Split assembly type solar heat collection device
Through the semicircular through-grooves and threaded connection between the upper shell and the lower shell of the heat conducting pipe with split assembly and assembly, the disassembly and assembly of the heat collecting device in a non-fixed environment is solved, and convenient disassembly and assembly and transportation of the heat collecting device is realized.
Patent Information
- Application Number
- CN202421545099.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-02
AI Technical Summary
Existing solar thermal collectors are difficult to disassemble and are inconvenient for transportation in non-fixed environments such as on-board use or temporary energy, such as on-board use or temporary energy.
The split assembly design is adopted, and the semicircular through grooves of the upper shell of the heat conducting pipe and the lower shell of the heat conducting pipe are connected with the limiting assembly and threaded connection, so that the heat conducting pipe can be realized, and the fixing assembly and limiting assembly are installed firmly.
It realizes the convenient disassembly and assembly and transportation of the heat collector, which is easy to use in non-fixed environments, and is suitable for vehicle-mounted and temporary energy needs.
Smart Images

Figure CN223121706U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of split assembly of heat collection devices, and particularly relates to a split-assembled solar heat collection device. Background Art
[0002] For existing solar heat collection devices, generally, a base is set up so that the heat collection device body is bolted to the base, and the outer shell is fixedly connected by welding or other means to form a fixed structure that is not easy to disassemble and assemble, so as to be used for a long time without changing the usage location. However, for usage scenarios such as vehicle-mounted use and as temporary energy sources that require frequent disassembly and assembly and are in non-fixed environments, it is difficult to disassemble and assemble the heat collection device, which is not suitable for the above working conditions and is also not convenient for transportation;
[0003] Chinese patent document with publication number CN118242776A discloses a solar water heater, including a base, and an adjusting mechanism is fixedly installed in the middle of the top of the base, and a water heater body is fixedly installed on the top of the adjusting mechanism, but it does not disclose how to deal with usage scenarios such as vehicle-mounted use and as temporary energy sources that require frequent disassembly and assembly and are in non-fixed environments;
[0004] Chinese patent document with publication number CN118031435A discloses an angle-adjustable solar heat collection device, which controls a first driving gear to drive a first driven gear at the lower end to rotate through a first motor, and the first motor adjusts the orientation angle of the heat collection tank according to the irradiation angle of the sun, but it does not disclose how to solve the problems that it is difficult to disassemble and assemble the heat collection device and it is not convenient for transportation at the same time;
[0005] In summary, how to design a split-assembled solar heat collection device so that it can be disassembled and assembled for usage scenarios such as vehicle-mounted use and as temporary energy sources that require frequent disassembly and assembly and are in non-fixed environments, is suitable for the above working conditions, and is convenient for transportation has become a problem to be solved. Summary of the Utility Model
[0006] The purpose of the utility model is to provide a split-assembled solar heat collection device to solve the problems that it is difficult to disassemble and assemble the heat collection device, it is not suitable for the above working conditions, and it is not convenient for transportation for usage scenarios such as vehicle-mounted use and as temporary energy sources that require frequent disassembly and assembly and are in non-fixed environments.
[0007] To achieve the above purpose, the following technical solutions are provided:
[0008] A split-assembled solar heat collection device, comprising: a heat conduction tube, an upper shell of the heat conduction tube, a lower shell of the heat conduction tube, a heat transfer component, a fixing component and a limiting component. A semi-circular through groove is formed along the length direction at the bottom end of the upper shell of the heat conduction tube and the top end of the lower shell of the heat conduction tube. When the bottom surface of the upper shell of the heat conduction tube is mutually attached to the top surface of the lower shell of the heat conduction tube, a receiving space is formed at the grooved part of the two. The heat conduction tube is detachably arranged in the receiving space. The limiting component includes two parts, one part is arranged on the upper shell of the heat conduction tube and the other part is arranged on one side of the heat transfer component. The fixing component is arranged on the upper shell and the lower shell of the heat conduction tube. The heat conduction tube is also connected with hollow connectors at fixed intervals along its pipe wall. The hollow connectors penetrate through the side walls of the upper shell and the lower shell of the heat conduction tube and are connected with the heat transfer component for transferring heat into the heat conduction tube.
[0009] Preferably, the heat collection device further includes a light-transmitting plate. The limiting component is in contact with both the light-transmitting plate and the heat transfer component for limiting them.
[0010] Preferably, the heat transfer component includes a bottle-shaped heat collection tube and a glass vacuum tube. The inner diameter of the hollow connector is the same as that of the bottle-shaped heat collection tube. An external thread is provided at one end of the hollow connector away from the heat conduction tube. One end of the bottle-shaped heat collection tube extends outward along its side wall and is provided with an internal thread. Thus, the hollow connector is detachably threadedly connected with the bottle-shaped heat collection tube, and their inner cavities are connected when they are threadedly connected.
[0011] Preferably, a threaded sleeve is further sleeved on the hollow connector. An external thread is provided on the outer wall of the threaded sleeve, and an internal thread is provided on the inner wall of one end of the glass vacuum tube. The two are detachably threadedly connected, and when they are threadedly connected, the glass vacuum tube is correspondingly sleeved outside the bottle-shaped heat collection tube.
[0012] Preferably, the fixing component includes a fixing seat, a hinge support and a rotating buckle. The fixing seats are symmetrically arranged on the upper shell and the lower shell of the heat conduction tube. The fixing seat includes a concave part and a convex part. The hinge support is arranged on the fixing seat of the upper shell or the lower shell of the heat conduction tube, corresponding to the position of the concave part. The rotating buckle is limited in the hinge support and can rotate around the hinge support.
[0013] Preferably, the limiting component includes a limiting frame, a limiting seat, a limiting insertion plate and a limiting baffle. The limiting frame is fixed to the upper shell of the heat conduction tube. The light-transmitting plate passes through the limiting frame. A limiting groove is provided on the limiting seat. One end of the glass vacuum tube away from the threaded sleeve is arranged in the limiting groove. The limiting insertion plate is fixedly connected to the limiting seat and is located between the limiting grooves. A slot hole is provided on the light-transmitting plate. The limiting insertion plate is limited in the slot hole of the light-transmitting plate. The limiting baffle is erected on the limiting insertion plate, and its two ends are bolted to the limiting insertion plate for limiting the light-transmitting plate. An ear plate is also fixed on the light-transmitting plate for the pushing and pulling operation of the light-transmitting plate.
[0014] Preferably, external threads are provided at both ends of the heat conduction tube.
[0015] The beneficial effects of the present utility model are as follows:
[0016] 1. After the upper shell of the heat conduction tube and the lower shell of the heat conduction tube are fitted, they jointly limit the heat conduction tube, and the upper shell of the heat conduction tube and the lower shell of the heat conduction tube are fixed by flipping and rotating the buckle. The bottle-type heat collecting tube and the glass vacuum tube are both connected to the hollow joint by means of threads, which is convenient for the assembly and disassembly of the overall device;
[0017] 2. By pushing the light-transmitting plate through the ear plate, after passing through the limiting frame, it is inserted into the limiting insertion plate, and one end of it is tightly pressed by the limiting baffle, so that the light-transmitting plate is stably erected on the glass vacuum tube and is convenient for disassembly and installation. Description of the Drawings
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 is Figure 1 an enlarged schematic view of the structure at A in
[0020] Figure 3 is a schematic diagram of a partial structure of the present utility model Figure 1 ;
[0021] Figure 4 is a schematic diagram of a partial structure of the present utility model Figure 2 ;
[0022] Figure 5 is Figure 4 an enlarged schematic view of the structure at B in
[0023] In the figure:
[0024] 1 - heat conduction tube, 101 - hollow joint, 102 - threaded sleeve;
[0025] 2 - upper shell of the heat conduction tube;
[0026] 3 - lower shell of the heat conduction tube;
[0027] 4 - heat transfer component, 401 - bottle-type heat collecting tube, 402 - glass vacuum tube;
[0028] 5 - fixing component, 501 - fixing seat, 502 - recessed part, 503 - protruding part, 504 - hinge support, 505 - rotating buckle;
[0029] 6 - limiting component, 601 - limiting frame, 602 - limiting seat, 603 - limiting groove, 604 - limiting insertion plate, 605 - limiting baffle;
[0030] 7 - Transparent light plate, 701 - Slot hole, 702 - Ear plate. Specific embodiments
[0031] Next, in combination with the embodiments of the present utility model, the technical solutions in the schematic diagrams of the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0032] As Figures 1-5 shown, a split - assembled solar heat - collecting device includes: a heat - conducting tube 1, an upper shell 2 of the heat - conducting tube, a lower shell 3 of the heat - conducting tube, a heat - transfer component 4, a fixing component 5, and a limiting component 6. Both the bottom end of the upper shell 2 of the heat - conducting tube and the top end of the lower shell 3 of the heat - conducting tube are provided with semi - circular through - grooves along their length directions. When the bottom surface of the upper shell 2 of the heat - conducting tube and the top surface of the lower shell 3 of the heat - conducting tube are mutually attached, a receiving space is formed at the grooved part of the two. The heat - conducting tube 1 is detachably arranged in the receiving space. The limiting component 6 includes two parts, one is arranged on the upper shell 2 of the heat - conducting tube and the other is arranged on one side of the heat - transfer component 4. The fixing component 5 is arranged on the upper shell 2 and the lower shell 3 of the heat - conducting tube. The heat - conducting tube 1 is also connected with hollow connectors 101 at fixed intervals along its pipe wall. The hollow connectors 101 penetrate through the side walls of the upper shell 2 and the lower shell 3 of the heat - conducting tube and are connected with the heat - transfer component 4 for transferring heat into the heat - conducting tube 1; after the upper shell 2 and the lower shell 3 of the heat - conducting tube are attached, they jointly limit the heat - conducting tube 1, and by flipping the rotating buckle 505, the upper shell 2 and the lower shell 3 of the heat - conducting tube are fixed. The bottle - type heat - collecting tube 401 and the glass vacuum tube 402 are both connected with the hollow connector 101 by means of threads, which is convenient for the assembly and disassembly of the overall device;
[0033] In some embodiments, the heat - collecting device further includes a transparent light plate 7. The limiting component 6 abuts against both the transparent light plate 7 and the heat - transfer component 4 for limiting them;
[0034] In some embodiments, the heat - transfer component 4 includes a bottle - type heat - collecting tube 401 and a glass vacuum tube 402. The inner diameter of the hollow connector 101 is the same as the inner diameter of the bottle - type heat - collecting tube 401. One end of the hollow connector 101 away from the heat - conducting tube 1 is provided with an external thread. One end of the bottle - type heat - collecting tube 401 extends outward along its side wall and is provided with an internal thread. Thus, the hollow connector 101 and the bottle - type heat - collecting tube 401 are detachably connected by threads, and their inner cavities are connected when they are thread - connected;
[0035] In some embodiments, a threaded sleeve 102 is further sleeved on the hollow connector 101. External threads are provided on the outer wall of the threaded sleeve 102, and internal threads are provided on the inner wall of one end of the glass vacuum tube 402. The two are detachably connected by threads, and when the two are threadedly connected, the glass vacuum tube 402 is correspondingly sleeved outside the bottle-shaped heat collecting tube 401;
[0036] In some embodiments, the fixing assembly 5 includes a fixing base 501, a hinge support 502 and a rotating buckle 504. The fixing bases 501 are symmetrically arranged on the upper heat conducting tube shell 2 and the lower heat conducting tube shell 3. The fixing base 501 includes a recessed portion 502 and a protruding portion 503. The hinge support 504 is arranged on the fixing base 501 of the upper heat conducting tube shell 2 or the lower heat conducting tube shell 3, corresponding to the position of the recessed portion 502. The rotating buckle 505 is limitedly arranged in the hinge support 504 and can rotate around the hinge support 504;
[0037] In some embodiments, the limiting assembly 6 includes a limiting frame 601, a limiting seat 602, a limiting insertion plate 603 and a limiting baffle 604. The limiting frame 601 is fixed to the upper heat conducting tube shell 2. The light-transmitting plate 7 passes through the limiting frame 601. A limiting groove 603 is provided on the limiting seat 602. One end of the glass vacuum tube 402 away from the threaded sleeve 102 is arranged in the limiting groove 603. The limiting insertion plate 604 is fixedly connected to the limiting seat 602 and is located between the limiting grooves 603. A slot hole 701 is provided on the light-transmitting plate 7. The limiting insertion plate 604 is limitedly arranged in the slot hole of the light-transmitting plate 7. The limiting baffle 605 is erected on the limiting insertion plate 604, and its two ends are bolted to the limiting insertion plate 604 for limiting the light-transmitting plate 7. An ear plate 702 is also fixed on the light-transmitting plate 7 for the pushing and pulling operation of the light-transmitting plate 7; By pushing the light-transmitting plate 7 through the ear plate 702, after passing through the limiting frame 601, it is inserted on the limiting insertion plate 604, and one end of it is tightened by the limiting baffle 605, so that the light-transmitting plate 7 is stably erected on the glass vacuum tube 402 and is convenient for disassembly and installation;
[0038] In some embodiments, external threads are provided at both ends of the heat conducting tube 1.
Claims
1. A split-assembled solar heat collection device, characterized in that: Comprising: A heat conduction tube, an upper shell of the heat conduction tube, a lower shell of the heat conduction tube, a heat transfer assembly, a fixing assembly and a limiting assembly. Semi-circular through grooves are formed along the length direction at the bottom end of the upper shell of the heat conduction tube and the top end of the lower shell of the heat conduction tube. When the bottom surface of the upper shell of the heat conduction tube is mutually attached to the top surface of the lower shell of the heat conduction tube, an accommodation space is formed at the grooved positions of the two. The heat conduction tube is detachably arranged in the accommodation space. The limiting assembly includes two parts, one part is arranged on the upper shell of the heat conduction tube and the other part is arranged on one side of the heat transfer assembly. The fixing assembly is arranged on the upper shell and the lower shell of the heat conduction tube. The heat conduction tube is also connected with hollow connectors at fixed intervals along its tube wall. The hollow connectors penetrate through the side walls of the upper shell and the lower shell of the heat conduction tube and are connected with the heat transfer assembly for transferring heat into the heat conduction tube.
2. The split-assembled solar heat collection device according to claim 1, wherein, The heat collection device further includes a light-transmitting plate. The limiting assembly is in contact with both the light-transmitting plate and the heat transfer assembly for limiting them.
3. The split-assembled solar heat collection device according to claim 2, characterized in that The heat transfer assembly includes a bottle-shaped heat collection tube and a glass vacuum tube. The inner diameter of the hollow connector is the same as the inner diameter of the bottle-shaped heat collection tube. An external thread is provided at one end of the hollow connector away from the heat conduction tube. One end of the bottle-shaped heat collection tube extends outward along its side wall and is provided with an internal thread. Thus, the hollow connector and the bottle-shaped heat collection tube are detachably connected by threads, and their inner cavities are connected when they are thread-connected.
4. The split-assembled solar heat collection device according to claim 3, characterized in that, A threaded sleeve is also sleeved on the hollow connector. An external thread is provided on the outer wall of the threaded sleeve. An internal thread is provided on the inner wall of one end of the glass vacuum tube. The two are detachably connected by threads, and when they are thread-connected, the glass vacuum tube is correspondingly sleeved outside the bottle-shaped heat collection tube.
5. The split-assembled solar heat collection device according to claim 4, wherein, The fixing assembly includes a fixing seat, a hinge support and a rotating buckle. The fixing seats are symmetrically arranged on the upper shell and the lower shell of the heat conduction tube. The fixing seat includes a concave part and a convex part. The hinge support is arranged on the fixing seat of the upper shell or the lower shell of the heat conduction tube, corresponding to the position of the concave part. The rotating buckle is limited in the hinge support and can rotate around the hinge support.
6. The split-assembled solar heat collection device according to claim 5, characterized in that, The limiting assembly includes a limiting frame, a limiting seat, a limiting insertion plate and a limiting baffle. The limiting frame is fixed to the upper shell of the heat conduction tube. The light-transmitting plate passes through the limiting frame. A limiting groove is provided on the limiting seat. One end of the glass vacuum tube away from the threaded sleeve is arranged in the limiting groove. The limiting insertion plate is fixedly connected to the limiting seat and is located between the limiting grooves. A slot hole is formed on the light-transmitting plate. The limiting insertion plate is limited in the slot hole of the light-transmitting plate. The limiting baffle is erected on the limiting insertion plate, and its two ends are bolt-connected to the limiting insertion plate for limiting the light-transmitting plate. An ear plate is also fixed on the light-transmitting plate for the pushing and pulling operation of the light-transmitting plate.
7. A split-assembled solar heat collection device according to claim 6, characterized in that, External threads are provided at both ends of the heat conduction tube.
Citation Information
Patent Citations
Angle-adjustable solar heat collection device
CN118031435A
Solar water heater
CN118242776A