Box-type house with high anti-seismic performance
By combining disassembly and assembled components and photovoltaic panels, the rapid installation and self-power supply of box-type houses are achieved, solving the problems of complex disassembly and assembly of traditional box-type houses and the difficulty of post-disaster power supply, and improving seismic resistance and sound insulation effect.
Patent Information
- Application Number
- CN202422567040.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-23
AI Technical Summary
The frame structure of traditional box-type houses is complicated to disassemble and assembly, inconvenient to install, and difficult to supply power during post-disaster reconstruction, which affects the use efficiency and electrical power supply capacity.
The disassembly and assembly components include a force block, a mounting sleeve and a spring, and quickly splicing the longitudinal bar, a cross bar and a support bar, combining the photovoltaic panel and the collection component to achieve rapid installation and self-powering.
The efficiency of house frame splicing is improved, the electricity consumption needs of box-type houses are ensured, and the photoelectric conversion efficiency of photovoltaic panels is improved, the seismic performance and sound insulation effect are improved.
Smart Images

Figure CN223240839U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of box-type houses, in particular to a box-type house with high earthquake resistance. Background Art
[0002] Container houses, also known as prefabricated modular houses, are the product of the innovation of modern construction technology and the pursuit of flexible and efficient living space. With the acceleration of industrialization and the strengthening of globalization, container houses have emerged. They utilize standard containers for modification or specially designed modular components to achieve the advantages of rapid construction, recycling and low cost. They are widely used in temporary accommodation, post-disaster reconstruction, office space, tourist camps and other fields, showing the diversified trend of future architectural development. However, traditional container houses have a simple structure and poor sound insulation, which affects the user's living experience. On the other hand, it is difficult to divide functional areas and inconvenient to install.
[0003] To address the above-mentioned problems, publication number CN220372689U discloses a "box-type integrated house" that improves the wall structure of the house by adding mounting plates and shock-absorbing plates, thereby improving not only the sound insulation effect but also the earthquake resistance. The box-type house is isolated by using a snap-on connection and a third mounting plate, so that the integrated house has multiple functional areas. However, the box-type house still has certain defects in actual use. For example, in actual use, the frame structure of the box-type house is still relatively complicated to disassemble and assemble. The installation mostly relies on bolt fixing, which is inconvenient to disassemble and assemble. Moreover, when the box-type house is used for post-disaster reconstruction, the nearby circuit system may be damaged after the disaster, making it difficult to supply power. At this time, the electrical appliances inside the box-type house can only be powered by generators. However, multiple box-type houses need to be arranged for post-disaster reconstruction, and the generator may not be able to power all of the multiple box-type houses, resulting in some box-type houses being unable to use electrical appliances, causing inconvenience. Utility Model Content
[0004] The technical problem to be solved by the present invention is to provide a container-type house with high earthquake resistance. By setting up disassembly and assembly components, the time for splicing the container-type house frame is reduced, and the work efficiency is effectively improved. The electricity demand in the container-type house can be ensured by the photovoltaic panels, and the collecting components can ensure the photoelectric conversion efficiency of the photovoltaic panels.
[0005] The technical problem to be solved by the present invention is achieved by adopting the following technical solutions:
[0006] A highly seismic-resistant container-type house comprises support rods, four horizontal rods and four vertical rods disposed between the four support rods, and photovoltaic panels mounted on top of the vertical rods. A collection assembly, mounted outside the photovoltaic panels, collects rainwater and comprises a collection frame, a water storage tank, and an inlet pipe. A disassembly assembly, mounted between the vertical rods, the horizontal rods, and the support rods, is used to quickly connect the vertical rods, the horizontal rods, and the support rods. The disassembly assembly comprises a load-bearing block, a load-bearing hole, a mounting sleeve, and a through-hole.
[0007] Preferably, eight mounting sleeves are provided between the four support rods and the four longitudinal rods and the four cross rods, and six through holes are provided on the outer sides of the eight mounting sleeves, and two force-bearing holes are provided on the outer sides of the longitudinal rods, the cross rods and the support rods at both ends. A force-bearing block is provided inside the force-bearing hole and is slidably connected to the through holes. The cross rods, the longitudinal rods and the support rods at both ends are provided with two output holes. An output block is provided inside the output hole, and two force rods are provided between two adjacent force blocks and two adjacent output blocks. A pin is provided at the intersection of the two force rods, and the two ends of the pins are respectively rotatably connected to the longitudinal rods, the cross rods and the inner walls of the support rods through rotating shafts. A spring is provided between two adjacent force blocks. The cross rods, the longitudinal rods and the support rods can be quickly assembled by utilizing the convenience of disassembling and assembling components, which is highly consistent with the portability that the box-type house itself should have.
[0008] Preferably, five house panels are arranged between the longitudinal rods, the transverse rods and the support rods, and four fixing holes a are provided on the surface of the house panels, and shock-absorbing plates are installed inside four of the house panels. Two fixing holes b are provided on the surface of the mounting sleeve, and threaded rods threadedly connected to the fixing holes b are provided inside the fixing holes a. The fixing holes b are threadedly connected to the fixing holes a to ensure that the house panels can be firmly fixed on the corresponding mounting sleeves 7, thereby ensuring the sealing of the box-type house.
[0009] Preferably, two collection frames are provided on the outside of the photovoltaic panel, and one end of the bottom of the two collection frames is connected to a water inlet pipe. A water storage tank is provided on the outside of one of the house panels, and one end of the two water inlet pipes is connected to the water storage tank. A water pump is provided on one side of the outer end of one of the house panels, and a water suction pipe is connected to the bottom of the water pump, and a water supply pipe is connected to the top of the water pump. A cleaning pipe is installed on the top of the photovoltaic panel, and one end of the water supply pipe is connected to the cleaning pipe. The cleaning pipe has multiple water outlets, and a filter plate is provided inside the water tank, and a cover plate is provided on the top of the water tank. A handle is provided on one side of the top of the cover plate, and support plates are connected on both sides of the inner wall of the water tank. By collecting rainwater and then cleaning the photovoltaic panel, the photoelectric conversion efficiency of the photovoltaic panel can be ensured.
[0010] Preferably, the bottom of the photovoltaic panel is fixedly connected to the roof panel, and both sides of the bottom of the roof panel are connected to side panels. One side of the outer end of the side panel is fixedly connected to a plurality of side panel buckles, and the side panel buckles are provided with side panel holes. Two of the cross bars have a plurality of mounting holes on their surfaces. By installing the side panel buckles on the corresponding side panel holes, the photovoltaic panel, roof panel and side panel can be effectively fixed on the corresponding cross bars, thereby ensuring the stability of the entire box-type house roof.
[0011] The beneficial effects of the utility model are:
[0012] The advantage of the utility model is that the output block, connecting rod and spring inside the disassembly and assembly assembly are used to guide the force block to pass through the installation sleeve and be fixed on the through hole of the installation sleeve, thereby reducing the splicing time between the support rod, cross rod and longitudinal rod, and effectively improving work efficiency.
[0013] Secondly, photovoltaic panels can convert solar energy into electrical energy and then store it in batteries, which can then power the electrical appliances in the container house to ensure the electricity needs of the container house. In addition, the surface of the photovoltaic panels can be cleaned by combining the collection components with the water pump, water pipe, water outlet pipe and cleaning pipe, thereby ensuring the photoelectric conversion efficiency of the photovoltaic panels. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0015] Figure 2 This is a schematic diagram of the crossbar structure of the present utility model.
[0016] Figure 3 It is a top view of the overall structure of the utility model.
[0017] Figure 4 This is a top sectional view of the crossbar structure of the present utility model.
[0018] Figure 5 It is a cross-sectional view of the overall structure of the utility model.
[0019] Figure 6 It is a cross-sectional view of the water storage tank of the present utility model.
[0020] Figure 7 This is a schematic diagram of the installation sleeve structure of the utility model.
[0021] Figure 8 This is a cross-sectional view of the installation sleeve structure of the present utility model.
[0022] Figure 9 For the utility model Figure 2 Enlarged view of point A in the middle.
[0023] Figure 10 For the utility model Figure 5 Enlarged view of point B in the middle.
[0024] Figures 1-10 In: 1. Photovoltaic panel; 2. Cleaning pipe; 201. Water outlet; 3. Collection frame; 4. Water storage tank; 401. Water pump; 402. Water inlet pipe; 403. Water pump; 404. Filter plate; 405. Handle; 406. Cover plate; 407. Water pipe; 5. Longitudinal rod; 501. Force block; 502. Output block; 503. Spring; 504. Force rod; 505. Output hole; 506. Force hole; 507. Through hole; 6. Cross bar; 7. Mounting sleeve; 8. Support rod; 9. Fixing hole b; 10. House panel; 11. Fixing hole a; 12. Side panel; 13. Side panel buckle; 14. Roof panel; 15. Side panel hole; 16. Mounting hole; 17. Threaded rod; 18. Shock absorber. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making any creative work shall fall within the scope of protection of the present application.
[0026] The present application is described in detail below with reference to the accompanying drawings and specific implementation methods.
[0027] like Figures 1-10 As shown, a high-seismic-resistant box-type house includes: support rods 8, four horizontal rods 6 and four vertical rods 5 are arranged between the four support rods 8, a photovoltaic panel 1 is arranged on the top of the vertical rod 5, and a collecting component arranged on the outside of the photovoltaic panel 1 for collecting rainwater. The collecting component includes: a collecting frame 3, a water storage tank 4 and a water inlet pipe 402, and a disassembly and assembly component arranged between the vertical rods 5, the horizontal rods 6 and the support rods 8 for quickly splicing the vertical rods 5, the horizontal rods 6 and the support rods 8. The disassembly and assembly component includes: a force block 501, a force hole 506, a mounting sleeve 7 and a through hole 507.
[0028] Among them, a protective frame is installed at the bottom of the roof panel 14, and a battery is arranged inside the protective frame. When the photovoltaic panel 1 converts solar energy into electrical energy, it can store electricity in the battery, and then the battery is used to power the water pump 401 and the electrical equipment in the box-type house, thereby ensuring that users living in the box-type house can use electrical appliances normally.
[0029] Among them, eight mounting sleeves 7 are arranged between the four support rods 8 and the four longitudinal rods 5 and the four transverse rods 6, and six through holes 507 are opened on the outside of the eight mounting sleeves 7, and two force holes 506 are opened on the outside of both ends of the longitudinal rods 5, transverse rods 6 and support rods 8, and force blocks 501 slidingly connected to the through holes 507 are arranged inside the force holes 506, and two output holes 505 are opened on the outside of both ends of the transverse rods 6, longitudinal rods 5 and support rods 8, and output blocks 502 are arranged inside the output holes 505. Two force rods 504 are arranged between two adjacent force blocks 501 and two adjacent output blocks 502, and a pin is set at the intersection of the two force rods 504. The two ends of the multiple pins are rotatably connected to the inner walls of the longitudinal rods 5, transverse rods 6 and support rods 8 through rotating shafts, and a spring 503 is arranged between two adjacent force blocks 501.
[0030] When the four support rods 8, four longitudinal rods 5 and four cross rods 6 need to be quickly spliced, the corresponding support rods 8, longitudinal rods 5 and cross rods 6 are respectively inserted into the installation sleeve 7, and the output block 502 is pressed so that the output block 502 drives the corresponding force-bearing block 501 to shrink toward the inside of the force-bearing hole 506 through the force-generating rod 504 and compresses the spring 503, so that the force-bearing block 501 will not affect the support rods 8, longitudinal rods 5 and cross rods 6 from being inserted into the installation sleeve 7. Then the support rods 8, longitudinal rods 5 and cross rods 6 are inserted into the installation sleeve 7. When the force-bearing block 501 moves to the position corresponding to the through hole 507, the output block 502 is released. At this time, one side of the force-bearing block 501 rebounds under the elastic force of the spring 503 and is inserted into the through hole 507. One side of 501 is engaged in the through hole 507, so that the support rod 8, longitudinal rod 5 and cross rod 6 can be respectively engaged in the inside of the installation sleeve 7, thereby fixing the support rod 8, longitudinal rod 5 and cross rod 6 to the installation sleeve 7 respectively. Through this method, multiple support rods 8, longitudinal rods 5 and cross rods 6 are installed in the corresponding installation sleeves 7 in turn, so that multiple support rods 8, longitudinal rods 5 and cross rods 6 and multiple installation sleeves 7 are spliced into a rectangular frame, and when the support rods 8, longitudinal rods 5 and cross rods 6 need to be removed from the installation sleeve 7, the corresponding output block 502 can be pressed, and then the output block 502 drives the corresponding force block 501 to shrink toward the inside of the force hole 506 through the force rod 504, so that the corresponding support rod 8, longitudinal rod 5 and cross rod 6 can be successfully removed from the inside of the installation sleeve 7.
[0031] Among them, five house panels 10 are arranged between the longitudinal rods 5, the transverse rods 6 and the support rods 8. Each of the house panels 10 has four fixing holes a on its surface. Shock-absorbing plates 18 are installed inside four of the house panels 10. Two fixing holes b9 are opened on the surface of the mounting sleeve 7. A threaded rod 17 is provided inside the fixing hole a11 and is threadedly connected to the fixing hole b9.
[0032] When the housing panels 10 need to be installed on the frame composed of the support rods 8, the longitudinal rods 5, and the transverse rods, one of the housing panels 10 is placed at the bottom of the frame, and then four housing panels 10 are placed around the frame. The multiple fixing holes a11 are aligned with the multiple fixing holes b9. Then, one end of the multiple threaded rods 17 is passed through the multiple fixing holes a11, rotated into the multiple fixing holes b9, and threadedly connected to the multiple fixing holes b9. In this way, the five housing panels 10 are fixed to the installation sleeves 7, and the five housing panels 10 are respectively installed and fixed at the bottom and around the frame.
[0033] Among them, two collecting frames 3 are set on the outside of the photovoltaic panel 1, and one end of the bottom of the two collecting frames 3 is connected to the water inlet pipe 402. A water storage tank 4 is set on the outside of one of the house panels 10, and one end of the two water inlet pipes 402 is connected to the water storage tank 4. When it rains, the rainwater is guided into the collecting frame 3 through the herringbone slope of the photovoltaic panel 1, and flows into the water storage tank 4 through the water inlet pipe 402 at the bottom of the collecting frame 3, so that the rainwater can be collected and utilized.
[0034] Among them, a water pump 401 is provided on one side of the outer end of one of the house panels 10, and a water pump pipe 403 is connected to the bottom of the water pump 401, and a water supply pipe 407 is connected to the top of the water pump 401. A cleaning pipe 2 is installed on the top of the photovoltaic panel, and one end of the water supply pipe 407 is connected to the cleaning pipe 2. The cleaning pipe 2 is provided with multiple water outlets 201. When the photovoltaic panel 1 needs to be cleaned, the water pump 401 is started to pump the water in the water tank 4 into the water supply pipe 407 through the water pump pipe 403, and then the water is transported to the inside of the cleaning pipe 2 through the water supply pipe 407, and flows out through the water outlet 201 to achieve the purpose of cleaning the photovoltaic panel.
[0035] Among them, the water tank 4 is provided with a filter plate 404 inside, the water tank 4 is provided with a cover plate 406 on the top, a handle 405 is provided on one side of the top of the cover plate 406, and support plates are connected to both sides of the inner wall of the water tank 4. When the water source inside the water tank 4 is extracted by the water pumping pipe 403, since the connection height of the water pumping pipe 403 and the water tank 4 is higher than the filter plate 404, the water in the water tank 4 can be filtered by the filtration of the filter plate 404, thereby preventing the impurities in the water tank 4 from clogging the water pumping pipe 403. When you want to clean the inside of the water tank 4, you can lift the cover plate 406 upwards through the handle 405 until the cover plate 406 is separated from the water tank 4, and then move the filter plate 404 out of the water tank 4. At this time, the impurities inside the water tank 4 can be cleaned. After the water tank 4 is cleaned, the filter plate 404 is placed inside the water tank 4 and falls on the top of the two support plates. The filter plate 404 can be supported and installed inside the water tank 4 by the support plates, and then the cover plate 406 is placed on the top of the water tank 4.
[0036] Among them, the bottom of the photovoltaic panel 1 is fixedly connected to the roof panel 14, and the two sides of the bottom of the roof panel 14 are connected to the side panels 12. One side of the outer end of the side panel 12 is fixedly connected to a plurality of side panel buckles 13, and the side panel buckles 13 are provided with side panel holes 15. The surfaces of the two cross bars 6 are provided with a plurality of mounting holes 16. When the frame and the house panel 10 are installed, the photovoltaic panel 1, the roof panel 14 and the side panel 12 are placed on the top of the frame, and the plurality of side panel buckles 13 are respectively placed on the top of the frame, and then the plurality of side panel holes 15 and the plurality of mounting holes 16 are aligned, and then one end of the external bolt passes through the side panel hole 15 and is turned into the mounting hole 16 and is threadedly connected to the mounting hole 16, thereby fixing the side panel buckle 13 on the top of the frame, and fixing the roof panel 14 and the photovoltaic panel 1 on the top of the frame.
[0037] Working principle:
[0038] When the device is used to carry out construction work, when the four support rods 8, four longitudinal rods 5 and four cross rods 6 need to be quickly spliced, the corresponding support rods 8, longitudinal rods 5 and cross rods 6 are respectively inserted into the installation sleeves 7, the output block 502 can be pressed so that the output block 502 drives the corresponding force-bearing block 501 to shrink toward the inside of the force-bearing hole 506 through the force-generating rod 504, so that the corresponding support rod 8, longitudinal rod 5 and cross rod 6 can be inserted into the installation sleeve 7. When the force-bearing block 501 corresponds to the position of the through hole 507, the output block 502 is released. At this time, one side of the force-bearing block 501 is in the spring 503. 7 , and the support rod 8 , the longitudinal rod 5 , and the cross bar 6 are respectively engaged in the installation sleeve 7 , so that the support rod 8 , the longitudinal rod 5 , and the cross bar 6 are respectively fixed to the installation sleeve 7 . By this method, multiple support rods 8 , longitudinal rods 5 , and cross bar 6 are installed in the corresponding installation sleeves 7 in sequence, so that multiple support rods 8 , longitudinal rods 5 , and cross bar 6 and the installation sleeves 7 are spliced into a rectangular frame. When the house panel 10 needs to be installed on the frame composed of the support rods 8 , longitudinal rods 5 and cross bar 6 , one of the house panels is installed. The roof panel 10 is placed at the bottom of the frame, and then the four house panels 10 with the shock-absorbing plates 18 are placed around the frame. The multiple fixing holes a11 are aligned with the multiple fixing holes b9. Then, one end of the multiple threaded rods 17 passes through the multiple fixing holes a11 and rotates into the multiple fixing holes b9 to be threadedly connected to the multiple fixing holes b9, thereby fixing the five house panels 10 to the installation sleeve 7. The five house panels 10 are respectively installed and fixed at the bottom and around the frame. After the frame and the house panels 10 are installed, the photovoltaic panel 1, the roof panel 14, and the side panels 12 are placed on the top of the frame. , and place multiple side panel buckles 13 on the top of the frame respectively, then align multiple side panel holes 15 and multiple mounting holes 16, then one end of the external bolt passes through the side panel hole 15 and is turned into the mounting hole 16 and threadedly connected with the mounting hole 16, thereby fixing the side panel buckle 13 on the top of the frame, and fixing the roof panel 14 and the photovoltaic panel 1 on the top of the frame. At this point, the basic components of the box-type house have been installed and can be used normally. The setting of the shock-absorbing plate 18 can significantly improve the earthquake resistance of the box-type house, effectively resist natural disasters, and at the same time have sound insulation and noise reduction functions to create a quiet living space.
[0039] When it rains, rainwater is guided into the collection frame 3 through the photovoltaic panel 1 with a herringbone slope, and flows into the water tank 4 through the water inlet pipe 402 at the bottom of the collection frame 3, so that the rainwater can be collected and utilized. When it is necessary to clean the photovoltaic panel 1, the water pump 401 is started to pump the water in the water tank 4 into the water delivery pipe 407 through the water pump pipe 403, and then the water is delivered to the inside of the cleaning pipe 2 through the water delivery pipe 407, and flows out through the water outlet 201 to achieve the purpose of cleaning the photovoltaic panel. When the water pump 403 draws water from the water tank 4, since the connection height of the water pump 403 and the water tank 4 is higher than the filter plate 404, it can pass through The water in the water tank 4 is filtered through the filter plate 404 to prevent impurities in the water tank 4 from clogging the suction pipe 403. When the inside of the water tank 4 needs to be cleaned, the cover plate 406 can be lifted upwards by the handle 405 until the cover plate 406 is separated from the water tank 4, and then the filter plate 404 is removed from the water tank 4. At this time, the impurities in the water tank 4 can be cleaned. After the water tank 4 is cleaned, the filter plate 404 is placed inside the water tank 4 and falls on the top of the two support plates. The filter plate 404 can be supported and installed inside the water tank 4 by the support plates, and then the cover plate 406 is placed on the top of the water tank 4.
[0040] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0041] The above is a detailed introduction to a high-seismic-resistant container-type house provided in the embodiments of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the technical solutions and core ideas of the present application. Ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or replace some of the technical features therein with equivalents, and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A high-seismic performance container house, characterized in that: include: Support rods (8), four cross rods (6) and four longitudinal rods (5) are arranged between the four support rods (8), and photovoltaic panels (1) are arranged on top of the longitudinal rods (5); A collection component arranged outside the photovoltaic panel (1) is used to collect rainwater, the collection component comprising: a collection frame (3), a water storage tank (4) and a water inlet pipe (402); A disassembly assembly is provided between the longitudinal rod (5), the transverse rod (6) and the support rod (8), and is used for quickly splicing the longitudinal rod (5), the transverse rod (6) and the support rod (8). The disassembly assembly comprises: a force-bearing block (501), a force-bearing hole (506), a mounting sleeve (7) and a through hole (507).
2. The high seismic performance container house according to claim 1 is characterized in that: Eight mounting sleeves (7) are provided between the four support rods (8) and the four longitudinal rods (5) and the four transverse rods (6); six through holes (507) are provided on the outside of the eight mounting sleeves (7); two force-bearing holes (506) are provided on the outside of both ends of the longitudinal rods (5), the transverse rods (6) and the support rods (8); and force-bearing blocks (501) are provided inside the force-bearing holes (506) and are slidably connected to the through holes (507).
3. The high seismic performance container house according to claim 2 is characterized in that: Two output holes (505) are provided on the outer sides of both ends of the cross bar (6), the longitudinal bar (5) and the support bar (8), and an output block (502) is provided inside the output hole (505). Two force rods (504) are provided between two adjacent force blocks (501) and two adjacent force blocks (502), and a pin is provided at the intersection of the two force rods (504). The two ends of the plurality of pins are rotatably connected to the inner walls of the longitudinal bar (5), the cross bar (6) and the support bar (8) through a rotating shaft, and a spring (503) is provided between two adjacent force blocks (501).
4. The high earthquake resistance container house according to claim 2, characterized in that: Five housing panels (10) are arranged between the longitudinal rod (5), the transverse rod (6) and the support rod (8), and four fixing holes a (11) are provided on the surface of each housing panel (10). Shock-absorbing plates (18) are installed inside four of the housing panels (10). Two fixing holes b (9) are provided on the surface of the mounting sleeve (7), and threaded rods (17) are provided inside the fixing holes a (11) and are threadedly connected to the fixing holes b (9).
5. The high seismic resistance container house according to claim 4 is characterized in that: Two collecting frames (3) are provided on the outside of the photovoltaic panel (1), and one end of the bottom of each of the two collecting frames (3) is connected to a water inlet pipe (402). A water storage tank (4) is provided on the outside of one of the house panels (10), and one end of each of the two water inlet pipes (402) is connected to the water storage tank (4).
6. The high earthquake resistance container house according to claim 5, characterized in that: A water pump (401) is provided on one side of the outer end of one of the house panels (10), the bottom of the water pump (401) is connected to a water pump pipe (403), the top of the water pump (401) is connected to a water delivery pipe (407), a cleaning pipe (2) is installed on the top of the photovoltaic panel, one end of the water delivery pipe (407) is connected to the cleaning pipe (2), and the cleaning pipe (2) is provided with a plurality of water outlets (201).
7. The high earthquake resistance container house according to claim 5, characterized in that: A filter plate (404) is provided inside the water tank (4), a cover plate (406) is provided on the top of the water tank (4), a handle (405) is provided on one side of the top of the cover plate (406), and support plates are connected to both sides of the inner wall of the water tank (4).
8. The high earthquake resistance container house according to claim 5, characterized in that: The bottom of the photovoltaic panel (1) is fixedly connected to a roof panel (14), both sides of the bottom of the roof panel (14) are connected to side panels (12), one side of the outer end of the side panel (12) is fixedly connected to a plurality of side panel buckles (13), and the side panel buckles (13) are provided with side panel holes (15), wherein the surfaces of two of the cross bars (6) are provided with a plurality of mounting holes (16).
Citation Information
Patent Citations
Mechanical part drilling device
CN220372689U