A solar integrated water purification station for multi-scenario applications
By designing a solar integrated water purification station for multi-scenario applications on the water purification device, the rotation and swing of the solar panels are achieved by using linkage components and drive components, the problems of low power generation efficiency and poor adaptability caused by the installation methods of traditional photovoltaic systems are solved, and the working efficiency and use effect of the water purification equipment are improved.
Patent Information
- Application Number
- CN202411857284.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2044-12-17
AI Technical Summary
The fixed installation of traditional photovoltaic systems in water purification equipment leads to low power generation efficiency and cannot adapt to complex and changing installation environments and water purification needs, affecting the working efficiency and use effect of water purification equipment.
A solar integrated water purification station for multi-scenario applications is designed. By setting up a mounting plate on the top of the water purification device body and multiple solar modules are set up on the mounting plate. The modules include solar panels, mounting bases, drive bases and rotating bases. The linkage components and drive components are used to realize the rotation and swing of the solar panels, and functions are realized by only one driving member.
By rotating the rotating seat, the rotating disc and solar panels are driven to rotate and swing, the flexible adjustment of the solar panels is achieved, the power generation efficiency of the photovoltaic system is improved, and the complexity and cost of the structure are reduced.
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Figure CN119561465B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of water purification equipment, and particularly relates to a solar integrated water purification station for multi-scenario applications. Background Art
[0002] In the development process of modern water purification technology, the introduction of a photovoltaic system not only provides stable power support for water purification equipment, but also embodies the concepts of environmental protection and energy conservation. Using solar energy as a clean energy source can significantly reduce the energy consumption in the water purification process and reduce the dependence on the traditional power grid, especially suitable for remote areas or places where the power grid coverage is unavailable.
[0003] However, although the application prospect of the photovoltaic system in water purification equipment is broad, the traditional installation method of the photovoltaic system has obvious limitations. First of all, most of these systems adopt a fixed installation method, which means that once the angle of the solar panel is determined, it is difficult to adjust, which greatly limits the power generation efficiency of the photovoltaic system. Secondly, the fixed installation method makes the photovoltaic system less adaptable to complex and changeable installation environments and water purification requirements, and it cannot be flexibly adjusted according to the changes in sunlight conditions, thus affecting the working efficiency and use effect of the water purification equipment.
[0004] Although there are settings on the market that can adjust the angle of the solar panel currently, it is necessary to control different rotation angles of the solar panel through multiple driving components, resulting in problems of complex structure and high cost. Summary of the Invention
[0005] The purpose of the present invention is to provide a solar integrated water purification station for multi-scenario applications in view of the above deficiencies in the prior art.
[0006] The purpose of the present invention is achieved through the following technical solutions: A solar integrated water purification station for multi-scenario applications, including a water purification device body; an installation plate is provided on the top of the water purification device body; the installation plate is provided with a plurality of solar modules;
[0007] The solar module includes a solar panel, a mounting seat provided on the mounting plate, a driving seat rotatably provided on the mounting seat, and a rotating seat rotatably provided on the driving seat; a linkage assembly is provided between the rotating seat and the driving seat;
[0008] A first rotating disk and a second rotating disk are rotatably provided in the middle of the mounting seat; a driving assembly is provided between the first rotating disk, the second rotating disk and the solar panel.
[0009] The present invention is further configured such that the driving assembly includes a first bevel gear, a second bevel gear, a third bevel gear, a fourth bevel gear and a one-way bevel gear;
[0010] The first bevel gear and the one-way bevel gear are arranged on the same axis; the second bevel gear is vertically meshed with the first bevel gear; the third bevel gear is vertically meshed with the second bevel gear; the fourth bevel gear is vertically meshed with the one-way bevel gear; a connecting rod is arranged between the third bevel gear and the fourth bevel gear;
[0011] The first bevel gear is connected to the first rotating disk; the third bevel gear is connected to the solar panel.
[0012] The present invention is further configured such that a sleeve is provided at the top of the second rotating disk; first and second connecting arms arranged oppositely are provided at the top of the sleeve; the second bevel gear is rotatably arranged on the first connecting arm; a bracket is provided between the third bevel gear and the solar panel; one end of the connecting rod is rotatably connected to the bracket; the fourth bevel gear is rotatably arranged at the other end of the connecting rod; the middle of the connecting rod is hinged to the second connecting arm.
[0013] The present invention is further configured such that a torsion spring is provided between the other end of the connecting rod and the fourth bevel gear.
[0014] The present invention is further configured such that a connecting column is provided in the middle of the mounting base; the connecting column penetrates through the first rotating disk and the first bevel gear; the one-way bevel gear is rotatably arranged at the top of the connecting column;
[0015] A connecting rod is provided at the top of the sleeve; the connecting rod is rotatably arranged on the connecting column.
[0016] The present invention is further configured such that a placement cavity is provided in the middle of the rotating seat; the first rotating disk and the second rotating disk are rotatably arranged in the placement cavity;
[0017] A locking assembly is provided between the rotating seat, the first rotating disk and the second rotating disk.
[0018] The present invention is further configured such that the locking assembly includes a plurality of first fixing grooves arranged along the outer periphery of the first rotating disk, a plurality of second fixing grooves arranged along the outer periphery of the second rotating disk, a first fixing pin arranged in a telescopic and movable manner in the rotating seat, and a second fixing pin arranged in a telescopic and movable manner in the rotating seat;
[0019] The rotating seat is provided with a first telescopic groove and a second telescopic groove along the circumferential direction of the placement cavity; the first fixing pin is arranged in a telescopic and movable manner in the first telescopic groove; a first tension spring is provided between the first fixing pin and the bottom wall of the first telescopic groove; the first fixing pin is used for being clamped with the first fixing groove; the second fixing pin is arranged in a telescopic and movable manner in the second telescopic groove; a second tension spring is provided between the second fixing pin and the bottom wall of the second telescopic groove; the second fixing pin is used for being clamped with the second fixing groove.
[0020] The present invention is further configured such that a first permanent magnet is provided at one end of the first fixing pin close to the bottom wall of the first telescopic groove; a second permanent magnet is provided at one end of the second fixing pin close to the bottom wall of the second telescopic groove;
[0021] A driving cavity is provided in the middle of the driving seat; the rotating seat is rotatably arranged in the driving cavity; a third permanent magnet is provided on the inner wall of the driving cavity; the magnetic pole directions of the first permanent magnet, the second permanent magnet, and the third permanent magnet are the same.
[0022] The present invention is further configured such that the linkage assembly includes an annular groove provided along the circumference on the inner wall of the driving cavity and a linkage pin telescopically and movably arranged on the outer wall of the rotating seat;
[0023] A plurality of limiting grooves are provided in the annular groove; one end of the limiting groove is provided with an inclined surface; the other end of the limiting groove is provided with a blocking step; the linkage pin is movably arranged in the annular groove.
[0024] The present invention is further configured such that ratchet teeth are provided on the outer wall of the driving seat; a ratchet pawl cooperating with the ratchet teeth is provided on the mounting seat.
[0025] The beneficial effects of the present invention: By rotating the rotating seat, when the rotating seat drives the first rotating disc to rotate, the first rotating disc can drive the solar panel to rotate through the driving assembly; when the rotating seat drives the second rotating disc to rotate, the second rotating disc can drive the solar panel to swing through the driving assembly; in this embodiment, only one driving member is needed to rotate the rotating seat, that is, the functions of rotating and swinging of the solar panel can be realized, effectively saving costs. Description of the Drawings
[0026] The invention is further illustrated by the accompanying drawings, but the embodiments in the drawings do not constitute any limitation to the present invention. For those of ordinary skill in the art, other drawings can also be obtained according to the following drawings without creative efforts.
[0027] Figure 1 is a schematic structural diagram of the present invention;
[0028] Figure 2 is a schematic structural diagram of the solar module of the present invention;
[0029] Figure 3 is a schematic structural diagram of the solar module of the present invention from another perspective;
[0030] Figure 4 is a cross-sectional view of the solar module of the present invention after hiding the solar panel;
[0031] Figure 5 is a schematic structural diagram of the cooperation of the mounting seat, the driving seat, and the rotating seat of the present invention;
[0032] Figure 6 is a sectional view of the cooperation among the mounting base, the driving base and the rotating base of the present invention;
[0033] Figure 7 is an exploded view of the structure of the cooperation among the mounting base, the driving base and the rotating base of the present invention;
[0034] Wherein: 1. Water purification device body; 11. Mounting plate; 12. Solar module; 2. Solar panel; 21. Bracket; 3. Mounting base; 31. Connecting column; 32. Pawl; 4. Driving base; 41. Driving cavity; 42. Third permanent magnet; 43. Annular groove; 44. Limiting groove; 45. Inclined surface; 46. Blocking step; 47. Ratchet teeth; 5. Rotating base; 51. Placing cavity; 52. First telescopic groove; 53. First fixing pin; 54. First tension spring; 55. First permanent magnet; 56. Second telescopic groove; 57. Second fixing pin; 58. Second tension spring; 59. Second permanent magnet; 50. Linking pin; 6. First rotating disc; 61. First fixing groove; 7. Second rotating disc; 71. Sleeve; 72. Connecting rod; 73. First connecting arm; 74. Second connecting arm; 75. Link; 76. Torsion spring; 77. Second fixing groove; 81. First bevel gear; 82. Second bevel gear; 83. Third bevel gear; 84. Fourth bevel gear; 85. One-way bevel gear. Specific embodiments
[0035] The present invention will be further described in conjunction with the following embodiments.
[0036] As Figures 1 to 7 can be seen, a solar integrated water purification station for multi-scenario applications described in this embodiment includes a water purification device body 1; a mounting plate 11 is provided at the top of the water purification device body 1; a plurality of solar modules 12 are provided on the mounting plate 11;
[0037] The solar module 12 includes a solar panel 2, a mounting base 3 provided on the mounting plate 11, a driving base 4 rotatably provided on the mounting base 3, and a rotating base 5 rotatably provided on the driving base 4; a linkage assembly is provided between the rotating base 5 and the driving base 4; wherein the rotating base 5 is connected with a driving member, and the driving member can be a motor for driving the rotating base 5 to rotate, and the driving member is not drawn in the figure;
[0038] A first rotating disc 6 and a second rotating disc 7 are rotatably provided in the middle of the mounting base 3; a driving assembly is provided between the first rotating disc 6, the second rotating disc 7 and the solar panel 2.
[0039] Specifically, for the solar integrated water purification station for multi-scenario applications described in this embodiment, by providing a mounting plate 11 at the top of the water purification device body 1 and providing a plurality of solar modules 12 on the mounting plate 11, solar energy can be effectively utilized;
[0040] In addition, in this embodiment, by rotating the rotating base 5, when the rotating base 5 drives the first rotating disk 6 to rotate, the first rotating disk 6 can drive the solar panel 2 to rotate through the driving assembly; when the rotating base 5 drives the second rotating disk 7 to rotate, the second rotating disk 7 can drive the solar panel 2 to swing through the driving assembly; in this embodiment, only one driving member is required to rotate the rotating base 5, that is, the functions of rotating and swinging the solar panel 2 can be realized, effectively saving costs.
[0041] For a solar integrated water purification station with multi-scenario applications in this embodiment, the driving assembly includes a first bevel gear 81, a second bevel gear 82, a third bevel gear 83, a fourth bevel gear 84 and a one-way bevel gear 85; the first bevel gear 81 and the one-way bevel gear 85 are arranged on the same axis; the second bevel gear 82 is vertically meshed with the first bevel gear 81; the third bevel gear 83 is vertically meshed with the second bevel gear 82; the fourth bevel gear 84 is vertically meshed with the one-way bevel gear 85; a connecting rod 75 is arranged between the third bevel gear 83 and the fourth bevel gear 84; the first bevel gear 81 is connected to the first rotating disk 6; the third bevel gear 83 is connected to the solar panel 2. For a solar integrated water purification station with multi-scenario applications in this embodiment, a sleeve 71 is provided at the top of the second rotating disk 7; opposite first connecting arm 73 and second connecting arm 74 are provided at the top of the sleeve 71; the second bevel gear 82 is rotatably arranged on the first connecting arm 73; a bracket 21 is arranged between the third bevel gear 83 and the solar panel 2; one end of the connecting rod 75 is rotatably connected to the bracket 21; the fourth bevel gear 84 is rotatably arranged at the other end of the connecting rod 75; the middle of the connecting rod 75 is hinged to the second connecting arm 74. For a solar integrated water purification station with multi-scenario applications in this embodiment, a coil spring 76 is arranged between the other end of the connecting rod 75 and the fourth bevel gear 84. For a solar integrated water purification station with multi-scenario applications in this embodiment, a connecting column 31 is provided in the middle of the mounting base 3; the connecting column 31 passes through the first rotating disk 6 and the first bevel gear 81; the one-way bevel gear 85 is rotatably arranged at the top of the connecting column 31; a connecting rod 72 is provided at the top of the sleeve 71; the connecting rod 72 is rotatably arranged on the connecting column 31.
[0042] Specifically, in the solar integrated water purification station for multi-scenario applications described in this embodiment, when the first rotating disk 6 rotates, the first rotating disk 6 drives the first bevel gear 81 to rotate, and the first bevel gear 81 drives the second bevel gear 82 to rotate. Since a coil spring 76 is provided between the other end of the connecting rod 75 and the fourth bevel gear 84, the fourth bevel gear 84 cannot rotate against the action of the coil spring 76 at this time. Therefore, when the second bevel gear 82 rotates, it can drive the third bevel gear 83 to rotate along its own axis, and then drive the solar panel 2 to rotate around the axis of the third bevel gear 83 through the bracket 21;
[0043] When the second rotating disk 7 rotates, the second rotating disk 7 drives the first connecting arm 73 and the second connecting arm 74 to rotate around the axis of the one-way bevel gear 85 through the sleeve 71. Since the fourth bevel gear 84 is vertically meshed with the one-way bevel gear 85 and the one-way bevel gear 85 cannot rotate at this time, when the second connecting arm 74 rotates around the axis of the one-way bevel gear 85, the fourth bevel gear 84 can rotate along its own axis. During the process of the fourth bevel gear rotating along its own axis, the hinge joint between the middle of the connecting rod 75 and the second connecting arm 74 rotates, and then drives the solar panel 2 to swing around the axis of the fourth bevel gear through the bracket 21.
[0044] A solar integrated water purification station for multi-scenario applications according to this embodiment, a placement cavity 51 is provided in the middle of the rotating seat 5; the first rotating disk 6 and the second rotating disk 7 are rotatably arranged in the placement cavity 51; a locking component is provided between the rotating seat 5, the first rotating disk 6 and the second rotating disk 7. A solar integrated water purification station for multi-scenario applications according to this embodiment, the locking component includes a plurality of first fixing grooves 61 arranged along the outer periphery of the first rotating disk 6, a plurality of second fixing grooves 77 arranged along the outer periphery of the second rotating disk 7, a first fixing pin 53 arranged in the rotating seat 5 in a telescopic and movable manner, and a second fixing pin 57 arranged in the rotating seat 5 in a telescopic and movable manner; the rotating seat 5 is provided with a first telescopic groove 52 and a second telescopic groove 56 along the circumferential direction of the placement cavity 51; the first fixing pin 53 is telescopically and movably arranged in the first telescopic groove 52; a first tension spring 54 is provided between the first fixing pin 53 and the bottom wall of the first telescopic groove 52; the first fixing pin 53 is used for clamping with the first fixing groove 61; the second fixing pin 57 is telescopically and movably arranged in the second telescopic groove 56; a second tension spring 58 is provided between the second fixing pin 57 and the bottom wall of the second telescopic groove 56; the second fixing pin 57 is used for clamping with the second fixing groove 77. A solar integrated water purification station for multi-scenario applications according to this embodiment, a first permanent magnet 55 is provided at one end of the first fixing pin 53 close to the bottom wall of the first telescopic groove 52; a second permanent magnet 59 is provided at one end of the second fixing pin 57 close to the bottom wall of the second telescopic groove 56; a driving cavity 41 is provided in the middle of the driving seat 4; the rotating seat 5 is rotatably arranged in the driving cavity 41; a third permanent magnet 42 is provided on the inner wall of the driving cavity 41; the magnetic pole directions of the first permanent magnet 55, the second permanent magnet 59 and the third permanent magnet 42 are the same. A solar integrated water purification station for multi-scenario applications according to this embodiment, the linkage component includes an annular groove 43 arranged along the circumferential direction on the inner wall of the driving cavity 41 and a linkage pin 50 arranged on the outer wall of the rotating seat 5 in a telescopic and movable manner; a plurality of limiting grooves 44 are provided in the annular groove 43; one end of the limiting groove 44 is provided with an inclined surface 45; the other end of the limiting groove 44 is provided with a blocking step 46; the linkage pin 50 is movably arranged in the annular groove 43. A solar integrated water purification station for multi-scenario applications according to this embodiment, a ratchet tooth 47 is provided on the outer wall of the driving seat 4; the mounting seat 3 is provided with a ratchet pawl 32 cooperating with the ratchet tooth 47.
[0045] Specifically, in the solar integrated water purification station for multi-scenario applications according to this embodiment, under the action of the first tension spring 54 and the second tension spring 58, the first fixing pin 53 retracts into the first telescopic groove 52, and the second fixing pin 57 retracts into the second telescopic groove 56; at this time, when the rotating seat 5 rotates, it cannot drive the first rotating disk 6 and the second rotating disk 7 to rotate.
[0046] When the rotating seat 5 rotates clockwise, under the engagement of the ratchet teeth 47 and the pawl 32, the driving seat 4 and the mounting seat 3 form an integral structure. When the rotating seat 5 rotates clockwise, when the linkage pin 50 moves to the limiting groove 44, it can re-enter the annular groove 43 through the inclined surface 45. That is to say, when the rotating seat 5 rotates clockwise, the rotating seat 5 always rotates relative to the driving seat 4.
[0047] When the rotating seat 5 rotates clockwise, when the first permanent magnet 55 is aligned with the third permanent magnet 42, at this time the linkage pin 50 just drops into one of the limiting grooves 44, and the magnetic directions of the first permanent magnet 55 and the third permanent magnet 42 are the same, so that the first fixing pin 53 overcomes the action of the first tension spring 54 and extends into the placement cavity 51 and is engaged with the first fixing groove 61 of the first rotating disk 6; at this time, driving the rotating seat 5 to rotate reversely, due to the action of the blocking step 46, when the rotating seat 5 rotates reversely, the rotating seat 5 drives the driving seat 4 to rotate synchronously, and the ratchet teeth 47 and the pawl 32 do not hinder the rotation of the driving seat 4. During the process that the rotating seat 5 drives the driving seat 4 to rotate synchronously, the relative positions between the first permanent magnet 55 and the third permanent magnet 42 do not change. That is to say, when the rotating seat 5 rotates reversely, it can drive the driving seat 4 and the first rotating disk 6 to rotate reversely synchronously to drive the solar panel 2 to rotate around the axis of the third bevel gear 83.
[0048] When it is necessary to drive the second rotating disk 7 to rotate, only need to rotate the driving seat 4 clockwise again to make the third permanent magnet 42 away from the first permanent magnet 55, and under the action of the first tension spring 54, the first fixing pin 53 retracts into the first telescopic groove 52 again; until the rotating seat 5 rotates to the position where the second permanent magnet 59 is aligned with the third permanent magnet 42, at this time the linkage pin 50 just drops into one of the limiting grooves 44, and the magnetic directions of the second permanent magnet 59 and the third permanent magnet 42 are the same, so that the second fixing pin 57 overcomes the action of the second tension spring 58 and extends into the placement cavity 51 and is engaged with the second fixing groove 77 of the second rotating disk 7; at this time, driving the rotating seat 5 to rotate reversely, due to the action of the blocking step 46, when the rotating seat 5 rotates reversely, the rotating seat 5 drives the driving seat 4 to rotate synchronously, and the ratchet teeth 47 and the pawl 32 do not hinder the rotation of the driving seat 4. During the process that the rotating seat 5 drives the driving seat 4 to rotate synchronously, the relative positions between the second permanent magnet 59 and the third permanent magnet 42 do not change. That is to say, when the rotating seat 5 rotates reversely, it can drive the driving seat 4 and the second rotating disk 7 to rotate reversely synchronously to drive the solar panel 2 to swing around the axis of the fourth bevel gear 84.
[0049] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than limiting the protection scope of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the essence and scope of the technical solutions of the present invention.
Claims
1. A solar integrated water purification station for multi-scenario applications, characterized by: It comprises a water purification device body; a mounting plate is provided on the top of the water purification device body; and a plurality of solar modules are provided on the mounting plate; The solar module comprises a solar panel, a mounting seat arranged on the mounting plate, a driving seat rotatably arranged on the mounting seat, and a rotating seat rotatably arranged on the driving seat; a linkage assembly is arranged between the rotating seat and the driving seat; A first rotating disk and a second rotating disk are rotatably disposed in the middle of the mounting seat; a driving assembly is disposed between the first rotating disk, the second rotating disk and the solar panel; A placement cavity is provided in the middle of the rotating seat; the first rotating disk and the second rotating disk are rotatably disposed in the placement cavity; A locking assembly is provided between the rotating seat, the first rotating disk and the second rotating disk; The locking assembly includes a plurality of first fixing grooves arranged along the outer circumference of the first rotating disk, a plurality of second fixing grooves arranged along the outer circumference of the second rotating disk, a first fixing pin telescopically arranged on the rotating seat, and a second fixing pin telescopically arranged on the rotating seat; The rotating seat is provided with a first telescopic slot and a second telescopic slot along the circumferential direction of the placement cavity; the first fixing pin is telescopically arranged in the first telescopic slot; a first tension spring is arranged between the first fixing pin and the bottom wall of the first telescopic slot; the first fixing pin is used to be clamped with the first fixing slot; the second fixing pin is telescopically arranged in the second telescopic slot; a second tension spring is arranged between the second fixing pin and the bottom wall of the second telescopic slot; the second fixing pin is used to be clamped with the second fixing slot; A first permanent magnet is disposed at one end of the first fixing pin close to the bottom wall of the first telescopic slot; a second permanent magnet is disposed at one end of the second fixing pin close to the bottom wall of the second telescopic slot; A driving cavity is provided in the middle of the driving seat; the rotating seat is rotatably arranged in the driving cavity; A third permanent magnet is disposed on the inner wall of the driving cavity; the magnetic pole directions of the first permanent magnet, the second permanent magnet and the third permanent magnet are the same.
2. According to the multi-scenario application solar integrated water purification station of claim 1, it is characterized by: The driving assembly includes a first bevel gear, a second bevel gear, a third bevel gear, a fourth bevel gear and a one-way bevel gear; The first bevel gear and the one-way bevel gear are arranged on the same axis; the second bevel gear is vertically meshed with the first bevel gear; the third bevel gear is vertically meshed with the second bevel gear; the fourth bevel gear is vertically meshed with the one-way bevel gear; a connecting rod is arranged between the third bevel gear and the fourth bevel gear; The first bevel gear is connected to the first rotating disk; the third bevel gear is connected to the solar panel.
3. According to the multi-scenario application solar integrated water purification station of claim 2, it is characterized by: A sleeve is provided on the top of the second rotating disk; a first connecting arm and a second connecting arm are provided on the top of the sleeve which are arranged opposite to each other; the second bevel gear is rotatably arranged on the first connecting arm; a bracket is provided between the third bevel gear and the solar panel; one end of the connecting rod is rotatably connected to the bracket; the fourth bevel gear is rotatably arranged on the other end of the connecting rod; and the middle part of the connecting rod is hinged to the second connecting arm.
4. According to claim 3, a solar integrated water purification station for multiple scenarios is characterized in that: A coil spring is arranged between the other end of the connecting rod and the fourth bevel gear.
5. According to claim 3, a solar integrated water purification station for multiple scenarios is characterized by: A connecting column is provided in the middle of the mounting seat; the connecting column penetrates the first rotating disk and the first bevel gear; the one-way bevel gear is rotatably arranged on the top of the connecting column; A connecting rod is provided on the top of the sleeve; the connecting rod is rotatably arranged on the connecting column.
6. The solar integrated water purification station for multiple scenarios according to claim 1 is characterized by: The linkage assembly comprises an annular groove arranged on the inner wall of the driving cavity along the circumferential direction and a linkage pin telescopically arranged on the outer wall of the rotating seat; The annular groove is provided with a plurality of limiting grooves; one end of the limiting groove is provided with an inclined surface; the other end of the limiting groove is provided with a blocking step; and the linkage pin is movably arranged in the annular groove.
7. The solar integrated water purification station for multiple scenarios according to claim 1 is characterized by: The outer wall of the driving seat is provided with ratchet teeth; the mounting seat is provided with a pawl matched with the ratchet teeth.
Citation Information
Patent Citations
Single-motor two-degree-of-freedom light following type solar heat collector and heat collecting method thereof
CN112556207A