Double-layer track suspension equipment capable of being controlled at high temperature and low temperature
By designing a double-layer track suspension equipment that can be controlled at high and low temperatures, the problem of the existing technology being difficult to meet the space requirements of large-scale ultra-high temperature environments and inconvenient product transportation is solved, and the effective control of warehouse temperature and convenient product transportation is achieved.
Patent Information
- Application Number
- CN202421832432.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-30
AI Technical Summary
Most of the existing high-temperature environmental equipment have an overall structure, which is difficult to meet the needs of large ultra-high-temperature environmental spaces. At the same time, there is a lack of equipment that can facilitate the delivery of products, resulting in the inability to enter the warehouse conveniently.
A double-layer track suspension device that can be controlled at high and low temperatures is designed, including a warehouse, a supporting track part and a moving support part. The temperature control is achieved through air energy and air cooler, and the combination of the supporting track part and a moving support part is achieved to achieve convenient transportation of products.
It realizes high and low temperature control of the warehouse temperature, and can conveniently transport products to the warehouse, meeting the needs of large-scale ultra-high temperature ambient spaces.
Smart Images

Figure CN222988955U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of printed matter processing, in particular to a double-layer track suspension device with high and low temperature control. Background Art
[0002] In the production, scientific research, testing, drying, aging and other links of many industries, there may be a need to create and maintain a large space with high temperature or ultra-high temperature. In the past, the high-temperature environment equipment was small and of an integral structure, which could be achieved by simple means. With the continuous development of China's industry, small equipment has gradually been unable to meet the market needs, and large ultra-high temperature environment spaces have emerged continuously. However, traditional large warehouses are mostly made of polyurethane assembled panels, with limited high-temperature resistance, and generally the upper temperature limit is below 120°.
[0003] When storing products in the existing warehouse, it is necessary to manually transport the goods into it. At the same time, the warehouse lacks equipment that can convey products, making it impossible to conveniently convey products into the warehouse. Summary of the Utility Model
[0004] The purpose of the utility model is to propose a double-layer track suspension device with high and low temperature control, which can solve at least one of the above technical problems. The technical solution of the utility model is as follows:
[0005] A double-layer track suspension device with high and low temperature control, comprising: a warehouse, in the middle of the warehouse, there is a partition board. The left and right sides in the warehouse are separated by the partition board to form a first placement space and a second placement space. In both the first placement space and the second placement space, there is a support track part. On each support track part, there are a plurality of moving support parts that can support printing rolls. On the front side of the warehouse, there are air-cooling machines symmetrically arranged, and there is an air energy source on the front side of the warehouse.
[0006] Further, the support track part includes that on the upper and lower sides in both the first placement space and the second placement space, there are symmetrically arranged tracks, and a plurality of support frames are fixedly connected between every two symmetrically arranged tracks.
[0007] Further, the moving support part includes support rollers arranged between every two symmetrically arranged tracks. In each support roller, there is a through groove. On each support roller, there are a plurality of plug-in grooves that can communicate with the through groove at intervals. In each plug-in groove, there is a top bar inserted movably. In each through groove, there is a rotating shaft sleeved movably. In the middle of each rotating shaft, there is a thread. A threaded sleeve is in threaded cooperation with the middle of the rotating shaft through the thread. Between each threaded sleeve and each adjacent top bar, there are a plurality of connecting rods hinged movably. At the left and right ends of each rotating shaft, there are hexagonal nuts fixed. At the left and right ends of each support roller, there are rollers sleeved movably. Each roller is arranged in the adjacent track.
[0008] Further, a first air inlet and a second air inlet are symmetrically arranged on the front side of the storage room. Connecting pipes are connected to the output ends on the left and right sides of the air energy. The connecting pipes are connected to the first air inlet, and the air-cooled machine is communicated with the second air inlet. Each of the first air inlets and the second air inlets is communicated with the adjacent first placement space and the second placement space respectively.
[0009] Preferably, a plurality of protruding blocks are fixedly arranged at intervals on the surface of each support roller.
[0010] Preferably, cover doors are symmetrically fixed on the rear side of the storage room.
[0011] Preferably, product rolls are placed on each support roller.
[0012] In summary, the beneficial effects of the present utility model compared with the prior art are as follows:
[0013] The present utility model provides a double-layer track suspension device capable of high and low temperature control. When in use, the user places the printing roll on the moving support part, then places the moving support part on the support track part, and then the user pushes the moving support part so that the moving support part moves through the support track part to reach the storage room. During use, heat and cold can be conveyed into the storage room through the air energy, so that the temperature in the storage room remains high. At the same time, cold energy can be conveyed into the storage room through the air-cooled machine, so that the temperature in the storage room remains low. Compared with the prior art, the temperature of the storage room can be controlled at high or low temperatures, and at the same time, the products can be suspended in the storage room, and the products can be conveniently conveyed into the storage room. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a three-dimensional schematic diagram of the present utility model.
[0015] Figure 2 is a half-sectional schematic diagram of the present utility model.
[0016] Figure 3 is one of the exploded schematic diagrams of the present utility model.
[0017] Figure 4 is the second exploded schematic diagram of the present utility model.
[0018] Figure 5 is a separate schematic diagram of the moving support part of the present utility model.
[0019] Description of the reference numerals: 1, storage room; 2, partition board; 3, first placement space; 4, second placement space; 5, support track part; 6, movable support part; 7, air-cooling machine; 8, air energy; 51, track; 52, support frame; 61, support roller; 62, through groove; 63, insertion slot; 64, top bar; 65, rotating shaft; 66, thread; 67, threaded sleeve; 68, connecting rod; 69, hexagon nut; 610, roller; 11, first air inlet; 12, second air inlet; 13, connecting pipe; 611, lifting block; 14, cover door; 612, product roll. Detailed implementation manners
[0020] The present utility model will be further described below in conjunction with the accompanying drawings and the detailed implementation manners:
[0021] As Figures 1 to 5 shown, a double-layer track suspension device capable of high and low temperature control, which is characterized in that it includes: a storage room 1, cover doors 14 are symmetrically fixed on the rear side of the storage room 1, a partition board 2 is arranged in the middle of the storage room 1, and the left and right sides in the storage room 1 are separated by the partition board 2 to form a first placement space 3 and a second placement space 4. Support track parts 5 are arranged in both the first placement space 3 and the second placement space 4, and a plurality of movable support parts 6 capable of supporting printing rolls are arranged on each of the support track parts 5. Air-cooling machines 7 are symmetrically arranged on the front side of the storage room 1, and air energy 8 is arranged on the front side of the storage room 1.
[0022] For a double-layer track suspension device with the above structure, when in use, the user places the printing roll on the movable support part 6, then places the movable support part 6 on the support track part 5, and then the user pushes the movable support part 6 so that the movable support part 6 moves through the support track part 5 to reach the inside of the storage room 1. During use, heat and cold can be conveyed into the storage room 1 through the air energy so that the temperature in the storage room 1 remains high. At the same time, cold air can be conveyed into the storage room 1 through the air-cooling machine 7 so that the temperature in the storage room 1 remains low. Compared with the prior art, it can control the temperature of the storage room to be high or low, and at the same time, the product can be suspended in the storage room, and the product can be conveniently conveyed into the storage room.
[0023] As Figure 3 shown, in some embodiments of the present utility model, the support track part 5 includes tracks 51 symmetrically arranged on the upper and lower sides in both the first placement space 3 and the second placement space 4, and a plurality of support frames 52 are connected and fixed on every two symmetrically arranged tracks 51. The user places the support track part 5 on the track 51, and the track 51 is erected and fixed in the first placement space 3 and the second placement space 4 through a plurality of support frames 52.
[0024] As Figure 5As shown, in some embodiments of the present utility model, in order to achieve the effect of supporting the printing roll, the movable support portion 6 includes a support roller 61 disposed between every two symmetrically arranged tracks 51. A plurality of protrusion blocks 611 are fixedly spaced on the surface of each support roller 61. A product roll 612 is placed on each support roller 61. A through groove 62 is provided in each support roller 61. A plurality of insertion slots 63 that can communicate with the through groove 62 are spaced on each support roller 61. A top bar 64 is movably inserted into each insertion slot 63. A rotating shaft 65 is movably sleeved in each through groove 62. A thread 66 is provided in the middle of each rotating shaft 65. A threaded sleeve 67 is threadedly engaged with the middle of the rotating shaft 65 through the thread 66. A plurality of connecting rods 68 are movably hinged between each threaded sleeve 67 and each adjacent top bar 64. Hexagonal nuts 69 are fixed at the left and right ends of each rotating shaft 65. Rollers 610 are movably sleeved at the left and right ends of each support roller 61, and each roller 610 is disposed in the adjacent track 51.
[0025] When a double-layer track suspension device with temperature control is operating using the above structure, the user inserts the support roller 61 into the middle of the product roll 612, and then the user places the support roller 61 together with the product roll 612 on the track 51. At this time, the rollers 610 movably sleeved at the left and right ends of the support roller 61 roll along the track 51, so that when the user pushes the product roll 612, it moves along with the support roller 61. After the support roller 61 is inserted into the product roll 612, the user rotates the hexagonal nut 69, so that the hexagonal nut 69 drives the rotating shaft 65 to rotate. While the rotating shaft 65 rotates, the threaded sleeve 67 is driven to move through the thread 66. While the threaded sleeve 67 moves, the top bar 64 is driven to move along the insertion slot 63 through the connecting rod 68, so that the top bar 64 supports and presses against the inside of the product roll 612. At this time, the top bar 64 cooperates with the protrusion blocks 611 to prevent the product roll 612 from rotating during storage.
[0026] As Figure 4 As shown, in some embodiments of the present utility model, in order to achieve the effect of driving the cutting portion 6, the second driving mechanism 200 includes a first connecting rod 201 and a second connecting rod 202 that are respectively symmetrically and movably hinged on each upper knife seat 64 and lower knife seat 62. Each first connecting rod 201 is movably hinged to the adjacent second connecting rod 202. A first motor 203 is fixed on one side of each second square 61. A second screw rod 204 is fixed at the output end of each first motor 203. A threaded sleeve 205 is fixed on each upper knife seat 64, and the threaded sleeve 205 and the second screw rod 204 are threadedly engaged with each other.
[0027] When a double-layer track suspension device with high and low temperature control using the above structure is in operation, the first motor 203 drives the second screw rod 204 to rotate, so that the second screw rod 204 drives the upper tool holder 64 to move downward through the thread sleeve 205. While the upper tool holder 64 is moving, it drives the first connecting rod 201 to swing, and at the same time, the first connecting rod 201 drives the second connecting rod 202 to swing, so that the first connecting rod 201 and the second connecting rod 202 contract with each other.
[0028] As Figure 5 shown, in some embodiments of the present invention, in order to achieve the effect of driving each of the moving frames 4 to move, the moving mechanism 300 includes second motors 301 fixed on the left and right sides of the bottom plate 1. A third screw rod 302 is fixed to the output end of the second motor 301. Second threaded holes 303 are provided on each of the moving frames 4, and the second threaded holes 303 are in threaded cooperation with the third screw rod 302.
[0029] When a double-layer track suspension device with high and low temperature control using the above structure is in operation, the second motor 301 drives the third screw rod 302 to rotate, and while the third screw rod 302 is rotating, it drives the moving frame 4 to move through the second threaded hole 303.
[0030] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A double-layer track suspension device capable of controlling high and low temperatures, characterized in that: include: A warehouse (1), wherein a partition (2) is provided in the middle of the warehouse (1), and the left and right sides of the warehouse (1) are divided by the partition (2) to form a first placement space (3) and a second placement space (4), wherein the first placement space (3) and the second placement space (4) are both provided with a support rail portion (5), and each of the support rail portions (5) is provided with a plurality of movable support portions (6) capable of supporting a printing roll, and air coolers (7) are symmetrically provided at the front side of the warehouse (1), and an air energy (8) is provided at the front side of the warehouse (1).
2. The double-layer track suspension device capable of controlling high and low temperatures according to claim 1, characterized in that The support track portion (5) comprises tracks (51) symmetrically arranged on upper and lower sides of the first placement space (3) and the second placement space (4), and a plurality of support frames (52) are connected and fixed to each two symmetrically arranged tracks (51).
3. The double-layer track suspension device capable of controlling high and low temperatures according to claim 2 is characterized in that The movable support part (6) comprises a support roller (61) arranged between every two symmetrically arranged rails (51), each of the support rollers (61) is provided with a through groove (62), each of the support rollers (61) is provided with a plurality of plug-in grooves (63) which can be connected with the through groove (62) at intervals, each of the plug-in grooves (63) is provided with a top strip (64) which is movably plugged in, each of the through grooves (62) is provided with a rotating shaft (65) which is movably sleeved in each of the through grooves (62), and each of the rotating shafts (65) is provided with a A thread (66) is provided in the middle of the rotating shaft (65) through threaded cooperation with the thread (66), a plurality of connecting rods (68) are movably hinged on each of the threaded sleeves (67) and between each of the adjacent top strips (64), a hexagonal nut (69) is fixed at the left and right ends of each of the rotating shafts (65), and a roller (610) is movably sleeved at the left and right ends of each of the supporting rollers (61), and each of the rollers (610) is arranged in an adjacent track (51).
4. The double-layer track suspension device capable of controlling high and low temperatures according to claim 1, characterized in that A first air inlet (11) and a second air inlet (12) are symmetrically arranged on the front side of the warehouse (1), and a connecting pipe (13) is connected to the output ends on the left and right sides of the air energy (8), the connecting pipe (13) is connected to the first air inlet (11), the air cooler (7) is connected to the second air inlet (12), and each of the first air inlet (11) and the second air inlet (12) is connected to the adjacent first placement space (3) and the second placement space (4).
5. The double-layer track suspension device capable of controlling high and low temperatures according to claim 3 is characterized in that A plurality of protrusion blocks (611) are fixed at intervals on the surface of each of the support rollers (61).
6. The double-layer track suspension device capable of controlling high and low temperatures according to claim 1, characterized in that A covering door (14) is symmetrically fixed on the rear side of the warehouse (1).
7. The double-layer track suspension device capable of controlling high and low temperatures according to claim 3, characterized in that A product roll (612) is placed on each of the support rollers (61).