Cooling and heat dissipation device for preparing silicon PU court material
By setting up a rotating and flipping mechanism, uniform heat dissipation of the silicon PU court material is achieved, the problem of uneven heat dissipation at the edge of the material box is solved, and the processing quality is improved.
Patent Information
- Application Number
- CN202422321536.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-09-23
AI Technical Summary
During the preparation process of existing silicon PU court materials, the heat dissipation of the materials at the edge of the material box is uneven, resulting in a decrease in processing quality.
A rotating mechanism and an upward turning mechanism are provided to allow the material to be turned over and circulated toward the middle, the heat dissipation mechanism is used for uniform heat dissipation, and the material is discharged and sealed using the discharge mechanism and the sealing mechanism.
It achieves uniform heat dissipation during the preparation of silicon PU court materials and improves processing quality.
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Figure CN223425584U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cooling and heat dissipation for the preparation of silicon PU court materials, in particular to a cooling and heat dissipation device for the preparation of silicon PU court materials. Background Art
[0002] Silicon PU court material is a new generation of court paving material developed on the basis of PU court material. It combines polyurethane (PU) material with materials containing silicone components and has revolutionary innovative performance.
[0003] Among the existing cooling and heat dissipation devices used for preparing silicon PU court materials, for example, a cooling and heat dissipation device for preparing silicon PU court materials is disclosed in the utility model patent with application number 201922302204.1. The utility model includes a folding frame, a heat dissipation component and a material storage pool, wherein the heat dissipation component cools the material in the material storage pool. The heat dissipation component is installed at the top of the folding frame, and the square piece contacts the material to be cooled. The square piece increases the heat dissipation area, and at the same time the square piece will rotate to further accelerate the cooling and heat dissipation effect. Installing a flat plate on the side wall of the square piece can prevent the material from splashing.
[0004] However, during the cooling and heat dissipation process used in the preparation of silicon PU court materials, the materials at the edge of the material box are not suitable for heat dissipation, which leads to uneven heat dissipation and reduces the processing quality. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides a cooling and heat dissipation device for the preparation of silicon PU court materials, which is equipped with a rotating mechanism and an upward flipping mechanism, so that during the cooling and heat dissipation process of the silicon PU court material preparation, the material can be flipped and transported in a circular manner toward the middle, thereby dissipating the heat of the material more evenly and improving the processing quality.
[0006] The utility model discloses a cooling and heat dissipation device for preparing silicon PU court materials, comprising a heat dissipation mechanism; a discharge mechanism, a sealing mechanism, a rotating mechanism and an upward turning mechanism, wherein the sealing mechanism is mounted on the discharge mechanism, the rotating mechanism is mounted on the discharge mechanism, the upward turning mechanism is mounted on the rotating mechanism, and the heat dissipation mechanism is mounted on the rotating mechanism;
[0007] The discharging mechanism discharges the material, the sealing mechanism seals, the rotating mechanism rotates, the flipping mechanism flips up, and the heat dissipation mechanism dissipates heat; the flipping mechanism is driven to rotate by opening the rotating mechanism, and the material is flipped upward to form a cycle by the flipping mechanism, the heat dissipation mechanism is opened to dissipate the material, the sealing mechanism is opened to discharge the material, and the discharging mechanism is opened to discharge the material, so that during the cooling and heat dissipation process for the preparation of the silicon PU court material, the material can be flipped and transported in a circular manner to the middle, thereby dissipating the heat of the material more evenly and improving the processing quality.
[0008] Preferably, the discharging mechanism includes a hopper, an inclined plate, an auger, a spiral blade shaft and a motor 1. The inclined plate is installed in the hopper, the auger is installed at the left end of the hopper, the spiral blade shaft is rotatably installed in the auger, and the input end of the spiral blade shaft extends to the rear side of the auger. Motor 1 is installed at the rear end of the auger, and the output end of motor 1 is connected to the input end of the spiral blade shaft; the material is slid into the auger through the inclined plate, and the spiral blade shaft is driven by opening the hopper 5 to rotate the spiral blade shaft to discharge the material.
[0009] Preferably, the sealing mechanism includes a baffle, a worm gear, a second motor and a worm, the baffle is rotatably installed at the front end of the auger, the worm gear is installed at the front end of the baffle, the second motor is installed at the front end of the silo, the input end of the worm is connected to the output end of the second motor, and the worm and the worm gear are worm-driven; by turning on the second motor to drive the worm to rotate, the worm rotates and at the same time it is worm-driven with the worm gear so that the worm gear drives the baffle to rotate.
[0010] Preferably, the rotating mechanism includes a centralized frame, a rotating block and motor three, the centralized frame is installed on the upper end of the inclined material plate, the rotating block is rotatably installed on the centralized frame, and the input end of the rotating block extends to the upper side of the centralized frame, motor three is installed on the upper end of the centralized frame, and the output end of motor three is connected to the input end of the rotating block; the rotating block is rotated by turning on motor three to transmit the rotation.
[0011] Preferably, the upturning mechanism includes a corrugated frame, a slide, a spring, two sets of pulleys and an upturning blade shaft. The corrugated frame is installed at the lower end of the central frame, the slide is slidably installed on the rotating block through a spring, the two sets of pulleys are rotatably installed on the slide, and the two sets of pulleys are placed in the corrugated frame, and the upturning blade shaft is installed at the lower end of the slide; the slide is driven to rotate by the rotating block to rotate the upturning blade shaft, and the pulley moves in the corrugated frame and cooperates with the spring to cause the upturning blade shaft to stir and overturn the material.
[0012] Preferably, the heat dissipation mechanism comprises four fan blades, a gear ring, a gear and a motor, the fan blades are rotatably installed on the corrugated frame, the gear ring is installed on the fan blades, the gear is rotatably installed on the centralized frame, the gear input end extends to the upper side of the centralized frame, the gear is engaged with the gear ring, and the motor four is installed on the upper end of the centralized frame and connected with the gear input end.
[0013] Compared with the prior art, the beneficial effects of the utility model are that: through opening the rotating mechanism to drive the upward turning mechanism to rotate, the upward turning mechanism makes the material continuously turn upward to form a cycle, the heat dissipation mechanism is opened to dissipate heat for the material, the sealing mechanism is opened to discharge, and the discharging mechanism is opened to discharge, so that in the cooling and heat dissipation process of the silicon PU court material preparation, the material can be transported in the middle by turning and circulating, so that the material is more evenly cooled, and the processing quality is improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the isometric structural schematic diagram of the utility model;
[0015] Figure 2 It is the front view isometric structural schematic diagram of the utility model;
[0016] Figure 3 It is the left view isometric structural schematic diagram of the utility model;
[0017] Figure 4 It is the right view isometric structural schematic diagram of the utility model;
[0018] Figure 5 It is the top view isometric structural schematic diagram of the utility model;
[0019] Mark in the drawing: 1, discharging mechanism;11, stock bin;12, inclined plate;13, auger;14, spiral blade shaft;15, motor one;2, sealing mechanism;21, baffle;22, worm gear;23, motor two;24, worm;3, rotating mechanism;31, centralized frame;32, rotating block;33, motor three;4, upward turning mechanism;41, corrugated frame;42, sliding frame;43, spring;44, pulley;45, upward turning blade shaft;5, heat dissipation mechanism;51, fan blade;52, gear ring;53, gear;54, motor four. DETAILED DESCRIPTION
[0020] In order to facilitate understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.
[0021] Example 1
[0022] like Figures 1 to 5 As shown, a cooling and heat dissipation device for preparing silicon PU court materials includes a heat dissipation mechanism 5, a discharge mechanism 1, a sealing mechanism 2, a rotating mechanism 3, and an upward turning mechanism 4. The sealing mechanism 2 is mounted on the discharge mechanism 1, the rotating mechanism 3 is mounted on the discharge mechanism 1, the upward turning mechanism 4 is mounted on the rotating mechanism 3, and the heat dissipation mechanism 5 is mounted on the rotating mechanism 3;
[0023] The discharging mechanism 1 performs discharging, the sealing mechanism 2 performs sealing, the rotating mechanism 3 performs rotation, the flipping mechanism 4 performs flipping, and the heat dissipation mechanism 5 performs heat dissipation;
[0024] The discharge mechanism 1 includes a silo 11, an inclined plate 12, an auger 13, a spiral blade shaft 14 and a motor 15. The inclined plate 12 is installed in the silo 11, the auger 13 is installed at the left end of the silo 11, the spiral blade shaft 14 is rotatably installed in the auger 13, and the input end of the spiral blade shaft 14 extends to the rear side of the auger 13. The motor 15 is installed at the rear end of the auger 13, and the output end of the motor 15 is connected to the input end of the spiral blade shaft 14.
[0025] The sealing mechanism 2 includes a baffle 21, a worm gear 22, a second motor 23 and a worm 24. The baffle 21 is rotatably mounted on the front end of the auger 13, the worm gear 22 is mounted on the front end of the baffle 21, and the second motor 23 is mounted on the front end of the silo 11. The input end of the worm 24 is connected to the output end of the second motor 23, and the worm 24 and the worm gear 22 are worm-driven.
[0026] The rotating mechanism 3 includes a central frame 31, a rotating block 32 and a third motor 33. The central frame 31 is mounted on the upper end of the inclined material plate 12. The rotating block 32 is rotatably mounted on the central frame 31, and the input end of the rotating block 32 extends to the upper side of the central frame 31. The third motor 33 is mounted on the upper end of the central frame 31, and the output end of the third motor 33 is connected to the input end of the rotating block 32.
[0027] The flipping mechanism 4 includes a corrugated frame 41, a slide 42, a spring 43, two sets of pulleys 44 and an upward flipping leaf shaft 45. The corrugated frame 41 is mounted on the lower end of the central frame 31. The slide 42 is slidably mounted on the rotating block 32 via the spring 43. The two sets of pulleys 44 are rotatably mounted on the slide 42 and are placed in the corrugated frame 41. The upward flipping leaf shaft 45 is mounted on the lower end of the slide 42.
[0028] The heat dissipation mechanism 5 includes a fan blade 51, a gear ring 52, a gear 53, and a motor 4 54. The fan blade 51 is rotatably mounted on the corrugated frame 41, the gear ring 52 is mounted on the fan blade 51, and the gear 53 is rotatably mounted on the centralized frame 31. The input end of the gear 53 extends to the upper side of the centralized frame 31, and the gear 53 is meshed with the gear ring 52. The motor 4 54 is mounted on the upper end of the centralized frame 31, and the output end of the motor 4 54 is connected to the input end of the gear 53.
[0029] By turning on the motor three 33, the rotating block 32 is driven to rotate the rotating block 32, and the rotating block 32 drives the slide 42 to rotate so that the upward leaf shaft 45 rotates. The pulley 44 moves in the corrugated frame 41 and cooperates with the spring 43 to make the upward leaf shaft 45 turn the material upward to form a cycle. By turning on the motor four 54, the gear 53 is driven to rotate. When the gear 53 rotates, it meshes with the gear ring 52 so that the gear ring 52 drives the fan blade 51 to rotate to dissipate heat from the material. By turning on the motor two 23, the gear 53 is driven to rotate the gear ring 52. The worm 24 is driven to rotate, and the worm 24 is driven by the worm gear 22 at the same time as the worm 24 rotates, so that the worm gear 22 drives the baffle 21 to rotate for discharge, and the material is slid into the auger 13 through the inclined plate 12, and the spiral blade shaft 14 is driven by opening the hopper 115 to rotate the spiral blade shaft 14 to discharge the material, so that during the cooling and heat dissipation process of the silicon PU court material preparation, the material can be overturned and circulated to the middle, so that the heat dissipation of the material is more uniform, thereby improving the processing quality.
[0030] like Figures 1 to 5 As shown, the utility model is a cooling and heat dissipation device for the preparation of silicon PU court materials. When it is working, the rotating block 32 is driven by turning on the motor three 33 to rotate the rotating block 32, and the sliding frame 42 is driven to rotate by the rotating block 32 to rotate, so that the upward leaf shaft 45 is rotated, and the pulley 44 moves in the corrugated frame 41 and cooperates with the spring 43 to make the upward leaf shaft 45 so that the material is continuously turned upward to form a cycle, and the gear 53 is driven by turning on the motor four 54 to rotate the gear 53. When the gear 53 rotates, it engages with the gear ring 52 so that the gear ring 52 drives the fan blade 51 to rotate to dissipate heat from the material, and the worm 24 is driven by turning on the motor two 23 to rotate the worm 24. While the worm 24 rotates, it is worm-driven with the worm wheel 22 so that the worm wheel 22 drives the baffle 21 to rotate for discharge, and the material is slid into the auger 13 through the inclined plate 12, and the spiral leaf shaft 14 is driven by opening the hopper 115 to rotate the spiral leaf shaft 14 to discharge the material.
[0031] Motor 1 15 , motor 2 23 , motor 3 33 and motor 4 54 of the present invention are purchased on the market, and technicians in this industry only need to install and operate them according to the accompanying instruction manuals without the need for creative work by technicians in this field.
[0032] The main functions achieved by this utility model are: in the cooling and heat dissipation process of the silicon PU court material preparation, by setting a rotating mechanism and an upward turning mechanism, the material can be turned over and circulated toward the middle during the cooling and heat dissipation process of the silicon PU court material preparation, thereby dissipating the heat of the material more evenly and improving the processing quality.
[0033] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A cooling and heat dissipation device for preparing silicon PU court materials, comprising a heat dissipation mechanism (5); characterized in that: The device further comprises a discharge mechanism (1), a sealing mechanism (2), a rotating mechanism (3) and an upward turning mechanism (4), wherein the sealing mechanism (2) is mounted on the discharge mechanism (1), the rotating mechanism (3) is mounted on the discharge mechanism (1), the upward turning mechanism (4) is mounted on the rotating mechanism (3), and the heat dissipation mechanism (5) is mounted on the rotating mechanism (3); The discharge mechanism (1) performs discharge, the sealing mechanism (2) performs sealing, the rotating mechanism (3) performs rotation, the flipping mechanism (4) performs flipping, and the heat dissipation mechanism (5) performs heat dissipation.
2. A cooling and heat dissipation device for preparing silicon PU court materials according to claim 1, characterized in that: The discharging mechanism (1) comprises a hopper (11), an inclined material plate (12), an auger (13), a spiral blade shaft (14) and a motor (15). The inclined material plate (12) is installed in the hopper (11), the auger (13) is installed at the left end of the hopper (11), the spiral blade shaft (14) is rotatably installed in the auger (13), and the input end of the spiral blade shaft (14) extends to the rear side of the auger (13). The motor (15) is installed at the rear end of the auger (13), and the output end of the motor (15) is connected to the input end of the spiral blade shaft (14).
3. A cooling and heat dissipation device for preparing silicon PU court materials according to claim 2, characterized in that: The sealing mechanism (2) comprises a baffle (21), a worm wheel (22), a second motor (23) and a worm (24); the baffle (21) is rotatably mounted on the front end of the auger (13); the worm wheel (22) is mounted on the front end of the baffle (21); the second motor (23) is mounted on the front end of the silo (11); the input end of the worm (24) is connected to the output end of the second motor (23); and the worm (24) and the worm wheel (22) are worm-driven.
4. A cooling and heat dissipation device for preparing silicon PU court materials according to claim 2, characterized in that: The rotating mechanism (3) comprises a central frame (31), a rotating block (32) and a third motor (33). The central frame (31) is mounted on the upper end of the inclined material plate (12). The rotating block (32) is rotatably mounted on the central frame (31), and the input end of the rotating block (32) extends to the upper side of the central frame (31). The third motor (33) is mounted on the upper end of the central frame (31), and the output end of the third motor (33) is connected to the input end of the rotating block (32).
5. A cooling and heat dissipation device for preparing silicon PU court materials according to claim 4, characterized in that: The turning mechanism (4) comprises a corrugated frame (41), a slide (42), a spring (43), two groups of pulleys (44) and a turning leaf shaft (45); the corrugated frame (41) is mounted on the lower end of the central frame (31); the slide (42) is slidably mounted on the rotating block (32) through the spring (43); the two groups of pulleys (44) are rotatably mounted on the slide (42); and the two groups of pulleys (44) are placed in the corrugated frame (41); and the turning leaf shaft (45) is mounted on the lower end of the slide (42).
6. A cooling and heat dissipation device for preparing silicon PU court materials according to claim 5, characterized in that: The heat dissipation mechanism (5) comprises a fan blade (51), a gear ring (52), a gear (53) and a motor (54). The fan blade (51) is rotatably mounted on the corrugated frame (41), the gear ring (52) is mounted on the fan blade (51), the gear (53) is rotatably mounted on the centralized frame (31), and the input end of the gear (53) extends to the upper side of the centralized frame (31). The gear (53) is meshed with the gear ring (52). The motor (54) is mounted on the upper end of the centralized frame (31), and the output end of the motor (54) is connected to the input end of the gear (53).
Citation Information
Patent Citations
Cooling and radiating device for preparing silicon PU court material
CN211060500U