Photovoltaic frame fixing assembly and photovoltaic assembly framing device
By designing a clamping and blocking mechanism for the photovoltaic frame fixing components, the problem of the photovoltaic frame tilting during the frame installation process was solved, achieving stable installation of photovoltaic modules and significantly reducing the scrap rate.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-03-24
AI Technical Summary
Existing framing machines cannot effectively secure the photovoltaic frame to prevent dust accumulation, causing it to easily tilt during the framing process and resulting in the failure of the photovoltaic modules.
A photovoltaic frame fixing component is designed, including a clamping mechanism and a stop mechanism. The clamping mechanism presses against the C-side of the photovoltaic frame, and the stop mechanism abuts against the D-side, ensuring that the photovoltaic frame remains stable during the framing process.
It effectively prevents the photovoltaic frame from tilting during the framing process, reducing the scrap rate of photovoltaic modules from 2000ppm to 200ppm.
Smart Images

Figure CN224037301U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic module technical field especially is related to a kind of photovoltaic frame fixing assembly and photovoltaic module frame device. BACKGROUND
[0002] Photovoltaic module is the core component of solar panel, responsible for converting sunlight into electrical energy.
[0003] Frame is the important step of manufacturing photovoltaic module, in prior art, the A surface of photovoltaic frame is placed on the frame machine platform, the C surface of photovoltaic frame is pressed by the pressing block above photovoltaic frame, so as to fix photovoltaic frame for frame.
[0004] The A surface width of anti-dust photovoltaic frame is 2.5mm-4mm, the A surface width of anti-dust photovoltaic frame is narrower than the A surface width of conventional photovoltaic frame.The existing frame machine cannot install anti-dust photovoltaic frame, because the A surface width of anti-dust photovoltaic frame is only 2.5mm-4mm, the contact area of the A surface of anti-dust photovoltaic frame with frame machine platform is too small, the width difference between the A surface and the C surface is too large, after the C surface of anti-dust photovoltaic frame is pressed by the pressing block, anti-dust photovoltaic frame is prone to skew, resulting in photovoltaic module being scrapped when frame. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of photovoltaic frame fixing assembly to solve the technical problem that photovoltaic frame is prone to skew after the C surface of photovoltaic frame is pressed by the pressing block in prior art.
[0006] The photovoltaic frame fixing assembly provided by the utility model includes pressing mechanism and stop piece mechanism;
[0007] The pressing mechanism includes pressing piece, the pressing piece can move towards or away from the C surface of photovoltaic frame, so that the pressing piece is pressed with the C surface of photovoltaic frame;
[0008] The stop piece mechanism includes stop piece, the stop piece can move towards or away from the D surface of photovoltaic frame, so that the stop piece is in contact with the D surface of photovoltaic frame.
[0009] Further, the pressing mechanism further includes first driving piece, the first driving piece is connected with the pressing piece, and the first driving piece can drive the pressing piece to lift;
[0010] The stop piece is rotationally connected with the pressing piece, and the stop piece can rotate towards or away from the D surface of photovoltaic frame.
[0011] Further, the stop piece mechanism further includes second driving piece, the second driving piece is connected with the stop piece, and the second driving piece can drive the stop piece to rotate towards or away from the D surface of photovoltaic frame.
[0012] Further, the pressing mechanism further comprises a first driving member, the first driving member is connected with the pressing member, and the first driving member can drive the pressing member to lift or lower;
[0013] The blocking member mechanism further comprises a second driving member, the second driving member is connected with the blocking member, the blocking member is arranged opposite to the D surface of the photovoltaic frame, and the second driving member can drive the blocking member to slide towards or away from the D surface of the photovoltaic frame.
[0014] Further, along the extension direction of the photovoltaic frame, the blocking member abuts against one end of the D surface of the photovoltaic frame.
[0015] Further, the blocking member is a plurality of blocking members, and the plurality of blocking members are arranged at intervals along the extension direction of the photovoltaic frame.
[0016] Further, when the blocking member abuts against the D surface of the photovoltaic frame, the bottom end edge of the blocking member is located above the bottom end edge of the D surface of the photovoltaic frame.
[0017] Further, the photovoltaic frame fixing assembly further comprises a supporting member;
[0018] The pressing mechanism is arranged above the supporting member;
[0019] The supporting member comprises a first supporting structure and a second supporting structure which are connected with each other, the first supporting structure is used for abutting against the A surface of the photovoltaic frame, and the second supporting structure is used for abutting against the B surface of the photovoltaic frame.
[0020] Further, along the first direction, the supporting structure does not protrude from the A surface of the photovoltaic frame.
[0021] The utility model also aims at providing a photovoltaic module frame assembling device which comprises the photovoltaic frame fixing assembly provided by the utility model.
[0022] The photovoltaic frame fixing assembly provided by this utility model includes a pressing mechanism and a blocking mechanism. The pressing mechanism includes a pressing member that can move towards or away from the C-side of the photovoltaic frame to press against the C-side of the photovoltaic frame. The blocking mechanism includes a blocking member that can move towards or away from the D-side of the photovoltaic frame to abut against the D-side of the photovoltaic frame. During frame installation, the A-side of the photovoltaic frame is placed on a support member. Then, the pressing member is moved towards the C-side of the photovoltaic frame to press against the C-side. Next, the blocking member is moved towards the D-side of the photovoltaic frame to abut against the D-side, thus fixing the photovoltaic frame to the support member in a suitable position before frame installation. The photovoltaic frame fixing assembly provided in this embodiment, with the blocking member abutting against the D-side of the photovoltaic frame, can prevent the photovoltaic frame from tilting, thereby preventing the photovoltaic module from being scrapped during frame installation and reducing the scrap rate of photovoltaic module installation. Attached Figure Description
[0023] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the structure of the photovoltaic frame in the photovoltaic frame fixing assembly provided in this embodiment of the utility model;
[0025] Figure 2 This is a diagram showing the usage status of the photovoltaic frame fixing component provided in this embodiment of the utility model (when the clamping part is not pressed against the C-side and the stop part is not in contact with the D-side);
[0026] Figure 3 This is a diagram showing the usage status of the photovoltaic frame fixing component provided in this embodiment of the utility model (when the clamping member is pressed against the C-side and the stop member is not in contact with the D-side);
[0027] Figure 4 This is a diagram showing the usage state of the photovoltaic frame fixing component provided in this embodiment of the utility model (when the clamping member is pressed against the C-side and the stop member abuts against the D-side);
[0028] Figure 5 This is a schematic diagram of the structure of the photovoltaic frame fixing assembly with the clamping member and the stop member separately provided in this embodiment of the utility model;
[0029] Figure 6 This is a side view of a photovoltaic frame fixing assembly with a stop provided in an embodiment of the present invention;
[0030] Figure 7 is a side view of a photovoltaic frame fixing assembly with multiple blocking pieces provided by the embodiment of the present application.
[0031] Icon: 1 - photovoltaic frame; 11 - A surface; 12 - B surface; 13 - C surface; 14 - D surface; 2 - support piece; 21 - first support structure; 22 - second support structure; 3 - compression piece; 4 - blocking piece; 5 - first driving piece; 6 - second driving piece; 7 - hinge. DETAILED DESCRIPTION
[0032] The technical solutions of the present application will be described in detail below with reference to the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0033] The present application provides a photovoltaic frame fixing assembly and a photovoltaic assembly frame mounting device. The following embodiments will be described in detail.
[0034] Embodiment 1
[0035] The photovoltaic frame fixing assembly provided in this embodiment, as shown in Figures 2 to 7 , comprises a compression mechanism and a blocking piece mechanism; the compression mechanism comprises a compression piece 3, which can move towards or away from the C surface 13 of the photovoltaic frame 1 to compress the compression piece 3 and the C surface 13 of the photovoltaic frame 1; the blocking piece mechanism comprises a blocking piece 4, which can move towards or away from the D surface 14 of the photovoltaic frame 1 to abut the blocking piece 4 and the D surface 14 of the photovoltaic frame 1.
[0036] As shown in Figure 1 , the existing photovoltaic frame 1 comprises A surface 11, B surface 12, C surface 13 and D surface 14 connected in sequence. A surface 11 is arranged opposite to C surface 13. It should be noted that Figure 1 The schematic view is that the photovoltaic frame 1 is in a frame mounting state, and after installation, A surface 11 is at the upper end and C surface 13 is at the lower end. Along the first direction, the end of A surface 11 close to B surface 12 is flush with the end of C surface 13 close to B surface 12, B surface 12 is arranged between the end of A surface 11 close to B surface 12 and the end of C surface 13 close to B surface 12, the end of C surface 13 close to D surface 14 protrudes from D surface 14, and D surface 14 is arranged between the end of A surface 11 close to D surface 14 and the end of C surface 13 close to D surface 14.
[0037] When the frame is assembled, the A face 11 of the photovoltaic frame 1 is placed on the placing platform of the photovoltaic module frame assembling device, and the placing platform is fixedly arranged on the photovoltaic module frame assembling device; then the pressing member 3 is driven to move towards the C face 13 of the photovoltaic frame 1, so that the pressing member 3 is pressed against the C face 13 of the photovoltaic frame 1; then the blocking member 4 is driven to move towards the D face 14 of the photovoltaic frame 1, so that the blocking member 4 is abutted against the D face 14 of the photovoltaic frame 1, and the photovoltaic frame 1 is fixed on the placing platform in a suitable state, and then the frame is assembled. The photovoltaic frame fixing assembly provided in the embodiment can prevent the photovoltaic frame 1 from being skewed under the abutment of the blocking member 4 against the D face 14 of the photovoltaic frame 1, and thus can prevent the photovoltaic module from being scrapped during the frame assembly, and can reduce the scrappage rate of the photovoltaic module installation.
[0038] The photovoltaic frame fixing assembly provided in the embodiment can control the scrappage rate of the photovoltaic module installation to be 200 ppm. The scrappage rate of the photovoltaic module installation in the prior art is 2000 ppm.
[0039] In an alternative embodiment, as shown in Figures 2 to 4 The blocking member 4 is rotationally connected with the pressing member 3. Specifically, the pressing mechanism further comprises a first driving member 5, the first driving member 5 is connected with the pressing member 3, and the first driving member 5 can drive the pressing member 3 to ascend and descend; the blocking member 4 is rotationally connected with the pressing member 3, and the blocking member 4 can rotate towards or away from the D face 14 of the photovoltaic frame 1.
[0040] The first driving member 5 can be a pneumatic cylinder, or any suitable component such as an electric push rod.
[0041] The first driving member 5 is fixedly connected with the pressing member 3, and when the first driving member 5 extends or retracts in the vertical direction, the first driving member 5 can drive the pressing member 3 and the blocking member 4 to ascend or descend relative to the photovoltaic frame 1.
[0042] When the photovoltaic frame 1 needs to be fixed, the first driving member 5 drives the pressing member 3 and the blocking member 4 to descend, and after the pressing member 3 is pressed against the C face 13 of the photovoltaic frame 1, the first driving member 5 stops driving the pressing member 3 and the blocking member 4 to descend, and then drives the blocking member 4 to rotate relative to the pressing member 3, and the blocking member 4 rotates towards the D face 14 of the photovoltaic frame 1 until the blocking member 4 is abutted against the D face 14 of the photovoltaic frame 1.
[0043] The blocking member 4 can rotate relative to the pressing member 3 towards or away from the D face 14 of the photovoltaic frame 1 about the rotation shaft, and the extension direction of the rotation shaft is parallel to the extension direction of the photovoltaic frame 1. The extension direction of the rotation shaft is shown by an arrow EF in Figure 6 and Figure 7 .
[0044] When it is necessary to loosen the photovoltaic frame 1, the stop 4 is driven to rotate relative to the clamping member 3, and the stop 4 rotates away from the D surface 14 of the photovoltaic frame 1. After the stop 4 separates from the D surface 14 of the photovoltaic frame 1, for example, after the stop 4 rotates to be perpendicular to the clamping member 3 and part of the stop 4 is located above the clamping member 3, the first driving member 5 drives the clamping member 3 and the stop 4 to rise, so that the clamping member 3 separates from the C surface 13 of the photovoltaic frame 1.
[0045] The stop 4 rotates relative to the clamping part 3, which can be driven manually or by the second drive part 6.
[0046] The stop 4 and the clamping part 3 are rotatably connected as one unit. The first driving part 5 can simultaneously drive the stop 4 and the clamping part 3 to rise and fall, which simplifies the structure and makes the photovoltaic frame fixing component highly integrated.
[0047] Preferably, the stop mechanism further includes a second drive member 6, which is connected to the stop member 4. The second drive member 6 can drive the stop member 4 to rotate toward or away from the D-side 14 of the photovoltaic frame 1.
[0048] The second driving component 6 can be an electric motor or any suitable component such as a hydraulic motor.
[0049] The second driving component 6 drives the stop component 4 to rotate toward or away from the D-side 14 of the photovoltaic frame 1, which can reduce manual labor and improve work efficiency.
[0050] For example, the second driving component 6 is a motor, the stop 4 and the clamping component 3 are rotatably connected by a rotating shaft, the stop 4 is fixedly connected to the rotating shaft, the output shaft of the motor is coaxial with the rotating shaft, and the output shaft of the motor is fixedly connected to the rotating shaft, the rotating shaft is rotatably connected to the clamping component 3. When the motor is running, the output shaft of the motor drives the rotating shaft to rotate around the axis of the rotating shaft, and the rotating shaft drives the stop 4 to rotate relative to the clamping component 3 around the axis of the rotating shaft.
[0051] In addition, the stop 4 can also be rotatably connected to the clamping member 3 via the hinge 7.
[0052] In another alternative implementation, such as Figure 5 As shown, the stop 4 and the clamping member 3 are two separate components. Specifically, the clamping mechanism also includes a first driving member 5, which is connected to the clamping member 3 and can drive the clamping member 3 to move up and down; the stop mechanism also includes a second driving member 6, which is connected to the stop 4. The stop 4 is positioned opposite to the D-side 14 of the photovoltaic frame 1, and the second driving member 6 can drive the stop 4 to slide toward or away from the D-side 14 of the photovoltaic frame 1.
[0053] The pressing piece 3 is arranged above the C face 13 of the photovoltaic frame 1, the first driving piece 5 can be extended and retracted in the vertical direction, the first driving piece 5 is fixedly connected with the pressing piece 3, and the first driving piece 5 can drive the pressing piece 3 to ascend and descend, so that the pressing piece 3 presses or releases the C face 13 of the photovoltaic frame 1.
[0054] The blocking piece 4 is arranged outside the D face 14 of the photovoltaic frame 1, the second driving piece 6 can be extended and retracted in the horizontal direction, the second driving piece 6 is fixedly connected with the blocking piece 4, and the second driving piece 6 can drive the blocking piece 4 to slide towards or away from the D face 14 of the photovoltaic frame 1, so as to abut against or release the D face 14 of the photovoltaic frame 1.
[0055] The first driving piece 5 and the second driving piece 6 can be air cylinders, or any suitable components such as electric push rods.
[0056] When it is necessary to fix the photovoltaic frame 1, first, the first driving piece 5 drives the pressing piece 3 to descend, after the pressing piece 3 is pressed against the C face 13 of the photovoltaic frame 1, the second driving piece 6 drives the blocking piece 4 to slide towards the D face 14 of the photovoltaic frame 1, so that the blocking piece 4 abuts against the D face 14 of the photovoltaic frame 1.
[0057] When it is necessary to release the photovoltaic frame 1, the second driving piece 6 can drive the blocking piece 4 to slide away from the D face 14 of the photovoltaic frame 1, after the D face 14 of the photovoltaic frame 1 is appropriately released, the first driving piece 5 drives the pressing piece 3 to ascend, so that the pressing piece 3 is released from the C face 13 of the photovoltaic frame 1.
[0058] The blocking piece 4 and the pressing piece 3 are separately arranged, which can reduce the installation precision between the blocking piece 4 and the pressing piece 3, reduce the design difficulty, and thus reduce the cost. The movement of the blocking piece 4 and the pressing piece 3 does not interfere with each other, and the control difficulty of the movement of the blocking piece 4 and the pressing piece 3 is reduced.
[0059] When the blocking piece 4 abuts against the D face 14 of the photovoltaic frame 1, the blocking piece 4 can abut against any suitable position of the D face 14 of the photovoltaic frame 1, which can be the middle part of the D face 14, or the end part of the D face 14, or any suitable position.
[0060] In an optional embodiment, along the extension direction of the photovoltaic frame 1, the blocking piece 4 abuts against one end of the D face 14 of the photovoltaic frame 1.
[0061] The blocking piece 4 abuts against one end of the D face 14 of the photovoltaic frame 1, so that the blocking piece 4 is located at the position of one end of the D face 14 of the photovoltaic frame 1. When the blocking piece 4 is rotationally connected with the pressing piece 3, the second driving piece 6 can be arranged outside the position of one end of the D face 14 of the photovoltaic frame 1, which can facilitate the arrangement of the second driving piece 6, and prevent the second driving piece 6 from interfering with the D face 14 of the photovoltaic frame 1.
[0062] The number of the stopper 4 can be one or multiple.
[0063] In another alternative embodiment, the stopper 4 is multiple, and the multiple stoppers 4 are arranged at intervals along the extension direction of the photovoltaic frame 1.
[0064] When the multiple stoppers 4 abut against the D face 14 of the photovoltaic frame 1, the multiple stoppers 4 are arranged at intervals along the extension direction of the photovoltaic frame 1, so that the multiple stoppers 4 abut against the D face 14 from multiple positions, which can better prevent the photovoltaic frame 1 from being skewed and has higher reliability in preventing skewing.
[0065] Further, when the stopper 4 abuts against the D face 14 of the photovoltaic frame 1, the bottom end edge of the stopper 4 is located above the bottom end edge of the D face 14 of the photovoltaic frame 1.
[0066] The bottom end edge of the stopper 4 is located above the bottom end edge of the D face 14 of the photovoltaic frame 1, so that the bottom end edge of the stopper 4 does not protrude below the bottom end edge of the D face 14, preventing the stopper 4 from interfering with the framing action.
[0067] Further, the photovoltaic frame fixing assembly further comprises a support 2, and the pressing mechanism is arranged above the support 2; the support 2 comprises a first support structure 21 and a second support structure 22 connected to each other, the first support structure 21 is used to be attached to the A face 11 of the photovoltaic frame 1, and the second support structure 22 is used to be attached to the B face 12 of the photovoltaic frame 1.
[0068] The support 2 is fixed on the photovoltaic module framing device, and the position of the support 2 is fixed and immovable.
[0069] The first support structure 21 and the second support structure 22 can be in the form of a plate, a block or any other suitable form.
[0070] In this embodiment, the first support structure 21 and the second support structure 22 are both in the form of a plate, and the first support structure 21 is perpendicular to the second support structure 22.
[0071] When the photovoltaic frame 1 is placed on the support 2, the A face 11 is placed on the first support structure 21, and the B face 12 is attached to the second support structure 22. When the pressing member 3 presses the C face 13, the B face 12 is attached to the second support structure 22, which can play a positioning role on the photovoltaic frame 1 and better prevent the photovoltaic frame 1 from being skewed in cooperation with the stopper 4.
[0072] When the frame is assembled, the A face 11 of the photovoltaic frame 1 is placed on the first support structure 21, and the B face 12 is attached to the second support structure 22, then the pressing member 3 is driven to descend, the pressing member 3 is pressed against the C face 13 of the photovoltaic frame 1, then the blocking member 4 is driven to move towards the D face 14 of the photovoltaic frame 1, the blocking member 4 is abutted against the D face 14 of the photovoltaic frame 1, the photovoltaic frame 1 is fixed on the support member 2 in a suitable state, and then the frame is assembled. The support member 2 can position the photovoltaic frame 1, and cooperate with the blocking member 4 to better prevent the photovoltaic frame 1 from being skewed, thereby preventing the photovoltaic module from being scrapped during the frame assembly, and reducing the scrappage rate of the photovoltaic module installation.
[0073] Further, along the first direction, the first support structure 21 does not protrude from the A face 11 of the photovoltaic frame 1.
[0074] The first direction is Figure 2 the direction indicated by the arrow GH.
[0075] Along the first direction, the first support structure 21 does not protrude from the A face 11 of the photovoltaic frame 1, and the end of the A face 11 towards the D face 14 protrudes to the outside of the first support structure 21, so that the end of the A face 11 towards the D face 14 protrudes to the outside of the first support structure 21, preventing the first support structure 21 from interfering with the frame assembly action.
[0076] Embodiment 2
[0077] The photovoltaic module frame assembly device provided in the embodiment comprises the photovoltaic frame fixing assembly provided in the embodiment 1. When the frame is assembled, the A face 11 of the photovoltaic frame 1 is placed on the placing platform of the photovoltaic module frame assembly device, and the placing platform is fixedly arranged on the photovoltaic module frame assembly device; then the pressing member 3 is driven to move towards the C face 13 of the photovoltaic frame 1, the pressing member 3 is pressed against the C face 13 of the photovoltaic frame 1, then the blocking member 4 is driven to move towards the D face 14 of the photovoltaic frame 1, the blocking member 4 is abutted against the D face 14 of the photovoltaic frame 1, the photovoltaic frame 1 is fixed on the placing platform in a suitable state, and then the frame is assembled. The photovoltaic frame fixing assembly provided in the embodiment can prevent the photovoltaic frame 1 from being skewed under the action of the blocking member 4 abutting against the D face 14 of the photovoltaic frame 1, thereby preventing the photovoltaic module from being scrapped during the frame assembly, and reducing the scrappage rate of the photovoltaic module installation.
[0078] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A photovoltaic frame fixing component, characterized in that, Includes a clamping mechanism and a stop mechanism; The clamping mechanism includes a clamping member that can move toward or away from the C-side of the photovoltaic frame to clamp the clamping member against the C-side of the photovoltaic frame. The stop mechanism includes a stop that can move toward or away from the D-side of the photovoltaic frame so that the stop abuts against the D-side of the photovoltaic frame.
2. The photovoltaic frame fixing component according to claim 1, characterized in that, The clamping mechanism further includes a first driving member, which is connected to the clamping member and can drive the clamping member to rise and fall. The stop is rotatably connected to the clamping member, and the stop can rotate toward or away from the D-side of the photovoltaic frame.
3. The photovoltaic frame fixing component according to claim 2, characterized in that, The stop mechanism also includes a second driving member, which is connected to the stop and can drive the stop to rotate toward or away from the D-side of the photovoltaic frame.
4. The photovoltaic frame fixing component according to claim 1, characterized in that, The clamping mechanism further includes a first driving member, which is connected to the clamping member and can drive the clamping member to rise and fall. The stop mechanism further includes a second driving member, which is connected to the stop. The stop is disposed opposite to the D-side of the photovoltaic frame, and the second driving member can drive the stop to slide toward or away from the D-side of the photovoltaic frame.
5. The photovoltaic frame fixing component according to claim 1, characterized in that, Along the extending direction of the photovoltaic frame, the stop abuts against one end of the D-side of the photovoltaic frame.
6. The photovoltaic frame fixing component according to claim 1, characterized in that, There are multiple baffles, and the multiple baffles are spaced apart along the extension direction of the photovoltaic frame.
7. The photovoltaic frame fixing component according to claim 1, characterized in that, When the stopper abuts against the D-side of the photovoltaic frame, the bottom edge of the stopper is located above the bottom edge of the D-side of the photovoltaic frame.
8. The photovoltaic frame fixing component according to claim 1, characterized in that, The photovoltaic frame fixing assembly also includes a support component; The clamping mechanism is disposed above the support member; The support component includes a first support structure and a second support structure that are connected to each other. The first support structure is used to fit with side A of the photovoltaic frame, and the second support structure is used to fit with side B of the photovoltaic frame.
9. The photovoltaic frame fixing component according to claim 8, characterized in that, Along the first direction, the support structure does not extend beyond the A-side of the photovoltaic frame.
10. A photovoltaic module framing device, characterized in that, The photovoltaic frame fixing component includes any one of claims 1-9.