An energy-saving and environment-friendly high-altitude construction platform for building construction

By designing retractable support frames and support rods on the high altitude construction platform, combined with drive components and tarpaulin, the problem of low construction efficiency in rain or sun exposure is solved, and normal construction in severe weather conditions is achieved.

CN116357065BActive Publication Date: 2025-07-11SICHUAN HONGRUI CONSTR ENG GRP CO LTD
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Patent Information

Application Number
CN202310264625.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-17
Publication Date
2025-07-11
Estimated Expiration
2043-03-17

AI Technical Summary

Technical Problem

In rain or sunny weather, high-altitude construction platforms cannot be constructed normally, resulting in low construction efficiency.

Method used

A self-propelled scissor construction platform is designed, equipped with a retractable support frame and support rod, and is equipped with drive components and tarpaulin. By driving the slide rail to rotate and the support rod to move, the tarpaulin is expanded and curled, blocking the work surface, and protecting construction personnel and equipment.

Benefits of technology

In rain or sunny weather, cover the work surface with tarpaulin to ensure normal construction and improve construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to an energy-saving and environment-friendly high-altitude construction platform for building construction, belonging to the field of construction equipment. A U-shaped support frame is arranged on the side of the workbench surface, and both ends of the U-shaped support frame are rotatably connected to the workbench surface. Both ends of the support frame are connected with a first slide rail, and a plurality of sliders are slidably arranged in the first slide rail. A U-shaped support rod is connected to the slider. Second slide rails are also arranged on both sides of the workbench surface. When the first slide rail rotates to a horizontal state, it is aligned with the second slide rail. Connection components are arranged on both the support frame and the support rod. The connection component is used to drive multiple support rods to approach each other and move towards the support frame. A driving component for driving the support rod to move along the second slide rail is arranged on the workbench surface. An installation shaft is rotatably arranged on one side of the workbench surface, and a tarpaulin is wound around the installation shaft. The other end of the tarpaulin is connected to the horizontal section of the support frame. The present application has the effect of improving construction efficiency.
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Description

Technical Field

[0001] The present application relates to the field of building construction equipment, and in particular to an energy-saving and environment-friendly high-altitude construction platform for building houses. Background Art

[0002] In the process of house construction, high-altitude construction platforms are needed. High-altitude construction platforms are professional high-altitude work equipment that lifts workers, tools, materials, etc. to a certain position through the platform for construction, installation, maintenance, etc. At present, most of the commonly used high-altitude construction platforms are raised by scaffolding, and some are lifted by lifting devices. Different high-altitude construction platforms are used according to actual construction needs. Compared with traditional scaffolding, high-altitude construction platforms have the advantages of being economical, convenient, fast, safe, reliable and efficient.

[0003] At present, the concept of energy-saving and environmentally friendly buildings is becoming increasingly mature. In the construction of exterior walls of energy-saving and environmentally friendly buildings, light-colored finishing materials should be used for the exterior walls, ventilation interlayers should be set up on the exterior walls, and shading and heat-insulating measures should be installed on the east-west exterior walls. These exterior wall construction processes all require the use of high-altitude construction platforms.

[0004] With regard to the above-mentioned related technologies, when it is rainy or sunny, workers cannot continue to carry out construction work on the working surface of the high-altitude construction platform, and the construction efficiency is low. Summary of the invention

[0005] In order to improve construction efficiency, the present application provides an energy-saving and environment-friendly high-altitude construction platform for building construction.

[0006] The energy-saving and environmentally friendly high-altitude construction platform for building construction provided by this application adopts the following technical solutions:

[0007] An energy-saving and environment-friendly high-altitude construction platform for building construction, comprising a self-propelled scissor-type construction platform, wherein a fence is arranged around the working surface of the self-propelled scissor-type construction platform, a U-shaped support frame is arranged on the side of the working surface, and the two ends of the U-shaped support frame are respectively rotatably connected to the two side surfaces of the working surface, and the two ends of the support frame are connected with a first slide rail perpendicular to the support frame, a plurality of slide blocks are slidably arranged in the first slide rail, and a U-shaped support rod parallel to the support frame is connected to the slide block, and a second slide rail is also arranged on both sides of the working surface, and the first slide rail When rotated to a horizontal state, it is directly opposite to the second slide rail; a connecting assembly is provided on both the support frame and the support rod, and the connecting assembly is used to connect the support frame and multiple support rods in sequence, and the connecting assembly is used to drive the multiple support rods to move closer to each other and toward the support frame; a driving assembly is provided on the work surface, and the driving assembly is connected to the support rod and is used to drive the support rod to move along the second slide rail; a mounting shaft is rotatably provided on the side of the work surface away from the first slide rail, a tarpaulin is wound on the mounting shaft, and the other end of the tarpaulin is connected to the horizontal section of the support frame.

[0008] By adopting the above technical scheme, in rainy or sunny weather, the first slide rail is driven to rotate to be opposite to the second slide rail. At this time, the support frame and the support rod are rotated to the vertical direction, the tarpaulin is released from the mounting shaft, and then the driving assembly is used to drive the support rod to move to the second slide rail, and the tarpaulin is spread out by the support rod, so that the tarpaulin covers the work surface without affecting normal construction; when rolling up the tarpaulin, the support rod is driven to move to the first slide rail, and the first slide rail is driven to rotate to be perpendicular to the second slide rail to roll up the tarpaulin; thereby, the work surface is shielded from rain and sun by the tarpaulin in rainy and sunny weather, so that normal construction can be carried out in rainy and sunny weather, thereby improving the construction efficiency of the high-altitude construction platform.

[0009] Optionally, the support frame includes a first fixed section and a first telescopic section, the first fixed section is hollow, two ends of the first telescopic section are respectively slidably arranged in the two first fixed sections, a first cylinder is arranged in the first fixed section, and the end of the piston rod of the first cylinder is connected to the first telescopic section.

[0010] By adopting the above technical solution, the support frame is retractable, which is convenient for adjusting the height of the tarpaulin, increasing the construction space and facilitating construction.

[0011] Optionally, the support rod includes a second fixed section and a second telescopic section, the second fixed section is hollow, both ends of the second telescopic section are respectively slidably arranged in the two second fixed sections, a second cylinder is arranged in the second fixed section, and the end of the piston rod of the second cylinder is connected to the second telescopic section.

[0012] By adopting the above technical solution, the support rod is telescopic, which is convenient for adjusting the height of the tarpaulin, improving the construction space and facilitating construction.

[0013] Optionally, the connection assembly includes a winding shaft, a first volute spring and a pulling rope. An installation groove is formed on the support frame. The winding shaft is rotatably arranged on the support frame and located in the installation groove. The first volute spring is arranged on the side wall of the installation groove. One end of the first volute spring is fixedly connected to the side wall of the installation groove, and the other end is fixedly connected to the winding shaft. One end of the pulling rope is wound around the winding shaft, and the other end is connected to the support rod close to the support frame.

[0014] By adopting the above technical solution, the first volute spring always makes the pulling rope have a tendency to be wound onto the winding shaft, thereby driving the support rod close to the support frame to move towards the support frame, which is convenient for folding the support rod onto the first slide rail.

[0015] Optionally, an installation groove is also formed on the support rod, and the other end of the pulling rope of the connection assembly on the support rod is connected to an adjacent support rod.

[0016] By adopting the above technical solution, an installation groove is also formed on the support rod, and the pulling rope on the support rod also has a tendency to be wound onto the winding shaft, so that multiple support rods have a tendency to approach each other, and then the support rods are folded onto the first slide rail.

[0017] Optionally, the first volute spring makes the pulling rope always have a tendency to be wound onto the winding shaft.

[0018] By adopting the above technical solution, the pulling rope always has a tendency to be wound onto the winding shaft. When the first slide rail rotates to the vertical state, multiple support rods are kept in contact with the support frame under the action of the pulling rope, preventing the support rods from falling.

[0019] Optionally, the driving assembly includes a rodless electric cylinder. The rodless electric cylinder is horizontally arranged on the side of the workbench surface. A clamping groove is vertically and downwardly formed through the sliding table of the rodless electric cylinder. A clamping rod is arranged on the support rod farthest from the support frame. When the first slide rail rotates to the horizontal state, the clamping rod is clamped into the clamping groove.

[0020] By adopting the above technical solution, when the first slide rail rotates to the horizontal state, the clamping rod is clamped into the clamping groove, and the sliding table moves, thereby driving a support rod far from the support frame to move away from the first slide rail. Due to the limited stretching length, multiple support rods will be sequentially unfolded and arranged at intervals on the second slide rail, thus achieving the effect of facilitating the unfolding of multiple support rods.

[0021] Optionally, an installation box is arranged on the work surface and outside the installation shaft, and a strip hole is opened on the upper part of the installation box for the tarpaulin to enter and exit. A winding assembly is also arranged in the installation box, and the winding assembly is connected to the installation shaft and is used to drive the installation shaft to rotate and roll up the tarpaulin.

[0022] By adopting the above technical solution, the installation box shields the installation shaft, and the winding assembly winds the tarpaulin onto the installation shaft, making it easy to store the tarpaulin.

[0023] Optionally, the winding assembly includes a second scroll spring, one end of which is connected to the mounting shaft and the other end of which is connected to the inner wall of the mounting box.

[0024] By adopting the above technical solution, the second scroll spring rolls up the tarpaulin onto the mounting shaft, which facilitates driving the mounting shaft to roll up the tarpaulin.

[0025] In summary, the present application includes at least one of the following beneficial technical effects:

[0026] 1. In rainy or sunny weather, drive the first slide rail to rotate to be opposite to the second slide rail. At this time, the support frame and the support rod rotate to the vertical direction, the tarpaulin is released from the installation shaft, and then the driving assembly is used to drive the support rod to move to the second slide rail. The tarpaulin is spread out by the support rod, so that the tarpaulin can cover the work surface without affecting normal construction; thus, the tarpaulin can be used to shield the work surface from rain and sun in rainy and sunny weather, so that normal construction can be carried out in rainy and sunny weather, thereby improving the construction efficiency of the high-altitude construction platform;

[0027] 2. When rolling up the tarpaulin, drive the support rod to move to the first slide rail, drive the first slide rail to rotate to be perpendicular to the second slide rail, and roll up the tarpaulin to facilitate storage of the tarpaulin;

[0028] 3. The first volute spring makes the stretched wire always have a tendency to be wound onto the winding shaft, thereby driving the support rod close to the support frame to move toward the support frame, making it easy to retract the support rod onto the first slide rail and to retract multiple support rods at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic diagram of the structure of an embodiment of the present application.

[0030] Figure 2 It is a schematic diagram for showing the structure of the tarpaulin when it is unfolded in the embodiment of the present application.

[0031] Figure 3 yes Figure 2 Enlarged view of part A in the middle.

[0032] Figure 4 yes Figure 2 Enlarged view of part B in the middle.

[0033] Figure 5 is Figure 2 The enlarged view of part C in it.

[0034] Figure 6 is Figure 2 The enlarged view of part D in it.

[0035] Figure 7 It is a schematic structural view for showing the structure when the tarpaulin is stored in the embodiment of the present application.

[0036] Explanation of reference numerals:

[0037] 1. Self-propelled scissor construction platform; 11. Workbench surface; 12. Fence; 13. Second slide rail; 2. Support frame; 21. First slide rail; 211. Slide block; 22. First fixed section; 23. First telescopic section; 24. First cylinder; 3. Support rod; 31. Second slide block; 32. Second fixed section; 33. Second telescopic section; 34. Second cylinder; 4. Connection assembly; 41. Winding shaft; 42. First volute spring; 43. Pulling rope; 5. Driving assembly; 51. Rodless electric cylinder; 52. Slide table; 521. Clamping groove; 53. Clamping rod; 6. Mounting shaft; 61. Tarpaulin; 62. Mounting box; 621. Strip hole; 63. Second volute spring. Specific embodiments

[0038] The following further elaborates on the present application in conjunction with the attached Figures 1-6 drawings.

[0039] Embodiment 1:

[0040] The embodiment of the present application discloses an energy-saving and environment-friendly high-altitude construction platform for building construction. Referring to Figure 1 and Figure 2 , an energy-saving and environment-friendly high-altitude construction platform for building construction includes a self-propelled scissor construction platform 1. Fences 12 are arranged around the top workbench surface 11 of the self-propelled scissor construction platform 1. When the construction platform is working, it moves to the construction position and lifts the workers and construction materials to the construction height together. The workers carry out construction operations on the workbench surface 11. A U-shaped support frame 2 is arranged on the side of the workbench surface 11. Rotating shafts are fixedly connected to both ends of the U-shaped support frame 2. Both ends of the U-shaped support frame 2 are rotatably connected to the two side surfaces in the width direction of the workbench surface 11 through the rotating shafts. In combination with Figure 3, a first slide rail 21 with a T-shaped internal cross-section is fixedly connected at both ends of the support frame 2. The first slide rail 21 is perpendicular to the plane where the support frame 2 is located. Two sliders 211 with a T-shaped cross-section are slidably installed in the first slide rail 21, and a U-shaped support rod 3 parallel to the support frame 2 is connected and installed on each slider 211. A second slide rail 13 is also arranged on both sides of the width direction of the work table 11. The second slide rail 13 has the same cross-section shape as the first slide rail 21. The second slide rail 13 is located on one side of the first slide rail 21, and is directly opposite to the second slide rail 13 when the first slide rail 21 is rotated to a horizontal state. A connecting assembly 4 is arranged on the support frame 2 and the two support rods 3. The connecting assembly 4 is used to sequentially connect the support frame 2 and the multiple support rods 3, and the connecting assembly 4 drives the multiple support rods 3 to move closer to each other and toward the support frame 2. A driving assembly 5 is also installed on the work surface 11. The driving assembly 5 is connected to a support rod 3 farthest from the support frame 2. The driving assembly 5 is used to drive the support rod 3 to move away from the support frame 2 along the second slide rail 13. Figure 4 A mounting shaft 6 is rotatably installed on the side wall of the work surface 11 and located on the side of the work surface 11 away from the first slide rail 21. The length direction of the mounting shaft 6 is parallel to the length direction of the work surface 11. A tarpaulin 61 is wound and installed on the mounting shaft 6. One end of the tarpaulin 61 is fixedly connected to the mounting shaft 6, and the other end of the tarpaulin 61 is fixedly connected to the top horizontal section of the support frame 2.

[0041] In rainy or sunny weather, the first slide rail 21 is driven to rotate to a horizontal state. At this time, the first slide rail 21 rotates to be opposite to the second slide rail 13, the support frame 2 and the support rod 3 rotate to a vertical direction, and the tarpaulin 61 is pulled out from the mounting shaft 6. Then the driving assembly 5 is used to drive the support rod 3 to move to the second slide rail 13 and move away from the first slide rail 21. The two support rods 3 open the tarpaulin 61, and the tarpaulin 61 shields the work surface 11. The tarpaulin 61 has the effect of sunshade and rainproof, and the workers can work normally on the work surface 11. When rolling up the tarpaulin 61, the support rod 3 is driven to move along the second slide rail 13 to the first slide rail 21, and then the first slide rail 21 is driven to rotate to a vertical state. At this time, the support frame 2 is in a horizontal state, and at this time, the support frame 2 and the work surface 11 are in the same horizontal plane and are sleeved outside the work surface 11. The top horizontal section of the support frame 2 is close to the mounting shaft 6, and the tarpaulin 61 is rolled up by rotating the mounting shaft 6. In rainy or sunny weather, the tarpaulin 61 is used to protect the work surface 11 from rain and sun, so that construction can be carried out normally on the self-propelled scissor-type construction platform 1 in rainy or sunny weather, thereby improving the construction efficiency of the self-propelled scissor-type construction platform 1.

[0042] Reference Figure 2, the support frame 2 includes a first fixed section 22 and a first telescopic section 23. The first fixed section 22 is a rectangular rod, and there are two first fixed sections 22 which are respectively rotatably installed on both sides of the workbench surface 11. The first fixed section 22 is hollow. The first telescopic section 23 is a U-shaped rod with a circular cross-section. Both ends of the first telescopic section 23 are slidably arranged in the two first fixed sections 22. A first cylinder 24 is installed in the first fixed section 22. The cylinder body of the first cylinder 24 is fixedly connected to the first fixed section 22, and the piston rod of the first cylinder 24 extends along the first fixed section 22 and is connected to the first telescopic section 23. The support rod 3 includes a second fixed section 32 and a second telescopic section 33. The second fixed section 32 is a rectangular rod, and there are two second fixed sections 32. The two second fixed sections 32 are respectively connected to a group of sliders 211 opposite to both sides of the workbench surface 11. The second fixed section 32 is hollow. The second telescopic section 33 is a U-shaped rod with a circular cross-section. Both ends of the second telescopic section 33 are slidably arranged in the two second fixed sections 32. A second cylinder 34 is installed in the second fixed section 32. The cylinder body of the second cylinder 34 is fixedly connected to the second fixed section 32, and the piston rod of the second cylinder 34 extends along the second fixed section 32 and is connected to the second telescopic section 33.

[0043] Combined with Figure 2 and Figure 7 , when the first slide rail 21 is rotated to the horizontal state, due to the influence of the fence 12 on the workbench surface 11, the support frame 2 and the support rod 3 need to adjust their lengths synchronously during rotation so that the support frame 2 and the support rod 3 can be smoothly rotated to the vertical state. When the first slide rail 21 is rotated to the vertical state, the lengths of the support frame 2 and the support rod 3 also need to be adjusted in real time so that when the support frame 2 and the support rod 3 are rotated to the horizontal state, the top horizontal sections of the support frame 2 and the support rod 3 are in contact with the side wall of the workbench surface 11, avoiding the support frame 2 and the support rod 3 occupying too much space and affecting the construction of the self-propelled scissor construction platform 1. At the same time, during actual construction, the heights of the support frame 2 and the support rod 3 can be adjusted according to actual construction requirements to facilitate placing construction materials and tools of different height dimensions on the workbench surface 11.

[0044] Referring to Figure 3 and Figure 5, the connecting component 4 includes a winding shaft 41, a first scroll spring 42 and a pulling rope 43. An installation groove is formed on one side of the support frame 2 facing the support rod 3. The winding shaft 41 is rotatably installed on the support frame 2 and is located in the installation groove. The first scroll spring 42 is installed on the side wall of the installation groove. One end of the first scroll spring 42 is fixedly connected to the side wall of the installation groove, and the other end is fixedly connected to the winding shaft 41. The first scroll spring 42 is in a compressed state, so that the winding shaft 41 always has a tendency to rotate and wind the pulling rope 43 around the winding shaft 41. One end of the pulling rope 43 is connected and wound around the winding shaft 41, and the other end is connected to the support rod 3 close to the support frame 2. An installation groove is also formed on the support rod 3 close to the support frame 2, and the connecting component 4 is also installed in the installation groove. The end of the pulling rope 43 on this support rod 3 is connected to the support rod 3 far from the support frame 2.

[0045] It should be particularly noted that both of the first scroll springs 42 are initially in a compressed state, and the elastic force of the first scroll spring 42 is greater than the total gravity of the two support rods 3 initially, so that the two pulling ropes 43 always have a tendency to be wound around the corresponding winding shafts 41. When the two support rods 3 move onto the first slide rail 21 and the first slide rail 21 rotates to the vertical state, the two support rods 3 will not fall off the first slide rail 21 under the action of gravity. At the same time, when one of the support rods 3 far from the support frame 2 moves to the end of the second slide rail 13, the two pulling ropes 43 are completely pulled out from the winding shaft 41 and straightened. Thus, when the awning 61 is unfolded, the gaps between the support frame 2 and the two support rods 3 are the same, which has a good supporting effect on the rain shelter.

[0046] Refer to Figure 2 and Figure 6 , the driving component 5 includes a rodless electric cylinder 51. The rodless electric cylinder 51 is installed on both sides of the workbench surface 11, and the rodless electric cylinder 51 is parallel to the second slide rail 13 and is located above the second slide rail 13. A clamping groove 521 is formed on the sliding table 52 of the rodless electric cylinder 51. The clamping groove 521 is integrally arc-shaped, and the lower end of the clamping groove 521 vertically penetrates the sliding table 52. A clamping rod 53 is provided on the support rod 3 farthest from the support frame 2. The clamping rod 53 extends towards the workbench surface 11. When the first slide rail 21 rotates to the horizontal state, the clamping rod 53 is clamped into the clamping groove 521. When the first slide rail 21 rotates to the horizontal state, the clamping rod 53 moves into the clamping groove 521. At this time, the rodless electric cylinder 51 is started, and the sliding table 52 of the rodless electric cylinder 51 moves away from the first slide rail 21. At this time, the rodless electric cylinder 51 drives the support rod 3 to move on the second slide rail 13 in a direction away from the first slide rail 21, which is convenient for driving the support rod 3 to move on the second slide rail 13.

[0047] Refer to Figure 2 and Figure 4, an installation box 62 is connected and installed on the work surface 11 and outside the installation shaft 6. The installation box 62 is a rectangular box. The length of the installation box 62 is consistent with the length of the work surface 11. The upper part of the installation box 62 is provided with a strip hole 621 for the tarpaulin 61 to enter and exit. The installation shaft 6 is rotatably installed in the installation box 62 along the length direction of the installation box 62. A winding assembly is also arranged in the installation box 62. The winding assembly is connected to the installation shaft 6 and is used to drive the installation shaft 6 to rotate. When the installation shaft 6 rotates, the tarpaulin 61 is wound. The winding assembly includes a second volute spring 63. The second volute spring 63 is installed at both ends of the installation box 62. One end of the second volute spring 63 is connected to the installation shaft 6 and the other end is connected to the inner wall of the installation box 62. The second volute spring 63 is in a compressed state, so that the installation shaft 6 always has a tendency to rotate and wind up the tarpaulin 61. When the tarpaulin 61 is unfolded, the support frame 2 pulls the tarpaulin 61 out of the installation box 62, and the second volute spring 63 is compressed; when the support frame 2 rotates to a horizontal state, the second volute spring 63 drives the installation shaft 6 to rotate to reel in the tarpaulin 61, and stores the tarpaulin 61 in the installation box 62. At the same time, when the support rod 3 rotates to a horizontal state, the second telescopic section 33 on the support rod 3 is placed on the installation box 62, further preventing the support rod 3 from detaching from the first slide rail 21 under the action of gravity when in a horizontal state.

[0048] The implementation principle of the energy-saving and environment-friendly high-altitude construction platform for building construction in the embodiment of the present application is as follows: in rainy or sunny weather, the first slide rail 21 is driven to rotate to a horizontal state, at which time the first slide rail 21 rotates to be opposite to the second slide rail 13, the support frame 2 and the support rod 3 rotate to a vertical direction, and the tarpaulin 61 is pulled out from the mounting shaft 6; the driving assembly 5 is then used to drive the support rod 3 to move to the second slide rail 13 and move away from the first slide rail 21, and the two support rods 3 open the tarpaulin 61, and the tarpaulin 61 shields the work surface 11, achieving the effect of sunshade and rainproof. When rolling up the tarpaulin 61, the support rod 3 is driven to move along the second slide rail 13 to the first slide rail 21, and then the first slide rail 21 is driven to rotate to a vertical state, at which time the support frame 2 is in a horizontal state, and the tarpaulin 61 is rolled up by rotating the mounting shaft 6.

[0049] Embodiment 2:

[0050] A plurality of sliders 211 are slidably mounted on the first slide rail 21, and each slider 211 is connected to a support rod 3; except for the support rod 3 farthest from the support frame 2, the remaining support rods 3 are provided with mounting grooves, and a connecting assembly 4 is installed in the mounting grooves. The end of the pull rope 43 on each support rod 3 is connected to the next support rod 3. At the same time, when the first slide rail 21 is in a vertical state, the elastic force of the first volute spring 42 is greater than the overall gravity of the plurality of support rods 3.

[0051] Finally, it should be noted that in the description of this application, it should be noted that the orientation or positional relationship indicated by terms such as "vertical", "upper", "lower", "horizontal", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to this application.

[0052] The above are all preferred embodiments of this application, and the protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. An energy-saving and environment-friendly high-altitude construction platform for building construction, comprising a self-propelled scissor construction platform (1), wherein fences (12) are arranged around the working surface (11) of the self-propelled scissor construction platform (1), and it is characterized in that: A U-shaped support frame (2) is provided on the side of the workbench surface (11). The two ends of the U-shaped support frame (2) are respectively rotatably connected to the two side surfaces of the workbench surface (11). First slide rails (21) perpendicular to the support frame (2) are connected to the two ends of the support frame (2). A plurality of sliders (211) are slidably arranged in the first slide rails (21). A U-shaped support rod (3) parallel to the support frame (2) is connected to the sliders (211). Second slide rails (13) are also provided on the two sides of the workbench surface (11). When the first slide rails (21) rotate to the horizontal state, they are aligned with the second slide rails (13). Connecting components (4) are provided on both the support frame (2) and the support rods (3). The connecting components (4) are used to sequentially connect the support frame (2) and multiple support rods (3), and the connecting components (4) are used to drive the multiple support rods (3) to approach each other and move towards the support frame (2). A driving component (5) is provided on the workbench surface (11). The driving component (5) is connected to the support rods (3) and is used to drive the support rods (3) to move along the second slide rails (13). A mounting shaft (6) is rotatably provided on the side of the workbench surface (11) away from the first slide rails (21). A tarpaulin (61) is wound around the mounting shaft (6). The other end of the tarpaulin (61) is connected to the horizontal section of the support frame (2).

2. The energy-saving and environmental protection type high-altitude construction platform for building construction according to claim 1, characterized in that: The support frame (2) includes a first fixed section (22) and a first telescopic section (23). The first fixed section (22) is hollow. The two ends of the first telescopic section (23) are respectively slidably arranged in the two first fixed sections (22). A first air cylinder (24) is provided in the first fixed section (22). The end of the piston rod of the first air cylinder (24) is connected to the first telescopic section (23).

3. An aerial construction platform for energy-saving and environmentally friendly building construction according to claim 1, characterized in that: The support rod (3) includes a second fixed section (32) and a second telescopic section (33). The second fixed section (32) is hollow. The two ends of the second telescopic section (33) are respectively slidably arranged in the two second fixed sections (32). A second air cylinder (34) is provided in the second fixed section (32). The end of the piston rod of the second air cylinder (34) is connected to the second telescopic section (33).

4. An aerial construction platform for energy-saving and environmentally friendly building construction according to claim 1, characterized in that: The connecting component (4) includes a winding shaft (41), a first volute spring (42) and a pulling rope (43). An installation groove is formed on the support frame (2). The winding shaft (41) is rotatably arranged on the support frame (2) and is located in the installation groove. The first volute spring (42) is arranged on the side wall of the installation groove. One end of the first volute spring (42) is fixedly connected to the side wall of the installation groove, and the other end is fixedly connected to the winding shaft (41). One end of the pulling rope (43) is wound around the winding shaft (41), and the other end is connected to the support rod (3) close to the support frame (2).

5. An aerial construction platform for energy-saving and environmentally-friendly building construction according to claim 4, characterized in that: An installation groove is also formed on the support rod (3). The other end of the pulling rope (43) of the connecting component (4) on the support rod (3) is connected to the adjacent support rod (3).

6. The high-altitude construction platform for energy-saving and environment-friendly building construction according to claim 5, characterized in that: The first scroll spring (42) causes the drawstring (43) to always have a tendency to wind around the winding shaft (41).

7. An aerial construction platform for energy-saving and environment-friendly building construction according to claim 1, characterized in that: The driving assembly (5) includes a rodless electric cylinder (51), the rodless electric cylinder (51) is horizontally arranged on the side of the workbench surface (11), a clamping groove (521) is vertically and downwardly formed through the sliding table (52) of the rodless electric cylinder (51), a clamping rod (53) is arranged on the support rod (3) farthest from the support frame (2), and when the first slide rail (21) rotates to the horizontal state, the clamping rod (53) is clamped into the clamping groove (521).

8. An energy-saving and environment-friendly aerial construction platform for building construction according to claim 1, characterized in that: An installation box (62) is arranged on the workbench surface (11) and outside the installation shaft (6), a strip hole (621) for the tarpaulin (61) to enter and exit is formed in the upper part of the installation box (62), a winding assembly is further arranged in the installation box (62), and the winding assembly is connected to the installation shaft (6) and is used for driving the installation shaft (6) to rotate and wind the tarpaulin (61).

9. An energy-saving and environmental protection type high-altitude construction platform for building construction according to claim 8, characterized in that: The winding assembly includes a second scroll spring (63), one end of the second scroll spring (63) is connected to the installation shaft (6), and the other end is connected to the inner wall of the installation box (62).

Citation Information

Patent Citations

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