Building outer wall with soft porcelain decoration mechanism

Through the combination of the internal three-dimensional isolation protection mechanism and the external splicing drive installation mechanism, dynamic adjustment and temperature control of the soft porcelain building exterior wall is achieved, the problems of light adjustment and temperature management are solved, and the use effect and environmental adaptability of the building exterior wall are improved.

CN120401698AActive Publication Date: 2025-08-01INNER MONGOLIA INFRASTRUCTURE ENGINEERING CO LTD
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Patent Information

Application Number
CN202510928103.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2025-08-01
Estimated Expiration
2045-07-07

AI Technical Summary

Technical Problem

The exterior walls of soft porcelain buildings have a single function during use and cannot quickly adjust the wall structure according to the lighting conditions in the use environment, resulting in the internal temperature of the building being easily affected by the external environment, reducing the convenience of use and environmental adaptability.

Method used

The internal three-dimensional isolation protection mechanism and the external splicing drive installation mechanism are adopted to achieve dynamic adjustment and temperature control of the building exterior walls, including light angle adjustment, thermal conductivity efficiency adjustment and airflow management by supporting components such as long rectangular boxes, thermal compression liquid sacs, infrared sensors and airflow circulation fans.

Benefits of technology

It improves the insulation effect and convenience of building exterior walls, reduces the impact of external temperature on indoor temperature, ensures that appropriate temperature and humidity are maintained in harsh environments, expands functional applications, and enhances environmental adaptability and safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a building outer wall with a soft porcelain decoration mechanism, and relates to the technical field of building outer walls and light composite insulation boards, the building outer wall comprises a supporting installation bottom frame and a limiting protection bottom frame, and a middle splicing assembly frame is clamped between the supporting installation bottom frame and the limiting protection bottom frame; the inner three-dimensional isolation protection mechanism comprises an inner supporting bottom rod, and a supporting rectangular long box, a buffer limiting silica gel strip and a directional rotation transposition gear are installed on the inner side of the middle splicing assembly frame through the top end of the inner supporting bottom rod. The building external wall can be slightly and actively adjusted according to the irradiation angle of the sun in the using process, the effective illumination area of the building external wall is reduced, the temperature rising speed is reduced, the overall heat preservation effect of the building external wall is effectively improved, and the influence of the external temperature of the building external wall on the indoor temperature of a building is reduced; and the overall using effect of the building outer wall is improved.
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Description

Technical Field

[0001] The present invention relates to the technical fields of building exterior walls and lightweight composite insulation boards, and specifically to a building exterior wall with a soft porcelain decoration mechanism. Background Art

[0002] Soft porcelain is not real porcelain nor ceramic tile. It is a new type of building decoration material mainly made of modified soil, and is formed, baked, and irradiated and crosslinked by a special temperature-controlled shaping system to form a flexible building decoration surface material. In the production process of modular building exterior walls, corresponding soft porcelain decoration structures are required. For this reason, a patent document for an internal thermal insulation mortar masonry structure of a building exterior wall was publicly disclosed in China, with the application number CN202223488674.X. This patent can hide the mortar in the filling groove to improve the overall aesthetics of the masonry structure; However, currently, the soft porcelain building exterior wall has a single function during use and cannot quickly adjust the structure of the wall according to the lighting conditions in the use environment, resulting in the entire building wall being exposed to a strong lighting environment, making the temperature inside the building easily affected by the external environment, thereby reducing the overall usability and environmental adaptability of the building exterior wall. Summary of the Invention

[0003] The present invention provides a building exterior wall with a soft porcelain decoration mechanism, which can effectively solve the problem that the soft porcelain building exterior wall has a single function during use and cannot quickly adjust the structure of the wall according to the lighting conditions in the use environment, resulting in the entire building wall being exposed to a strong lighting environment, making the temperature inside the building easily affected by the external environment, thereby reducing the overall usability and environmental adaptability of the building exterior wall as proposed in the above background art.

[0004] To achieve the above object, the present invention provides the following technical solution: A building exterior wall with a soft porcelain decoration mechanism, including a support installation bottom frame and a limit protection bottom frame, and a middle splicing and assembly frame is clamped between the support installation bottom frame and the limit protection bottom frame; An internal three-dimensional isolation and protection mechanism is arranged inside the middle splicing and assembly frame, and the internal three-dimensional isolation and protection mechanism is used to adjust the form inside the building wall so that the building wall can be adjusted according to the environment; The internal three-dimensional isolation and protection mechanism includes an internal support bottom rod; A support rectangular long box, a buffer limit silicone strip, and a directional rotation and transposition gear are installed at the top of the internal support bottom rod inside the middle splicing and assembly frame; A soft porcelain decoration piece is connected inside the middle splicing and assembly frame through a rectangular installation frame; A driving carriage seat is arranged at the top of the middle splicing and assembly frame through a translation guide rail and a limit power supply guide rail; An inner drive adjustment telescopic rod, a lifting arc plate, and a driving lifting rack are installed at the top of the driving seat through a guiding arc groove.

[0005] Preferably, a supporting rectangular long box is rotatably installed at the top of the inner supporting bottom rod through a connecting cylinder. Buffer limiting silica gel strips are bonded to the four corners on the outer side of the supporting rectangular long box. A directional rotation and position-changing gear is fixedly connected to the top of the supporting rectangular long box corresponding to the top of the middle splicing and assembling frame through a connecting shaft; The inside of the supporting rectangular long box is filled with heat-conducting oil, and the bottom surface of the supporting rectangular long box is closely and slidably attached to the top surface of the inner supporting bottom rod. The side surface of the supporting rectangular long box is closely and slidably attached to the inner side of the soft porcelain decorative sheet.

[0006] Preferably, an inner drive adjustment telescopic rod is embedded and installed at the bottom of one end inside the guiding arc groove. A lifting arc plate is fixedly connected to the top of the inner drive adjustment telescopic rod corresponding to the position inside the guiding arc groove. One end of the bottom surface of the lifting arc plate is fixedly connected to a driving lifting rack through a connecting block; The side surface of the soft porcelain decorative sheet is flush with the side surface of the middle splicing and assembling frame. Stickers simulating the patterns on the side surface of the soft porcelain decorative sheet are pasted on the side surface of the middle splicing and assembling frame.

[0007] Preferably, the end of the limit power supply guide rail is connected to an external power supply cable. The limit power supply guide rail supplies power to each component inside the driving seat through a power supply sliding seat. An infrared sensor is arranged at the end of the lifting arc plate.

[0008] Preferably, a back splicing card plate is fixedly installed on the inner back surface of the middle splicing and assembling frame; Both ends of the bottom surface of the driving seat are fixedly installed with middle driving motors. The middle driving motors are powered by an external power supply. Driving rollers are fixedly sleeved at the ends of the output shafts at both ends of the middle driving motors; A limit rectangular installation box is embedded and installed at the top of the middle splicing and assembling frame corresponding to one side position at the bottom of the directional rotation and position-changing gear. A lifting limit spring is fixedly connected to the middle of the inner bottom surface of the limit rectangular installation box. A limit clamping small column is fixedly connected to the top of the lifting limit spring corresponding to the position inside the limit rectangular installation box. Limit arc groove holes are evenly arranged at equal intervals along the circumferential direction on the bottom surface of the directional rotation and position-changing gear; An isolation sliding hard plate is slidably installed inside the middle splicing and assembling frame corresponding to the other side of the supporting rectangular long box. A heat-conducting compression liquid bag is bonded to the middle of the side surface of the isolation sliding hard plate.

[0009] Preferably, the outer side of the driving roller is closely attached to the top surface of the translation guide rail. Anti-slip strips are arranged on the outer side of the driving roller, and anti-slip grooves are evenly arranged on the top surface of the translation guide rail.

[0010] Preferably, there is a tight sliding fit between the outer side of the limit clamping stud and the inner wall of the limit rectangular installation box. The arc head at the top of the limit clamping stud is engaged with the limit arc groove hole. The heat-conducting compression liquid bag is filled with heat-conducting oil, and the back of the heat-conducting compression liquid bag is fixedly connected to the inner wall of the middle splicing and assembling frame through a connecting frame.

[0011] Preferably, an external splicing type driving and installing mechanism is arranged on the outer side of the middle splicing and assembling frame. The external splicing type driving and installing mechanism is used to adjust the temperature and humidity inside the building wall to ensure that the appropriate temperature and humidity can be maintained inside the building wall during use. The external splicing type driving and installing mechanism includes a side buffer liquid guiding vertical box. Side buffer liquid guiding vertical boxes are installed through pipes at the corresponding positions at the bottom of the translation guide rails in the two chambers on both sides of the middle splicing and assembling frame. Heat exchange fins are evenly and equidistantly fixedly connected to the middle of one side of the side buffer liquid guiding vertical box. A protective arc-shaped cover is fixedly connected to the top of the support installation bottom frame. Air guiding side holes are evenly formed on the arc surfaces on both sides of the protective arc-shaped cover. Air flow internal circulation fans are embedded and installed at the corresponding positions at both ends of the middle splicing and assembling frame on the top of the support installation bottom frame. The air flow internal circulation fans are powered by an external power supply. An internal heating grid is fixedly installed through an installation frame at the corresponding position between the two air flow internal circulation fans on the top surface of the support installation bottom frame. The internal heating grid is powered by an external power supply. One end of the top of the driving carriage seat is fixedly installed with a connecting suspended guide plate. A driving arc-shaped guide plate is fixedly connected to the position inside the top chamber of the middle splicing and assembling frame corresponding to the bottom of the connecting suspended guide plate. A connecting buffer rubber sleeve is sleeved on the outer end of the connecting suspended guide plate. A connecting hole plate is clamped at the corresponding position of the outer side of the connecting suspended guide plate at the end of the connecting buffer rubber sleeve. A splicing rectangular hole is formed in the middle of one end of the connecting hole plate, and a splicing rectangular block is fixedly connected to the middle of the other end of the splicing rectangular hole. A support strip plate is fixedly installed in the middle of the top surface of the limit protection bottom frame. Guide installation frames are fixedly connected to one side of the bottom of the limit protection bottom frame and the middle splicing and assembling frame. A lifting sealing guide plate is slidably installed through screws at the bottom of the outer side of the guide installation frame. Dust-proof bottom nets are embedded and installed at the corresponding positions at both ends of the middle splicing and assembling frame on the top of the support installation bottom frame.

[0012] Preferably, the side of the side buffer liquid guiding vertical box is connected to the inner cavity of the heat-conducting compression liquid bag through a liquid guiding pipe, and the volume of the heat-conducting oil inside the side buffer liquid guiding vertical box is four-fifths of the inner cavity volume.

[0013] Preferably, the bottom end of the internal air circulation fan is aligned with the duct on the side of the end of the translation guide rail. The connecting suspension guide plate passes through the splicing rectangle inside the end of the middle splicing and assembling frame. The splicing rectangular hole corresponds to the splicing rectangular block in position, and bolts are installed through threading on the middle sides of the splicing rectangular hole and the splicing rectangular block.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is scientific and reasonable, and it is safe and convenient to use: 1. An internal three-dimensional isolation and protection mechanism is provided. Through the mutual cooperation of the components inside the internal three-dimensional isolation and protection mechanism, the overall use and adjustment process of the building exterior wall is optimized. Through the flexible structure design of the soft porcelain decorative sheet and the dynamically adjustable structure of the supporting rectangular long box, the building exterior wall can be microactively adjusted according to the sun's irradiation angle during use, so as to reduce the heating speed by reducing the effective light-receiving area of the building exterior wall. When the overall light intensity outside the building exterior wall rises, the heat conduction efficiency of the entire building exterior wall can also be changed by adjusting the contact area between all the supporting rectangular long boxes and the soft porcelain decorative sheet, ensuring that the building exterior wall maintains a low heat conduction rate in hot weather, and in cold weather, the heat of external light can be absorbed and stored by the heat-conducting oil inside the supporting rectangular long box and the heat-conducting compression liquid sac, thereby effectively improving the overall heat preservation effect of the building exterior wall, reducing the influence of the temperature outside the building exterior wall on the indoor temperature of the building, and improving the overall use effect of the building exterior wall; At the same time, through the dynamic structure design of the components on the driving carriage seat at the top of the middle splicing and assembling frame, a single driving carriage seat can adjust and drive the internal structures of multiple middle splicing and assembling frames on the same floor. The position of the directional rotation and transposition gear is detected by the infrared sensor at the end of the lifting arc plate, which further improves the convenience and smoothness of the adjustment of the components inside the middle splicing and assembling frame. At the same time, the friction between the buffer limit silica gel strip and the isolation sliding hard plate and the soft porcelain decorative sheet, as well as the mechanical fastening between the limit clamping small post and the limit arc groove hole, limit the shape of the supporting rectangular long box, which further improves the convenience and smoothness of the adjustment of the components inside the middle splicing and assembling frame; Moreover, through the flexible structure design of the heat-conducting compression liquid sac and the soft porcelain decorative sheet inside the middle splicing and assembling frame, when the building exterior wall is impacted by strong external air currents, it can buffer through elastic deformation. At the same time, the heat-conducting oil inside the supporting rectangular long box and the heat-conducting compression liquid sac provides heat absorption and heat preservation for the building exterior wall, effectively increasing the overall specific heat capacity of the internal structure of the building exterior wall, and an appropriate amount of heat-conducting oil can be injected into the supporting rectangular long box and the heat-conducting compression liquid sac according to requirements after the building exterior wall is installed, thereby effectively improving the convenience of the overall installation of the building exterior wall.

[0015] 2. An external splicing type driving and installing mechanism is provided. Through the mutual cooperation among the components inside the external splicing type driving and installing mechanism, the overall environmental adaptation process of the building exterior wall is optimized. The air flow can flow inside the building exterior wall through the ducts reserved during the assembly process of the middle splicing and assembling frame. By adjusting the temperature of the flowing air inside the building exterior wall, the building exterior wall can assist in heat dissipation inside the building exterior wall through low-temperature circulating air flow in hot weather to ensure that the rooms inside the building can be continuously maintained within a suitable temperature range. While in cold weather, auxiliary heating can be carried out inside the building exterior wall to prevent ice crystals from condensing and accumulating on the building exterior wall, thereby further improving the overall use safety of the building exterior wall; At the same time, the driving carriage seat and the connecting orifice plate can be used to drive additional components to move on the outside of the building exterior wall. Then, when it is necessary to clean the building exterior wall, the cleaning components can be installed on the outside of the connecting orifice plate for synchronous movement. While when it is necessary to perform a light show on the outside of the building exterior wall, the corresponding lamps can be installed on the side of the connecting orifice plate, further expanding the functions of the building exterior wall and improving the environmental adaptability of the building exterior wall.

[0016] To sum up, through the mutual cooperation among the components inside the internal three-dimensional isolation and protection mechanism and the external splicing type driving and installing mechanism, the protection and adjustment process of the building exterior wall is optimized. The driving carriage seat can drive and adjust the components inside the building exterior wall, enabling the building exterior wall to adjust its temperature and shape according to the external environment. Thus, it ensures that the building exterior wall can also provide heat preservation and protection for the building inner cavity in a harsh environment. By expanding the functions of the building exterior wall, the use effect of the building exterior wall is improved, ensuring that the building exterior wall can adapt to various different usage scenarios, which is conducive to the popularization and application of the building exterior wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation to the present invention.

[0018] In the drawings: Figure 1 is the structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the installation of the back splicing card plate of the present invention; Figure 3 is the structural schematic diagram of the internal three-dimensional isolation and protection mechanism of the present invention; Figure 4 is the side structural schematic diagram of the present invention; Figure 5 is the structural schematic diagram of the installation of the directional rotation and transposition gear of the present invention; Figure 6 is the structural schematic diagram of the installation of the driving lifting rack of the present invention; Figure 7 is a schematic structural view of the installation of the limit clamping stud of the present invention; Figure 8 is a schematic structural view of the installation of the isolation sliding hard board of the present invention; Figure 9 is a schematic structural view of the external splicing type driving installation mechanism of the present invention; Figure 10 is a schematic structural view of the installation of the splicing rectangular block of the present invention; Figure 11 is a schematic structural view of the installation of the driving arc guide plate of the present invention; Figure 12 is a schematic structural view of the installation of the supporting strip plate of the present invention; Reference numerals in the figure: 1, supporting installation bottom frame; 2, limit protection bottom frame; 3, middle splicing and assembling frame; 4, back splicing clamping plate; 5, internal three-dimensional isolation and protection mechanism; 501, internal supporting bottom rod; 502, supporting rectangular long box; 503, buffer limit silica gel strip; 504, directional rotation and transposition gear; 505, translation guide rail; 506, limit power supply guide rail; 507, driving travel seat; 508, guiding arc groove; 509, internal driving adjustment telescopic rod; 510, lifting arc plate; 511, driving lifting rack; 512, middle driving motor; 513, driving roller; 514, limit rectangular installation box; 515, lifting limit spring; 516, limit clamping stud; 517, limit arc groove hole; 518, isolation sliding hard board; 519, heat-conducting compression liquid sac; 520, rectangular installation frame; 521, soft porcelain decorative sheet; 6, external splicing type driving installation mechanism; 601, side buffer liquid guide vertical box; 602, heat exchange fin; 603, protective arc cover; 604, air guide side hole; 605, internal air flow circulation fan; 606, internal heating net; 607, connecting suspension guide plate; 608, driving arc guide plate; 609, connecting buffer rubber sleeve; 610, connecting hole plate; 611, splicing rectangular hole; 612, splicing rectangular block; 613, supporting strip plate; 614, guiding installation frame; 615, lifting sealing guide plate; 616, dust-proof bottom net. Specific embodiments

[0019] The following is a description of the preferred embodiments of the present invention with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not intended to limit the present invention.

[0020] Example: As Figures 1-12As shown in the figure, the present invention provides a technical solution, an exterior wall of a building with a soft porcelain decoration mechanism, including a support installation bottom frame 1 and a limit protection bottom frame 2. A middle splicing and assembling frame 3 is clamped between the support installation bottom frame 1 and the limit protection bottom frame 2. A back splicing card plate 4 is fixedly installed on the inner back surface of the middle splicing and assembling frame 3; An internal three-dimensional isolation and protection mechanism 5 is arranged inside the middle splicing and assembling frame 3. The internal three-dimensional isolation and protection mechanism 5 is used to adjust the form inside the building wall so that the building wall can be adjusted according to the environment; The internal three-dimensional isolation and protection mechanism 5 includes an internal support bottom rod 501, a support rectangular long box 502, a buffer limit silica gel strip 503, a directional rotation and transposition gear 504, a translation guide rail 505, a limit power supply guide rail 506, a driving carriage seat 507, a guiding arc groove 508, an internal driving adjustment telescopic rod 509, a lifting arc plate 510, a driving lifting rack 511, a middle driving motor 512, a driving roller 513, a limit rectangular installation box 514, a lifting limit spring 515, a limit clamping small column 516, a limit arc groove hole 517, an isolation sliding hard plate 518, a heat-conducting compression liquid sac 519, a rectangular installation frame 520 and a soft porcelain decoration piece 521; An internal support bottom rod 501 is fixed at the inner bottom end of the middle splicing and assembling frame 3. The top end of the internal support bottom rod 501 is rotationally installed with a support rectangular long box 502 through a connecting cylinder. Buffer limit silica gel strips 503 are bonded at the four corners of the outer side of the support rectangular long box 502. The top end of the support rectangular long box 502 is fixedly connected with a directional rotation and transposition gear 504 corresponding to the top of the middle splicing and assembling frame 3 through a connecting shaft; A rectangular installation frame 520 is embedded and installed at a position corresponding to one side of the support rectangular long box 502 inside the middle splicing and assembling frame 3. A soft porcelain decoration piece 521 is fixedly connected to the side surface of the rectangular installation frame 520 through glue and connecting nails. The side surface of the soft porcelain decoration piece 521 is flush with the side surface of the middle splicing and assembling frame 3. A sticker simulating the pattern on the side surface of the soft porcelain decoration piece 521 is pasted on the side surface of the middle splicing and assembling frame 3. The inside of the support rectangular long box 502 is filled with heat-conducting oil, and the bottom surface of the support rectangular long box 502 is in close sliding fit with the top surface of the internal support bottom rod 501. The side surface of the support rectangular long box 502 is in close sliding fit with the inner side of the soft porcelain decoration piece 521; A translation guide rail 505 is fixedly installed on one side of the top of the middle splicing and assembling frame 3. Limit power supply guide rails 506 are symmetrically fixedly installed at positions corresponding to one side of the inner cavity of the middle splicing and assembling frame 3 at the top of the translation guide rail 505. A driving carriage seat 507 is arranged on the top of the translation guide rail 505. The end of the limit power supply guide rail 506 is connected to an external power supply cable. The limit power supply guide rail 506 supplies power to each component inside the driving carriage seat 507 through a power supply sliding seat; At the middle part of the top end of the driving saddle 507, a guiding arc groove 508 is opened. At the bottom of one end inside the guiding arc groove 508, an inner driving adjusting telescopic rod 509 is embedded and installed. At the position corresponding to the inside of the guiding arc groove 508 at the top end of the inner driving adjusting telescopic rod 509, a lifting arc plate 510 is fixedly connected. One end of the bottom surface of the lifting arc plate 510 is fixedly connected with a driving lifting rack 511 through a connecting block, and an infrared sensor is arranged at the end of the lifting arc plate 510; At both ends of the bottom surface of the driving saddle 507, middle driving motors 512 are fixedly installed. The middle driving motors 512 are powered by an external power supply. At the ends of the output shafts at both ends of the middle driving motors 512, driving rollers 513 are fixedly sleeved. The outer sides of the driving rollers 513 are in close fit with the top surface of the translation guide rail 505. Anti-slip strips are arranged on the outer sides of the driving rollers 513, and anti-slip grooves are evenly arranged on the top surface of the translation guide rail 505; At the position corresponding to one side of the bottom of the directional rotation and position conversion gear 504 at the top of the middle splicing and assembling frame 3, a limiting rectangular installation box 514 is embedded and installed. At the middle of the inner bottom surface of the limiting rectangular installation box 514, a lifting limiting spring 515 is fixedly connected. At the position corresponding to the inside of the limiting rectangular installation box 514 at the top end of the lifting limiting spring 515, a limiting clamping small column 516 is fixedly connected. On the bottom surface of the directional rotation and position conversion gear 504, limiting arc groove holes 517 are evenly opened along the circumferential direction at equal intervals; A separating sliding hard plate 518 is slidably installed inside the middle splicing and assembling frame 3 at the position corresponding to the other side of the supporting rectangular long box 502. A heat-conducting compression liquid bag 519 is adhered to the middle of the side surface of the separating sliding hard plate 518. The outer side of the limiting clamping small column 516 is in close sliding fit with the inner wall of the limiting rectangular installation box 514. The top arc head of the limiting clamping small column 516 is clamped with the limiting arc groove holes 517. Heat-conducting oil is filled inside the heat-conducting compression liquid bag 519, and the back of the heat-conducting compression liquid bag 519 is fixedly connected with the inner wall of the middle splicing and assembling frame 3 through a connecting frame. Through the mutual cooperation of the components inside the internal three-dimensional isolation and protection mechanism 5, the overall use and adjustment process of the building exterior wall is optimized. Through the flexible structure design of the soft porcelain decorative sheet 521 and the dynamically adjustable structure of the supporting rectangular long box 502, the building exterior wall can be slightly actively adjusted according to the sun's irradiation angle during use, so as to reduce the rising speed by reducing the effective light-irradiated area of the building exterior wall. When the overall light intensity on the outside of the building exterior wall rises, the contact area between all the supporting rectangular long boxes 502 and the soft porcelain decorative sheet 521 can also be adjusted to change the overall heat conduction efficiency of the building exterior wall, ensuring that the building exterior wall maintains a low heat conduction rate in hot weather, and in cold weather, the heat of the external light can be absorbed and stored through the heat-conducting oil inside the supporting rectangular long box 502 and the heat-conducting compression liquid bag 519, thereby effectively improving the overall heat preservation effect of the building exterior wall, reducing the influence of the temperature outside the building exterior wall on the indoor temperature of the building, and improving the overall use effect of the building exterior wall; Meanwhile, through the dynamic structure design of the components on the top driving trolley seat 507 of the middle splicing and assembling frame 3, a single driving trolley seat 507 can adjust and drive the internal structures of multiple middle splicing and assembling frames 3 on the same layer. The position of the directional rotation and transposition gear 504 is detected by the infrared sensor at the end of the lifting arc plate 510, which further improves the convenience and smoothness of the adjustment of the internal components of the middle splicing and assembling frame 3. At the same time, through the friction force between the buffer limit silica gel strip 503 and the isolation sliding hard plate 518 and the soft porcelain decorative piece 521, and the mechanical fastening between the limit clamping small column 516 and the limit arc groove hole 517, the shape of the support rectangular long box 502 is limited, which further improves the convenience and smoothness of the adjustment of the internal components of the middle splicing and assembling frame 3; Moreover, through the flexible structure design of the internal heat-conducting compression liquid sac 519 and the soft porcelain decorative piece 521 in the middle splicing and assembling frame 3, when the building exterior wall is impacted by external strong airflows, it can be buffered through elastic deformation. At the same time, the heat-conducting oil inside the support rectangular long box 502 and the heat-conducting compression liquid sac 519 is used to provide heat absorption and heat preservation for the building exterior wall, effectively improving the overall specific heat capacity of the internal structure of the building exterior wall. And an appropriate amount of heat-conducting oil can be injected into the support rectangular long box 502 and the heat-conducting compression liquid sac 519 according to requirements after the installation of the building exterior wall, thereby effectively improving the convenience of the overall installation of the building exterior wall; An external splicing type driving and installing mechanism 6 is arranged on the outer side of the middle splicing and assembling frame 3. The external splicing type driving and installing mechanism 6 is used to adjust the temperature and humidity inside the building wall to ensure that the appropriate temperature and humidity can be maintained inside the building wall during use; The external splicing type driving and installing mechanism 6 includes a side buffer liquid guiding vertical box 601, heat exchange fins 602, a protective arc cover 603, air guiding side holes 604, an air flow internal circulation fan 605, an internal heating grid 606, a connecting suspended guide plate 607, a driving arc guide plate 608, a connecting buffer rubber sleeve 609, a connecting hole plate 610, a splicing rectangular hole 611, a splicing rectangular block 612, a support strip plate 613, a guiding installation frame 614, a lifting sealing guide plate 615 and a dust-proof bottom net 616; Side buffer liquid guiding vertical boxes 601 are installed on both sides of the middle splicing and assembling frame 3 through pipes at positions corresponding to the bottom of the translation guide rails 505. Heat exchange fins 602 are evenly and fixedly connected at equal intervals in the middle of one side of each side buffer liquid guiding vertical box 601. The side buffer liquid guiding vertical box 601 is connected to the inner cavity of the heat-conducting compression liquid sac 519 through a liquid guiding pipe, and the volume of the heat-conducting oil inside the side buffer liquid guiding vertical box 601 is four-fifths of the inner cavity volume; A protective arc-shaped cover 603 is fixedly connected to the top of the support installation bottom frame 1. Air guide side holes 604 are evenly opened on both arc surfaces of the protective arc-shaped cover 603. Airflow internal circulation fans 605 are embedded and installed at positions corresponding to both ends of the middle splicing and assembling frame 3 on the top of the support installation bottom frame 1. The airflow internal circulation fans 605 are powered by an external power supply. An internal heating grid 606 is fixedly installed on the top surface of the support installation bottom frame 1 at a position corresponding to the middle between the two airflow internal circulation fans 605 through an installation frame. The internal heating grid 606 is powered by an external power supply; One end of the top of the driving carriage seat 507 is fixedly installed with a connecting suspended guide plate 607. A driving arc-shaped guide plate 608 is fixedly connected to the bottom of the connecting suspended guide plate 607 at a position corresponding to the inner part of the top chamber of the middle splicing and assembling frame 3. A connecting buffer rubber sleeve 609 is sleeved on the outer end of the connecting suspended guide plate 607. A connecting hole plate 610 is clamped at the outer side of the connecting suspended guide plate 607 corresponding to the end of the connecting buffer rubber sleeve 609; A splicing rectangular hole 611 is opened in the middle of one end of the connecting hole plate 610. A splicing rectangular block 612 is fixedly connected to the middle of the other end of the splicing rectangular hole 611; <{ A support strip plate 613 is fixedly installed in the middle of the top surface of the limit protection bottom frame 2. Guide installation frames 614 are fixedly connected to one side of the bottom of the limit protection bottom frame 2 and the middle splicing and assembling frame 3. A lifting and sealing guide plate 615 is slidably installed at the outer bottom of the guide installation frame 614 through screws. Dust-proof bottom nets 616 are embedded and installed at positions corresponding to both ends of the middle splicing and assembling frame 3 on the top of the support installation bottom frame 1. The bottom ends of the airflow internal circulation fans 605 are aligned with the channels on the side surface of the end of the translation guide rail 505. The connecting suspended guide plate 607 passes through the inner part of the splicing rectangle at the end of the middle splicing and assembling frame 3. The positions of the splicing rectangular hole 611 and the splicing rectangular block 612 correspond to each other. Bolts are inserted through the threads in the middle of the side surfaces of the splicing rectangular hole 611 and the splicing rectangular block 612. Through the mutual cooperation of the components inside the external splicing type driving and installing mechanism 6, the overall environmental adaptation process of the building exterior wall is optimized. Through the channels reserved during the assembly process of the middle splicing and assembling frame 3, the airflow can flow inside the building exterior wall. By adjusting the temperature of the airflow flowing inside the building exterior wall, the building exterior wall can assist in heat dissipation inside the building exterior wall through low-temperature circulating airflow in hot weather to ensure that the rooms inside the building can be continuously maintained within a suitable temperature range. In cold weather, auxiliary heating can be carried out inside the building exterior wall to prevent ice crystals from condensing and accumulating on the building exterior wall to cause potential safety hazards, further improving the overall use safety of the building exterior wall; Meanwhile, the driving seat 507 and the connecting hole plate 610 are used together to drive additional components to move on the outer side of the building exterior wall. Then, when it is necessary to clean the building exterior wall, the cleaning components can be installed on the outer side of the connecting hole plate 610 for synchronous movement. When it is necessary to perform a light show on the outer side of the building exterior wall, the corresponding lamps can be installed on the side of the connecting hole plate 610, which further expands the functions of the building exterior wall and improves the environmental adaptability of the building exterior wall.

[0021] The working principle and usage process of the present invention: In the actual application process of the present invention, when the building exterior wall needs to be used, the support installation bottom frame 1 needs to be first installed on the building exterior wall through installation nails. Then, the appropriate number of middle splicing and assembling frames 3 are selected according to the size of the building exterior wall for splicing, and are clamped to the building exterior wall through the back splicing card plate 4. Then, the top of the middle splicing and assembling frame 3 is fixed and protected by the limit protection bottom frame 2, and the components inside the middle splicing and assembling frame 3 are wired and powered to complete the installation of the building exterior wall main body. When it is necessary to adjust the form of the building exterior wall, the middle driving motor 512 and the driving roller 513 are used to drive the driving seat 507 to move horizontally along the top of the translation guide rail 505. During the movement of the driving seat 507, the components are driven to move synchronously. At the same time, the power supply sliding seat and the limit power supply guide rail 506 are used to guide and supply power to the driving seat 507 to ensure that the driving seat 507 can maintain linear power supply during the straight-line driving process. During the horizontal movement of the driving seat 507, the position of the directional rotation and conversion gear 504 is detected in real time by the infrared sensor at the end of the lifting arc plate 510. When it is necessary to adjust the tilt angle of the light-facing soft porcelain decorative sheet 521, after the driving seat 507 moves to the appropriate position, the contraction of the inner drive adjustment telescopic rod 509 drives the lifting arc plate 510 and the components thereon to move downward synchronously, so that the driving lifting rack 511 can be meshed and driven with the corresponding directional rotation and conversion gear 504 during the horizontal movement. The movement of the driving lifting rack 511 drives the directional rotation and conversion gear 504 to rotate a quarter of a circle, and the rotation of the directional rotation and conversion gear 504 drives the support rectangular long box 502 to rotate synchronously along the top of the internal support bottom rod 501. During the rotation of the supporting rectangular long box 502, the flexible porcelain decorative sheet 521 will be pushed forward, causing a slight elastic deformation of the flexible porcelain decorative sheet 521 and generating convex ridges on the flexible porcelain decorative sheet 521. At this time, the front surface of the flexible porcelain decorative sheet 521 will be divided into two inclined planes with different tilting angles. When the sun's rays directly shine on one of the inclined planes, a shadow will be generated on the other inclined plane, thus effectively preventing the entire surface of the flexible porcelain decorative sheet 521 from being directly irradiated by sunlight and absorbing a large amount of heat during use, and reducing the light-facing surface area of the flexible porcelain decorative sheet 521 within a certain range; And while the supporting rectangular long box 502 rotates, it will drive the isolation sliding hard plate 518 to perform horizontal sliding, and compress the heat-conducting compression liquid sac 519 during the sliding process of the isolation sliding hard plate 518. At the same time, after the supporting rectangular long box 502 rotates a quarter of a circle, the buffer limit silicone strip 503 will closely fit between the isolation sliding hard plate 518 and the flexible porcelain decorative sheet 521, and adjust the tilting angle of the supporting rectangular long box 502 through the frictional force between the buffer limit silicone strip 503 and the isolation sliding hard plate 518 and the flexible porcelain decorative sheet 521; At the same time, during the rotation of the directional rotation conversion gear 504, at the initial stage of the rotation of the directional rotation conversion gear 504, the limit clamping small column 516 will be ejected from the inside of the limit arc groove hole 517 under the action of the driving force, and the limit clamping small column 516 will slide downward under the guidance of the limit rectangular installation box 514, and compress and store energy in the lifting limit spring 515 during the downward sliding process of the limit clamping small column 516. Then, after the directional rotation conversion gear 504 rotates a quarter of a circle, the limit clamping small column 516 will be clamped with the corresponding limit arc groove hole 517, and thus mechanically limit the supporting rectangular long box 502 and the directional rotation conversion gear 504 through the cooperation between the limit clamping small column 516 and the limit arc groove hole 517; When the large area of the building exterior wall is externally illuminated and heated up, by driving the lifting rack 511 to drive a plurality of supporting rectangular long boxes 502 to rotate a quarter of a circle in sequence, the flexible porcelain decorative sheet 521 will be pushed outwards through the buffer limit silicone strip 503 at the corner of the supporting rectangular long box 502, so as to reduce the contact area between the inner side of the flexible porcelain decorative sheet 521 and the outer side of the supporting rectangular long box 502, and thus reduce the heat exchange efficiency between the flexible porcelain decorative sheet 521 and the supporting rectangular long box 502; When it is necessary to adjust the temperature at the tail inside the building exterior wall, and when it is necessary to dissipate heat from the building exterior wall in hot weather, the heat-conducting oil inside the heat-conducting compression liquid sac 519 enters the side buffer liquid guide vertical box 601 through the conduit after being compressed by the rotation extrusion of the supporting rectangular long box 502; Then, the external air is sucked through the air guide side holes 604 on the side of the protective arc-shaped cover 603 by the internal air circulation fan 605. A continuous downward air flow is generated inside the outer hole of the middle splicing and assembling frame 3 by the internal air circulation fan 605. During the process of the air flow flowing downward inside the side hole of the middle splicing and assembling frame 3, it flows through the top of the translation guide rail 505 and the outside of the heat exchange fins 602 in sequence. Then, the heat on the outside of the heat exchange fins 602 is carried away by the continuously flowing air flow and discharged from the bottom of the support installation bottom frame 1 through the dust-proof bottom net 616, so as to realize the heat dissipation and cleaning of the inner side chamber of the middle splicing and assembling frame 3; When it is necessary to assist in heating and thawing the exterior wall of the building in cold weather, the internal heating net 606 can be used to assist in heating the air flow inside the protective arc-shaped cover 603. Then, the exterior wall of the building is dried and assisted in heating and thawing through the hot air flow circulating in the inner cavity of the exterior wall of the building. This effectively prevents the accumulated water from corroding the internal structure of the wall, and the ice blocks condensed on the outside of the exterior wall of the building are detached and dropped through the auxiliary heating, so as to prevent a large amount of ice from condensing on the outside of the exterior wall of the building in cold weather and causing the wall skin to fall off; When it is necessary to clean the outside of the exterior wall of the building, each component can be connected to the end of the driving carriage seat 507 through the connecting suspension guide plate 607, so as to ensure that the connecting suspension guide plate 607 and each component on it can move synchronously horizontally during the movement of the driving carriage seat 507. Then, the auxiliary cleaning component is installed on the side of the connecting hole plate 610 through the connecting bolt, so as to actively clean the exterior wall of the building through the auxiliary cleaning component during the translation of the connecting hole plate 610, improving the convenience of cleaning the exterior wall of the building; During the process of the connecting suspension guide plate 607 driving the driving arc-shaped guide plate 608 to move horizontally, the lifting and sealing guide plate 615 is driven to rise along the guiding installation frame 614 by the translation of the driving arc-shaped guide plate 608, so as to prevent the lifting and sealing guide plate 615 from affecting the normal horizontal movement of the driving carriage seat 507. After the driving carriage seat 507 moves past the bottom of the lifting and sealing guide plate 615, it drops again to realize the sealing of the end of the middle splicing and assembling frame 3; When a single driving carriage seat 507 cannot drive the cleaning component to move, the two connecting hole plates 610 are spliced together through the mutual cooperation between the splicing rectangular hole 611 and the splicing rectangular block 612, and then the series drive of the two driving carriage seats 507 is realized, further expanding the functions of the exterior wall of the building.

[0022] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An exterior wall of a building with a soft porcelain decoration mechanism, comprising a support installation bottom frame (1) and a limit protection bottom frame (2), characterized in that: A middle splicing and assembling frame (3) is clamped between the support installation bottom frame (1) and the limit protection bottom frame (2); An internal three-dimensional isolation and protection mechanism (5) is arranged inside the middle splicing and assembling frame (3), and the internal three-dimensional isolation and protection mechanism (5) is used to adjust the shape inside the building wall so that the building wall can be adjusted according to the environment; The internal three-dimensional isolation and protection mechanism (5) includes an internal support bottom rod (501); On the inner side of the middle splicing and assembling frame (3), a support rectangular long box (502), a buffer limit silica gel strip (503) and a directional rotation and transposition gear (504) are installed through the top end of the internal support bottom rod (501); A flexible porcelain decorative sheet (521) is connected inside the middle splicing and assembling frame (3) through a rectangular installation frame (520); A driving carriage seat (507) is arranged at the top of the middle splicing and assembling frame (3) through a translation guide rail (505) and a limit power supply guide rail (506); At the top end of the driving carriage seat (507), an internal drive adjustment telescopic rod (509), a lifting arc plate (510) and a driving lifting rack (511) are installed through a guiding arc groove (508).

2. The building exterior wall with a soft porcelain decoration mechanism according to claim 1, characterized in that, The top end of the internal support bottom rod (501) is rotationally installed with a support rectangular long box (502) through a connecting cylinder. Buffer limit silica gel strips (503) are bonded at the four corners on the outer side of the support rectangular long box (502). At the top end of the support rectangular long box (502), a directional rotation and transposition gear (504) is fixedly connected to the top of the middle splicing and assembling frame (3) through a connecting shaft; The inside of the support rectangular long box (502) is filled with heat-conducting oil, and the bottom surface of the support rectangular long box (502) is in close sliding fit with the top surface of the internal support bottom rod (501). The side surface of the support rectangular long box (502) is in close sliding fit with the inner side of the flexible porcelain decorative sheet (521).

3. The exterior wall of a building with a soft porcelain decoration mechanism according to claim 1, characterized in that, An internal drive adjustment telescopic rod (509) is embedded and installed at the bottom of one end inside the guiding arc groove (508). At the position corresponding to the inside of the guiding arc groove (508) at the top end of the internal drive adjustment telescopic rod (509), a lifting arc plate (510) is fixedly connected. At one end of the bottom surface of the lifting arc plate (510), a driving lifting rack (511) is fixedly connected through a connecting block; The side surface of the flexible porcelain decorative sheet (521) is flush with the side surface of the middle splicing and assembling frame (3), and a sticker simulating the pattern on the side surface of the flexible porcelain decorative sheet (521) is pasted on the side surface of the middle splicing and assembling frame (3).

4. A building exterior wall with a soft porcelain decoration mechanism according to claim 1, characterized in that, The end of the limit power supply guide rail (506) is connected to an external power supply cable. The limit power supply guide rail (506) supplies power to each component inside the driving carriage seat (507) through a power supply sliding seat. An infrared sensor is arranged at the end of the lifting arc plate (510).

5. The building exterior wall with a soft porcelain decoration mechanism according to claim 1, characterized in that, A back splicing card board (4) is fixedly installed on the back inside the middle splicing and assembling frame (3); At both ends of the bottom surface of the driving carriage seat (507), middle driving motors (512) are fixedly installed. The middle driving motors (512) are powered by an external power supply. At the ends of the output shafts at both ends of the middle driving motors (512), driving rollers (513) are fixedly sleeved; At the position corresponding to one side of the bottom of the directional rotation and position - changing gear (504) at the top of the middle splicing and assembling frame (3), a limiting rectangular installation box (514) is embedded and installed. In the middle of the inner bottom surface of the limiting rectangular installation box (514), a lifting limiting spring (515) is fixedly connected. At the position corresponding to the inside of the limiting rectangular installation box (514) at the top of the lifting limiting spring (515), a limiting clamping small post (516) is fixedly connected. Along the circumferential direction at equal intervals and uniformly on the bottom surface of the directional rotation and position - changing gear (504), limiting arc - shaped groove holes (517) are opened. At the position corresponding to the other side of the support rectangular long box (502) inside the middle splicing and assembling frame (3), an isolation sliding hard board (518) is slidably installed. In the middle of the side surface of the isolation sliding hard board (518), a heat - conducting compression liquid bag (519) is adhesively bonded.

6. The building exterior wall with a soft porcelain decoration mechanism according to claim 5, characterized in that, The outer side of the driving roller (513) is in close contact with the top surface of the translation guide rail (505), and anti - slip strips are arranged on the outer side of the driving roller (513), while anti - slip grooves are uniformly arranged on the top surface of the translation guide rail (505).

7. The building exterior wall with a soft porcelain decoration mechanism according to claim 5, characterized in that, The outer side of the limiting clamping small post (516) is in close sliding contact with the inner wall of the limiting rectangular installation box (514). The top arc head of the limiting clamping small post (516) is clamped with the limiting arc - shaped groove hole (517). The heat - conducting compression liquid bag (519) is filled with heat - conducting oil, and the back of the heat - conducting compression liquid bag (519) is fixedly connected to the inner wall of the middle splicing and assembling frame (3) through a connecting frame.

8. A building exterior wall with a soft porcelain decoration mechanism according to claim 7, characterized in that, An external splicing - type driving and installation mechanism (6) is arranged on the outer side of the middle splicing and assembling frame (3). The external splicing - type driving and installation mechanism (6) is used to adjust the temperature and humidity inside the building wall to ensure that the appropriate temperature and humidity can be maintained inside the building wall during use. The external splicing - type driving and installation mechanism (6) includes a side - buffer liquid - guiding vertical box (601). Side - buffer liquid - guiding vertical boxes (601) are installed on both sides of the middle splicing and assembling frame (3) corresponding to the bottom position of the translation guide rail (505) through pipes. At equal intervals and uniformly in the middle of one side of the side - buffer liquid - guiding vertical box (601), heat - exchange fins (602) are fixedly connected. A protective arc - shaped cover (603) is fixedly connected to the top of the support installation bottom frame (1). Air - guiding side holes (604) are uniformly opened on both arc surfaces of the protective arc - shaped cover (603). Air - flow internal circulation fans (605) are embedded and installed at the positions corresponding to both ends of the middle splicing and assembling frame (3) on the top of the support installation bottom frame (1). The air - flow internal circulation fans (605) are powered by an external power supply. An internal heating grid (606) is fixedly installed through an installation frame at the position between the two air - flow internal circulation fans (605) on the top surface of the support installation bottom frame (1). The internal heating grid (606) is powered by an external power supply. One end of the top of the driving saddle (507) is fixedly installed with a connecting suspended guide plate (607). At a position corresponding to the inner part of the top chamber of the middle splicing and assembling frame (3) at the bottom of the connecting suspended guide plate (607), a driving arc guide plate (608) is fixedly connected. One outer end of the connecting suspended guide plate (607) is sleeved with a connecting buffer rubber sleeve (609). A connecting hole plate (610) is clamped at the outer side of the connecting suspended guide plate (607) corresponding to the end of the connecting buffer rubber sleeve (609). A splicing rectangular hole (611) is opened in the middle of one end of the connecting hole plate (610), and a splicing rectangular block (612) is fixedly connected to the middle of the other end of the splicing rectangular hole (611). A supporting strip plate (613) is fixedly installed in the middle of the top surface of the limit protection bottom frame (2). Guide installation frames (614) are fixedly connected to both the limit protection bottom frame (2) and one side of the bottom of the middle splicing and assembling frame (3). A lifting sealing guide plate (615) is slidably installed at the bottom of the outer side of the guide installation frame (614) by screws. Dust-proof bottom nets (616) are embedded at both ends of the top of the supporting installation bottom frame (1) corresponding to the middle splicing and assembling frame (3).

9. The exterior wall of a building with a soft porcelain decoration mechanism according to claim 8, characterized in that, The side buffer liquid guide vertical box (601) is connected to the inner cavity of the heat-conducting compression liquid bag (519) through a liquid guide pipeline on the side, and the volume of the heat-conducting oil in the side buffer liquid guide vertical box (601) is four-fifths of the inner cavity volume.

10. A building exterior wall with a soft porcelain decoration mechanism according to claim 8, characterized in that, The bottom end of the internal air circulation fan (605) is aligned with the hole channel on the side of the end of the translation guide rail (505). The connecting suspended guide plate (607) passes through the inner part of the splicing rectangle at the end of the middle splicing and assembling frame (3). The positions of the splicing rectangular hole (611) and the splicing rectangular block (612) correspond to each other, and bolts are inserted and installed through the threads in the middle of the sides of the splicing rectangular hole (611) and the splicing rectangular block (612).

Citation Information

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