Thermal insulation material cooling device

By designing a cooling device on the roller conveyor and using a fan to cool the upper and lower surfaces of the mold simultaneously, the problems of long and uneven cooling time for insulation materials are solved, achieving an efficient and stable production process that is adaptable to various mold specifications.

CN223925235UActive Publication Date: 2026-02-17HUBEI KAILIANG NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202423218707.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-02-17
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In existing technologies, the natural cooling of insulation materials takes a long time, resulting in low production efficiency, and fan cooling methods are prone to uneven cooling, affecting material quality.

Method used

Design a cooling device for thermal insulation materials. Use a roller conveyor to move the mold to a fan under the cooling seat for cooling, ensuring that the upper and lower end faces are cooled at the same time. The device can be adapted to different mold specifications through the adjustment of the transmission mechanism and the mounting seat, thereby improving stability.

Benefits of technology

It significantly shortens cooling time, avoids uneven cooling, improves production efficiency and material quality, adapts to various mold specifications, and enhances the flexibility and stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a heat insulation material cooling device which comprises two moving seats, two connecting rods, a cooling device and a heat insulation material cooling device, wherein the two connecting rods are arranged between the two moving seats; two mounting seats are arranged on each connecting rod, and supporting seats are arranged on the mounting seats; the transmission mechanism is arranged on the moving seat; the number of the cooling seats is two, and fans are arranged on the cooling seats; according to the scheme, the die is cooled through the fan on the cooling seat, the current mode of naturally cooling to the room temperature is avoided, a large amount of cooling time can be saved, and the production efficiency is high; the cooling mode is different from the current cooling mode of statically placing the mold, so that the mold is cooled in the process of reaching the next working procedure, and the production progress is accelerated; the upper end face and the lower end face of the mold are simultaneously cooled through the fans on the two cooling bases on the upper side and the lower side, the situation that only the upper end face is cooled at present can be avoided, the situation that heat preservation materials in the mold are not evenly cooled can be greatly prevented, and the quality of the heat preservation materials is effectively guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of thermal insulation material cooling technology, and more specifically, to a thermal insulation material cooling device. Background Technology

[0002] New energy vehicles refer to automobiles that use unconventional vehicle fuels as their power source (or use conventional vehicle fuels with new onboard power devices), integrating advanced technologies in vehicle power control and drive, resulting in vehicles with advanced technical principles and new technologies and structures. In the design of new energy vehicles, it is crucial to use insulation materials in certain key parts of the vehicle, such as the battery pack and the interior of the passenger compartment. Insulation materials used include aerogel, polyurethane foam, glass wool, and vacuum insulation panels.

[0003] For foamed insulation materials, such as polyurethane foam, a chemical reaction is induced under specific conditions to produce gas, thereby forming a foam structure. The molding process of insulation materials mainly involves injecting the mixed materials into a mold of a predetermined shape for curing and shaping.

[0004] Currently, the general practice is to allow the insulation material in the mold to cool naturally to room temperature before demolding. However, natural cooling takes a lot of time, resulting in slow production progress and low efficiency. Some factories place the mold containing the insulation material on a workbench and use a fan to accelerate the cooling of the insulation material in the mold. However, this method does not effectively dissipate heat from the bottom of the mold, which can easily lead to uneven cooling of the insulation material inside the mold, affecting the quality of the insulation material and making it impractical.

[0005] Therefore, it is necessary to provide a cooling device for thermal insulation materials to solve the above-mentioned technical problems. Utility Model Content

[0006] The purpose of this invention is to provide a cooling device for thermal insulation materials to solve the above-mentioned technical problems.

[0007] To achieve the above objectives, the present invention adopts the following technical solution:

[0008] A thermal insulation material cooling device, installed on a roller conveyor, includes:

[0009] The movable seats are provided in two symmetrically arranged, and two connecting rods are provided between the two movable seats;

[0010] Each of the connecting rods is provided with two mounting seats, the position of which can be adjusted along the axial direction of the connecting rod, and each mounting seat is provided with a support seat;

[0011] A transmission mechanism, mounted on the movable base, is used to drive the two connecting rods to move closer or further apart;

[0012] The cooling seats are provided in two symmetrical positions on the upper and lower sides of the roller conveyor, and each cooling seat is equipped with a fan.

[0013] Furthermore, the mounting base is slidably mounted on the connecting rod, the connecting rod has multiple adjustment holes, and the mounting base is threaded with fastening bolts that are compatible with the adjustment holes.

[0014] Furthermore, the movable seat has a transmission cavity inside, and the side wall of the movable seat has a sliding groove that communicates with the transmission cavity;

[0015] The transmission mechanism includes a rotating shaft rotatably disposed on the inner wall of the transmission cavity. The rotating shaft is provided with two sections of threads with opposite directions. Nut blocks that are slidably connected to the transmission cavity are threaded on both sides of the rotating shaft. A connecting block is provided on the nut block. The other end of the connecting block passes through the sliding groove and is connected to the connecting rod.

[0016] Furthermore, the inner wall of the transmission cavity is provided with a sliding groove, and a slider is slidably disposed on the inner wall of the sliding groove, the outer end of the slider being connected to the nut block.

[0017] Furthermore, a rotating rod is rotatably mounted on the support base, a connecting rod is mounted on the upper end of the rotating rod, and a pressure plate is elastically mounted on the connecting rod.

[0018] Furthermore, an outer rod and an inner rod are provided between the adapter rod and the pressure plate. The outer rod has an inner cavity that is slidably connected to the inner rod. An elastic element is provided between one end of the inner rod and the inner wall of the inner cavity. The outer wall of the outer rod has a slot that communicates with the inner cavity. A push rod that is slidably connected to the inner rod is provided in the slot.

[0019] Furthermore, the roller conveyor is also equipped with a guide plate, the guide plate has a guide groove, and the side wall of the movable seat is provided with a guide bar that is slidably adapted to the guide groove.

[0020] Furthermore, the roller conveyor is provided with a bottom plate and a top plate, and both the bottom plate and the top plate are provided with adjusting components connected to the cooling seat.

[0021] Furthermore, the adjusting component includes a screw and two fixed cylinders, with both ends of the screw threadedly connected to the two fixed cylinders respectively.

[0022] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0023] 1. This solution uses a roller conveyor to move the moving seat and mold to the cooling seat. The mold is then cooled by a fan on the cooling seat, avoiding the current method of natural cooling to room temperature. This saves significant cooling time, significantly improves the production progress of insulation materials, and increases production efficiency. Furthermore, the moving seat and mold are cooled during the moving and conveying process, unlike the current method of cooling the mold while it is stationary. This allows cooling to occur as the mold moves to the next process, further saving time and accelerating production.

[0024] 2. This solution uses fans on two cooling seats on the upper and lower sides to cool the upper and lower surfaces of the mold simultaneously, which avoids the current situation of only cooling the upper surface. It can greatly prevent uneven cooling of the insulation material inside the mold, effectively ensure the quality of the insulation material, and at the same time cool the upper and lower ends of the mold, greatly improving efficiency and making it highly practical.

[0025] 3. This solution allows for position adjustment of the mounting base along the axial direction of the connecting rod, thereby changing the distance between the two support seats on the connecting rod in the left-right direction; the distance between the two connecting rods can also be changed through the transmission mechanism. The distance between the mounting base and support seats in the left-right and front-back directions can be adjusted according to the length and width specifications of different molds, which can meet the needs of various mold specifications and is highly flexible.

[0026] 4. In this solution, after the mold is placed on the support base, the pressure plate is moved up and rotated to press it on top of the mold. This restricts the vertical direction of the mold, greatly reducing the possibility of the mold shaking or falling out during transportation, effectively improving the stability of the mold and providing better protection for the insulation material. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the cooling device of this utility model;

[0028] Figure 2 for Figure 1 Enlarged structural diagram at point A in the middle;

[0029] Figure 3 This is a schematic diagram of the structure of the movable seat and connecting rod on the roller conveyor of this utility model;

[0030] Figure 4 for Figure 3 Enlarged structural diagram of point B in the middle;

[0031] Figure 5 for Figure 4 Enlarged structural diagram at point C;

[0032] Figure 6 This is a schematic diagram of the internal structure of the outer rod of this utility model;

[0033] Figure 7 This is a top view of the internal structure of the movable base of this utility model.

[0034] Explanation of the labels in the diagram:

[0035] 1. Roller conveyor; 2. Moving seat; 3. Connecting rod; 4. Transmission mechanism; 41. Rotating shaft; 42. Nut block; 43. Connecting block; 5. Mounting seat; 6. Support seat; 7. Cooling seat; 8. Fan; 9. Adjusting hole; 10. Fastening bolt; 11. Transmission cavity; 12. Moving groove; 13. Sliding groove; 14. Sliding block; 15. Rotating rod; 16. Adapter rod; 17. Pressure plate; 18. Outer rod; 19. Inner rod; 20. Inner cavity; 21. Elastic element; 22. Slot; 23. Push rod; 24. Guide plate; 25. Guide groove; 26. Guide bar; 27. Bottom plate; 28. Top plate; 29. ​​Adjusting element; 291. Screw; 292. Fixed cylinder; 30. Operating lever. Detailed Implementation

[0036] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0037] Please see Figure 1-7 A thermal insulation material cooling device, installed on a roller conveyor 1, includes:

[0038] The movable seat 2 is provided in two symmetrical positions, and two connecting rods 3 are provided between the two movable seats 2; each connecting rod 3 is provided with two mounting seats 5, the position of the mounting seats 5 can be adjusted along the axial direction of the connecting rod 3, and each mounting seat 5 is provided with a support seat 6;

[0039] The transmission mechanism 4 is mounted on the movable base 2 and is used to drive the two connecting rods 3 to move closer or further apart.

[0040] Cooling seats 7 are provided in two symmetrically arranged on the upper and lower sides of the roller conveyor 1, and fans 8 are provided on the cooling seats 7.

[0041] In use, the insulation material mold to be cooled is placed between the two movable seats 2, that is, placed on the support seats 6 of the four mounting seats 5. At this time, the bottom of the mold is not obstructed. Then, the roller conveyor 1 will start, which will drive the two movable seats 2 to move on the rollers of the roller conveyor 1. In turn, the movable seats 2 will move the mold. When the movable seats 2 carry the mold to the position of the cooling seat 7, the mold can be cooled by the fan 8 on the cooling seat 7. This avoids the current method of natural cooling to room temperature, which can save a lot of cooling time, significantly improve the production progress of insulation materials, and increase production efficiency. Moreover, the cooling is carried out by the roller conveyor 1 while the movable seats 2 and the mold are moving and transporting. Unlike the current cooling method of placing the mold statically, this device cools the mold and insulation material while transporting them, so that they are cooled in the process of reaching the next process. This can further save processing time, speed up the production progress, and improve production benefits.

[0042] Furthermore, the fans 8 on the two cooling seats 7 on the upper and lower sides cool the upper and lower surfaces of the mold simultaneously. This avoids the current situation where the fans only act on the upper surface when cooling the insulation material. It can greatly prevent uneven cooling of the insulation material in the mold, effectively ensure the quality of the insulation material, and cool the upper and lower ends of the mold at the same time, which greatly improves efficiency, has high practicality, and has good performance.

[0043] By operating the mounting base 5, its position can be adjusted along the axial direction of the connecting rod 3, thereby adjusting the distance between the two mounting bases 5 on each connecting rod 3, which in turn changes the distance between the two support seats 6 on the connecting rod 3 in the left-right direction. Furthermore, the transmission mechanism 4 can move the two connecting rods 3 closer or further apart, thus changing the distance between them and consequently altering the distance between the mounting bases 5 and support seats 6 in the front-back direction. In summary, the distances between the mounting bases 5 and support seats 6 in the left-right and front-back directions can be adjusted according to the length and width specifications of different molds, satisfying the needs of various mold specifications. This flexibility and wide applicability make it suitable for widespread use.

[0044] In this embodiment, preferably, please refer to [reference needed]. Figure 3-4 The mounting base 5 is slidably mounted on the connecting rod 3. The connecting rod 3 has multiple adjustment holes 9. The mounting base 5 is threaded with fastening bolts 10 that are compatible with the adjustment holes 9. Loosening the fastening bolts 10 to disengage them from the adjustment holes 9 allows the mounting base 5 and support base 6 to move along the connecting rod 3, thereby adjusting the position of the mounting base 5 on the connecting rod 3. The distance between two mounting bases 5 on each connecting rod 3 can be adjusted as needed. After adjustment, rotating the fastening bolts 10 to insert them into the corresponding adjustment holes 9 will fix the mounting base 5 onto the connecting rod 3.

[0045] In this embodiment, preferably, please refer to [reference needed]. Figure 3 and Figure 7 The movable seat 2 has a transmission cavity 11 inside, and the side wall of the movable seat 2 has a sliding groove 12 that communicates with the transmission cavity 11.

[0046] The transmission mechanism 4 includes a rotating shaft 41 rotatably disposed on the inner wall of the transmission cavity 11. The rotating shaft 41 is provided with two sections of threads with opposite directions. Both sides of the rotating shaft 41 are threadedly connected to nut blocks 42 that are slidably connected to the transmission cavity 11. The nut blocks 42 are provided with connecting blocks 43. The other end of the connecting blocks 43 passes through the shift groove 12 and is connected to the connecting rod 3.

[0047] When the rotating shaft 41 is rotated, the nut block 42 is restricted by the inner wall of the transmission cavity 11. Therefore, the rotation of the rotating shaft 41 will drive the nut blocks 42 on both sides to move closer or further away from each other. The nut blocks 42 will then drive the connecting block 43 to move along the sliding groove 12. Thus, the two connecting blocks 43 will drive the two connecting rods 3 to move closer or further away from each other, thereby changing the distance between the mounting seat 5 and the support seat 6 on the two connecting rods 3 in the front and rear directions. This distance can be adjusted according to actual needs.

[0048] In this embodiment, preferably, please refer to [reference needed]. Figure 7 The inner wall of the transmission cavity 11 is provided with a groove 13, and a slider 14 is slidably disposed on the inner wall of the groove 13. The outer end of the slider 14 is connected to the nut block 42. When the rotating shaft 41 drives the nut block 42 to move, the nut block 42 will drive the slider 14 to slide along the groove 13, which can limit the rotation of the nut block 42, and at the same time improve the stability and smoothness of the movement of the nut block 42, thereby ultimately improving the stability of the movement of the connecting rod 3.

[0049] In this embodiment, preferably, please refer to [reference needed]. Figure 3-6 A rotating rod 15 is rotatably mounted on the support base 6, and a connecting rod 16 is mounted on the upper end of the rotating rod 15. A pressure plate 17 is elastically mounted on the connecting rod 16. When the mold is placed on the support base 6 of the mounting base 5, the pressure plate 17 is first moved upward to make it higher than the support base 6. Then the rotating rod 15 is rotated so that the connecting rod 16 and the pressure plate 17 are rotated to the position above the mold. After the pressure plate 17 is released, it will press on the top of the mold, thereby restricting the vertical direction of the mold. This greatly reduces the possibility of the mold shaking or falling off when it is conveyed on the roller conveyor 1, effectively improving the stability of the mold and providing better protection for the mold and insulation material.

[0050] In this embodiment, preferably, please refer to [reference needed]. Figure 3-6An outer rod 18 and an inner rod 19 are provided between the adapter rod 16 and the pressure plate 17. The outer rod 18 has an inner cavity 20 that is slidably connected to the inner rod 19. An elastic element 21 is provided between one end of the inner rod 19 and the inner wall of the inner cavity 20. The outer wall of the outer rod 18 has a slot 22 that communicates with the inner cavity 20. A push rod 23 connected to the inner rod 19 is slidably provided in the slot 22. The elastic element 21 in this application can be a spring. Pushing the push rod 23 upward will cause the inner rod 19 to move upward along the inner cavity 20 and compress the elastic element 21. At this time, the inner rod 19 will cause the pressure plate 17 to move upward. After the pressure plate 17 is rotated above the mold, the push rod 23 is released. Through the restoring force of the elastic element 21, the inner rod 19 and the pressure plate 17 will move downward, so that the pressure plate 17 will press on the mold. When removing the mold later, simultaneously move the push rod 23 upward to make it move the pressure plate 17 upward, and then rotate the rotating rod 15 to remove the pressure plate 17 from above the mold. The operation is simple and convenient.

[0051] In this embodiment, preferably, please refer to [reference needed]. Figure 1 and Figure 3 The roller conveyor 1 is also equipped with a guide plate 24, on which a guide groove 25 is formed. The side wall of the movable seat 2 is provided with a guide bar 26 that slides and adapts to the guide groove 25. When the rollers of the roller conveyor 1 drive the movable seat 2 to move, the guide bar 26 on the movable seat 2 will slide along the guide groove 25 of the guide plate 24, thereby making the movable seat 2 move more stably and smoothly, reducing the occurrence of skewing or jamming, and improving the performance.

[0052] In this embodiment, preferably, please refer to [reference needed]. Figure 1-2 The roller conveyor 1 is equipped with a bottom plate 27 and a top plate 28, both of which are equipped with adjusting components 29 connected to the cooling seat 7. By operating the adjusting components 29, the height position of the cooling seat 7 can be adjusted, thereby changing the distance between the cooling seat 7 and the mold on the roller conveyor 1. This allows for adjustment according to different cooling requirements and has a wide range of applications.

[0053] In this embodiment, preferably, please refer to [reference needed]. Figure 1-2 The adjusting component 29 includes a screw 291 and two fixed cylinders 292, with both ends of the screw 291 threadedly connected to the two fixed cylinders 292 respectively. Multiple operating levers 30 are provided in the middle of the screw 291. Rotating the screw 291 allows the fixed cylinders 292 connected to the cooling base 7 to move vertically, thus changing the height of the cooling base 7. The screw 291 can be easily rotated via the operating levers 30.

[0054] It should be understood that the examples and embodiments described herein are for illustrative purposes only and are not intended to limit the present invention. Those skilled in the art can make various modifications or changes based on them. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

[0055] It should be noted that if the embodiments of this utility model involve directional indicators such as up, down, left, right, front, back, etc., the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indicators will also change accordingly.

[0056] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the meaning of "and / or" throughout the text includes three parallel solutions; for example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, "multiple" refers to two or more. Moreover, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

Claims

1. A cooling device for thermal insulation material, installed on a roller conveyor (1), characterized in that, The utility model relates to a kind of cooling device of roller conveyor, including: Mobile seat (2) is equipped with two and mutually symmetrical, two described mobile seat (2) between being provided with two connecting rods (3); Each described connecting rod (3) is provided with two mounting seat (5), the mounting seat (5) can be adjusted position along the axial direction of the connecting rod (3), and the mounting seat (5) is provided with support seat (6); Transmission mechanism (4) is provided in the mobile seat (2), for driving two described connecting rod (3) mutually close or far away from each other; Cooling seat (7) is equipped with two and symmetrically provided on the upper and lower sides of the roller conveyor (1), and the cooling seat (7) is provided with fan (8).

2. A thermal insulation cooling device according to claim 1, characterized in that The mounting seat (5) is slidably arranged on the connecting rod (3), and a plurality of adjusting holes (9) are formed in the connecting rod (3). The mounting seat (5) is threadedly connected with a fastening bolt (10) matched with the adjusting hole (9).

3. A thermal insulation cooling device according to claim 1, characterized in that The mobile seat (2) is internally provided with a transmission cavity (11), and the side wall of the mobile seat (2) is provided with a moving groove (12) in communication with the transmission cavity (11). The transmission mechanism (4) comprises a rotating shaft (41) rotatably arranged on the inner wall of the transmission cavity (11). The rotating shaft (41) is provided with two sections of threads with opposite rotation directions. Nut blocks (42) are threadedly connected to the two sides of the rotating shaft (41) and slidably connected to the transmission cavity (11). The nut blocks (42) are provided with connecting blocks (43). The other ends of the connecting blocks (43) pass through the moving groove (12) and are connected to the connecting rods (3).

4. A thermal insulation cooling device according to claim 3, characterized in that The inner wall of the transmission cavity (11) is provided with a sliding groove (13), and the sliding groove (13) is slidably provided with a sliding block (14). The outer end of the sliding block (14) is connected to the nut block (42).

5. A thermal insulation cooling device according to claim 1, characterized in that The support seat (6) is further rotatably provided with a rotating rod (15). The rotating rod (15) is provided at the upper end with a connecting rod (16). The connecting rod (16) is elastically provided with a pressing plate (17).

6. A thermal insulation cooling device according to claim 5, characterized in that The connecting rod (16) and the pressing plate (17) are provided with an outer rod (18) and an inner rod (19). The outer rod (18) is provided with an inner cavity (20) slidably connected to the inner rod (19). An elastic member (21) is arranged between one end of the inner rod (19) and the inner wall of the inner cavity (20). The outer wall of the outer rod (18) is provided with a slot (22) in communication with the inner cavity (20). The slot (22) is slidably provided with a push rod (23) connected to the inner rod (19).

7. A thermal insulation cooling device according to claim 1, characterized in that The roller conveyor (1) is further provided with a guide plate (24). The guide plate (24) is provided with a guide groove (25). The side wall of the mobile seat (2) is provided with a guide strip (26) slidably matched with the guide groove (25).

8. A thermal insulation cooling device according to claim 1, characterized in that The roller conveyor (1) is respectively provided with a bottom plate (27) and a top plate (28). The bottom plate (27) and the top plate (28) are provided with adjusting members (29) connected to the cooling seat (7).

9. A thermal insulation cooling device according to claim 8, characterized in that The adjusting member (29) comprises a screw rod (291) and two fixed cylinders (292), two ends of the screw rod (291) are respectively screwed with the two fixed cylinders (292).