Space control mounting equipment for photovoltaic pile foundation construction
By designing photovoltaic pile foundation construction equipment with supporting columns, horizontal plates, sliding sleeves, and worm gear turbine mechanisms, the problem of inconvenient pile spacing adjustment was solved, achieving precise adjustment of pile spacing and construction stability and accuracy, thus improving construction efficiency.
Patent Information
- Application Number
- CN202520058859.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-10
AI Technical Summary
In existing photovoltaic pile foundation construction, the spacing between piles is inconvenient to adjust, resulting in insufficient construction stability and accuracy. Furthermore, existing devices are prone to displacement during pile driving.
An installation device for spacing control in photovoltaic pile foundation construction was designed, comprising a support column, a horizontal plate, a sliding sleeve, a limiting ring, a clamping assembly, and a moving component. By rotating a turntable to drive a threaded rod and a worm gear mechanism, the device achieves precise adjustment of the pile spacing and additional support, ensuring the stability and positional accuracy of the piles during the driving process.
It enables precise adjustment of pile spacing, improves construction efficiency and quality, ensures the stability and accuracy of piles during driving, and avoids deviation and tilting.
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Figure CN223689343U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pile foundation construction equipment technical field, specifically is related to a spacing control's installation equipment for photovoltaic pile foundation construction. BACKGROUND
[0002] In the construction process of photovoltaic power station, pile foundation construction is a crucial link. As the supporting structure of photovoltaic modules, the stability and accuracy of pile foundation directly affect the power generation efficiency and safety of photovoltaic power station. Therefore, during the pile foundation construction process, the spacing of pile foundation needs to be strictly controlled to ensure that the photovoltaic modules are evenly distributed and fully receive sunlight. The existing technology for controlling the spacing of pile foundation construction is to use a ruler with a socket to position and control the spacing of pile foundation. This method of positioning and controlling the spacing of pile foundation is to place the ruler on the ground and make the spacing of any two adjacent sockets on the ruler equal to the spacing of the installed pile foundation, then insert the pile foundation into the ground through the socket, to ensure the position spacing of the pile foundation on the ground, and then ensure the required spacing between pile foundations. However, when the spacing of pile foundations needs to be adjusted, it is necessary to measure again with a caliper and make the spacing of the pile foundation equal to the measured distance of the caliper, which is time-consuming and laborious in operation.
[0003] The patent document with Chinese publication number CN115059076B discloses a device for precise control of pile foundation construction spacing, which includes a support mechanism, a crossbar, an indicator rod A, an indicator rod B, and a driving mechanism. When the overall spacing of two pile foundations on which photovoltaic panels are to be installed during the piling process needs to be precisely controlled, the bolts on the sleeve A of the two support mechanisms are loosened to release the relative locking of the sleeve A and the crossbar, and the two support mechanisms are slid on the crossbar in opposite directions or in the same direction, so that the spacing between the two support mechanisms is greater than the spacing of the two pile foundations on which the photovoltaic panels are to be installed. The two driving mechanisms on the crossbar have sufficient movement space, so that the spacing between the two driving mechanisms can be matched with the spacing of the two pile foundations on which the photovoltaic panels are to be installed. Then, the bolts on the sleeve A of the two support mechanisms are rotated and the sleeve A is locked with the crossbar, and the spacing between the two driving mechanisms on the crossbar is preliminarily adjusted according to the required spacing between the two pile foundations.
[0004] The above-mentioned patent document only adjusts the spacing between the two support mechanisms, but does not adjust the spacing between the two pile foundations. When the pile foundation is driven into the ground by the pile driving equipment, the pile foundation is only supported at one end, which can easily swing and deviate during the piling process, affecting the stability and accuracy of the construction. SUMMARY
[0005] In view of the above problems, the present application provides a kind of installation equipment for spacing control of photovoltaic pile foundation construction, by being provided with the moving part for driving pile foundation to move, the technical problem that pile foundation is not adjusted between is solved.
[0006] To solve the prior art problems, the utility model provides a kind of installation equipment for spacing control of photovoltaic pile foundation construction, including support column and cross plate, the support column is provided with two, two support columns are arranged along the same horizontal line interval, the bottom of support column is pointed, the cross plate is set to the top of two support columns, sliding sleeve is set on the cross plate, the side of sliding sleeve is provided with limit ring, the limit ring is provided with the clamping assembly for fixing pile foundation, the moving part for driving the pile foundation after fixing to move is further provided on the support column, the bottom of cross plate is provided with connecting plate on the support column, the supporting assembly for supporting pile foundation is provided on the connecting plate.
[0007] Preferably, the moving part includes a drive plate; the drive plate is set on the support column at the back side of the cross plate, a rectangular through slot is formed in the cross plate, a second threaded rod is arranged in the rectangular through slot, one end of the second threaded rod penetrates from one side of the drive plate and extends outward, a first turntable is arranged at the extending end of the second threaded rod, a moving block is threadedly connected to the second threaded rod, a connecting block is mounted on one side of the moving block, and the connecting block is connected to the sliding sleeve.
[0008] Preferably, the moving part further includes a sliding block, a connecting frame and a slide rod; the sliding block is arranged on the side of the moving block away from the connecting block; the connecting frame is arranged on the side of the drive plate away from the cross plate, a slide rod is arranged on the inner side of the connecting frame, and the sliding block is slidingly arranged on the slide rod.
[0009] Preferably, a scale groove is formed in the cross plate, and an indicating needle is arranged at the top of the sliding sleeve.
[0010] Preferably, the clamping assembly includes a first threaded rod; the first threaded rod is arranged on the limit ring, a knob is arranged at one end of the first threaded rod, and an arc-shaped block is arranged at the other end of the first threaded rod.
[0011] Preferably, the supporting assembly includes a sliding plate, a guide disc and a turbine;
[0012] The sliding plate is slidingly arranged on the connecting plate, a slide rail is arranged on one side of the sliding plate, a moving plate is slidingly arranged in the slide rail, a support plate is arranged on one side of the moving plate, and a guide block is arranged on the other side of the moving plate.
[0013] A rectangular groove is formed in the sliding plate, the guide disc is arranged in the rectangular groove through a rotating shaft, and a guide groove for the movement of the guide block is further formed in the guide disc.
[0014] The side of the sliding plate away from the guide disc is provided with a containing cavity, one end of the rotating shaft extends into the containing cavity through the sliding plate, a turbine is installed at the extending end of the rotating shaft, a worm is arranged in the containing cavity at one side of the turbine, one end of the worm extends outward through one side of the sliding plate, and a second rotating disc is arranged at the extending end of the worm.
[0015] The beneficial effects of the utility model compared with prior art are:
[0016] 1. When the distance between the pile foundations needs to be adjusted, the first rotating disc is rotated, the second threaded rod is rotated by the first rotating disc, the moving block is moved by the rotation of the second threaded rod, the movement of the moving block is transmitted to the sliding sleeve through the connecting block, the sliding sleeve slides on the horizontal plate and drives the movement of the limiting ring, the movement of the limiting ring drives the movement of the pile foundation in the limiting ring, so that the distance between the pile foundations can be accurately adjusted according to the construction requirements, and the construction efficiency and quality are improved.
[0017] 2. The second rotating disc is rotated, the worm is rotated by the second rotating disc, the turbine is rotated by the meshing of the worm and the turbine, the rotating shaft is rotated by the rotation of the turbine, the guide disc is rotated by the rotation of the rotating shaft, the rotation of the guide disc guides the movement of the guide block along the guide groove, and then the two supporting plates are moved to the pile foundation, the two sides of the pile foundation are supported, so that additional support points are provided for the pile foundation, the correct direction and position of the pile foundation are ensured in the process of driving, and the stability and precision of construction are ensured. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a three-dimensional schematic view of the installation equipment for distance control of photovoltaic pile foundation construction Figure One .
[0019] Figure 2 It is a three-dimensional schematic view of the installation equipment for distance control of photovoltaic pile foundation construction Figure Two .
[0020] Figure 3 It is a three-dimensional view of the supporting column, horizontal plate and driving plate in the installation equipment for distance control of photovoltaic pile foundation construction.
[0021] Figure 4 It is a three-dimensional view of the sliding block, connecting frame and sliding rod in the installation equipment for distance control of photovoltaic pile foundation construction.
[0022] Figure 5 It is a top view of the installation equipment for distance control of photovoltaic pile foundation construction.
[0023] Figure 6 It is an explosion schematic view of the sliding plate, sliding rail, moving plate and supporting plate in the installation equipment for distance control of photovoltaic pile foundation construction Figure One .
[0024] Figure 7 It is an explosion schematic of sliding plate, sliding rail, moving plate and support plate in a distance control installation equipment for photovoltaic pile foundation construction Figure Two .
[0025] In the figure, the labels are: 1, support column; 2, cross plate; 3, sliding sleeve; 4, limiting ring; 5, clamping assembly; 51, first threaded rod; 52, knob; 53, arc block; 6, moving part; 61, driving plate; 62, second threaded rod; 63, first turntable; 64, moving block; 65, connecting block; 66, sliding block; 67, connecting frame; 68, sliding rod; 69, scale groove; 610, indicator pin; 7, connecting plate; 8, support assembly; 81, sliding plate; 82, sliding rail; 83, moving plate; 84, support plate; 85, guide block; 86, guide disc; 87, turbine; 88, worm; 89, second turntable. DETAILED DESCRIPTION
[0026] In order to further understand the characteristics, technical means and specific purposes and functions achieved by the present application, the present application will be described in further detail below in conjunction with the drawings and specific embodiments.
[0027] Referring to Figures 1 to 7 The utility model provides a kind of installation equipment for photovoltaic pile foundation construction of distance control, including support column 1 and cross plate 2, two support columns 1 are provided, two support columns 1 are arranged along the same horizontal line with interval, the bottom of support column 1 is pointed, cross plate 2 is set to the top of two support columns 1, sliding sleeve 3 is arranged on cross plate 2, limiting ring 4 is arranged on the side of sliding sleeve 3, clamping assembly 5 for fixing pile foundation is arranged in limiting ring 4, moving part 6 for driving fixed pile foundation to move is further arranged on support column 1, connecting plate 7 is arranged on the bottom of cross plate 2 of support column 1, and support assembly 8 for supporting pile foundation is arranged on connecting plate 7.
[0028] By stably inserting support column 1 into ground, pile foundation is passed through limiting ring 4 and is firmly clamped in limiting ring 4 by clamping assembly 5, to prevent pile foundation from moving or tilting due to external force. Start moving part 6, and drive fixed pile foundation to move by moving part 6. And according to construction requirement, the distance of pile foundation can be adjusted, to ensure the quality of subsequent connection and installation of photovoltaic equipment and pile foundation. When pile foundation is driven into ground by piling equipment, additional support point is provided to pile foundation by support assembly 8, to ensure that pile foundation maintains correct direction and position during driving, and to ensure the stability and precision of construction.
[0029] Referring to Figures 1 to 4As shown, the moving component 6 comprises a driving plate 61; the driving plate 61 is arranged on the support column 1 at the rear side of the horizontal plate 2, a rectangular through slot is formed on the horizontal plate 2, a second threaded rod 62 is arranged in the rectangular through slot, one end of the second threaded rod 62 penetrates from one side of the driving plate 61 and extends outward, a first rotating disc 63 is arranged at the extending end of the second threaded rod 62, a moving block 64 is threadedly connected to the second threaded rod 62, a connecting block 65 is arranged on one side of the moving block 64, and the connecting block 65 is connected with the sliding sleeve 3.
[0030] When it is necessary to adjust the spacing between the pile foundations, the staff rotates the first rotating disc 63 to drive the second threaded rod 62 to rotate. The rotation of the second threaded rod 62 drives the moving block 64 to move. Since the moving block 64 is connected with the connecting block 65, the movement of the moving block 64 is transmitted to the sliding sleeve 3 through the connecting block 65, the sliding sleeve 3 slides on the horizontal plate 2 and drives the limiting ring 4 to move, the movement of the limiting ring 4 drives the pile foundations in the limiting ring 4 to move, so that the spacing between the pile foundations can be accurately adjusted according to the construction requirements, and the construction efficiency and quality are improved.
[0031] Referring to Figure 4 As shown, the moving component 6 further comprises a sliding block 66, a connecting frame 67 and a sliding rod 68; the sliding block 66 is arranged on the side of the moving block 64 away from the connecting block 65; the connecting frame 67 is arranged on the side of the driving plate 61 away from the horizontal plate 2, the inner side of the connecting frame 67 is provided with the sliding rod 68, and the sliding block 66 is slidingly arranged on the sliding rod 68.
[0032] When the second threaded rod 62 rotates to drive the moving block 64 to move, the movement of the moving block 64 drives the sliding block 66 to slide on the sliding rod 68, so that the movement track of the moving block 64 is stable and controllable, thereby enhancing the stability of the movement of the pile foundations.
[0033] Referring to Figure 3 As shown, a scale groove 69 is formed on the horizontal plate 2, and the top of the sliding sleeve 3 is provided with an indicating needle 610.
[0034] When the sliding sleeve 3 slides on the horizontal plate 2, the indicating needle 610 moves synchronously, and different scale grooves 69 are pointed by the indicating needle 610, so that the spacing between the pile foundations can be accurately read and adjusted.
[0035] Referring to Figure 5 As shown, the clamping assembly 5 comprises a first threaded rod 51; the first threaded rod 51 is arranged on the limiting ring 4, one end of the first threaded rod 51 is provided with a knob 52, and the other end of the first threaded rod 51 is provided with an arc-shaped block 53.
[0036] When it is needed to drive the pile, the operator manually rotates the second disc 89, which drives the worm 88 to rotate. The worm 88 meshes with the worm wheel 87, which drives the worm wheel 87 to rotate. The rotation of the worm wheel 87 drives the shaft to rotate. The rotation of the shaft drives the guide disc 86 to rotate. Due to the cooperation of the guide block 85 and the guide groove, the rotation of the guide disc 86 guides the guide block 85 to move along the guide groove. The movement of the guide block 85 drives the moving plate 83 to move along the slide rail 82, and in turn drives the support plates 84 on both sides to move towards the pile, thereby supporting the two sides of the pile, so as to provide additional support points for the pile, to ensure that the pile maintains the correct direction and position during driving, and to ensure the stability and accuracy of the construction.
[0037] Referring to Figure 6 and Figure 7 The support assembly 8 includes a sliding plate 81, a guide disc 86, and a worm wheel 87. The sliding plate 81 is slidingly arranged on the connecting plate 7. One side of the sliding plate 81 is provided with a slide rail 82. The slide rail 82 is slidingly provided with a moving plate 83. One side of the moving plate 83 is provided with a support plate 84. The other side of the moving plate 83 is provided with a guide block 85. A rectangular groove is formed in the sliding plate 81. The guide disc 86 is arranged in the rectangular groove through a shaft. The guide disc 86 is further provided with a guide groove for the movement of the guide block 85. One side of the sliding plate 81 away from the guide disc 86 is provided with a receiving cavity. One end of the shaft extends into the receiving cavity through the sliding plate 81. The extending end of the shaft is provided with the worm wheel 87. One side of the receiving cavity located at the worm wheel 87 is provided with a worm 88. One end of the worm 88 extends outward through one side of the sliding plate 81. The extending end of the worm 88 is provided with a second disc 89.
[0038] When it is needed to drive the pile, the operator manually rotates the second disc 89, which drives the worm 88 to rotate. The worm 88 meshes with the worm wheel 87, which drives the worm wheel 87 to rotate. The rotation of the worm wheel 87 drives the shaft to rotate. The rotation of the shaft drives the guide disc 86 to rotate. Due to the cooperation of the guide block 85 and the guide groove, the rotation of the guide disc 86 guides the guide block 85 to move along the guide groove. The movement of the guide block 85 drives the moving plate 83 to move along the slide rail 82, and in turn drives the support plates 84 on both sides to move towards the pile, thereby supporting the two sides of the pile, so as to provide additional support points for the pile, to ensure that the pile maintains the correct direction and position during driving, and to ensure the stability and accuracy of the construction.
[0039] By stably inserting the supporting column 1 into the ground, passing the pile foundation through the limiting ring 4, and manually rotating the knob 52, the first threaded rod 51 is rotated by the knob 52. With the rotation of the first threaded rod 51, the arc-shaped block 53 is moved, so that the arc-shaped block 53 gradually approaches the pile foundation and is in close contact with the pile foundation, thereby preliminarily fixing the pile foundation and preventing the pile foundation from moving or tilting due to external force. When it is necessary to adjust the spacing between the pile foundations, the worker rotates the first turntable 63, and the second threaded rod 62 is rotated by the first turntable 63. With the rotation of the second threaded rod 62, the moving block 64 is moved. Since the moving block 64 is connected with the connecting block 65, the movement of the moving block 64 is transmitted to the sliding sleeve 3 through the connecting block 65, and the sliding sleeve 3 slides on the horizontal plate 2 and drives the limiting ring 4 to move, and the pile foundation in the limiting ring 4 is moved by the movement of the limiting ring 4, so that the spacing of the pile foundations can be accurately adjusted according to the construction requirements, and the construction efficiency and quality are improved. When it is necessary to drive the pile foundation, the operator manually rotates the second turntable 89, and the worm 88 is rotated by the second turntable 89. By meshing the worm 88 with the turbine 87, the turbine 87 is rotated, and the shaft is rotated by the rotation of the turbine 87. The rotation of the shaft drives the guide disc 86 to rotate. Due to the cooperation of the guide block 85 and the guide groove, the rotation of the guide disc 86 will guide the guide block 85 to move along the guide groove. The movement of the guide block 85 drives the moving plate 83 to move along the slide rail 82, and then drives the supporting plates 84 on both sides to move towards the pile foundation, thereby supporting the two sides of the pile foundation, so as to provide additional support points for the pile foundation, so as to ensure that the pile foundation maintains the correct direction and position during driving, and ensures the stability and precision of the construction.
[0040] The above embodiments only express one or several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as limiting the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A distance controlled installation device for photovoltaic pile foundation construction, characterized in that The utility model provides a pile foundation fixing device, including support column (1) and cross board (2), two support columns (1) are arranged along the same horizontal line interval, the bottom of support column (1) is pointed, cross board (2) is set up at the top of two support columns (1), sliding sleeve (3) is arranged on cross board (2), one side of sliding sleeve (3) is provided with limit ring (4), the clamping assembly (5) for fixing pile foundation is set up in limit ring (4), still be provided with the moving part (6) of driving fixed pile foundation to move on support column (1) after being completed, the bottom of cross board (2) is provided with connecting plate (7) on support column (1), the support assembly (8) for supporting pile foundation is provided on connecting plate (7).
2. The installation equipment for controlling the distance of photovoltaic pile foundation construction according to claim 1, characterized in that, The moving part (6) comprises a driving plate (61); The driving plate (61) is arranged on the rear side of the cross board (2) on the support column (1), a rectangular through slot is formed in the cross board (2), a second threaded rod (62) is arranged in the rectangular through slot, one end of the second threaded rod (62) penetrates through one side of the driving plate (61) and extends outward, a first rotary disc (63) is arranged at the extending end of the second threaded rod (62), a moving block (64) is threadedly connected to the second threaded rod (62), a connecting block (65) is mounted on one side of the moving block (64), and the connecting block (65) is connected to the sliding sleeve (3).
3. The installation equipment for controlling the distance of photovoltaic pile foundation construction according to claim 1, characterized in that, The moving part (6) further comprises a sliding block (66), a connecting frame (67), and a sliding rod (68); The sliding block (66) is arranged on the side of the moving block (64) away from the connecting block (65); The connecting frame (67) is arranged on the side of the driving plate (61) away from the cross board (2), and the inner side of the connecting frame (67) is provided with the sliding rod (68), and the sliding block (66) is slidingly arranged on the sliding rod (68).
4. The installation equipment for controlling the distance of photovoltaic pile foundation construction according to claim 1, characterized in that, A scale groove (69) is formed in the cross board (2), and an indicating needle (610) is arranged on the top of the sliding sleeve (3).
5. The installation equipment for controlling the distance of photovoltaic pile foundation construction according to claim 1, characterized in that, The clamping assembly (5) comprises a first threaded rod (51); The first threaded rod (51) is arranged on the limit ring (4), one end of the first threaded rod (51) is provided with a knob (52), and the other end of the first threaded rod (51) is provided with an arc-shaped block (53).
6. The installation equipment for controlling the distance of photovoltaic pile foundation construction according to claim 1, characterized in that, The support assembly (8) comprises a sliding plate (81), a guide disc (86), and a turbine (87); The sliding plate (81) is slidingly arranged on the connecting plate (7), one side of the sliding plate (81) is provided with a sliding rail (82), the sliding rail (82) is slidingly provided with a moving plate (83), one side of the moving plate (83) is provided with a support plate (84), and the other side of the moving plate (83) is provided with a guide block (85); A rectangular groove is formed in the sliding plate (81), the guide disc (86) is arranged in the rectangular groove through a rotating shaft, and a guide groove is further formed in the guide disc (86) for the movement of the guide block (85). The sliding plate (81) is provided with a containing cavity on the side away from the guide disc (86), one end of the rotating shaft extends into the containing cavity through the sliding plate (81), the extending end of the rotating shaft is provided with a turbine (87), one side of the turbine (87) in the containing cavity is provided with a worm (88), one end of the worm (88) extends outward through the side of the sliding plate (81), and the extending end of the worm (88) is provided with a second rotating disc (89).
Citation Information
Patent Citations
A device for precise control of pile foundation construction spacing
CN115059076B