Printing equipment for thermal insulation pipe of air conditioner

By designing a rotating disk insertion structure for winding devices A and B in the air conditioning insulation pipe printing equipment, combined with an adjusting motor and a cooling motor, the problem of independent printing and heat dissipation in traditional equipment is solved, realizing continuous and efficient printing and heat dissipation of insulation pipes, and improving production efficiency and printing quality.

CN223735652UActive Publication Date: 2025-12-30CHONGQING YOUFEITE TECH CO LTD
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Patent Information

Application Number
CN202520268095.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-12-30
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

Traditional air conditioning insulation pipe printing equipment requires frequent manual replacement of the winding device during the winding process, which affects the continuity and accuracy of printing. In addition, the printing and heat dissipation functions are independent, resulting in low production efficiency.

Method used

Design an air conditioning insulation pipe printing equipment. Through the rotating disk insertion structure of winding device A and winding device B, the insulation pipe can be printed and dissipated simultaneously during the transfer process. Equipped with an adjustment motor and a cooling motor to control the movement of the printing and cooling devices and the air flow.

Benefits of technology

This technology enables continuous and efficient printing and heat dissipation of the insulation tube during the transfer process, improving production efficiency and ensuring the stability of printing quality and the continuity of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses printing equipment for an air conditioner thermal insulation pipe. The utility model relates to the technical field of printing equipment, which comprises an operation table, a winding device A and a winding device B. The two ends of the top of the operation table are rotationally connected with rotating discs, the tops of the rotating discs are fixedly connected with inserting blocks, the winding device A and the winding device B are inserted into the tops of the rotating discs through the inserting blocks, and a heat preservation pipe is arranged in the winding device A. The other end of the heat preservation pipe is arranged in the winding device B. The winding device B can transfer the heat preservation pipe from the winding device A to the winding device B through rotation, printing equipment is arranged at the position, close to the winding device A, of the top of the operation table, and a heat dissipation device is arranged at the position, close to the winding device B, of the top of the operation table. The thermal insulation pipe can pass through the printing device and the heat dissipation device in the process of entering the winding device B from the winding device A, continuous and efficient production operation can be achieved, and the working efficiency of thermal insulation pipe printing is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to printing equipment technical field especially relates to a kind of air conditioner heat preservation pipe printing equipment. BACKGROUND

[0002] In the production process of air conditioner heat preservation pipe, printing link is crucial. It is not only related to the identification definition of product, but also affects the aesthetic degree and market competitiveness of product, air conditioner heat preservation pipe is usually long strip material, winding device can neatly wind it up, reduce the space occupied, facilitate storage in production workshop and transportation between different production links. For example, before printing, the wound heat preservation pipe can be stacked in warehouse, until printing, it is convenient to carry to printing equipment and process.

[0003] Past printing equipment, winding device design is relatively simple, often need manual frequent replacement winding device, this not only consumes a lot of manpower, but also easily causes the position of heat preservation pipe to deviate in replacement process, affects the continuity and accuracy of printing. Moreover, printing and heat dissipation function in traditional equipment are mostly independent of each other, cannot complete printing and heat dissipation operation simultaneously in the transfer process of heat preservation pipe, leading to low production efficiency.

[0004] Therefore, it is necessary to provide a kind of air conditioner heat preservation pipe printing equipment to solve the above technical problems. UTILITY MODEL CONTENT

[0005] In view of the above situation, in order to overcome the defects of prior art, the utility model provides a kind of air conditioner heat preservation pipe printing equipment, which can complete printing and heat dissipation treatment in the process of heat preservation pipe from A winding device to B winding device, the whole process is coherent and smooth, without frequent replacement winding device and other complex operations.

[0006] To achieve the above purpose, the utility model adopts the following technical scheme:

[0007] A kind of air conditioner heat preservation pipe printing equipment, including: operating table, A winding device and B winding device, the operating table top both ends position rotationally connected with rotating disc, the rotating disc top is fixedly connected with the plug-in block, the A winding device and B winding device are plugged in rotating disc top by plug-in block, the A winding device is internally provided with heat preservation pipe, the other end of the heat preservation pipe is arranged in B winding device, the B winding device can be transferred from A winding device to B winding device by rotation, the operating table top is close to the position of A winding device and is provided with printing equipment, the operating table top is close to the position of B winding device and is provided with heat dissipation device, the heat preservation pipe will pass through printing equipment and heat dissipation device in the process of from A winding device into B winding device.

[0008] Preferably, the A winding device and the B winding device are the same structure, the A winding device comprises a bottom disc and a top disc, a clamping screw is fixedly connected to the middle of the bottom disc, a clamping groove is arranged in the clamping screw, the heat preservation pipe is clamped in the clamping groove, the top disc is sleeved outside the clamping screw, the top disc is attached to the outside of the heat preservation pipe, a nut is threadedly connected to the outside of the clamping screw, the back of the bottom disc is provided with a plug-in interface, and a plug-in block is plugged into the plug-in interface. The heat preservation pipe is clamped in the clamping groove, and then the heat preservation pipe is rotated around the clamping screw and wound in the bottom disc. Then the top disc is sleeved outside the heat preservation pipe at the position of the clamping groove, so as to prevent the heat preservation pipe from collapsing and forming effective winding. The nut is used to prevent the top disc from being separated.

[0009] Preferably, one end of the top of the operation table is fixedly connected with a stop block, the heat preservation pipe is slidably attached to the outside of the stop block, and the top of the operation table is fixedly connected with a fixed rod at the lower ends on both sides of the stop block. The fixed rod is rotatably connected with a guide shaft outside the fixed rod, and the guide shaft is rotatably attached to the outside of the heat preservation pipe. The setting of the stop block prevents the heat preservation pipe from being separated when it is transferred from the A winding device to the B winding device. At the same time, the stop block can provide certain support when the printing equipment is printing the heat preservation pipe, so as to ensure the printing work.

[0010] Preferably, the printing equipment comprises a printing device, the bottom of the printing device is fixedly connected with a sliding block, the upper end fixed block and the lower end fixed block are fixedly connected to the upper and lower ends of the sliding block, the upper end fixed block and the lower end fixed block are fixedly connected to the top of the operation table, the screw rod is rotatably connected between the upper end fixed block and the lower end fixed block, the screw rod is threadedly connected in the sliding block, the lower end fixed block is fixedly connected with an adjusting motor at the bottom, and the driving end of the adjusting motor penetrates through the lower end fixed block and is fixedly connected with the screw rod. The adjusting motor drives the screw rod to rotate, so as to drive the sliding block threadedly connected to the outside of the screw rod to move along the direction of the screw rod. The sliding block can drive the printing device to move, so as to realize the close degree of the printing device to the heat preservation pipe, so as to ensure that the printing device can effectively print on the outside of the heat preservation pipe. At the same time, when interval printing is needed, the adjusting motor can be controlled to rotate in reverse to drive the sliding block to move downward, and then the sliding block drives the printing device to move away from the outside of the heat preservation pipe. When the distance is enough, the adjusting motor controls the sliding block to move upward, so as to realize the printing work of the printing device.

[0011] Preferably, the lower end fixed block and the upper end fixed block are fixedly connected with a sliding rod, the sliding rod is provided with two sliding rods located on both sides of the screw rod, and the sliding rod is slidably connected in the sliding block. The setting of the sliding rod ensures the stability of the sliding block during movement.

[0012] Preferably, the heat dissipation device comprises a heat dissipation shell, a wind wheel bottom plate is rotatably connected inside the heat dissipation shell, wind wheel blades are fixedly connected to the top of the wind wheel bottom plate, an air outlet is fixedly connected to the top of the heat dissipation shell, an air inlet is arranged on the side of the heat dissipation shell close to the heat preservation pipe, a heat dissipation motor is fixedly connected to the bottom of the operation table, and the driving end of the heat dissipation motor penetrates through the back of the operation table and is fixedly connected with the wind wheel bottom plate.

[0013] Preferably, the bottom is fixedly connected with a tightening motor, the driving end of the tightening motor penetrates through the back of the operation table and is fixedly connected with the rotating disc connected with the B winding wheel, the top rotating disc is driven to rotate by the tightening motor, the top B winding wheel is driven to rotate, and the heat preservation pipe is transferred from the A winding wheel to the B winding wheel.

[0014] Preferably, the bottom of the operation table is fixedly connected with support legs, and the support legs are arranged at four diagonal positions of the bottom of the operation table.

[0015] Compared with the prior art, the heat dissipation device has the following beneficial effects:

[0016] (1) The heat dissipation device comprises an A winding device and a B winding device, and the rotating disc and the plug-in structure are used to realize convenient installation and disassembly. During the transfer of the heat preservation pipe from the A winding device to the B winding device, printing and heat dissipation treatment can be completed, the whole process is smooth and coherent, frequent replacement of the winding device and other complex operations are not required, continuous and efficient production operation can be realized, and the working efficiency of the heat preservation pipe printing is greatly improved.

[0017] (2) The printing equipment is provided with an adjusting motor, a lead screw and a sliding block, the movement of the sliding block is accurately controlled by rotating the lead screw driven by the adjusting motor, the adhesion degree of the printing device and the heat preservation pipe is adjusted, the printing device can effectively print on the outside of the heat preservation pipe, printing parameters can be flexibly adjusted according to actual printing requirements, such as different pattern precision requirements and printing interval requirements, and the stability and accuracy of the printing quality are effectively guaranteed.

[0018] (3) The heat dissipation device can timely perform heat dissipation treatment on the heat preservation pipe just printed, avoids the waiting time due to the fact that the ink is not dry, enables the heat preservation pipe to be continuously transferred from the A winding device to the B winding device for printing and subsequent treatment, guarantees the continuity of the whole production process, and further improves the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The utility model provides a kind of front view angle structure schematic diagram of air conditioner heat preservation pipe printing equipment provided by the utility model;

[0020] Figure 2 The utility model provides a kind of winding device removal whole structure structure schematic diagram of air conditioner heat preservation pipe printing equipment provided by the utility model;

[0021] Figure 3 The utility model provides middle heat preservation pipe section structure schematic diagram;

[0022] Figure 4 The utility model provides middle winding device back structure schematic diagram;

[0023] Figure 5 The utility model provides middle slider section structure schematic diagram;

[0024] Figure 6 The utility model provides a kind of bottom view angle structure schematic diagram of air conditioner heat preservation pipe printing equipment provided by the utility model.

[0025] Wherein, the name corresponding to the reference sign is: 1, operation table;201, bottom disc;202, top disc;203, fastening screw;204, clamping groove;205, nut;206, plug-in interface;3, heat preservation pipe;4, fixed rod;5, guide shaft;6, stop block;7, printing device;8, upper end fixed block;9, lower end fixed block;10, adjusting motor;11, heat dissipation shell;12, air outlet;13, wind wheel piece;14, rotating disc;15, plug-in block;16, support leg;17, air inlet;18, wind wheel bottom plate;19, slider;20, screw;21, sliding rod;22, heat dissipation motor;23, tightening motor. DETAILED DESCRIPTION

[0026] The utility model is further described in the following combined with the drawings and examples, and the mode of the utility model includes but is not limited to the following examples.

[0027] Example one

[0028] As Figures 1-6The utility model provides a kind of air conditioner heat preservation pipe printing equipment, it is shown, comprising: operating table 1, A winding device and B winding device, the operating table 1 top both ends position rotation is connected with rotating disc 14, the rotating disc 14 top is fixedly connected with plug-in block 15, A winding device and B winding device are plugged in rotating disc 14 top by plug-in block 15, the A winding device is internally provided with heat preservation pipe 3, the other end of the heat preservation pipe 3 is arranged in B winding device inside, B winding device can be transferred from A winding device to B winding device by rotating, the operating table 1 top is close to the position of A winding device and is provided with printing equipment, the operating table 1 top is close to the position of B winding device and is provided with heat dissipation device, the heat preservation pipe 3 is in from A winding device enters B winding device process and will pass through printing equipment and heat dissipation device, in use, A winding device with heat preservation pipe 3 is wound is plugged to the rotating disc 14 top of side close to printing equipment, then B winding device without loading heat preservation pipe 3 is plugged to the rotating disc 14 top of side close to heat dissipation device, the front end of heat preservation pipe 3 is taken out from A winding device, and is rotated by pulling A winding device, realize that heat preservation pipe 3 is released from the inside of A winding device, then the front end of heat preservation pipe 3 is fixedly connected in B winding device inside, B winding device is driven by rotating heat preservation pipe 3 and is wound into B winding device inside, simultaneously, A winding device is rotated by the traction of heat preservation pipe 3 and releases heat preservation pipe 3, heat preservation pipe 3 is in from A winding device enters B winding device process and will pass through printing equipment and heat dissipation device, printing equipment can be printed on the outside of heat preservation pipe 3 during movement, when printing is finished, heat preservation pipe 3 will pass through heat dissipation device, and the printed mark on the outside of heat preservation pipe 3 is cooled by heat dissipation device, to realize the rapid adhesion of ink.

[0029] Example two

[0030] The A winding device and B winding device are same structure, the A winding device includes bottom disc 201 and top disc 202, the middle position of the bottom disc 201 is fixedly connected with the fixed silk rod 203, the fixed silk rod 203 is equipped with the card slot 204 inside, the heat preservation pipe 3 is just carded and arranged in the card slot 204 inside, the top disc 202 is sleeved on the outside of the fixed silk rod 203, the top disc 202 is attached to the outside of the heat preservation pipe 3, the outside of the fixed silk rod 203 is screw-connected with the nut 205, the back of the bottom disc 201 is equipped with the plug-in interface 206, the plug-in block 15 is plugged in the plug-in interface 206 inside, by being carded and arranged in the card slot 204 inside heat preservation pipe 3, then heat preservation pipe 3 is rotated and wound around the fixed silk rod 203, so that it is wound in the bottom disc 201 inside, then the top disc 202 is sleeved on the outside of heat preservation pipe 3 position by the card slot 204, to prevent heat preservation pipe 3 from collapsing and forming effective winding, by the nut 205, prevent the top disc 202 from separating.

[0031] Example three

[0032] The operating table 1 top outside one end is fixedly connected with a stop block 6, the heat preservation tube 3 is slidably attached outside the stop block 6, the operating table 1 top is fixedly connected with a fixed rod 4 at both sides of the lower end of the stop block 6, the fixed rod 4 is rotatably connected with a guide shaft 5 outside, the guide shaft 5 is rotatably attached outside the heat preservation tube 3, the stop block 6 is provided to prevent the heat preservation tube 3 from being separated when transferred from the A winding device to the B winding device, and the stop block 6 can provide certain support when the printing device prints the heat preservation tube 3, ensuring the printing work.

[0033] Example four

[0034] The printing device comprises a printing device 7, the printing device 7 is fixedly connected with a sliding block 19 at the bottom, the sliding block 19 is fixedly connected with an upper end fixed block 8 and a lower end fixed block 9 at the upper and lower ends, the upper end fixed block 8 and the lower end fixed block 9 are fixedly connected to the top of the operating table 1, a lead screw 20 is rotatably connected between the upper end fixed block 8 and the lower end fixed block 9, the lead screw 20 is threadedly connected inside the sliding block 19, an adjusting motor 10 is fixedly connected to the bottom of the lower end fixed block 9, the driving end of the adjusting motor 10 penetrates through the lower end fixed block 9 and is fixedly connected with the lead screw 20, the lead screw 20 is driven to rotate by the adjusting motor 10, so as to drive the sliding block 19 threadedly connected outside the lead screw 20 to move along the direction of the lead screw 20, the printing device 7 is driven to move by the sliding block 19, so as to realize the close degree of the printing device 7 to the heat preservation tube 3, so as to ensure that the printing device 7 can effectively print outside the heat preservation tube 3, and when interval printing is needed, the adjusting motor 10 can be controlled to rotate in reverse to drive the sliding block 19 to move downward, the printing device 7 is driven away from the outside of the heat preservation tube 3 by the sliding block 19, and when a sufficient distance is reached, the sliding block 19 is controlled upward by the adjusting motor 10, so as to perform the printing work of the printing device 7.

[0035] Example five

[0036] The lower end fixed block 9 and the upper end fixed block 8 are fixedly connected with a sliding rod 21, the sliding rod 21 is provided with two sliding rods respectively located at both sides of the lead screw 20, the sliding rod 21 is slidably connected inside the sliding block 19, and the stability of the sliding block 19 during movement is ensured by the sliding rod 21.

[0037] Example six

[0038] The heat dissipation device includes a heat dissipation shell 11, a wind wheel bottom plate 18 is rotatably connected inside the heat dissipation shell 11, the wind wheel bottom plate 18 is fixedly connected with a wind wheel blade 13 at the top, the heat dissipation shell 11 is fixedly connected with an air outlet 12 at the top, the heat dissipation shell 11 is provided with an air inlet 17 near one side of the heat preservation pipe 3, the operating table 1 is fixedly connected with a heat dissipation motor 22 at the bottom, the heat dissipation motor 22 is fixedly connected with the wind wheel bottom plate 18 through the driving end penetrating the back of the operating table 1, the wind wheel bottom plate 18 is rotated by the heat dissipation motor 22, then the outer wind wheel blade 13 is rotated by the wind wheel bottom plate 18, so as to drive the air flow to enter from the air inlet 17 and to be discharged from the air outlet 12, and the air flow of the outer wind wheel blade 13 is accelerated in the process, so as to realize the rapid cooling of the ink.

[0039] Example seven

[0040] The bottom is fixedly connected with a tightening motor 23, the driving end of the tightening motor 23 is fixedly connected with the rotating disc 14 connected with the B winding wheel at the back of the operating table 1, the top rotating disc 14 is rotated by the setting of the tightening motor 23, so as to rotate the top B winding wheel, so as to realize that the heat preservation pipe 3 enters the B winding wheel from the A winding wheel.

[0041] Example eight

[0042] The bottom of the operating table 1 is fixedly connected with a supporting leg 16, wherein the supporting leg 16 is provided with four supporting legs 16 fixedly connected at the bottom of the operating table 1 at the diagonal positions.

[0043] In use, first, the A winding device is inserted into the insertion block 15 on the rotating disc 14 at one end of the top of the operating table 1 through the insertion port 206 on the back of the bottom disc 201, ensuring that the A winding device is securely installed on the rotating disc 14 at the top near the printing device. Similarly, the B winding device is inserted in the same way on the rotating disc 14 at the top near the heat dissipation device. The coiled insulation tube 3 is placed in the A winding device. Specifically, one end of the insulation tube 3 is clamped into the clamping groove 204 inside the clamping screw rod 203, and then it is rotated around the clamping screw rod 203 to wind the insulation tube 3 neatly inside the bottom disc 201. Then, the top disc 202 is fitted outside the insulation tube 3 through the clamping groove 204, and the nut 205 outside the clamping screw rod 203 is tightened to fix the top disc 202. The front end of the insulation tube 3 is pulled along the top of the operating table 1, making it fit outside the stop block 6 and sliding out of the guide shaft 5, which serves as a guide to prevent the insulation tube 3 from deviating or leaving the designated route. Then, the front end of the insulation tube 3 is fixed to the corresponding clamping groove 204 of the clamping screw rod 203 inside the B winding device. The tightening motor 23 at the bottom of the operating table 1 is started, which drives the rotating disc 14 connected to the B winding device to rotate, thereby starting the rotation of the B winding device to wind the insulation tube 3. During the transfer of the insulation tube 3 from the A winding device to the B winding device, it will first pass through the printing device. The adjustment motor 10 of the printing device is started, which drives the screw rod 20 to rotate, and the screw rod 20 drives the sliding block 19 connected by threads to move, and the sliding block 19 drives the printing device 7 to move to the appropriate position to tightly fit the outside of the insulation tube 3, starting the printing work on the outside of the insulation tube 3. If interval printing is required, the adjustment motor 10 is controlled to rotate in the opposite direction, making the sliding block 19 drive the printing device 7 to move away from the insulation tube 3, and after reaching the set interval distance, the adjustment motor 10 is controlled to rotate in the forward direction, allowing the printing device 7 to reapproach the insulation tube 3 for printing. After the insulation tube 3 passes through the printing device, it continues to move into the heat dissipation device. The corresponding heat dissipation motor 22 of the heat dissipation device is started, which drives the wind wheel bottom plate 18 to rotate, and the wind wheel bottom plate 18 drives the wind wheel blade 13 to rotate. Air enters the air inlet 17 of the heat dissipation housing 11 and accelerates under the agitation of the wind wheel blade 13, and then exits from the air outlet 12. In this process, the freshly printed marks on the outside of the insulation tube 3 are rapidly cooled, allowing the ink to quickly adhere to the surface of the insulation tube 3 to complete the printing.

[0044] The above embodiment is only one of the preferred embodiments of the present application, and should not be used to limit the protection scope of the present application, but any insignificant modification or polishing made in the main design idea and spirit of the present application, the technical problems solved are still consistent with the present application, and should be included in the protection scope of the present application.

Claims

1. An air-conditioned thermal pipe printing apparatus characterized by comprising: 1) a thermal pipe printing device, Include: The operating platform (1), A winding device and B winding device, the operating platform (1) top both ends position rotationally connected with rotating disc (14), the rotating disc (14) top fixedly connected with the plug-in block (15), the A winding device and B winding device are plugged in the rotating disc (14) top through the plug-in block (15), the A winding device is provided with the heat preservation tube (3) inside, the heat preservation tube (3) other end is arranged in the B winding device inside, the B winding device can be transferred from the A winding device to the B winding device through rotation, the operating platform (1) top is close to the position of the A winding device and is provided with printing equipment, the operating platform (1) top is close to the position of the B winding device and is provided with the heat sink, the heat preservation tube (3) will pass through the printing equipment and the heat sink in the process from the A winding device into the B winding device.

2. The air-conditioned thermal pipe printing apparatus according to claim 1, wherein The A winding device and B winding device structure are same, the A winding device includes the bottom disc (201) and the top disc (202), the bottom disc (201) middle position fixedly connected with the fixed silk rod (203), the fixed silk rod (203) inside is equipped with the clamping groove (204), the heat preservation tube (3) is just clamped in the clamping groove (204) inside, the top disc (202) is set on the fixed silk rod (203) outside, the top disc (202) is attached to the heat preservation tube (3) outside, the fixed silk rod (203) outside is screw connected with the nut (205), the bottom disc (201) back is equipped with the plug-in interface (206), the plug-in block (15) is plugged in the plug-in interface (206) inside.

3. The air-conditioned insulated pipe printing apparatus according to claim 1, wherein The operating platform (1) top outside one end is fixedly connected with the stop block (6), the heat preservation tube (3) is slidably attached to the stop block (6) outside position, the operating platform (1) top is fixedly connected with the fixed rod (4) at both sides lower end position of the stop block (6), the fixed rod (4) outside is rotationally connected with the guide rotating shaft (5), the guide rotating shaft (5) rotationally attached to the heat preservation tube (3) outside.

4. The air-conditioned insulated pipe printing apparatus according to claim 1, wherein The printing equipment includes printing device (7), the printing device (7) bottom fixedly connected with the sliding block (19), the sliding block (19) upper and lower both ends position fixedly connected with the upper end fixed block (8) and the lower end fixed block (9), the upper end fixed block (8) and the lower end fixed block (9) are fixedly connected on the operating platform (1) top, the upper end fixed block (8) and the lower end fixed block (9) are rotationally connected with the screw rod (20) between them, the screw rod (20) is screw connected in the sliding block (19) inside, the lower end fixed block (9) bottom fixedly connected with the adjusting motor (10), the adjusting motor (10) drive end penetrates the lower end fixed block (9) and is fixedly connected with the screw rod (20) after.

5. The air-conditioned insulated pipe printing apparatus according to claim 4, wherein The lower end fixed block (9) and the upper end fixed block (8) are fixedly connected with the sliding rod (21), the sliding rod (21) is provided with two and is located at the both sides position of the screw rod (20), the sliding rod (21) is slidably connected in the sliding block (19) inside.

6. The air-conditioned insulated pipe printing apparatus according to claim 1, wherein The heat dissipation device comprises a heat dissipation shell (11), a wind wheel bottom plate (18) is rotationally connected inside the heat dissipation shell (11), a wind wheel blade (13) is fixedly connected to the top of the wind wheel bottom plate (18), an air outlet (12) is fixedly connected to the top of the heat dissipation shell (11), an air inlet (17) is arranged on the side of the heat dissipation shell (11) close to the heat preservation pipe (3), a heat dissipation motor (22) is fixedly connected to the bottom of the operation table (1), and the driving end of the heat dissipation motor (22) penetrates through the back of the operation table (1) and is fixedly connected with the wind wheel bottom plate (18).

7. The air-conditioned insulated pipe printing apparatus according to claim 1, wherein A tightening motor (23) is fixedly connected to the bottom of the operation table (1), and the driving end of the tightening motor (23) penetrates through the back of the operation table (1) and is fixedly connected with a rotating disc (14) connected with the B winding wheel.

8. The air-conditioned insulated pipe printing apparatus according to claim 1, wherein The bottom of the operation table (1) is fixedly connected with a supporting leg (16).