Layered building structure based on intelligent energy saving
By designing intelligent stacked building structure cleaning components, the problems of poor cleaning safety and limited progress of existing stacked building structures are solved, automated and efficient cleaning is achieved, and safety and aesthetics are improved.
Patent Information
- Application Number
- CN202210275125.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-21
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2042-03-21
AI Technical Summary
The cleaning of the exterior walls of existing cascading building structures requires manual use of building hanging baskets, which is poor in safety, and the long pipe liquid supply is easy to knot, which affects the cleaning progress.
A layered building structure based on intelligent energy saving is designed, including cleaning components. The cleaning components are composed of driving components, telescopic positioning plates and channel components. It can automatically clean the exterior walls of the building walls by driving components to automatically extend outward and circulate up and downward to achieve cleaning, and automatically switch the water supply position through the follow-up water supply mechanism to avoid long pipe liquid supply.
It realizes automatic and efficient cleaning of building wall exterior walls, improves safety and convenience of use, reduces manpower and material costs, and the device can be close to the wall when not in use, occupying a small space and has a high aesthetics.
Smart Images

Figure CN114776062B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building structures, and in particular to a stacked building structure based on intelligent energy saving. Background Art
[0002] With the rapid development of economy and society, people have put forward higher and higher requirements on life and living environment, which makes modern architectural design style more and more diversified. Various new types of buildings emerge in an endless stream. Stacked buildings are constructed by arranging multiple floors from top to bottom.
[0003] However, as far as the current stacked structure is concerned, its outer wall does not have an intelligent cleaning structure and function. When the outer wall needs to be cleaned, a building hanging basket needs to be installed for special cleaning by construction workers, which wastes material, human and financial resources and is very troublesome. In addition, the manual cleaning method through the building hanging basket has poor safety and is prone to safety accidents. At the same time, long tubes are required for manual cleaning to supply cleaning liquid. During use, the long tubes are prone to knotting and entanglement, affecting the progress of construction cleaning and having poor practicality. Summary of the invention
[0004] In view of this, the present invention provides a stacked building structure based on intelligent energy saving, which has a cleaning component. The cleaning component can clean the outer wall of the building wall in a fully intelligent and automatic manner, without the need for a hanging basket and manual cleaning. It is convenient and flexible to use and has extremely high safety. At the same time, when the cleaning component of the device is not in use, it can be close to the wall to reduce the occupied space and improve the aesthetics of the stacked building. When cleaning, the automatic channel component can automatically extend outward and move up and down in a circular motion to clean the outer wall of the building. The operation is convenient and flexible. The device uses a channel component to supply cleaning liquid, and there is no need to use a long tube for liquid supply cleaning operation. The traditional cleaning component does not use a long tube to supply liquid, which causes the pipe to become tangled. The device is stable and flexible to use, and has extremely strong flexibility, adaptability and practicality.
[0005] The present invention provides a stacked building structure based on intelligent energy saving, which specifically comprises: a building wall, a cleaning assembly is installed on the outer side of the building wall, and the cleaning assembly consists of a driving assembly, a telescopic positioning plate and a channel assembly; the driving assembly comprises a driving motor, a mounting plate, a driving block and a driving rod, the driving motor is fixedly mounted on the top of the mounting plate, and the mounting plate is fixedly mounted on the outside of the building wall, the driving block is plugged into the inside of the mounting plate, the driving rod is rotatably connected to the inside of the mounting plate, and the top end of the driving rod and the rotation of the driving motor are connected. The bottom end of the shaft is connected by transmission; the telescopic positioning plate is plugged into the side of the mounting plate; the channel assembly includes a cleaning pipe, a follower block, and a water supply main pipe, the cleaning pipe is fixedly installed on the side of the follower block, a cleaning nozzle is fixedly installed on the side of the tube body of the cleaning pipe, and the follower block is plugged into the inside of the telescopic positioning plate, the water supply main pipe is fixedly installed on the side of the telescopic positioning plate, and a follower water supply mechanism is provided inside the water supply main pipe; the follower water supply mechanism includes a blocking block and a switching column, the blocking block is plugged into the inside of the water supply main pipe, and the switching column is plugged into the inside of the blocking block.
[0006] Optionally, a rod body of the driving rod is provided with threads on the outside, and the driving rod cleans the inside of the driving block through the threads of the rod body.
[0007] Optionally, the cross-sectional shape of the driving block is "T"-shaped, and a track groove is provided inside the mounting plate, and the driving block is inserted into the track groove.
[0008] Optionally, a telescopic control rod is provided on the side of the driving block, and a control groove is provided inside the telescopic positioning plate, the top of the control groove is designed to be bent outward, and the telescopic control rod is inserted into the inside of the control groove.
[0009] Optionally, a follower groove is provided inside the driving block, and an adaption block with a "T"-shaped cross-section is provided on the top of one side of the follower block, and the adaption block is inserted into the follower groove.
[0010] Optionally, a positioning groove is provided inside the telescopic positioning plate, and the follower block is inserted into the positioning groove.
[0011] Optionally, a water supply channel is provided inside the cleaning tube, and a sealing ring groove is provided outside the follower block, and a connecting groove is provided inside the sealing ring groove, and the connecting groove is connected to the water supply channel.
[0012] Optionally, the side of the blocking block is provided with an avoidance groove, and the follower block located inside the sealing ring groove is provided with an interference avoidance block, the inside of the on-off column is provided with a follower channel, and the outside of the on-off column is provided with an interference block.
[0013] Optionally, both the blocking block and the on-off column are provided with positioning top springs, and the two ends of the positioning top spring inside the blocking block are respectively fixedly connected to the inside of the blocking block and the inside of the water supply main, and the two ends of the positioning top spring inside the on-off column are respectively fixedly connected to the inside of the on-off column and the inside of the water supply main.
[0014] Beneficial Effects
[0015] When the device is in use, it can realize high-pressure flushing and cleaning of the outer wall of the building wall that can only be automated. It is easy and flexible to use, and there is no need for manual riding on a hanging basket to clean the outer wall, thus saving manpower and material resources. It has a high degree of intelligence, wherein the driving component can drive the cleaning pipe and the follower block to move up and down, thereby realizing efficient cleaning of the outer wall of the building wall. The telescopic positioning plate can make the device close to the building wall when not in use to reduce the occupied space, and avoid the device from affecting the aesthetics of the stacked building. When in use, it can automatically extend and maintain a suitable distance from the building wall to maximize the cleaning effect. At the same time, the follow-up water supply mechanism inside the water supply main of the device can change the water supply connection position according to the change of the moving position of the cleaning pipe and the follower block, and there is no need to use a long pipe for water supply and cleaning. It is easy and flexible to use, has strong stability, and improves the flexibility and adaptability of the device.
[0016] In addition, the driving component can control the use position of the channel component to realize automatic cleaning of the exterior wall of the building. When the driving motor rotates, the driving motor drives the driving rod to rotate. When the driving rod rotates, it can drive the driving block to move up and down through the rod body thread, so that the follower block can move with the movement of the driving block under the action of the adaptation block, thereby realizing the automatic cleaning of the exterior wall of the building by the channel component, which is flexible and convenient to use.
[0017] In addition, the telescopic positioning plate can control the use position of the channel assembly, so that the channel assembly is close to the building wall when not in use to reduce the occupied space of the device. At the same time, when the building wall needs to be cleaned, the channel assembly can be extended to maintain a suitable distance from the building wall under the drive assembly, ensuring that the best cleaning effect can be maintained during cleaning. When the device is in the reset state, the telescopic control rod is located at the top of the control groove. At this time, the telescopic positioning plate and the channel assembly are close to the outside of the building wall. When the building wall is cleaned, the telescopic control rod moves downward, so that the telescopic control rod can drive the telescopic positioning plate to move outward through the inclined groove body at the top of the control groove. When moving outward, the telescopic positioning plate can synchronously drive the channel assembly to move outward, so that the cleaning nozzle of the cleaning tube will maintain a suitable distance from the outside of the building wall at this time, ensuring that the cleaning effect is in the best state and the degree of automation is high.
[0018] In addition, the follow-up water supply mechanism can automatically switch the water supply position, so as to ensure that the follow-up block can obtain the supply of clean liquid inside the water supply main pipe through the follow-up water supply mechanism when it moves. When the follow-up block moves, it will squeeze the blocking block, so that the blocking block shrinks to the inside of the water supply main pipe to avoid the sealing ring groove. When the blocking block enters the inside of the sealing ring groove, the blocking block automatically resets. In this process, the blocking block and the on-off column are always kept as a whole under the action of the positioning top spring. At this time, the clean liquid inside the water supply main pipe will not flow out. When the follow-up block continues to move, it will resist the avoidance block and insert into the avoidance groove. At the same time, the friction avoidance block will squeeze the friction block to drive the on-off column to shrink into the water supply main pipe. At this time, the cleaning liquid inside the water supply main pipe can enter the water supply channel through the follow-up channel and the connecting groove in turn, thereby realizing the operation of providing cleaning liquid to the cleaning nozzle of the cleaning pipe through the water supply main pipe, and when the friction avoidance block is no longer squeezing the friction block, the on-off column will automatically reset under the action of the positioning top spring to block the follow-up channel again, thereby realizing the function of the water supply main pipe being able to automatically switch the water supply position when the follow-up block moves, without the need to use traditional long pipes to supply cleaning liquid, and it is flexible and convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings of the embodiment are briefly introduced below.
[0020] The drawings described below are only related to some embodiments of the present invention, but are not intended to limit the present invention.
[0021] In the attached picture:
[0022] Figure 1 A schematic diagram showing the structure of the present invention;
[0023] Figure 2 A schematic diagram of the structure of the disassembled drive assembly of the present invention is shown;
[0024] Figure 3 The schematic diagram of the structure of the cleaning tube and the follower block of the present invention is shown;
[0025] Figure 4 The present invention is shown Figure 3 Schematic diagram of the dorsal structure;
[0026] Figure 5 A schematic diagram of the structure of the telescopic positioning plate of the present invention is shown;
[0027] Figure 6 The schematic diagram of the structure inside the water supply main pipe of the present invention is shown;
[0028] Figure 7 The schematic diagram of the structure of the follow-up water supply mechanism of the present invention after disassembly is shown;
[0029] Figure 8The schematic diagram of the structure of the interior of the building wall when the present invention is used to clean the exterior wall of the building wall;
[0030] Fig. 9 The present invention is shown Figure 8 The structural diagram on the left;
[0031] Fig.10 The present invention is shown Figure 6 The schematic diagram of the structure of the enlarged part A in the middle;
[0032] Fig.11 The present invention is shown Figure 8 Schematic diagram of the enlarged structure of part B in the middle.
[0033] Reference numerals list
[0034] 1. Building wall; 2. Driving assembly; 201. Driving motor; 202. Mounting plate; 2021. Track groove; 203. Driving block; 2031. Telescopic control rod; 2032. Follow-up groove; 204. Driving rod; 3. Telescopic positioning plate; 301. Control groove; 302. Positioning groove; 4. Channel assembly; 401. Cleaning pipe; 4011. Water supply channel; 402. Follow-up block; 4021. Adaptation block; 4022. Sealing ring groove; 4023. Connecting groove; 4024. Conflict avoidance block; 403. Water supply main; 5. Follow-up water supply mechanism; 501. Blocking block; 5011. Avoidance groove; 5012. Positioning top spring; 502. On-off column; 5021. Follow-up channel; 5022. Conflict block. DETAILED DESCRIPTION
[0035] In order to make the purpose, scheme and advantages of the technical solution of the present invention clearer, the technical solution of the embodiment of the present invention will be clearly and completely described in conjunction with the drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the usual meanings in the art. The same reference numerals in the drawings represent the same components.
[0036] Example 1: Please refer to Figure 1 to Figure 2 :
[0037] The present invention proposes a stacked building structure based on intelligent energy saving, comprising: a building wall 1, a cleaning component is installed on the outer side of the building wall 1, and the cleaning component is composed of a driving component 2, a telescopic positioning plate 3 and a channel component 4; the driving component 2 includes a driving motor 201, a mounting plate 202, a driving block 203 and a driving rod 204, the driving motor 201 is fixedly installed on the top of the mounting plate 202, and the mounting plate 202 is fixedly installed on the outside of the building wall 1, the driving block 203 is plugged into the inside of the mounting plate 202, the driving rod 204 is rotatably connected to the inside of the mounting plate 202, and the top end of the driving rod 204 is drivingly connected to the bottom end of the rotating shaft of the driving motor 201; the telescopic positioning plate 3 is plugged into the inside of the mounting plate 202, and the driving block 20 ... Connected to the side of the mounting plate 202; the channel assembly 4 includes a cleaning pipe 401, a follower block 402, and a water supply main pipe 403. The cleaning pipe 401 is fixedly mounted on the side of the follower block 402. A cleaning nozzle is fixedly mounted on the side of the tube body of the cleaning pipe 401, and the follower block 402 is plugged into the inside of the telescopic positioning plate 3. The water supply main pipe 403 is fixedly mounted on the side of the telescopic positioning plate 3, and a follower water supply mechanism 5 is provided inside the water supply main pipe 403. The water supply main pipe 403 is connected to an external water supply device; the follower water supply mechanism 5 includes a blocking block 501 and a switching column 502. The blocking block 501 is plugged into the inside of the water supply main pipe 403, and the switching column 502 is plugged into the inside of the blocking block 501.
[0038] The driving motor 201 and the water supply device are electrically connected to an external power supply and a control device. The specific structure and working principle thereof are existing mature technologies and will not be described in detail here.
[0039] The driving component 2 can control the use position of the channel component 4 so as to automatically clean the exterior wall of the building wall 1:
[0040] In addition, according to an embodiment of the present invention, Figure 2 As shown, the rod body of the driving rod 204 is provided with a thread on the outside, and the driving rod 204 cleans the inside of the driving block 203 through the rod body thread. In use, when the driving motor 201 rotates, the driving motor 201 drives the driving rod 204 to rotate. When the driving rod 204 rotates, it can drive the driving block 203 to move up and down through the rod body thread. A follower groove 2032 is provided inside the driving block 203, and an adaptation block 4021 with a "T"-shaped cross-section is provided on the top of one side of the follower block 402. The adaptation block 4021 is inserted into the inside of the follower groove 2032, so that the follower block 402 can move with the movement of the driving block 203 under the action of the adaptation block 4021, thereby realizing the automatic cleaning of the exterior wall of the building wall 1 by the channel component 4.
[0041] In addition, according to an embodiment of the present invention, Figure 2As shown, the block cross-section of the driving block 203 is in a "T" shape, and a track groove 2021 is provided inside the mounting plate 202, and the driving block 203 is inserted into the track groove 2021. During use, the track groove 2021 can limit the moving trajectory of the driving block 203, so that the driving block 203 will not be skewed or twisted during movement, causing the device to get stuck and fail, and the use is stable.
[0042] Example 2: Please refer to Figures 1 to 5 :
[0043] On the basis of Example 1, a telescopic control rod 2031 is provided on the side of the driving block 203, and a control groove 301 is provided inside the telescopic positioning plate 3. The top of the groove body of the control groove 301 is designed to be bent outward, and the telescopic control rod 2031 is plugged into the inside of the control groove 301. This design enables the telescopic positioning plate 3 to control the use position of the channel assembly 4, so that the channel assembly 4 is close to the building wall 1 when not in use to reduce the occupied space of the device. At the same time, when it is necessary to clean the building wall 1, the channel assembly 4 can be driven by the driving assembly 2 to extend and maintain a suitable distance from the building wall 1, ensuring that the best cleaning can be maintained during cleaning. Cleaning effect, when the device is in the reset state, the telescopic control rod 2031 is located at the top of the control groove 301, at this time, the telescopic positioning plate 3 and the channel assembly 4 are close to the outside of the building wall 1, when the building wall 1 is cleaned, the telescopic control rod 2031 moves downward, so that the telescopic control rod 2031 can drive the telescopic positioning plate 3 to move outward through the inclined groove body at the top of the control groove 301, and the telescopic positioning plate 3 can synchronously drive the channel assembly 4 to move outward when moving outward, so that the cleaning nozzle of the cleaning tube 401 will maintain a suitable distance from the outside of the building wall 1 at this time, ensuring that the cleaning effect is in the best state, and the degree of automation is high.
[0044] In addition, according to an embodiment of the present invention, Figure 5 As shown, a positioning groove 302 is provided inside the telescopic positioning plate 3, and the follower block 402 is inserted into the positioning groove 302. During use, the positioning groove 302 can limit the moving trajectory of the follower block 402, thereby ensuring that the follower block 402 can stably follow the driving block 203 to move up and down, and is stable in use.
[0045] Example 3: Please refer to Figures 1 to 11 :
[0046] On the basis of Example 1 and Example 2, Figure 4 and Figure 7As shown, a water supply channel 4011 is provided inside the cleaning tube 401, and a sealing ring groove 4022 is provided outside the follower block 402, and a connecting groove 4023 is provided inside the sealing ring groove 4022, and the connecting groove 4023 is connected to the water supply channel 4011. The follower water supply mechanism 5 can automatically switch the water supply position, so that the water supply main pipe 403 can automatically switch the water supply position function when the follower block 402 moves, without the need to use a traditional long tube to supply cleaning liquid.
[0047] In addition, according to an embodiment of the present invention, Figure 7 As shown, the side of the blocking block 501 is provided with an avoidance groove 5011, and the follower block 402 is provided with a resistance avoidance block 4024 located inside the sealing ring groove 4022, the inside of the on-off column 502 is provided with a follower channel 5021, and the outside of the on-off column 502 is provided with a resistance block 5022. In use, when the follower block 402 moves, it will squeeze the blocking block 501, so that the blocking block 501 shrinks to the inside of the water supply main pipe 403 to avoid the sealing ring groove 402. 2. When the blocking block 501 enters the sealing ring groove 4022, the blocking block 501 and the on-off column 502 are both provided with positioning springs 5012, and the two ends of the positioning spring 5012 in the blocking block 501 are respectively fixedly connected to the inside of the blocking block 501 and the inside of the water supply main pipe 403, and the two ends of the positioning spring 5012 in the on-off column 502 are respectively fixedly connected to the inside of the on-off column 502 and the inside of the water supply main pipe 403. 1 is automatically reset under the action of the positioning top spring 5012, and in this process, the blocking block 501 and the on-off column 502 are always kept as a whole under the action of the positioning top spring 5012. At this time, the cleaning liquid in the water supply main pipe 403 will not flow out. When the follower block 402 continues to move, the resistance avoidance block 4024 is inserted into the inside of the avoidance groove 5011, and at the same time, the resistance avoidance block 4024 will squeeze the resistance block 5022 to drive the on-off column 502 to shrink into the inside of the water supply main pipe 403. At this time, the cleaning liquid in the water supply main pipe 403 can enter the inside of the water supply channel 4011 through the follower channel 5021 and the connecting groove 4023 in turn, so as to realize the operation of providing the cleaning liquid to the cleaning nozzle of the cleaning pipe 401 through the water supply main pipe 403, and when the resistance avoidance block 4024 no longer squeezes the resistance block 5022, the on-off column 502 is automatically reset under the action of the positioning top spring 5012 to block the follower channel 5021 again.
[0048] Specific usage and function of this embodiment: In the present invention, the channel assembly 4 is close to the building wall 1 when not in use to reduce the occupied space of the device. When the outer wall of the building wall 1 needs to be cleaned, the water supply main 403 is connected to the external water supply device, and the cleaning liquid is poured into the inside of the water supply device. Then, after the power of the drive motor 201 and the water supply device is turned on, the device can automatically clean the outer wall of the building wall 1. When the drive motor 201 rotates, the drive motor 201 drives the drive rod 204 to rotate. When the drive rod 204 rotates, it can drive the drive block 203 to move up and down through the rod body thread, so that the follower block 402 adapts to the block 4. 021 can follow the movement of the driving block 203, thereby realizing the automatic cleaning of the outer wall of the building wall 1 by the channel component 4. When cleaning the building wall 1, the telescopic control rod 2031 moves downward, so that the telescopic control rod 2031 can drive the telescopic positioning plate 3 to move outward through the inclined groove body at the top of the control groove 301. When the telescopic positioning plate 3 moves outward, it can synchronously drive the channel component 4 to move outward, so that the cleaning nozzle of the cleaning pipe 401 can maintain a suitable distance from the outside of the building wall 1 at this time, ensuring that the cleaning effect is in the best state. The follower block 402 will squeeze the blocking block 501 when moving. , so that the blocking block 501 shrinks toward the inside of the water supply main pipe 403 to avoid the sealing ring groove 4022. When the blocking block 501 enters the sealing ring groove 4022, the blocking block 501 automatically resets, and in this process, the blocking block 501 and the on-off column 502 are always kept as a whole under the action of the positioning top spring 5012. At this time, the cleaning liquid inside the water supply main pipe 403 will not flow out. When the follower block 402 continues to move, the resistance avoidance block 4024 is inserted into the avoidance groove 5011. At the same time, the resistance avoidance block 4024 will squeeze the resistance block 5022 to drive the on-off column 502 to shrink toward the inside of the water supply main pipe 403. At this time, the water supply main pipe 40 The cleaning liquid inside can enter the water supply channel 4011 through the follower channel 5021 and the connecting groove 4023 in sequence, so as to realize the operation of providing the cleaning liquid to the cleaning nozzle of the cleaning pipe 401 through the water supply main pipe 403, and when the conflict avoidance block 4024 does not squeeze the conflict block 5022, the on-off column 502 automatically resets under the action of the positioning top spring 5012 to block the follower channel 5021 again, so as to realize the function that the water supply main pipe 403 can automatically switch the water supply position when the follower block 402 moves, without using the traditional long pipe to supply the cleaning liquid, and after the cleaning is completed, the power supply of the driving motor 201 and the water supply device can be turned off.
[0049] Finally, it should be noted that when describing the position of each component and the matching relationship between them, the present invention usually takes one / a pair of components as an example. However, those skilled in the art should understand that such position, matching relationship, etc. are also applicable to other components / other pairs of components.
[0050] The above description is merely an exemplary embodiment of the present invention and is not intended to limit the protection scope of the present invention. The protection scope of the present invention is determined by the appended claims.
Claims
1. A stacked building structure based on intelligent energy saving, characterized in that: include: A building wall (1), wherein a cleaning component is installed on the outer side of the building wall (1), and the cleaning component is composed of a driving component (2), a telescopic positioning plate (3) and a channel component (4); the driving component (2) comprises a driving motor (201), a mounting plate (202), a driving block (203) and a driving rod (204); the driving motor (201) is fixedly mounted on the top of the mounting plate (202), and the mounting plate (202) is fixedly mounted on the outside of the building wall (1); the driving block (203) is plugged into the inside of the mounting plate (202); the driving rod (204) is rotatably connected to the inside of the mounting plate (202), and the top end of the driving rod (204) is drivingly connected to the bottom end of the rotating shaft of the driving motor (201); the telescopic positioning plate (3) is plugged into the inside of the mounting plate (202); On the side of the mounting plate (202); the channel assembly (4) comprises a cleaning pipe (401), a follower block (402), and a water supply main pipe (403); the cleaning pipe (401) is fixedly mounted on the side of the follower block (402); a cleaning nozzle is fixedly mounted on the side of the pipe body of the cleaning pipe (401); the follower block (402) is plugged into the inside of the telescopic positioning plate (3); the water supply main pipe (403) is fixedly mounted on the side of the telescopic positioning plate (3); and a follower water supply mechanism (5) is provided inside the water supply main pipe (403); the follower water supply mechanism (5) comprises a blocking block (501) and a switching column (502); the blocking block (501) is plugged into the inside of the water supply main pipe (403); and the switching column (502) is plugged into the inside of the blocking block (501); The side surface of the blocking block (501) is provided with an avoidance groove (5011), and the follower block (402) is provided with a resistance avoidance block (4024) located inside the sealing ring groove (4022), the interior of the on-off column (502) is provided with a follower channel (5021), and the exterior of the on-off column (502) is provided with a resistance block (5022); The blocking block (501) and the on-off column (502) are both provided with positioning top springs (5012), and the two ends of the positioning top spring (5012) inside the blocking block (501) are respectively fixedly connected to the inside of the blocking block (501) and the inside of the water supply main pipe (403), and the two ends of the positioning top spring (5012) inside the on-off column (502) are respectively fixedly connected to the inside of the on-off column (502) and the inside of the water supply main pipe (403).
2. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: The rod body of the driving rod (204) is provided with threads on the outside, and the driving rod (204) cleans the inside of the driving block (203) through the threads of the rod body.
3. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: The block cross-section of the driving block (203) is in a "T" shape, and a track groove (2021) is provided inside the mounting plate (202), and the driving block (203) is inserted into the track groove (2021).
4. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: A telescopic control rod (2031) is provided on the side of the driving block (203), and a control groove (301) is provided inside the telescopic positioning plate (3). The top of the control groove (301) is designed to be bent outwards, and the telescopic control rod (2031) is inserted into the inside of the control groove (301).
5. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: The driving block (203) is provided with a follower groove (2032) inside, and an adapting block (4021) with a "T"-shaped cross section is provided on the top of one side of the follower block (402), and the adapting block (4021) is inserted into the follower groove (2032).
6. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: A positioning groove (302) is provided inside the telescopic positioning plate (3), and the follower block (402) is inserted into the positioning groove (302).
7. The intelligent energy-saving stacked building structure according to claim 1, characterized in that: The cleaning pipe (401) is provided with a water supply channel (4011) inside, and the follower block (402) is provided with a sealing ring groove (4022) outside, and a connecting groove (4023) is provided inside the sealing ring groove (4022), and the connecting groove (4023) is connected to the water supply channel (4011).
Citation Information
Patent Citations
Intelligent cleaning building structure
CN113100657A
Hidden frame type solar photovoltaic photo-thermal integrated curtain wall building component
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