An exterior wall real stone paint construction rain shelter

By designing a rain cover for real stone paint construction on exterior walls of building, the problem of real stone paint construction being susceptible to rainwater is solved, and more efficient construction and better quality assurance is achieved.

CN114396166BActive Publication Date: 2025-06-17CHINA MCC5 GROUP CORP LTD
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Patent Information

Application Number
CN202210092588.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-26
Publication Date
2025-06-17
Estimated Expiration
2042-01-26

AI Technical Summary

Technical Problem

The construction of real stone paint on the exterior walls of existing buildings is easily affected by rainwater, resulting in quality defects and limited construction progress.

Method used

A raincoat for real stone paint construction on the exterior wall is designed. Through the combination of frames and curtains, it is erected on the scaffolding on the outside of the top floor of the building to protect the real stone paint construction surface and avoid the influence of rainwater.

Benefits of technology

It effectively protects the construction surface of real stone paint, increases the construction time period range, reduces the dependence on rainless time, and improves construction efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of building construction, and particularly relates to a rain shelter for exterior wall real stone paint construction, which includes an upper folding frame. The upper folding frame includes an upper cross beam, and the upper cross beam is hinged with a front movable rod assembly and a rear movable rod assembly. The front end of the front movable rod group is connected with a front cross beam, and the rear end of the rear movable rod group is connected with a rear cross beam; a front support rod assembly is hinged on the front cross beam, and a rear support rod assembly is hinged on the rear cross beam; guiding rods are correspondingly arranged at both ends of the front cross beam, and the guiding rods are hinged with the front cross beam and rotate along the guiding rods; a curtain is arranged on the frame body, and the curtain is wound around a reel on the frame body. A traction rod is arranged at the front edge of the curtain, and a pulling rope is arranged on the traction rod. The upper cross beam serves as a load-bearing member of the upper folding frame. The front movable rod assembly and the rear movable rod assembly are opened when shielding rain and closed when there is no need for rain shielding; the pulling rope drives the curtain to move to the frontmost end of the guiding rod, and the guiding rod keeps the overall shape of the curtain stable, capable of withstanding a certain amount of wind force.
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Description

Technical Field

[0001] The present invention relates to the technical field of building construction, and particularly relates to a rain shelter for exterior wall real stone paint construction. Background Art

[0002] The decoration of building exterior walls is developing towards energy conservation, environmental protection, high weather resistance, and anti-pollution. Exterior wall real stone paint is pursued by the market for its beautiful appearance, high quality and low price, safety and reliability, and environmental friendliness. The construction process of real stone paint is as follows: base treatment, exterior wall putty construction, alkali-resistant sealing primer construction, joint treatment, real stone paint spraying, removing the grid masking paper, grinding the surface of the real stone paint, removing the surface floating sand and loose particles, and applying a topcoat.

[0003] The specification of building exterior wall real stone paint requires that the moisture content of the base layer should not be higher than 10%, otherwise it is easy to flower and produce color difference; the real stone paint that has been constructed and washed by rain during the construction process of real stone paint is easy to fade and sag, resulting in quality defects.

[0004] In many areas where real stone paint is constructed, the construction has to consider the influence of weather and choose a rain-free time period for construction. If there is continuous rainy weather, or the rain-free time period is too short, the construction progress will be affected.

[0005] It can be seen that there are still urgent improvements in the existing construction of building exterior wall real stone paint. It is necessary to optimize and improve the construction method of real stone paint to improve the construction efficiency, reduce the influence of rainy weather on construction, and meet the requirements of construction progress. Therefore, more reasonable technical solutions need to be proposed to solve the technical problems existing in the prior art. Summary of the Invention

[0006] In order to solve the defects of the prior art mentioned above, the present invention provides a rain shelter for exterior wall real stone paint construction, which protects the construction working surface of real stone paint on the top of a building, avoids the influence of rain on the forming of the working surface, thereby increasing the range of construction working time periods for real stone paint, eliminating the need to wait specifically for a rain-free time period for construction, thus improving the construction efficiency of real stone paint and ensuring the construction effect of real stone paint.

[0007] In order to achieve the above object, the specific technical solution adopted by the present invention is:

[0008] An exterior wall real stone paint construction rain shelter, comprising a frame body. The frame body includes an upper folding frame. The upper folding frame includes an upper cross beam. The upper cross beam is hinged with a front movable rod assembly and a rear movable rod assembly. The front movable rod assembly and the rear movable rod assembly are opened and closed in a herringbone shape relatively. The front end of the front movable rod group is connected with a front cross beam, and the rear end of the rear movable rod group is connected with a rear cross beam. A front support rod assembly is hinged on the front cross beam, and a rear support rod assembly is hinged on the rear cross beam. The front support rod assembly and the rear support rod assembly are hinged with each other and form a lower folding frame that is opened and closed in a herringbone shape, and the lower folding frame can be unfolded upward to be horizontal or folded downward to be vertical. Guide rods are correspondingly arranged at both ends of the front cross beam. The guide rods are hinged with the front cross beam and rotate along the guide rods. When the guide rods rotate to the vertical position, they reach the limit position. A curtain is arranged on the frame body. The curtain is wound around a reel on the frame body. A traction rod is arranged at the front edge of the curtain. A pulling rope is arranged on the traction rod. The pulling rope extends from the rear cross beam to the front cross beam and returns to the rear cross beam after bypassing the free end of the guide rod.

[0009] The above-mentioned disclosed rain shelter can be unfolded and erected on the scaffold on the outer side of the top floor of a building to cover the exterior wall of the top floor of the building to prevent rain, protect the real stone paint construction surface, and avoid damage caused by rain, thereby greatly improving the quality and effect of real stone paint construction; at the same time, it can also be folded up to reduce the occupied space when not in use and is convenient for storage.

[0010] Furthermore, in the present invention, the structure of the front movable rod assembly is not uniquely defined and can be constructed into various feasible schemes. For example, in some schemes, a cross telescopic rod structure can be adopted, or a flipping rod structure can be adopted, etc. Here, an optimization is carried out and one feasible option is given: the front movable rod assembly includes two front movable rods, and the two front movable rods are respectively hinged at both ends of the upper cross beam. When such a scheme is adopted, several front movable rods can also be arranged between the two front movable rods to serve as the lower support structure of the curtain as a whole; or the two front movable rods are connected into one body through structures such as connecting cross bars and connecting diagonal bars so that the front movable rod assembly moves as a whole during the flipping process.

[0011] Furthermore, in the present invention, the structure of the rear movable rod assembly is not uniquely defined and can be constructed into various feasible schemes. For example, in some schemes, a cross telescopic rod structure can be adopted, or a flipping rod structure can be adopted, etc. Here, an optimization is carried out and one feasible option is given: the rear movable rod assembly includes two rear movable rods, and the two rear movable rods are respectively hinged at both ends of the upper cross beam. When such a scheme is adopted, several rear movable rods can also be arranged between the two rear movable rods to serve as the lower support structure of the curtain as a whole; or the two rear movable rods are connected into one body through structures such as connecting cross bars and connecting diagonal bars so that the rear movable rod assembly moves as a whole during the flipping process.

[0012] Further, in the present invention, the structure of the front strut assembly is not uniquely defined and can be configured into various feasible solutions. Here, an optimization is carried out and one feasible option is given: the front strut assembly includes two front struts, which are respectively hinged at both ends of the front cross beam, and a connecting strut for cooperating with the scaffolding is slidably arranged on the two front struts. When adopting such a solution, several front struts can be arranged between the two front struts and flipped together as a whole; or a connecting diagonal bar or a connecting cross bar can be arranged between the two front struts to make the front strut assembly a flipped whole.

[0013] Further, in the present invention, the structure of the rear strut assembly is not uniquely defined and can be configured into various feasible solutions. Here, an optimization is carried out and one feasible option is given: the rear strut assembly includes two rear struts, which are respectively hinged at both ends of the rear cross beam, and a connecting strut for cooperating with the scaffolding is slidably arranged on the two rear struts. When adopting such a solution, several rear struts can be arranged between the two rear struts and flipped together as a whole; or a connecting diagonal bar or a connecting cross bar can be arranged between the two rear struts to make the rear strut assembly a flipped whole.

[0014] Further, when connecting to the scaffolding, the connecting strut can be inserted and connected to the vertical pole of the scaffolding, or the connecting strut can be buckled or tied to the cross bar of the scaffolding. Here, an optimization is carried out and one feasible option is given: the connecting strut is a telescopic rod, and both the front strut and the rear strut are perpendicular to the connecting strut. When adopting such a solution, the number of connecting struts is at least four, which are respectively arranged on the front strut and the rear strut to form a four-foot support structure. When the front strut and the rear strut are unfolded to the horizontal position, the connecting struts are all vertically arranged to play a supporting role. According to the height difference between the erection height of the scaffolding and the height of the top floor of the building, the height of the connecting strut can be flexibly adjusted to facilitate the connection and installation of the rain shelter.

[0015] Further, when the front strut assembly and the rear strut assembly are in the folded state, they are mutually attached, and are in a horizontal state after being unfolded upward. In order to improve the stability of maintaining the horizontal state after unfolding, various measures can be adopted for strengthening and fastening, such as setting a pin structure, a lock structure, etc., which are not uniquely defined specifically; here, an optimization is carried out and one feasible option is given: the free ends of the front strut assembly and the rear strut assembly are respectively connected to a limit plate, the two limit plates are hinged to each other, and a limit structure is arranged at the hinge, and the limit structure clamps the front strut assembly and the rear strut assembly when they are unfolded upward to the horizontal position.

[0016] Furthermore, when achieving horizontal limit fixation through the limit plate, it can be realized by various structures. Here, optimization is carried out and one feasible option is presented: a rectangular notch is provided on the upper surface of the limit plate connected to the front support rod assembly or the limit plate connected to the rear support rod assembly, and the other opposite limit plate is lapped and hinged within the rectangular notch. When the two limit plates rotate to the horizontal position, the two limit plates are pressed tightly at the rectangular notch.

[0017] Further, in the present invention, the reel is used for winding the curtain. When the rain shelter is retracted, the curtain can be neatly retracted. The setting position of the reel is not uniquely limited. Here, optimization is carried out and one feasible option is presented: the described reel is arranged above the rear crossbeam, and roller shafts are respectively arranged above the front crossbeam and the upper crossbeam. When the curtain is unfolded, it is pulled out from the reel and passes through the two roller shafts in sequence; a chute is provided on the guiding rod and both ends of the traction rod are matched with the chute. When the traction rod moves to the front crossbeam, it slides into the chute. When adopting such a scheme, the guiding rod is hinged to the front crossbeam. When the guiding rod rotates downward to the vertical position, it is restricted and cannot continue to rotate. The guiding rod can be attached to the two front movable rods when rotating upward.

[0018] Further, the guiding rods at both ends of the front crossbeam are connected by a connecting beam and rotate synchronously in reverse. A fixed pulley for guiding the pulling rope is arranged on the connecting beam.

[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0020] The upper crossbeam provided in the present invention serves as the load-bearing member of the upper folding frame. The front movable rod assembly and the rear movable rod assembly are opened when shielding from rain and closed when there is no need for rain shielding; after the lower folding frame is unfolded, the structure of the entire rain shelter is kept stable; the pulling rope drives the curtain to move to the forefront of the guiding rod, and the guiding rod keeps the overall shape of the curtain stable, capable of withstanding a certain amount of wind force and achieving a reliable rain shielding effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required to be used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention, so it should not be regarded as a limitation of the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0022] Figure 1 It is a schematic structural diagram of the rain shelter.

[0023] Figure 2 is Figure 1 a partially enlarged schematic structural diagram of part A in

[0024] In the above-mentioned drawings, the meanings of the respective labels are as follows: 1, front movable rod; 2, rear movable rod; 3, upper cross bar; 4, front cross bar; 5, rear cross bar; 6, front support rod; 7, rear support rod; 8, connecting support rod; 9, reel; 10, curtain; 11, roller shaft; 12, guide rod; 13, chute; 14, traction rod; 15, fixed pulley; 16, pulling rope. Detailed implementation manners

[0025] The present invention will be further explained below in conjunction with the drawings and specific embodiments.

[0026] It should be noted here that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation to the present invention. The specific structural and functional details disclosed herein are only used to describe the exemplary embodiments of the present invention. However, the present invention can be embodied in many alternative forms and should not be construed as being limited to the embodiments described herein.

[0027] Embodiment

[0028] Aiming at the deficiencies existing in the prior art, that is, the wall surface of the real stone paint construction operation is easily wetted by rain, affecting the final forming effect and quality. This embodiment is optimized to solve the problems existing in the prior art.

[0029] Specifically, as Figure 1 、 Figure 2 shown, this embodiment discloses a rain shelter for exterior wall real stone paint construction, including a frame body. The frame body includes an upper folding frame. The upper folding frame includes an upper cross beam. The upper cross beam is hinged with a front movable rod assembly and a rear movable rod assembly. The front movable rod assembly and the rear movable rod assembly are opened and closed in a herringbone shape relative to each other. The front end of the front movable rod group is connected with a front cross beam, and the rear end of the rear movable rod group is connected with a rear cross beam. A front support rod assembly is hinged on the front cross beam, and a rear support rod assembly is hinged on the rear cross beam. The front support rod assembly and the rear support rod assembly are hinged to each other and form a lower folding frame that is opened and closed in a herringbone shape, and the lower folding frame can be unfolded upwards to the horizontal or folded downwards to the vertical. Guide rods 12 are correspondingly arranged at both ends of the front cross beam. The guide rods 12 are hinged with the front cross beam and rotate along the guide rods 12. The guide rods 12 reach the limit position when rotated to the vertical. A curtain 10 is arranged on the frame body. The curtain 10 is wound around the reel 9 on the frame body. A traction rod 14 is arranged at the front edge of the curtain 10. A pulling rope 16 is arranged on the traction rod 14. The pulling rope 16 extends from the rear cross beam to the front cross beam and returns to the rear cross beam after bypassing the free end of the guide rod 12.

[0030] The above-mentioned disclosed rain shelter can be unfolded and erected on the scaffold outside the top floor of the building to cover the exterior wall of the top floor of the building to prevent rain, protect the real stone paint construction surface, and avoid damage caused by rain, thereby greatly improving the quality and effect of the real stone paint construction; at the same time, it can also be folded and stored, reducing the occupied space when not in use and facilitating storage.

[0031] Preferably, in this embodiment, the upper folding frame, the lower folding frame, and the guide rod 12 are all made of stainless steel material.

[0032] In this embodiment, the structure of the front movable rod assembly is not uniquely defined and can be configured into various feasible solutions. For example, in some solutions, a cross telescopic rod structure can be adopted, or a flipping rod structure can be adopted, etc. Here, an optimization is carried out and one of the feasible options is adopted: the front movable rod assembly includes two front movable rods 1, and the two front movable rods 1 are respectively hinged to both ends of the upper cross beam. When such a solution is adopted, several front movable rods 1 can also be arranged between the two front movable rods 1 to serve as the lower support structure of the curtain 10 as a whole; or the two front movable rods 1 are connected into one body through structures such as a connecting cross bar and a connecting diagonal bar, so that the front movable rod assembly moves as a whole during the flipping process.

[0033] In this embodiment, the structure of the rear movable rod assembly is not uniquely defined and can be configured into various feasible solutions. For example, in some solutions, a cross telescopic rod structure can be adopted, or a flipping rod structure can be adopted, etc. Here, an optimization is carried out and one of the feasible options is adopted: the rear movable rod assembly includes two rear movable rods 2, and the two rear movable rods 2 are respectively hinged to both ends of the upper cross beam. When such a solution is adopted, several rear movable rods 2 can also be arranged between the two rear movable rods 2 to serve as the lower support structure of the curtain 10 as a whole; or the two rear movable rods 2 are connected into one body through structures such as a connecting cross bar and a connecting diagonal bar, so that the rear movable rod assembly moves as a whole during the flipping process.

[0034] In this embodiment, the structure of the front support rod assembly is not uniquely defined and can be configured into various feasible solutions. Here, an optimization is carried out and one of the feasible options is adopted: the front support rod assembly includes two front support rods 6, the two front support rods 6 are respectively hinged to both ends of the front cross beam, and a connecting support rod 8 for cooperating with the scaffolding is slidably arranged on the two front support rods 6. When such a solution is adopted, several front support rods 6 can be arranged between the two front support rods 6 and flipped together as a whole; or a connecting diagonal bar or a connecting cross bar can be arranged between the two front support rods 6 to make the front support rod assembly a flipping whole.

[0035] In this embodiment, the structure of the rear support rod assembly is not uniquely defined and can be configured into various feasible solutions. Here, an optimization is carried out and one of the feasible options is adopted: the rear support rod assembly includes two rear support rods 7, the two rear support rods 7 are respectively hinged to both ends of the rear cross beam, and a connecting support rod 8 for cooperating with the scaffolding is slidably arranged on the two rear support rods 7. When such a solution is adopted, several rear support rods 7 can be arranged between the two rear support rods 7 and flipped together as a whole; or a connecting diagonal bar or a connecting cross bar can be arranged between the two rear support rods 7 to make the rear support rod assembly a flipping whole.

[0036] When connecting to the scaffolding, the connecting support rod 8 can be inserted and connected to the vertical rod of the scaffolding, or the connecting support rod 8 can be buckled or tied to the cross rod of the scaffolding. An optimized setting is made here and one feasible option is adopted: the connecting support rod 8 is a telescopic rod, and both the front support rod 6 and the rear support rod 7 are perpendicular to the connecting support rod 8. When such a scheme is adopted, the number of the connecting support rods 8 is at least four, which are respectively arranged on the front support rod 6 and the rear support rod 7 to form a four-leg support structure. When the front support rod 6 and the rear support rod 7 are unfolded to the horizontal position, the connecting support rods 8 are all vertically arranged to play a supporting role. According to the height difference between the erection height of the scaffolding and the height of the top floor of the building, the height of the connecting support rod 8 can be flexibly adjusted to facilitate the connection and installation of the rain shelter.

[0037] Preferably, in this embodiment, the connecting support rod 8 includes an upper rod body and a lower rod body, the upper rod body and the lower rod body are telescopically connected, one end of the upper rod body is connected and fixed to the front support rod 6 and the rear support rod 7 through a sleeve, and the position on the front support rod 6 and the rear support rod 7 can be adjusted; one end of the lower rod body is inserted and connected to the scaffolding.

[0038] The front support rod assembly and the rear support rod assembly are attached to each other in the folded state and are in a horizontal state after being unfolded upward. In order to improve the stability of maintaining the horizontal state after unfolding, various measures can be adopted for strengthening and fastening, such as setting a pin structure, a buckle structure, etc., which are not uniquely limited specifically; an optimized setting is made here and one feasible option is adopted: the free ends of the front support rod assembly and the rear support rod assembly are respectively connected to a limit plate, the two limit plates are hinged to each other, and a limit structure is arranged at the hinge, and the limit structure clamps the front support rod assembly and the rear support rod assembly when they are unfolded upward to the horizontal position.

[0039] When realizing the horizontal limit fixation through the limit plate, various structures can be adopted. An optimization is made here and one feasible option is adopted: a rectangular notch is arranged on the upper surface of the limit plate connected to the front support rod assembly or the limit plate connected to the rear support rod assembly, and the other opposite limit plate is lapped and hinged in the rectangular notch. When the two limit plates are rotated to the horizontal position, the two limit plates are pressed against each other at the rectangular notch.

[0040] In this embodiment, the reel 9 is used to wind the curtain 10. When the rain shelter is retracted, the curtain 10 can be neatly retracted. The installation position of the reel 9 is not uniquely defined. Here, one feasible option is optimized and adopted: the reel 9 is arranged above the rear crossbeam, and roller shafts 11 are respectively arranged above the front crossbeam and the upper crossbeam. When the curtain 10 is unfolded, it is pulled out from the reel 9 and passes through the two roller shafts 11 in sequence; a chute 13 is arranged on the guiding rod 12, and both ends of the traction rod 14 are matched with the chute 13. When the traction rod 14 moves to the front crossbeam, it slides into the chute 13. When such a scheme is adopted, the guiding rod 12 is hinged to the front crossbeam. When the guiding rod 12 rotates downward to the vertical position, it is restricted and cannot continue to rotate. When the guiding rod 12 rotates upward, it can be attached to the two front movable rods 1.

[0041] The guiding rods 12 at both ends of the front crossbeam are connected by a connecting beam and reversely rotate synchronously. A fixed pulley 15 for guiding the pulling rope 16 is arranged on the connecting beam.

[0042] The above are the implementation manners listed in this embodiment. However, this embodiment is not limited to the above optional implementation manners. Those skilled in the art can obtain many other implementation manners by arbitrarily combining the above manners. Anyone can obtain various other forms of implementation manners under the inspiration of this embodiment. The above specific implementation manners should not be understood as limiting the protection scope of this embodiment. The protection scope of this embodiment should be defined by the claims, and the description can be used to interpret the claims.

Claims

1. An exterior wall real stone paint construction rain shelter, characterized in that: It includes a frame body, which includes an upper folding frame. The upper folding frame includes an upper cross beam, and a front movable rod assembly and a rear movable rod assembly are hinged to the upper cross beam. The front movable rod assembly and the rear movable rod assembly are opened and closed in a V-shape relative to each other. The front end of the front movable rod group is connected to a front cross beam, and the rear end of the rear movable rod group is connected to a rear cross beam; a front support rod assembly is hinged to the front cross beam, and a rear support rod assembly is hinged to the rear cross beam. The front support rod assembly and the rear support rod assembly are hinged to each other and form a lower folding frame that opens and closes in a V-shape, and the lower folding frame can be unfolded upward to the horizontal or folded downward to the vertical; guiding rods (12) are correspondingly arranged at both ends of the front cross beam. The guiding rods (12) are hinged to the front cross beam and rotate along the guiding rods (12). When the guiding rods (12) rotate to the vertical, they reach the limit position; a curtain (10) is arranged on the frame body. The curtain (10) is wound around a reel (9) on the frame body. A traction rod (14) is arranged at the front edge of the curtain (10). A pulling rope (16) is arranged on the traction rod (14). The pulling rope (16) extends from the rear cross beam to the front cross beam and returns to the rear cross beam after bypassing the free end of the guiding rod (12). The front movable rod assembly includes two front movable rods (1), and the two front movable rods (1) are respectively hinged to both ends of the upper cross beam; The rear movable rod assembly includes two rear movable rods (2), and the two rear movable rods (2) are respectively hinged to both ends of the upper cross beam.

2. The exterior wall real stone paint construction rain shelter according to claim 1, characterized in that: The front support rod assembly includes two front support rods (6), and the two front support rods (6) are respectively hinged to both ends of the front cross beam, and a connecting support rod (8) for cooperating with a scaffolding is slidably arranged on the two front support rods (6).

3. The exterior wall real stone paint construction rain shelter according to claim 1, characterized in that: The rear support rod assembly includes two rear support rods (7), and the two rear support rods (7) are respectively hinged to both ends of the rear cross beam, and a connecting support rod (8) for cooperating with a scaffolding is slidably arranged on the two rear support rods (7).

4. The exterior wall real stone paint construction rain shelter according to claim 2 or 3, characterized in that: The connecting support rod (8) is a telescopic rod, and both the front support rod (6) and the rear support rod (7) are perpendicular to the connecting support rod (8).

5. The exterior wall real stone paint construction rain shelter according to claim 1, 2 or 3, characterized in that: The free ends of the front support rod assembly and the rear support rod assembly are respectively connected to a limiting plate. The two limiting plates are hinged to each other, and a limiting structure is arranged at the hinge. The limiting structure clamps the front support rod assembly and the rear support rod assembly when they are unfolded upward to the horizontal position.

6. The exterior wall real stone paint construction rain shelter according to claim 5, characterized in that: A rectangular notch is arranged on the upper surface of the limiting plate connected to the front support rod assembly or the limiting plate connected to the rear support rod assembly. The other opposite limiting plate is lapped and hinged in the rectangular notch. When the two limiting plates rotate to the horizontal position, the two limiting plates are pressed against each other at the rectangular notch.

7. The exterior wall real stone paint construction rain shelter according to claim 1, characterized in that: The reel (9) is arranged above the rear cross beam. Roller shafts (11) are respectively arranged above the front cross beam and the upper cross beam. When the curtain (10) is unfolded, it is pulled out from the reel (9) and passes through the two roller shafts (11) in sequence; a chute (13) is arranged on the guiding rod (12), and both ends of the traction rod (14) cooperate with the chute (13). When the traction rod (14) moves to the front cross beam, it slides into the chute (13).

8. The exterior wall real stone paint construction rain shelter according to claim 1, characterized in that: The guiding rods (12) at both ends of the front cross beam are connected by a connecting beam and reverse synchronously. A fixed pulley (15) for guiding the pulling rope (16) is arranged on the connecting beam.

Citation Information

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