Photovoltaic panel transfer device

By designing a photovoltaic panel transfer device, which utilizes bolts and a winch system to achieve sliding transfer of the panels, the problem of efficient and labor-saving secondary handling of photovoltaic panels in complex terrain is solved, reducing the labor intensity of workers and improving installation efficiency.

CN117566438BActive Publication Date: 2026-03-27POWERCHINA JIANGXI ELECTRIC POWER ENGINEERING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-12
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In complex terrain, the secondary handling of photovoltaic panels increases the labor intensity of workers and affects installation efficiency.

Method used

A photovoltaic panel transfer device was designed, including a support body, a fixed base, a tail distance fixing component, a support and guiding component, and a transfer component. The device utilizes a bolt and winch system to achieve the sliding transfer of the solar panels, and can be driven by electricity or manually to adapt to different terrains.

Benefits of technology

It reduces the labor intensity of workers, improves transfer efficiency, and can be folded up when not in use, taking up little space and facilitating storage and transportation.

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Abstract

The application relates to the technical field of photovoltaic panel transfer, in particular to a photovoltaic panel transfer device which comprises two support bodies, the support bodies are oppositely arranged, a shaft one is arranged through the support bodies, and the device further comprises: a fixed seat one which is oppositely fixed at the bottom of the support body and is divided into two layers, the fixed seat one is provided with screw holes on the upper layer; a plurality of bolts one are arranged on the fixed seat, the bolts one and the screw holes are in correspondence, and the device is different from the prior art, the device can select the manual pushing of the first embodiment or the electric driving of the second embodiment according to the actual installation environment, only single installation is needed, when the battery panel and other components are transferred for the second time, the components can directly slide on the ropes, the labor intensity of workers is greatly reduced, and the transfer efficiency is improved; when the device is not used, the device can be contracted together, the land occupation is small, and the device is convenient to store and transport.
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Description

TECHNICAL FIELD

[0001] The application relates to a photovoltaic panel transfer device. BACKGROUND

[0002] The photovoltaic power generation panel is a device for converting solar energy into electric energy, which mainly absorbs light energy by irradiating the surface of the power generation panel with sunlight.

[0003] The photovoltaic power generation is not limited by the distribution of resources and can be applied to various complex terrains such as deserts, gobi and hills. With the development and promotion of environmental protection energy at home and abroad, many wastelands are fully utilized, and clean, green and efficient methods are used to generate electric energy. Photovoltaic power generation is more and more widely used.

[0004] However, in the actual application process, due to the complex terrain of the mountain, the battery panel and other components need to be transported twice, for example, a part of the battery panel is hoisted at the first installation site, and after the installation at the first installation site is completed, the installation on the mountain top also needs to be carried out. At this time, the workers need to manually carry the battery panel to the top of the mountain, and then install it. This process greatly increases the labor intensity of the workers and affects the overall installation efficiency. Therefore, we propose a photovoltaic panel transfer device. SUMMARY

[0005] One of the technical problems solved by the present application is how to quickly and easily transport the battery panel twice.

[0006] To solve the above technical problems, the present application provides a photovoltaic panel transfer device, which comprises a support body, the support body has two, and is oppositely arranged, a shaft one is installed between the support bodies, and further comprises:

[0007] A fixed seat one is fixed on the bottom of the support body and is divided into two layers, and a screw hole is arranged on the fixed seat one;

[0008] A plurality of bolts one are installed on the fixed seat one, and the bolts one correspond to the screw holes;

[0009] A tail distance fixing component is arranged on the ground, and the tail distance fixing component limits the distance between the transfer paths;

[0010] A support guide component is arranged on the ground and connected with the shaft one and the tail distance fixing component, the support guide component supports the middle part of the transfer path, and the battery panel is not hindered when passing through;

[0011] A transfer component is mounted on the shaft one and connected with the tail distance fixing component and the support guiding component, the transfer component provides a transfer track for the battery plate transfer, and the battery plate can slide on the track.

[0012] In some embodiments, the tail distance fixing component includes a gantry arranged on the ground, the two feet of the gantry are fixed with fixing seats two, the fixing seats two are provided with bolts two, and the fixing seats two are provided with threads corresponding to the bolts two.

[0013] In some embodiments, the support guiding component includes supports arranged between the support body and the gantry, the supports are provided with a plurality of groups, the supports include support seats oppositely arranged on the ground, the bottom of the support seat is provided with a fixing rod, the fixing rod connects the two support seats, the support seat is provided with two guiding cavities, the shaft two is oppositely arranged in the guiding cavities, the roller one is sleeved on the shaft two, the roller one is arranged in an up-down manner, the guiding wheel is oppositely arranged in the guiding cavity, the guiding wheel is provided with two groups, the middle part of the guiding wheel and the both end parts of the roller one are provided with sliding grooves, the belt is arranged in the sliding groove, the belt is in contact with the sliding groove, and the belt is in a quadrilateral shape, the support seat is provided with feet fixed on the ground.

[0014] In some embodiments, the width of the belt is large, the sliding grooves are correspondingly arranged, and the top end of the belt is higher than the top end of the support seat.

[0015] In some embodiments, the transfer component includes winches one fixed on the shaft one, the winches one are provided with a plurality of groups and are penetrated by the shaft one, the winches one are wound with ropes one, the gantry is fixed with limit rings, the limit rings are provided with a plurality of groups, one end of the rope one is fixed on the winch one, the other end penetrates the gap between the rollers one, and the top end is provided with a thimble, the thimble is sleeved on the limit ring, one end of the shaft one is provided with a rotating disc, the rotating disc is provided with a handle, and the limit piece is arranged on the shaft one.

[0016] In some embodiments, the limit piece includes limit discs oppositely arranged on both sides of the shaft one, the limit discs are provided with limit holes, the limit holes are provided with a plurality of groups and are arranged in a ring shape, the limit rod is penetrated and arranged on the support body, and the limit rod is positionally corresponding to the limit hole.

[0017] In some embodiments, the transfer component includes winches two fixed on the shaft one, the winches two are provided with a plurality of groups and are penetrated by the shaft one, the support body is provided with a shaft three, the shaft three is provided with a winch three, the gantry is fixed with bearings, and the bearings are provided with a plurality of groups.

[0018] The fixed frame is provided with shaft four penetratingly and oppositely, and the roller two is sleeved on the shaft four;

[0019] The rope two is wound on the capstan two, one end of the rope two is located on the capstan two, the other end passes through the gap between the rollers one, then passes around the bearing, passes through the gap between the rollers two, and is located on the capstan three;

[0020] The support body is provided with a limiting seat, the motor is installed on the limiting seat, and the motor driving shaft is fixed with the shaft one;

[0021] The fixed part installed on the capstan two and the capstan three and the butt joint part installed on the two ends of the rope are further included.

[0022] In some embodiments, the fixed part includes a limiting frame installed on the capstan two and the capstan three, the limiting frame is provided with a screw penetratingly and oppositely, the limiting frame is provided with a thread corresponding to the screw, and the screw corresponds to the first section and the tail section of the rope two, respectively.

[0023] In some embodiments, the butt joint part includes a sleeve fixed at the top end of the rope two, the sleeve is provided with a rotating rod, the tail end of the rope two is fixed with an internally threaded cylinder, and the rotating rod is provided with a thread corresponding to the rotating rod.

[0024] In some embodiments, the rollers one and the rollers two are in the shape of hourglass, and the rope one and the rope two are clamped in a half-wrapped manner.

[0025] The device can select manual pushing of embodiment one or electric driving of embodiment two according to the actual installation environment, only needs single installation, and when components such as a battery plate are transported again, the components can slide on the rope, the labor intensity of workers is greatly reduced, and the transportation efficiency is improved.

[0026] When the device is not used, it can be contracted together, occupies less space, and is convenient to store and transport. DETAILED DESCRIPTION

[0027] Figure 1 It is a whole structure schematic view of embodiment 1 of the application.

[0028] Figure 2 It is a front view structure schematic view of embodiment 1 of the application.

[0029] Figure 3 It is a structure schematic view of A in the application. Figure 2

[0030] Figure 4 It is a structure schematic view of B in the application. Figure 2 ​​

[0031] Figure 5 Structure diagram of the present application at C; Figure 2

[0032] Figure 6 Structure diagram of the present application at D; Figure 2

[0033] Figure 7 Structure diagram of the present application at E;

[0034] Figure 8 Structure diagram of the present application at F; Figure 7

[0035] Figure 9 Structure diagram of the present application at G;

[0036] Figure 10 Structure diagram of the present application at H; Figure 9

[0037] Figure 11 Structure diagram of the present application at I. Figure 9

[0038] In the figure: 1- support body; 11- shaft one; 12- fixed seat one; 13- bolt one; 2- tail distance fixing part; 21- gantry; 22- fixed seat two; 23- bolt two; 3- support guide part; 30- support; 301- support seat; 302- fixed rod; 303- guide cavity; 304- shaft two; 305- roller one; 306- guide wheel; 307- sliding slot; 308- belt; 309- support leg; 4- transfer part; 41- winch one; 42- rope one; 43- limiting ring; 44- sleeve ring; 45- rotating disc; 46- rotating handle; 47- limiting part; 471- limiting disc; 472- limiting hole; 473- limiting rod; 401- winch two; 402- shaft three; 403- winch three; 404- bearing; 405- fixed frame; 406- shaft four; 407- roller two; 408- rope two; 409- limiting seat; 4010- motor; 50- fixing part; 501- limiting frame; 502- screw; 51- butt joint; 511- sleeve; 512- rotating rod; 513- internal thread cylinder. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application.

[0040] Embodiment 1​​​​​

[0041] Please refer to Figures 1-8 The application provides a technical scheme: a photovoltaic panel transfer device, comprising two support bodies 1, which are oppositely arranged, and a shaft 11 penetratingly arranged between the support bodies 1, and further comprising:

[0042] a fixed seat 12, which is fixed to the bottom of the support body 1 and is divided into two layers, and has screw holes on the upper layer;

[0043] a plurality of bolts 13, which are arranged on the fixed seat 12 and correspond to the screw holes;

[0044] a tail distance fixing component 2, which is arranged on the ground and limits the distance between the transfer paths;

[0045] a support guiding component 3, which is arranged on the ground and connected with the shaft 11 and the tail distance fixing component 2, supports the middle part of the transfer path, and prevents the battery panel from being hindered when passing through;

[0046] a transfer component 4, which is arranged on the shaft 11 and connected with the tail distance fixing component 2 and the support guiding component 3, provides a transfer track for the battery panel transfer, and the battery panel can slide on the track.

[0047] The tail distance fixing component 2 comprises a portal frame 21 arranged on the ground, and a plurality of fixed seats 22 fixed on the two legs 309 of the portal frame 21, wherein the fixed seats 22 are penetratingly arranged with a plurality of bolts 23, and the fixed seats 22 are provided with screw threads corresponding to the bolts 23.

[0048] The staff places the support body 1 at the place where the battery panel is stored, then rotates the bolts 13 by using an electric bolt gun, fixes the support body 1 to the ground through the fixed seat 12, and designs the upper and lower layers of the fixed seat so that the sharp heads of the bolts 13 are located in the middle position when the support body 1 is transported, and the staff will not be injured, then arranges the portal frame 21 at the destination of the secondary transfer, and fixes the portal frame 21 by using the same method to drive the bolts 23.

[0049] The support guide component 3 comprises a plurality of support pieces 30 arranged between the support body 1 and the gantry 21, the support piece 30 comprises a support base 301 arranged oppositely on the ground, the bottom of the support base 301 is provided with a fixed rod 302, the fixed rod 302 connects the two support bases 301, the support base 301 is provided with two guide cavities 303, the guide cavity 303 is provided with a shaft 304 oppositely, the shaft 304 is provided with a roller 305, the roller 305 is arranged oppositely, and the roller 305 is provided with a guide wheel 306 arranged oppositely in the guide cavity 303, the guide wheel 306 has two groups, the middle part of the guide wheel 306 and the two end parts of the roller 305 are provided with a sliding groove 307, and the sliding groove 307 is provided with a belt 308, the belt 308 is attached to the sliding groove 307, and the belt 308 is a quadrilateral, and the support base 301 is provided with a supporting leg 309 fixed to the ground.

[0050] According to the terrain, the support piece 30 is arranged at a suitable position, so that the battery plate is supported during transportation, and the downward drop is not too large, when the battery passes through the support piece 30, the battery plate passes through the top end of the belt 308, the belt 308 rotates to drive the roller 305 and the guide wheel 306 to rotate, the belt 308 forms a circulating rotating state, the battery plate can smoothly pass through the top end of the belt 308, and the fixing mode of the supporting leg 309 and the ground is the same as that of the gantry 21 and the support body 1, so it is not described in detail.

[0051] The width of the belt 308 is large, the sliding groove 307 is correspondingly arranged, and the top end of the belt 308 is higher than the top end of the support base 301.

[0052] The wide belt increases the contact area of the belt 308 and the battery plate, and when the battery plate passes through the belt 308, it is more stable, and the top end of the belt 308 is higher than the top end of the support base 301, so that when the battery plate passes through the support base 301, the battery plate only contacts the belt 308, and is not easy to deviate.

[0053] The transportation component 4 comprises a plurality of winches 41 fixed on the shaft 11, the winches 41 are penetrated by the shaft 11, the winches 41 are wound with a plurality of ropes 42, the gantry 21 is fixed with a plurality of limiting rings 43, one end of the rope 42 is fixed on the winch 41, the other end penetrates the gap between the rollers 305, and the top end is provided with a sleeve ring 44, the sleeve ring 44 is sleeved on the limiting ring 43, one end of the shaft 11 is fixed with a rotating disc 45, the rotating disc 45 is fixed with a handle 46, and the limiting piece 47 is arranged on the shaft 11.

[0054] The limiting ring 43 is fixedly connected with the portal frame 21. When the staff sets the position of the portal frame 21, with the movement of the portal frame 21, the sleeve ring 44 sleeved on the portal frame 21 moves synchronously with the portal frame 21, thereby releasing the rope 42 of the winch 41, the winch 41 rotates synchronously with the portal frame 21, and other winches 41 are driven to move synchronously through the shaft 11. When the position of the portal frame 21 is fixed, the rotary knob 46 is rotated, the rotary knob 46 drives the shaft 11 to rotate in the opposite direction through the rotary disc 45, the rope 42 is recovered, the rope 42 between the portal frame 21 and the support main body 1 is in a taut state, and thus the solar cell panel can slide on the rope 42.

[0055] The limiting member 47 comprises limiting discs 471 oppositely installed on both sides of the shaft 11, limiting holes 472 are formed in the limiting discs 471, the limiting holes 472 are a plurality of annular arrays, and the limiting member 47 further comprises a limiting rod 473 installed through the support main body 1, the limiting rod 473 is positionally corresponding to the limiting holes 472.

[0056] After the rope 42 is in the taut state, the limiting rod 473 is inserted into the limiting hole 472, at this time, the limiting disc 471 cannot rotate, the shaft 11 fixedly connected with the limiting disc 471 cannot rotate synchronously, at this time, the position of the rope 42 is simultaneously limited and always in the taut state.

[0057] The working principle of embodiment 1 is as follows: the staff places the support body 1 in the battery plate storage place, then rotates the bolt 13 through the electric bolt gun, fixes the support body 1 to the ground through the fixing seat 12, then sets the portal frame 21 at the destination of the secondary transfer, and in the moving process of the portal frame 21, the loop 44 sleeved on the portal frame 21 moves synchronously with the portal frame 21, so as to release the rope 42 of the winch 41, the winch 41 rotates synchronously with the portal frame 21, the other winches 41 are driven to move synchronously through the shaft 11, so that the track formed by the rope between the portal frame 21 and the support body 1 is formed, then the support pieces 30 are arranged at appropriate positions in the same fixing manner according to the local terrain, so that the battery plate is supported during the transfer, the rope 42 does not fall too much in the middle of the way, a complete sliding path is formed, then the rotation knob 46 is rotated to shrink the rope 42, so that the rope 42 is in a tight state, then the limiting rod 473 is inserted into the limiting hole 472, the shaft 11 is limited, so that the winch cannot rotate, at this time, the rope 42 is always in a tight state, the staff only needs to place the battery plate on the rope 42 at the end of the support body 1, and stands in the middle position of the support body 1 to push or pull the battery plate, so that the battery plate can be easily slid on the rope 42, when the battery passes through the support piece 30, the roller 305 and the guide wheel 306 are rotated by the rotation of the belt 308, the belt 308 forms a circulating rotation state, and the battery plate can smoothly pass through the top end of the belt 308, so as to complete the whole process of the transfer, after the whole device is collected, the whole device is automatically tightened with the tightening of the rope, and the parts are tightly attached to each other, so that the occupied space is small.

[0058] Embodiment 2

[0059] Please refer to Figures 9-11 , on the basis of embodiment 1, another technical scheme of the transfer component 4 is provided:

[0060] The transfer component 4 comprises winches 401 fixed on the shaft 11, the winches 401 are penetrated by the shaft 11, the support body 1 is provided with a shaft 402, the shaft 402 is provided with a winch 403, the portal frame 21 is provided with a bearing 404, and the bearing 404 comprises a plurality of bearings;

[0061] The guide cavity 303 of the support seat 301 is provided with a fixing frame 405, the fixing frame 405 is provided with a shaft 406 penetrating through the fixing frame 405, and the shaft 406 is provided with a roller 407;

[0062] The winch two 401 is wound with the rope two 408, one end of the rope two 408 is located on the winch two 401, the other end passes through the gap between the roller one 305, then surrounds the bearing 404, passes through the gap between the roller two 407, is located on the winch three 403;

[0063] The support body 1 is installed with the limit seat 409, the motor 4010 is installed on the limit seat 409, the driving shaft of the motor 4010 is fixed with the shaft one 11;

[0064] Further comprising the fixed part 50 installed on the winch two 401 and the winch three 403 and the butt joint part 51 installed on the two ends of the rope.

[0065] The fixed part 50 comprises the limit frame 501 installed on the winch two 401 and the winch three 403, the screw 502 is installed on the limit frame 501, the limit frame 501 is provided with the screw thread corresponding with the screw 502, and the screw 502 corresponds with the first section and the tail section of the rope two 408 respectively.

[0066] The butt joint part 51 comprises the sleeve 511 fixed on the top end of the rope two 408, the sleeve 511 is installed with the rotating rod 512, the tail end of the rope two 408 is fixed with the internal thread cylinder 513, and the rotating rod 512 is provided with the screw thread corresponding therewith.

[0067] The roller one 305 and the roller two 407 are all hourglass-shaped, and the rope one 42 and the rope two 408 are half-wrapped and clamped.

[0068] The roller one 305 and the roller two 407 of the hourglass can wrap the rope one 42 and the rope two 408, do not affect the movement, and can further limit the position, prevent the rope one 42 and the rope two 408 from deviating in the process of transfer.

[0069] The working principle of embodiment 2 is as follows: the staff places the support body 1 in the place where the solar panels are stored, then rotates the bolt 13 through the electric bolt gun, fixes the support body 1 to the ground through the fixing seat 12, and then tightens the screws 502 on the winch two 401 and the winch three 403 downward, so as to fix the leading end and the trailing end of the rope two 408. The gantry 21 is arranged at the destination of the secondary transfer. In this state, during the movement of the gantry 21, the winch three 403 cannot rotate because it fixes the trailing end, and the winch two 401 rotates with the movement of the gantry 21, so as to release the rope two 408 wound on the winch two 401, so that the release length of the rope automatically adapts to the distance required for the transfer. After the gantry 21 is fixed, the motor 4010 is started, the motor 4010 drives the winch two 401 to rotate through the shaft one 11, so as to tighten the rope two 408. At this time, the screws 502 are rotated upward, so that the leading end and the trailing end of the rope two 408 are fixed, the rotating rod 512 at the leading end of the rope two 408 is rotated and screwed together with the inner threaded cylinder 513 at the trailing end of the rope two 408, so that the rope two 408 forms a closed loop. Then, the support pieces 30 are arranged at appropriate positions in the same fixed manner according to the local terrain, so that the solar panels are supported during the transfer, the rope two 408 will not drop too much in the middle of the way, and a complete sliding path is formed. Then, the motor 4010 is started, the motor 4010 drives the shaft one 11 to rotate, the shaft one 11 drives the winch two 401 to rotate, the winch two 401 drives the winch three 403 to rotate through the rope two 408, so that the rope two 408 rotates in the track. At this time, the staff only needs to place the solar panels on the rope two 408 at the end of the support body 1, stand in the middle position of the support body 1, and press the solar panels downward to increase the friction between the solar panels and the rope two 408, and further prevent the solar panels from deviating during the transportation. At this time, the solar panels will move with the rotation of the rope two 408. In this embodiment, the labor intensity of the staff is further reduced.

[0070] It should be noted that, in the present document, the terms such as first and second, etc. are used merely to differentiate one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Also, the terms "comprises", "comprising", or any other variant thereof are intended to cover non-exclusive inclusions, so that a process, method, article, or apparatus that comprises a list of elements does not only include those elements, but also includes other elements not explicitly listed, or inherent to such a process, method, article, or apparatus.

[0071] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A photovoltaic panel transfer device, comprising a support body (1), the support body (1) has two and is oppositely arranged, a shaft one (11) is installed through between the support body (1), characterized in that: Also include: The fixed seat one (12) is relatively fixed at the bottom of the support body (1), and is divided into two layers, the fixed seat one (12) is relatively started with screw hole; The bolt one (13) has several, and is installed on the fixed seat one (12), the bolt one (13) and screw hole are all corresponding; Tail distance fixing component (2), the tail distance fixing component (2) is arranged on the ground, the tail distance fixing component (2) limits the distance between the transfer path; Support guide component (3), the support guide component (3) is arranged on the ground, and is connected with shaft one (11) and tail distance fixing component (2), the support guide component (3) supports the middle part of the transfer path, and the battery plate is not hindered when passing through; The transfer component (4) is installed on the shaft one (11), and is connected with the tail distance fixing component (2) and the support guide component (3), the transfer component (4) provides the transfer track for the battery plate transfer, and the battery plate can slide on the track; The tail distance fixing component (2) includes a portal frame (21) arranged on the ground, the portal frame (21) is fixed with a fixed seat two (22) on both support legs (309), the fixed seat two (22) has several, and the bolt two (23) is installed through, the fixed seat two (22) is provided with screw threads corresponding to the bolt two (23); The support guide component (3) includes a support piece (30) arranged between the support body (1) and the portal frame (21), the support piece (30) has multiple groups, the support piece (30) includes a support seat (301) arranged oppositely on the ground, the support seat (301) is provided with a fixed rod (302) at the bottom, the fixed rod (302) connects the two support seats (301), the support seat (301) is provided with two guide cavities (303), the guide cavities (303) are oppositely provided with shafts two (304), the shafts two (304) are provided with rollers one (305), the rollers one (305) are arranged above and below, further including guide wheels (306) oppositely arranged in the guide cavities (303), the guide wheels (306) have two groups, the guide wheels (306) are provided with sliding grooves (307) in the middle part and both end parts of the rollers one (305), the sliding grooves (307) are provided with belts (308), the belts (308) are in contact with the sliding grooves (307), and are quadrilateral, the support seat (301) is provided with support legs (309) fixed on the ground; The transport component (4) includes winch one (41) fixed on shaft one (11), the winch one (41) has several, and is all penetrated by shaft one (11), the winch one (41) is all wound with rope one (42), the portal frame (21) is fixed with limiting ring (43), the limiting ring (43) has several, one end of the rope one (42) is fixed on the winch one (41), the other end is penetrated through the gap between the roller one (305), and the top end is installed with the thimble (44), the thimble (44) is sleeved on the limiting ring (43), one end of the shaft one (11) is fixed with the rotating disc (45), the rotating disc (45) is fixed with the handle (46), further including the limiting piece (47) installed on the shaft one (11).

2. The photovoltaic panel transport apparatus of claim 1, wherein: The width of the belt (308) is large, the chute (307) is correspondingly arranged, and the top end of the belt (308) is higher than the top end of the support base (301).

3. The photovoltaic panel transport apparatus of claim 1, wherein: The limiting piece (47) includes limiting discs (471) oppositely installed on both sides of the shaft one (11), limiting holes (472) are formed in the limiting discs (471), the limiting holes (472) have annular arrays, and limiting rods (473) are penetrated and installed on the support body (1), and the limiting rods (473) are positionally corresponding to the limiting holes (472).

4. The photovoltaic panel transport apparatus of claim 3, wherein: The transport component (4) includes winch two (401) fixed on shaft one (11), the winch two (401) has several, and is all penetrated by shaft one (11), the support body (1) is installed with shaft three (402), the shaft three (402) is installed with winch three (403), the portal frame (21) is fixed with bearing (404), the bearing (404) has several, The fixed frame (405) is installed in the guide cavity (303) of the support base (301), the shaft four (406) is penetrated and installed on the fixed frame (405) oppositely, and the roller two (407) is sleeved on the shaft four (406); The winch two (401) is wound with rope two (408), one end of the rope two (408) is located on the winch two (401), the other end is penetrated through the gap between the roller one (305), then surrounds the bearing (404), penetrates through the gap between the roller two (407), and is located on the winch three (403); The support body (1) is installed with limiting seat (409), the motor (4010) is installed on the limiting seat (409), and the driving shaft of the motor (4010) is fixed with the shaft one (11); Further including the fixed part (50) installed on the winch two (401) and the winch three (403) and the butt joint part (51) installed at both ends of the rope.

5. The photovoltaic panel transport apparatus of claim 4, wherein: The fixed part (50) includes limiting frame (501) installed on the winch two (401) and the winch three (403), the screw (502) is penetrated and installed on the limiting frame (501), the limiting frame (501) is provided with threads corresponding to the screw (502), and the screw (502) corresponds to the first section and the tail section of the rope two (408) respectively.

6. The photovoltaic panel transport apparatus of claim 4, wherein: The docking piece (51) comprises a sleeve (511) fixed at the top end of the second rope (408), a rotating rod (512) is installed in the sleeve (511), and an internally threaded cylinder (513) is fixed at the tail end of the second rope (408), and the rotating rod (512) is provided with corresponding threads.

7. The photovoltaic panel transport apparatus of claim 4, wherein: The roller one (305) and the roller two (407) are both hourglass-shaped, and the first rope (42) and the second rope (408) are clamped in a semi-wrapping manner.

Citation Information

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