod, the first drive system, the first printing table, the first printing vehicle, the first material guide rod C, the first material guide rod D, the second corner rod, the second drive system, the second printing table, the second printing vehicle, the second material guide rod C, the second main color fixing box, the second material guide rod E, and the second material collecting system.

[0013] Furthermore, the "second combination mode" is composed of a second upper material unloading system, a second material guide rod A, a second material guide rod B, a second corner rod, a second drive system, a second printing table, a second printing vehicle, a second material guide rod C, a second material guide rod D, a first corner rod, a first drive system, a first printing table, a first printing vehicle, a first material guide rod C, a first main color fixing box, a first material guide rod E, and a first material receiving system.

[0014] Furthermore, the first upper unloading system, the first lower unloading system, the second upper unloading system and the second lower unloading system are all driven by motors.

[0015] Furthermore, the first material collecting system and the second material collecting system are both driven by motors.

[0016] Furthermore, a heating system is provided in both the first main color fixing box and the second main color fixing box.

[0017] The beneficial effects of the utility model are:

[0018] Through the setting of the first printing device body and the second printing device body, they can be used separately as two single-sided printing and color developing devices, and can also be combined into an efficient double-sided printing device. Through flexible configuration and combination, the device can adapt to different printing needs and realize diversified printing routes, thereby increasing the practicality of the device, having a novel structure, saving costs, improving work efficiency, and ensuring a smooth and stable working process. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a three-dimensional structural schematic diagram of a dual-machine combined thermal sublimation printing device that can be disassembled and used proposed by the utility model;

[0020] Figure 2This is a front view structural diagram of a dual-machine combined thermal sublimation printing device that can be separated and used according to the utility model.

[0021] Figure 3 This is a schematic diagram of the first combined mode structure of a dual-machine combined thermal sublimation printing device that can be separated for use proposed by the utility model;

[0022] Figure 4 This is a schematic diagram of the second combined mode structure of a dual-machine combined thermal sublimation printing device that can be separated for use proposed by the utility model;

[0023] Figure 5 This is a schematic diagram of the feeding structure under the first printing device body of a dual-machine combined thermal sublimation printing device that can be separated for use proposed by the utility model;

[0024] Figure 6 The utility model provides a schematic diagram of the lower feeding structure of the second printing device body of a dual-machine combined thermal sublimation printing device that can be separated for use.

[0025] In the figure: 1. first printing device body; 101. first upper material discharging system; 102. first material guide rod A; 103. first printing carriage; 104. first driving shaft; 105. first material guide rod B; 106. first angle rod; 107. first material guide rod C; 108. first auxiliary color fixing box; 109. first material guide rod D; 110. first main color fixing box; 111. first material guide rod E; 112. first material collecting cylinder; 113. first lower material discharging system; 114. first printing table ; 2. The first printing device body; 201. The second upper material discharge system; 202. The second material guide rod A; 203. The second printing vehicle; 204. The second driving system; 205. The second material guide rod B; 206. The second corner rod; 207. The second material guide rod C; 208. The second auxiliary color fixing box; 209. The second material guide rod D; 210. The second main color fixing box; 211. The second material guide rod E; 212. The second material collection system; 213. The second lower material discharge system; 214. The second printing table. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0027] Reference Figure 1-Figure 6, a dual-machine combined thermal sublimation printing device that can be separated for use, including a first printing device body 1 and a second printing device body 2 that can be connected by combination, the first printing device body 1 and the second printing device body 2 have an independent use mode and a combined use mode, and the independent use mode has an upper feeding mode and a lower feeding mode;

[0028] In standalone mode:

[0029] The first printing device body 1 includes two sets of unloading systems, a first upper unloading system 101 and a first lower unloading system 113;

[0030] The first printing device body 1 also includes a first driving system 104, a first angle rod 106, a first material guide rod A 102, a first material guide rod B 105, a first material guide rod C 107, a first material guide rod D 109, a first material guide rod E 111, a first material receiving system 112, a first printing vehicle 103, a first printing table 114, a first auxiliary color fixing box 108, and a first main color fixing box 110;

[0031] The first driving system 104 is a driving motor fixed in the first printing device body 1 by bolts, and a transmission cylinder is installed on the output shaft of the driving motor;

[0032] The inner wall of the first printing device body 1 is rotatably connected with a first angle rod 106, a first material guide rod A 102, a first material guide rod B 105, a first material guide rod C 107, a first material guide rod D 109, and a first material guide rod E 111 through an embedded bearing.

[0033] The first material receiving system 112 is a driving motor fixed in the first printing device body 1 by bolts, and a winding drum is installed on the output shaft of the driving motor;

[0034] The first printing device body 1 is fixed with a first printing carriage 103, a first printing table 114, a first auxiliary color fixing box 108, and a first main color fixing box 110 by bolts. A heating system is installed in the first main color fixing box 110, and the heating system is a heater.

[0035] It should be noted that the first material guide rod A102 is located on one side of the first upper material discharge system 101, the first printing carriage 103 is located between the first upper material discharge system 101 and the first material guide rod C107, the first printing table 114 is located directly below the first printing carriage 103, the first auxiliary color fixing box 108 and the first main color fixing box 110 are located below the first printing table 114, and the first material guide rod E 111 and the first material receiving cylinder 112 are located below the first main color fixing box 110.

[0036] The second driving system 204 is a driving motor fixed in the second printing device body 2 by bolts, and a transmission cylinder is installed on the output shaft of the driving motor;

[0037] The inner wall of the second printing device body 2 is rotatably connected with a second angle rod 206, a second material guide rod A202, a second material guide rod B205, a second material guide rod C207, a second material guide rod D209, and a second material guide rod E211 through an embedded bearing.

[0038] The second material receiving system 212 is a driving motor fixed in the second printing device body 2 by bolts, and a winding drum is installed on the output shaft of the driving motor;

[0039] The second printing device body 2 has a second printing carriage 203, a second printing table 214, a second auxiliary color fixing box 208 and a second main color fixing box 210 fixed therein by bolts. The second main color fixing box 210 has a heating system installed therein, which is a heater.

[0040] The working principle of this embodiment is as follows: when in use, a printing medium is installed in the device for printing, and it can be used as two independent single-sided printing and color developing integrated devices respectively as needed, or it can be combined into an efficient double-sided printing device.

[0041] When working alone, upper feeding mode:

[0042] refer to Figure 2 ,like Figure 1 As shown in the left part, first, the first upper feeding system 101 on the first printing device body 1 is used to place the printing medium to be printed. The printing medium on the first upper feeding system 101 passes through the first guide rod A102 and the first guide rod B105, and then bypasses the first angle rod 106. The first driving shaft 104 pulls the printing medium, and then passes through the first printing vehicle 103 on the first printing table 114 for printing, and then enters the first main color fixing box 110 through the first guide rod C107 for comprehensive drying and color fixing. After passing through the first main color fixing box 110, it bypasses the first guide rod E111 and finally goes out and enters the first receiving cylinder 112. Therefore, the first printing device body 1 can be used as an independent and complete single-sided printing and color developing integrated device;

[0043] refer to Figure 2 ,like Figure 1As shown on the right, first, the second upper feeding system 201 on the second printing device body 2 is used to place the printing medium to be printed. The printing medium on the second upper feeding system 201 passes through the second guide rod A202 and the second guide rod B205, and then bypasses the second corner rod 206. The second driving system 204 pulls the printing medium, and then prints it through the second printing vehicle 203 on the second printing table 214, and then enters the second main color fixing box 210 through the second guide rod C207 for comprehensive drying and color fixing. After passing through the second main color fixing box 210, it bypasses the second guide rod E211 and finally goes out to enter the second receiving system 212. Therefore, the second printing device body 2 can be used as an independent and complete single-sided printing and color developing integrated device.

[0044] When working alone, in the lower feeding mode:

[0045] like Figure 5 As shown, the first feeding system 113 on the first printing device body 1 is used to place the printing medium to be printed. The printing medium on the first feeding system 113 passes through the first guide rod B105, and then bypasses the first corner rod 106. The first driving shaft 104 pulls the printing medium. After passing through the first driving shaft 104, it is printed by the first printing vehicle 103 on the first printing table 114, and then enters the first main color fixing box 110 through the first guide rod C107 for comprehensive drying and color fixing. After passing through the first main color fixing box 110, it bypasses the first guide rod E111 and finally goes out to enter the first receiving cylinder 112. The first printing device body 1 can be used as an independent and complete feeding system single-sided printing and color developing integrated device.

[0046] When working alone, in the lower feeding mode:

[0047] like Figure 6 As shown, when the feeding system needs to print on one side, the second feeding system 213 on the second printing device body 2 is used to place the printing medium to be printed, and the printing medium on the second feeding system 213 passes through the second guide rod B205, and then bypasses the second corner rod 206. The second drive system 204 pulls the printing medium, and after passing through the second drive system 204, it is printed by the second printing vehicle 203 on the second printing table 214, and then enters the second main color fixing box 210 through the second guide rod C207 for comprehensive drying and color fixing. After passing through the second main color fixing box 210, it bypasses the second guide rod E211 and finally goes out to enter the second receiving system 212. The second printing device body 2 can be used as an independent and complete feeding system single-sided printing and color displaying integrated device.

[0048] When double-sided printing is required, in the "First Combination Mode":

[0049] like Figure 3As shown, the first upper unloading system 101 on the first printing device body 1 is used to place the print medium to be printed. The print medium on the first upper unloading system 101 passes through the first guide rod A102 and the first guide rod B105, and then bypasses the first corner rod 106. The first drive shaft 104 pulls the print medium. After passing through the first drive shaft 104, it passes through the first printing vehicle 103 on the first printing table 114 for printing, bypasses the first guide rod C107, and passes through the first auxiliary color fixing box 108 for a drying process. Dry color fixing, pass through the first guide rod D109, then bypass the second corner rod 206, the second drive system 204 pulls the printing medium, after passing through the second drive system 204, it is printed by the second printing vehicle 203 on the second printing table 214, and then bypasses the second guide rod C207 to enter the second main color fixing box 210 for comprehensive drying and color fixing, after passing through the second main color fixing box 210, bypasses the second guide rod E211 and finally goes out, enters the second material receiving system 212, thereby combining into a complete double-sided printing system.

[0050] When double-sided printing is required, in "Second combination mode":

[0051] like Figure 4 As shown, the second upper unloading system 201 on the second printing device body 2 can also be used to place the print medium to be printed. The print medium on the second upper unloading system 201 passes through the second guide rod A202 and the second guide rod B205, and then bypasses the second corner rod 206. The second driving system 204 pulls the print medium, and then prints through the second printing vehicle 203 on the second printing table 214, and then enters the second main color fixing box 210 through the second guide rod C207 for comprehensive drying and color fixing. It passes through the second guide rod D209, then bypasses the first angle rod 106, and pulls the printing medium through the first drive shaft 104. After passing through the first drive shaft 104, it passes through the first printing vehicle 103 on the first printing table 114 for printing, and then bypasses the first guide rod C107 to enter the first main color fixing box 110 for comprehensive drying and color fixing. After passing through the first main color fixing box 110, it bypasses the first guide rod E111 and finally goes out and enters the first receiving cylinder 112, thereby combining into a complete double-sided printing system.

[0052] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A dual-machine combined thermal sublimation printing device that can be separated for use, comprising a first printing device body (1) and a second printing device body (2) that can be connected by combination, characterized in that: The first printing device body (1) and the second printing device body (2) have an independent use mode and a combined use mode, and the independent use mode has an upper feeding mode and a lower feeding mode; In standalone mode: The first printing device body (1) comprises two sets of material discharge systems, namely a first upper material discharge system (101) and a first lower material discharge system (113); The first printing device body (1) also includes a first driving system (104), a first angle rod (106), a first material guide rod A (102), a first material guide rod B (105), a first material guide rod C (107), a first material guide rod D (109), a first material guide rod E (111), a first material receiving system (112), a first printing vehicle (103), a first printing table (114), a first auxiliary color fixing box (108), and a first main color fixing box (110); The second printing device body (2) comprises two sets of material discharge systems, namely a second upper material discharge system (201) and a second lower material discharge system (213); The second printing device body (2) also includes a second driving system (204), a second angle rod (206), a second material guide rod A (202), a second material guide rod B (205), a second material guide rod C (207), a second material guide rod D (209), a second material guide rod E (211), a second material receiving system (212), a second printing vehicle (203), a second printing table (214), a second auxiliary color fixing box (208) and a second main color fixing box (210).

2. The detachable dual-machine combined thermal sublimation printing device according to claim 1, characterized in that: The combination use modes include two types, namely "first combination mode" and "second combination mode".

3. The detachable dual-machine combined thermal sublimation printing device according to claim 2, characterized in that: The "first combination mode" is composed of a first unloading system (101), a first material guide rod A (102), a first material guide rod B (105), a first corner rod (106), a first drive system (104), a first printing table (114), a first printing vehicle (103), a first material guide rod C (107), a first material guide rod D (109), a second corner rod (206), a second drive system (204), a second printing table (214), a second printing vehicle (203), a second material guide rod C (207), a second main color fixing box (210), a second material guide rod E (211), and a second material receiving system (212).

4. The detachable dual-machine combined thermal sublimation printing device according to claim 2, characterized in that: The "second combination mode" is composed of a second unloading system (201), a second material guide rod A (202), a second material guide rod B (205), a second corner rod (206), a second drive system (204), a second printing table (214), a second printing vehicle (203), a second material guide rod C (207), a second material guide rod D (209), a first corner rod (106), a first drive system (104), a first printing table (114), a first printing vehicle (103), a first material guide rod C (107), a first main color fixing box (110), a first material guide rod E (111), and a first material receiving system (112).

5. The detachable dual-machine combined thermal sublimation printing device according to claim 1, characterized in that: The first upper unloading system (101), the first lower unloading system (113), the second upper unloading system (201) and the second lower unloading system (213) are all driven by motors.

6. The detachable dual-machine combined thermal sublimation printing device according to claim 1, characterized in that: The first material collecting system (112) and the second material collecting system (212) are both driven by motors.

7. The detachable dual-machine combined thermal sublimation printing device according to claim 6, characterized in that: A heating system is provided in both the first main color fixing box (110) and the second main color fixing box (210).