Quartz stone heat transfer printing slewing device

By designing a quartz stone thermal transfer rotary device, using a thermal transfer frame, a double-layer conveying mechanism and a lifting rack conveying mechanism, the problem of existing equipment occupying a large area when processing complex pattern-level products is solved, and efficient multiple thermal transfers are achieved, and production efficiency is improved.

CN222946376UActive Publication Date: 2025-06-06FOSHAN HENGLIHAO MASCH CO LTD
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Patent Information

Application Number
CN202422348320.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-06-06
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

When existing quartz stone thermal transfer equipment processes products that require multiple patterns or complex pattern levels, it requires multiple thermal transfers, resulting in a large horizontal area occupied by the equipment.

Method used

A quartz stone thermal transfer rotary device is designed, using a thermal transfer frame, a double-layer conveying mechanism and a lifting frame conveying mechanism. Through the adjustment of the lifting frame conveying mechanism and the upper and lower layers of the double-layer conveying mechanism, the efficient multiple thermal transfer of the plate is achieved, reducing the horizontal area occupied by the equipment.

Benefits of technology

Through this device, multiple thermal transfers can be achieved in a smaller horizontal area, which improves production efficiency and is suitable for products with complex pattern levels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a quartz stone heat transfer printing rotation device, and relates to the field of heat transfer printing equipment, the quartz stone heat transfer printing rotation device comprises a heat transfer printing rack, a machining opening used for machining plates and a rotation opening used for rotating the plates are formed in the heat transfer printing rack, and plate conveying assemblies are arranged in the machining opening and the rotation opening correspondingly; the heat transfer printing rack is provided with a heat transfer printing mechanism used for conducting heat transfer printing on the plates in the machining opening. The double-layer conveying mechanisms are arranged at the feeding end and the discharging end of the heat transfer printing rack and can convey the plates at the machining opening and the rotating opening in the heat transfer printing rack; the lifting frame conveying mechanisms are arranged at the end, away from the heat transfer printing rack, of the double-layer conveying mechanism and can transfer the plates located on the upper layer or the lower layer in the double-layer conveying mechanism to the opposite layer. Due to the fact that the lifting frame conveying mechanism has two states, the double-layer conveying mechanism has the upper layer and the lower layer, and the heat transfer printing rack is provided with the machining opening and the rotating opening, the occupied horizontal area is smaller.
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Description

Technical Field

[0001] The present application relates to the field of thermal transfer equipment, and in particular to a quartz thermal transfer rotary device. Background Art

[0002] Quartz stone thermal transfer is a technology used to decorate the surface of quartz stone. It uses thermal transfer equipment to heat and apply pressure to the transfer paper or transfer film with a pattern, so that the pattern adheres to the surface of the quartz stone to form a decorative effect. This technology can enhance the beauty and personalization of quartz stone.

[0003] Quartz thermal transfer equipment is a machine used for thermal transfer on the surface of quartz stone. It can transfer patterns or textures to quartz stone to enhance its decorative effect. Quartz thermal transfer technology usually adopts thermal sublimation transfer, which is a process of transferring images or patterns from transfer paper or transfer film to the surface of quartz stone by heating and pressurizing.

[0004] Regarding the above-mentioned related technologies, some products require multiple patterns or complex pattern levels, which require multiple heat transfers to achieve. In the related technologies, another line needs to be opened to realize the transfer of the plate, which occupies a large horizontal area. Utility Model Content

[0005] In order to reduce the horizontal area occupied by the equipment, the present application provides a quartz thermal transfer rotary device.

[0006] This application provides a quartz stone thermal transfer rotary device, which adopts the following technical solution:

[0007] Quartz thermal transfer rotary device, including:

[0008] A heat transfer machine frame, in which a processing port for processing a plate and a rotating port for rotating the plate are arranged, the processing port and the rotating port are both provided with a plate conveying assembly, and the heat transfer machine frame is provided with a heat transfer mechanism for heat transferring the plate in the processing port;

[0009] The double-layer conveying mechanism is provided with at least two groups, which are arranged at the feeding end and the discharging end of the thermal transfer machine frame, and can convey the plates at the processing port and the rotating port on the thermal transfer machine frame;

[0010] The lifting frame conveying mechanism is provided with at least two groups, which are arranged at one end of the double-layer conveying mechanism away from the thermal transfer machine frame, and can transfer the plate on the upper layer or the lower layer of the double-layer conveying mechanism to the opposite layer.

[0011] By adopting the above technical solution, the lifting frame conveying mechanism is adjusted to the raised state, and the plate on it is conveyed to the processing port of the thermal transfer rack, and the plate is thermally transferred through the thermal transfer mechanism. Since some products require multiple patterns or complex pattern layers, the number of thermal transfers required is more than two. They are sequentially conveyed to the first group of lifting frame conveying mechanisms that have been adjusted to the lowered state through the lower layer of the double-layer conveying mechanism and the turning port of the thermal transfer rack, and then the first group of lifting frame conveying mechanisms are readjusted to the raised state, so as to facilitate the subsequent multiple thermal transfers of the plate. Since the lifting frame conveying mechanism has two states, and the double-layer conveying mechanism has an upper layer and a lower layer, and the thermal transfer rack is provided with a processing port and a turning port, the horizontal area occupied is smaller.

[0012] Optionally, the plate conveying assembly includes a long installation frame arranged in the thermal transfer machine frame, a plate conveying shaft rotatably arranged at both ends of the long installation frame, a plate conveying sprocket arranged on the plate conveying shaft, a plate conveying chain for transmitting between two plate conveying sprockets, a conveying frame arranged on the outside of each chain link of the plate conveying chain, and a plate driving component for driving one of the plate conveying shafts to rotate, and multiple conveying frames are used to receive plates.

[0013] By adopting the above technical solution, the plate driving component drives the plate conveying chain to move, and with the cooperation of the two plate conveying sprockets, the plate conveying chain can also drive the conveying frame to move, thereby facilitating the conveying of the plate on the top of the conveying frame.

[0014] Optionally, the lifting frame conveying mechanism includes a fixed frame, a first articulated frame hinged on the fixed frame, a second articulated frame sliding and rotating on the fixed frame, a lifting frame located above the fixed frame and hinged to the second articulated frame at the bottom, an articulated electric push rod hinged to the first articulated frame and the second articulated frame at both ends, and a lifting frame conveying assembly arranged on the lifting frame and capable of conveying plates, the first articulated frame and the second articulated frame being hinged to each other, and the end of the first articulated frame away from the fixed frame is slidably and rotatably connected to the bottom of the lifting frame.

[0015] By adopting the above technical solution, when it is necessary to adjust the height of the lifting frame conveying mechanism to make it raised, the articulated electric push rod is extended to change the angle between the first articulated frame and the second articulated frame, thereby raising the height of the lifting frame.

[0016] Optionally, the lifting frame conveying assembly includes a plurality of lifting frame conveying rollers rotatably arranged on the top of the lifting frame, a plurality of lifting frame conveying sprockets arranged on the lifting frame conveying rollers, a lifting frame conveying chain for transmitting the plurality of lifting frame conveying sprockets, and a lifting frame conveying driving component for driving the lifting frame conveying chain to move, and the lifting frame conveying chain is meshed with the plurality of lifting frame conveying sprockets.

[0017] By adopting the above technical solution, the lifting frame conveying drive component drives a group of lifting frame conveying chains to move, so as to drive two of the lifting frame conveying rollers to rotate. Therefore, under the drive of multiple lifting frame conveying chains, all the lifting frame conveying rollers can rotate in the same direction, thereby conveying the plates on the lifting frame conveying rollers.

[0018] Optionally, the plate driving component includes a plate driving member arranged on the thermal transfer machine frame, a plate driving active sprocket arranged at the output end of the plate driving member, a plate driving driven sprocket arranged on the plate conveying shaft, and a plate driving chain that drives the plate driving sprocket and the plate driving driven sprocket.

[0019] By adopting the above technical solution, the output end of the plate driving component drives the plate driving active sprocket to rotate, and driven by the plate driving chain, drives the plate driving driven sprocket and the plate conveying shaft to rotate.

[0020] Optionally, the lifting frame conveying drive component includes a mounting seat arranged at the bottom of the lifting frame, a lifting frame conveying drive member arranged on the mounting seat, a lifting frame conveying drive driving sprocket arranged at the output end of the lifting frame conveying drive member, a lifting frame conveying drive shaft rotatably connected to the mounting seat, a lifting frame conveying drive first driven sprocket arranged on the lifting frame conveying drive shaft, a lifting frame conveying drive chain that transmits the lifting frame conveying drive driving sprocket and the lifting frame conveying drive first driven sprocket, and a lifting frame conveying drive second driven sprocket arranged at the other end of the lifting frame conveying drive shaft, and the lifting frame conveying drive second driven sprocket is meshed with the lifting frame conveying chain.

[0021] By adopting the above technical solution, the output end of the lifting frame conveying drive component drives the lifting frame conveying drive active sprocket to rotate, thereby driving the lifting frame conveying drive shaft, the lifting frame conveying drive first driven sprocket and the lifting frame conveying drive second driven sprocket to rotate through the lifting frame conveying drive chain, thereby driving the lifting frame conveying chain to move.

[0022] Optionally, the top end of the first articulated frame is rotatably connected to a first rotating wheel in contact with the bottom of the lifting frame, and the bottom end of the second articulated frame is rotatably connected to a second rotating wheel in contact with the top of the fixed frame.

[0023] By adopting the above technical solution, the end of the first articulated frame away from the fixed frame can be slidably and rotatably connected to the lifting frame, and the end of the second articulated frame away from the lifting frame can be slidably and rotatably connected to the top of the fixed frame.

[0024] Optionally, a plurality of limiting rods for limiting the descending height of the lifting frame are arranged on the top of the fixed frame, and when the bottom of the lifting frame contacts the limiting rods, the height of the lifting frame conveying assembly is respectively the same as the height of the lower layer of the double-layer conveying mechanism and the revolving port.

[0025] By adopting the above technical solution, the descending height of the lifting frame can be limited, so that the lifting frame conveying assembly can be more smoothly aligned with the lower layer and the rotary port of the double-layer conveying mechanism, which is convenient for the conveying of the plate.

[0026] In summary, the present application includes at least one of the following beneficial technical effects:

[0027] 1. Since the lifting frame conveying mechanism has two states, and the double-layer conveying mechanism has an upper layer and a lower layer, and the thermal transfer machine frame has a processing port and a rotating port, the horizontal area occupied is smaller;

[0028] 2. The limiting rod can limit the descending height of the lifting frame, so that the lifting frame conveying assembly can be more smoothly aligned with the lower layer and the rotary port of the double-layer conveying mechanism, which is convenient for the conveying of the plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic diagram of a quartz thermal transfer rotary device;

[0030] Figure 2 It is a schematic diagram of the thermal transfer frame of the quartz thermal transfer rotary device;

[0031] Figure 3 This application Figure 2 A partial enlarged schematic diagram of part A;

[0032] Figure 4 This application Figure 2 A partial enlarged schematic diagram of part B;

[0033] Figure 5 It is a schematic diagram of the lifting frame conveying mechanism of the quartz stone thermal transfer rotary device;

[0034] Figure 6 It is a schematic diagram of the lifting frame conveying drive component of the quartz stone thermal transfer rotary device.

[0035] Description of the reference numerals: 1. thermal transfer machine frame; 11. processing port; 12. rotating port; 13. sheet conveying assembly; 131. strip mounting frame; 132. sheet conveying shaft; 133. sheet conveying sprocket; 134. sheet conveying chain; 135. conveying frame; 136. sheet driving component; 1361. sheet driving member; 1362. sheet driving driving sprocket; 1363. sheet driving driven sprocket; 1364. sheet driving chain; 14. thermal transfer mechanism; 2. double-layer conveying mechanism; 21. double-layer conveying frame; 3. lifting frame conveying mechanism; 31. fixed frame; 311. limiting rod; 32. first articulated frame ; 321, the first rotating wheel; 33, the second articulated frame; 331, the second rotating wheel; 34, the lifting frame; 35, the articulated electric push rod; 36, the lifting frame conveying assembly; 361, the lifting frame conveying roller; 362, the lifting frame conveying sprocket; 363, the lifting frame conveying chain; 364, the lifting frame conveying drive component; 3641, the mounting seat; 3642, the lifting frame conveying drive member; 3643, the lifting frame conveying drive active sprocket; 3644, the lifting frame conveying drive shaft; 3645, the lifting frame conveying drive first driven sprocket; 3646, the lifting frame conveying drive chain; 3647, the lifting frame conveying drive second driven sprocket. DETAILED DESCRIPTION

[0036] The following is combined with Figures 1 to 6 This application is described in further detail.

[0037] The present application embodiment discloses a quartz thermal transfer rotary device. Figure 1 The quartz stone thermal transfer rotary device includes a thermal transfer frame 1, a double-layer conveying mechanism 2 and a lifting frame conveying mechanism 3. The thermal transfer frame 1 is arranged in two groups, the double-layer conveying mechanism 2 is arranged in three groups, and the lifting frame conveying mechanism 3 is arranged in two groups, and one group of double-layer conveying mechanisms 2 and one group of thermal transfer frames 1 are arranged in an interval with each other.

[0038] Reference Figure 2 , a processing port 11 and a rotating port 12 are provided in the thermal transfer frame 1, the processing port 11 is located directly above the rotating port 12, a thermal transfer mechanism 14 is installed in the thermal transfer frame 1, the thermal transfer mechanism 14 can perform thermal transfer on the plate in the processing port 11, and the rotating port 12 is used for the rotation of the plate; a double-layer conveying mechanism 2 is located at the feeding end and the discharging end of the thermal transfer frame 1, the double-layer conveying mechanism 2 can convey the plates in the processing port 11 and the rotating port 12 on the thermal transfer frame 1, the double-layer conveying mechanism 2 can convey the plates on the upper and lower layers, two sets of lifting frame conveying mechanisms 3 are respectively located at one end of the two sets of double-layer conveying mechanisms 2 on the edge, and the lifting frame conveying mechanism 3 can transfer the plates on the upper or lower layer of the double-layer conveying mechanism 2 to the opposite layer. It should be noted that the thermal transfer mechanism 14 is a prior art, and its specific structure has been disclosed, so it will not be repeated here.

[0039] Reference Figure 1 and Figure 2 , the plate is placed on the first set of lifting frame conveying mechanisms 3, and the lifting frame conveying mechanisms 3 are in a raised state, and can convey the plate thereon to the processing port 11 of the thermal transfer machine frame 1, and the thermal transfer mechanism 14 performs thermal transfer on the plate. After the plate completes one thermal transfer, it is conveyed to the set of double-layer conveying mechanisms 2 in the middle position, and then the plate is conveyed to the processing port 11 of the second set of thermal transfer machine frame 1, and completes the second thermal transfer, and then is conveyed to the third set of double-layer conveying mechanisms 2, and then is conveyed to the second set of lifting frame conveying mechanisms 3. Some products require multiple patterns or complex pattern levels, and the number of thermal transfers required is more than two times. At this time, the second set of lifting frame conveying mechanism 3 can be adjusted to the descending state, so that the height of the plate on the second set of lifting frame conveying mechanism 3 is the same as the height of the rotating port 12 of the thermal transfer rack 1, and then it is successively transported to the first set of lifting frame conveying mechanism 3 that has been adjusted to the descending state through the lower layer of the double-layer conveying mechanism 2 and the rotating port 12 of the thermal transfer rack 1, and then the first set of lifting frame conveying mechanism 3 is readjusted to the raised state, so as to facilitate the subsequent multiple thermal transfers of the plate. It should be noted that since the lifting frame conveying mechanism 3 has two states, and the double-layer conveying mechanism 2 has an upper layer and a lower layer, and the thermal transfer rack 1 is provided with a processing port 11 and a rotating port 12, the horizontal area occupied is smaller.

[0040] Reference Figure 2 and Figure 3 Preferably, a sheet conveying assembly 13 is installed in the processing port 11 of the thermal transfer machine frame 1. The sheet conveying assembly 13 includes a long strip mounting frame 131, a sheet conveying shaft 132, a sheet conveying sprocket 133, a sheet conveying chain 134, a conveying frame 135 and a sheet driving component 136. Two long strip mounting frames 131 are provided, and the long strip mounting frames 131 are horizontally mounted on the inner bottom wall of the processing port 11. The length direction of the long strip mounting frame 131 is parallel to the length direction of the processing port 11. The sheet conveying shaft 132 is rotatably connected to the opposite ends of the long strip mounting frame 131. The sprocket wheel 133 is fixedly connected to the plate conveying shaft 132 and is located in the long strip mounting frame 131. The plate conveying chain 134 can transmit the plate conveying sprocket wheels 133 located at both ends of the long strip mounting frame 131, and the plate conveying chain 134 is meshed with the plate conveying sprocket wheels 133. The conveying frame 135 is installed on the outside of each chain link of the plate conveying chain 134, and multiple conveying frames 135 are used to receive the plates. The plate driving component 136 is installed on the thermal transfer machine frame 1 and is close to the processing port 11, and the plate driving component 136 is used to drive the plate conveying chain 134 to move.

[0041] The plate driving component 136 drives the plate conveying chain 134 to move, and with the cooperation of the two plate conveying sprockets 133, the plate conveying chain 134 can drive the conveying frame 135 to move while moving, thereby facilitating the conveying of the plate on the top of the conveying frame 135.

[0042] Reference Figure 2 and Figure 4 Further, the plate driving component 136 includes a plate driving member 1361, a plate driving driving sprocket 1362, a plate driving driven sprocket 1363 and a plate driving chain 1364. The plate driving member 1361 is fixed to the thermal transfer machine frame 1, the plate driving driving sprocket 1362 is fixed to the output end of the plate driving member 1361, the plate driving driven sprocket 1363 is fixed to the plate conveying shaft 132, and the plate driving chain 1364 drives the plate driving driving sprocket 1362 and the plate driving driven sprocket 1363, and the plate driving chain 1364 is respectively engaged with the plate driving driving sprocket 1362 and the plate driving driven sprocket 1363. In this embodiment, the plate driving member 1361 is a servo motor.

[0043] The output end of the plate driving member 1361 drives the plate driving active sprocket 1362 to rotate, and driven by the plate driving chain 1364, drives the plate driving driven sprocket 1363 and the plate conveying shaft 132 to rotate.

[0044] Reference Figure 1 The double-layer conveying mechanism 2 includes a double-layer conveying frame 21, and the double-layer conveying frame 21 is divided into an upper layer and a lower layer. The height of the upper double-layer conveying frame 21 is the same as the height of the processing port 11 of the thermal transfer frame 1, and the height of the lower double-layer conveying frame 21 is the same as the height of the rotating port 12 of the thermal transfer frame 1. The upper double-layer conveying frame 21 and the lower double-layer conveying frame 21 are also equipped with a plate conveying assembly 13, and the plate conveying assembly 13 thereat is completely the same in structure as the thermal transfer frame 1 in the thermal transfer frame 1, and is also used for conveying plates.

[0045] Reference Figure 5Preferably, the lifting frame conveying mechanism 3 includes a fixed frame 31, a first articulated frame 32, a second articulated frame 33, a lifting frame 34, an articulated electric push rod 35 and a lifting frame conveying assembly 36. The fixed frame 31 is a rectangular frame. The lifting frame 34 is located directly above the fixed frame 31. One end of the two first articulated frames 32 is respectively hinged to the two ends of the top of the fixed frame 31. The end of the first articulated frame 32 away from the fixed frame 31 is rotatably connected to the first rotating wheel 321, and the first rotating wheel 321 contacts the bottom of the lifting frame 34, so that the end of the first articulated frame 32 away from the fixed frame 31 can be slidably and rotatably connected to the lifting frame 34. The top of the second articulated frame 33 is hinged to the bottom of the lifting frame 34, and the bottom of the second articulated frame 33 is rotatably connected to the second rotating wheel 331, and the second rotating wheel 331 contacts the top of the fixed frame 31, so that the end of the second articulated frame 33 away from the lifting frame 34 can slide and rotatably connect with the top of the fixed frame 31. In addition, the middle parts of the first articulated frame 32 and the second articulated frame 33 are hinged to each other, and the two ends of the articulated electric push rod 35 are respectively hinged to the first articulated frame 32 and the second articulated frame 33, and the lifting frame conveying assembly 36 is installed on the top of the lifting frame 34, and the lifting frame conveying assembly 36 is used to convey the plate on the lifting frame 34.

[0046] When it is necessary to adjust the height of the lifting frame conveying mechanism 3 to make it in a raised state, the articulated electric push rod 35 is extended to change the angle between the first articulated frame 32 and the second articulated frame 33, so that the first rotating wheel 321 can rotate at the bottom of the lifting frame 34 and the second rotating wheel 331 can rotate at the top of the fixed frame 31, thereby raising the height of the lifting frame 34; similarly, the height of the lifting frame conveying mechanism 3 can also be adjusted to be in a lowered state by starting the articulated electric push rod 35 to contract.

[0047] It should be noted that a plurality of limiting rods 311 are vertically fixed on the top of the fixed frame 31, and the plurality of limiting rods 311 are used to limit the descending height of the lifting frame 34. When the bottom of the lifting frame 34 contacts the limiting rods 311, the height of the lifting frame conveying assembly 36 is respectively the same as the height of the lower layer of the double-layer conveying mechanism 2 and the turntable 12.

[0048] After the limiting rod 311 is provided, the descending height of the lifting frame 34 can be limited, so that the lifting frame conveying assembly 36 can be more smoothly aligned with the lower layer of the double-layer conveying mechanism 2 and the rotary port 12, which is convenient for conveying the plate.

[0049] Furthermore, the lifting frame conveying assembly 36 includes a plurality of lifting frame conveying rollers 361, a plurality of lifting frame conveying sprockets 362, a lifting frame conveying chain 363 and a lifting frame conveying driving component 364. The plurality of lifting frame conveying rollers 361 are horizontally rotatably connected in the lifting frame 34. The lifting frame conveying sprockets 362 are fixedly connected to the lifting frame conveying rollers 361, and the number of lifting frame conveying sprockets 362 arranged on each lifting frame conveying roller 361 is two. The lifting frame conveying chain 363 transmits two lifting frame conveying sprockets 362 on two adjacent lifting frame conveying rollers 361 and at corresponding positions, and the lifting frame conveying chain 363 is meshed with the lifting frame conveying sprockets 362. The lifting frame conveying driving component 364 is used to drive the group of lifting frame conveying chains 363 at the edge position to move.

[0050] The lifting frame conveying driving component 364 drives the group of lifting frame conveying chains 363 at the edge position to move, so as to drive two of the lifting frame conveying rollers 361 to rotate. Therefore, under the drive of multiple lifting frame conveying chains 363, all the lifting frame conveying rollers 361 can rotate in the same direction, so as to convey the plates on the lifting frame conveying rollers 361.

[0051] Reference Figure 5 and Figure 6 The lifting frame conveying driving component 364 includes a mounting seat 3641, a lifting frame conveying driving member 3642, a lifting frame conveying driving driving sprocket 3643, a lifting frame conveying driving shaft 3644, a lifting frame conveying driving first driven sprocket 3645, a lifting frame conveying driving chain 3646 and a lifting frame conveying driving second driven sprocket 3647. The mounting seat 3641 is fixed to the bottom of the lifting frame 34, the lifting frame conveying driving member 3642 is fixed on the mounting seat 3641, the lifting frame conveying driving driving sprocket 3643 is fixed to the output end of the lifting frame conveying driving member 3642, the lifting frame conveying driving shaft 3644 is rotatably connected to the mounting seat 3641, and the lifting frame conveying driving The other end of the shaft 3644 is rotatably connected to the lifting frame 34, the first driven sprocket 3645 of the lifting frame conveying drive is fixed on the lifting frame conveying drive shaft 3644, the lifting frame conveying drive chain 3646 transmits the lifting frame conveying drive driving sprocket 3643 and the first driven sprocket 3645 of the lifting frame conveying drive, and the lifting frame conveying drive chain 3646 is respectively engaged with the lifting frame conveying drive driving sprocket 3643 and the first driven sprocket 3645 of the lifting frame conveying drive, the second driven sprocket 3647 of the lifting frame conveying drive is fixed to the other end of the lifting frame conveying drive shaft 3644, and the second driven sprocket 3647 of the lifting frame conveying drive is engaged with the lifting frame conveying chain 363. In this embodiment, the lifting frame conveying drive member 3642 is a servo motor.

[0052] The output end of the lifting frame conveying driving member 3642 drives the lifting frame conveying driving active sprocket 3643 to rotate, thereby driving the lifting frame conveying driving shaft 3644, the lifting frame conveying driving first driven sprocket 3645 and the lifting frame conveying driving second driven sprocket 3647 to rotate through the lifting frame conveying driving chain 3646, thereby driving the lifting frame conveying chain 363 to move.

[0053] The implementation principle of the quartz stone thermal transfer rotary device in the embodiment of the present application is: adjust the lifting frame conveying mechanism 3 to the raised state, convey the plate thereon to the processing port 11 of the thermal transfer machine frame 1, and perform thermal transfer on the plate through the thermal transfer mechanism 14. Since some products require multiple patterns or complex pattern layers, the number of thermal transfers required exceeds two times, and they are sequentially conveyed through the lower layer of the double-layer conveying mechanism 2 and the rotary port 12 of the thermal transfer machine frame 1 to the first group of lifting frame conveying mechanisms 3 that have been adjusted to the lowered state, and then the first group of lifting frame conveying mechanisms 3 are readjusted to the raised state, so as to facilitate subsequent multiple thermal transfers of the plate.

[0054] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. Quartz thermal transfer rotary device, characterized in that: include: A thermal transfer machine frame (1) is provided with a processing opening (11) for processing a plate and a rotating opening (12) for rotating the plate, the processing opening (11) and the rotating opening (12) are both provided with a plate conveying assembly (13), and the thermal transfer machine frame (1) is provided with a thermal transfer mechanism (14) for thermally transferring the plate in the processing opening (11); A double-layer conveying mechanism (2), at least two groups of which are arranged at the feeding end and the discharging end of the thermal transfer machine frame (1), and can convey the plates at the processing port (11) and the rotating port (12) on the thermal transfer machine frame (1); The lifting frame conveying mechanism (3) is provided with at least two groups, which are arranged at one end of the double-layer conveying mechanism (2) away from the thermal transfer machine frame (1), and can transfer the plate material on the upper layer or the lower layer of the double-layer conveying mechanism (2) to the opposite layer.

2. The quartz stone thermal transfer rotary device according to claim 1, characterized in that: The plate conveying assembly (13) comprises a long strip installation frame (131) arranged in the thermal transfer machine frame (1), a plate conveying rotating shaft (132) rotatably arranged at both ends of the long strip installation frame (131), a plate conveying sprocket (133) arranged on the plate conveying rotating shaft (132), a plate conveying chain (134) for transmitting between the two plate conveying sprockets (133), a conveying frame (135) arranged on the outer side of each chain link of the plate conveying chain (134), and a plate driving component (136) for driving one of the plate conveying rotating shafts (132) to rotate, and a plurality of the conveying frames (135) are used to receive plates.

3. The quartz stone thermal transfer rotary device according to claim 1, characterized in that: The lifting frame conveying mechanism (3) comprises a fixed frame (31), a first articulated frame (32) hinged on the fixed frame (31), a second articulated frame (33) slidably and rotatably mounted on the fixed frame (31), a lifting frame (34) located above the fixed frame (31) and articulated to the second articulated frame (33) at its bottom, an articulated electric push rod (35) articulated to the first articulated frame (32) and the second articulated frame (33) at two ends, and a lifting frame conveying assembly (36) disposed on the lifting frame (34) and capable of conveying a plate, wherein the first articulated frame (32) and the second articulated frame (33) are articulated to each other, and an end of the first articulated frame (32) away from the fixed frame (31) is slidably and rotatably connected to the bottom of the lifting frame (34).

4. The quartz stone thermal transfer rotary device according to claim 3, characterized in that: The lifting frame conveying assembly (36) comprises a plurality of lifting frame conveying rollers (361) rotatably arranged on the top of the lifting frame (34), a plurality of lifting frame conveying sprockets (362) arranged on the lifting frame conveying rollers (361), a lifting frame conveying chain (363) for transmitting the plurality of lifting frame conveying sprockets (362), and a lifting frame conveying driving component (364) for driving the lifting frame conveying chain (363) to move, wherein the lifting frame conveying chain (363) is meshed with the plurality of lifting frame conveying sprockets (362).

5. The quartz stone thermal transfer rotary device according to claim 2, characterized in that: The plate driving component (136) comprises a plate driving member (1361) arranged on the thermal transfer machine frame (1), a plate driving active sprocket (1362) arranged at the output end of the plate driving member (1361), a plate driving driven sprocket (1363) arranged on the plate conveying shaft (132), and a plate driving chain (1364) for transmitting the plate driving active sprocket (1362) and the plate driving driven sprocket (1363).

6. The quartz stone thermal transfer rotary device according to claim 4, characterized in that: The lifting frame conveying driving component (364) comprises a mounting seat (3641) arranged at the bottom of the lifting frame (34), a lifting frame conveying driving member (3642) arranged on the mounting seat (3641), a lifting frame conveying driving driving sprocket (3643) arranged at the output end of the lifting frame conveying driving member (3642), a lifting frame conveying driving shaft (3644) rotatably connected to the mounting seat (3641), a lifting frame conveying driving first driven sprocket (3645) arranged on the lifting frame conveying driving shaft (3644), a lifting frame conveying driving chain (3646) for transmitting the lifting frame conveying driving driving sprocket (3643) and the lifting frame conveying driving first driven sprocket (3645), and a lifting frame conveying driving second driven sprocket (3647) arranged at the other end of the lifting frame conveying driving shaft (3644), and the lifting frame conveying driving second driven sprocket (3647) is meshed with the lifting frame conveying chain (363).

7. The quartz thermal transfer rotary device according to claim 3, characterized in that: The top end of the first articulated frame (32) is rotatably connected to a first rotating wheel (321) in contact with the bottom of the lifting frame (34), and the bottom end of the second articulated frame (33) is rotatably connected to a second rotating wheel (331) in contact with the top of the fixed frame (31).

8. The quartz stone thermal transfer rotary device according to claim 3, characterized in that: A plurality of limiting rods (311) for limiting the descending height of the lifting frame (34) are arranged on the top of the fixed frame (31); when the bottom of the lifting frame (34) contacts the limiting rods (311), the height of the lifting frame conveying assembly (36) is respectively the same as the height of the lower layer of the double-layer conveying mechanism (2) and the revolving port (12).