Anti-interference solar cell module
Technical Field
The present utility model relates to the field of solar cell technology, and more particularly, to an anti-interference solar cell module.
Background
Solar cells are devices that directly convert light energy into electrical energy through a photoelectric effect or a photochemical effect. The voltage and current can be output instantaneously as long as the light is illuminated. Physically, solar photovoltaic, simply referred to as photovoltaic. Thin film solar cells operating with the photoelectric effect are the main stream, while wet solar cells operating with the photochemical effect are still in the germination stage.
When installing solar cell panel, need adopt the installing frame, be connected solar cell panel and installing frame, it is spacing and the protection to the solar cell panel that inside set up through the installing frame, but because solar cell panel's length is different, when installing to solar cell panel of different length, the installing frame can not adapt to, can have certain gap at installing back installing frame, lead to solar cell panel installation untight problem, the present needs to set up the frame that can adapt to the solar cell panel installation of different length.
Disclosure of utility model
In order to overcome the existing problems, the embodiment of the application provides an anti-interference solar cell module, wherein a solar cell panel is arranged in a frame, a limiting module is arranged at the intersection of the inside of the frame and the solar cell panel, the anti-interference solar cell module comprises a sleeve, a first threaded rod and a second threaded rod at two ends of the sleeve, when two solar cell panels are installed in the frame, the limiting module is taken out, the first threaded rod and the second threaded rod in the interior are enabled to rotate, the length of the limiting module can be changed, accordingly solar cell panels with different lengths can be installed on the frame, and limiting holes are formed at the intersection of the solar cell panel and the limiting module, so that the limiting module and the solar cell panel are connected with each other.
The technical scheme adopted by the embodiment of the application for solving the technical problems is as follows:
an anti-interference solar cell module comprises a frame and a solar cell panel arranged in the frame, wherein the solar cell panel and the frame are detachably installed;
Wherein, the frame is inside to be located solar cell panel's one end is equipped with spacing subassembly, will two solar cell panel installs inside the frame, spacing subassembly is located two adjacent inside solar cell panel changes spacing subassembly length is used for right solar cell panel is spacing, be equipped with solar cell panel inside the frame, and the frame is inside to be equipped with spacing subassembly with the crossing department of solar cell panel, it includes the first threaded rod and the second threaded rod at sleeve pipe and sleeve pipe both ends, when installing two solar cell panels inside the frame, take out spacing subassembly for inside first threaded rod and second threaded rod are rotatory for spacing subassembly can change self length, thereby can install with the frame to solar cell panel and the frame of different length.
Preferably, the limiting assembly comprises a sleeve, wherein one end of the sleeve is provided with a first threaded rod, and the other end of the sleeve is provided with a second threaded rod;
The sleeve is rotated when the sleeve rotates, the first threaded rods at two ends of the sleeve and the second threaded rods rotate with the sleeve, so that the length of the limiting assembly is changed, and the limiting assembly is used for limiting the solar cell panels inside.
Preferably, the bottom of frame is equipped with the bottom plate, the frame top is equipped with the limiting plate, the bottom plate with the interval of limiting plate with solar cell panel's thickness is the same to can be spacing to frame internally mounted's solar cell panel, and the width of bottom plate is greater than the width of limiting plate, can carry out spacingly to the solar cell panel of installation like this, avoid appearing the problem that drops.
Preferably, the frame one end is equipped with the stull, stull one end is equipped with the connecting piece, the stull passes through the connecting piece with frame coupling, the connecting piece runs through the stull and is connected with the connecting hole for the stull is stable with frame coupling, when installing solar cell panel inside the frame, avoids inside solar cell panel to appear the problem that drops through the stull simultaneously.
Preferably, the connecting hole is formed in the intersection of the frame and the connecting piece, the connecting piece penetrates through the cross support and is screwed with the connecting hole, when the cross support is connected with the frame, the connecting piece at one end of the cross support penetrates through the connecting hole formed in the surface wall of the frame, so that the cross support is connected with the frame, the tightness of the connecting piece is changed, and the cross support can be rotated.
Preferably, the limiting holes are formed in corners of two ends of the solar cell panel, the size of the limiting holes is the same as that of the first threaded rod and the second threaded rod, when the two solar cell panels are placed inside the frame, the limiting assembly is taken out, the limiting assembly is placed inside the solar cell panel, and the first threaded rod and the second threaded rod inside the limiting assembly are connected with the limiting holes, so that the limiting assembly and the solar cell panel are tightly connected.
Preferably, the frame is in an opening structure with the connection part of the cross brace, when the solar panel is connected with the frame, the solar panel is installed inside the frame from the opening part, the inside solar panel is stably connected under the limit of the bottom plate and the limit plate inside the frame, and the other end of the frame is in a closed structure.
The embodiment of the application has the advantages that:
1. The solar cell panel is arranged inside the frame, the limit assembly is arranged at the intersection of the frame and the solar cell panel, the limit assembly comprises a sleeve, a first threaded rod and a second threaded rod at two ends of the sleeve, the limit assembly is taken out when the two solar cell panels are arranged inside the frame, the first threaded rod and the second threaded rod inside the frame are rotated, the limit assembly can change the length of the limit assembly, the solar cell panels with different lengths can be arranged on the frame, and limit holes are formed at the intersection of the solar cell panels and the limit assembly, so that the limit assembly is connected with the solar cell panels.
2. The rotatable cross brace is arranged at one end of the frame and is connected with the frame through the connecting piece in the frame, so that the cross brace is rotatable by taking the connecting piece as an axle center, and after the solar cell panel in the frame is connected with the frame, the solar cell panel in the frame can be limited by rotating the cross brace.
Drawings
The utility model will be further described with reference to the drawings and examples.
FIG. 1 is a schematic diagram of the overall structure of an anti-interference solar cell module according to the present utility model;
FIG. 2 is a schematic view of the whole structure of the anti-interference solar cell module with the cross braces removed;
FIG. 3 is a schematic view of the overall structure of a frame in an anti-interference solar cell module according to the present utility model;
FIG. 4 is a schematic view of the overall structure of a solar panel in an anti-interference solar module according to the present utility model;
FIG. 5 is a schematic diagram showing the overall structure of a limiting assembly in an anti-interference solar cell module according to the present utility model;
Fig. 6 is a schematic view of a partial enlarged structure at a in fig. 1 according to the present utility model.
The main reference numerals illustrate:
1. The solar cell panel comprises a frame, a solar cell panel, a limiting assembly, a sleeve, a first threaded rod, a second threaded rod, a bottom plate, a connecting hole, a limiting hole, a transverse strut, a connecting piece, a limiting plate and a limiting plate.
Detailed Description
According to the anti-interference solar cell module, the problems in the prior art are solved, the solar cell panel is arranged in the frame, the limiting module is arranged at the intersection of the frame and the solar cell panel and comprises a sleeve, a first threaded rod and a second threaded rod at two ends of the sleeve, when the two solar cell panels are installed in the frame, the limiting module is taken out, the first threaded rod and the second threaded rod in the frame rotate, the length of the limiting module can be changed, so that the solar cell panels with different lengths can be installed on the frame, limiting holes are formed at the intersection of the solar cell panel and the limiting module, the limiting module and the solar cell panel are connected with each other, one end of the frame is provided with the rotatable transverse strut, the transverse strut is connected with the frame through the connecting piece in the frame, and therefore the transverse strut can rotate by taking the connecting piece as an axis, and after the solar cell panel in the frame is connected with the frame, the solar cell panel in the frame can be limited by rotating the transverse strut.
The technical scheme in the embodiment of the application aims to solve the problems, and the overall thought is as follows:
Example 1:
The embodiment provides a specific structure of an anti-interference solar cell module, as shown in fig. 1-6, which comprises a frame 1 and a solar cell panel 2 arranged in the frame 1, wherein the solar cell panel 2 and the frame 1 are detachably installed;
Wherein, the inside one end that is located solar cell panel 2 of frame 1 is equipped with spacing subassembly 3, install two solar cell panels 2 inside frame 1, spacing subassembly 3 is located inside two adjacent solar cell panels 2, change spacing subassembly 3 length, be used for spacing solar cell panel 2, be equipped with solar cell panel 2 inside frame 1, and the inside crossing department with solar cell panel 2 of frame 1 is equipped with spacing subassembly 3, it includes sleeve pipe 31 and the first threaded rod 32 and the second threaded rod 33 at sleeve pipe 31 both ends, install two solar cell panels 2 inside frame 1, take out spacing subassembly 3, make inside first threaded rod 32 and the rotation of second threaded rod 33, make spacing subassembly 3 can change self length, thereby can install with frame 1 to solar cell panel 2 of different length.
The limiting assembly 3 comprises a sleeve 31, a first threaded rod 32 is arranged at one end of the sleeve 31, and a second threaded rod 33 is arranged at the other end of the sleeve 31;
Wherein, the intersection department of sleeve 31 and first threaded rod 32 and second threaded rod 33 has seted up the screw groove, when being connected two solar cell panels 2 with frame 1, rotatory sleeve 31 at this moment, and when the sleeve 31 was rotatory, the first threaded rod 32 and the second threaded rod 33 at sleeve 31 both ends were rotatory with sleeve 31 for spacing subassembly 3's length change for it is spacing to inside solar cell panel 2.
Limiting holes 6 are formed in corners of two ends of the solar cell panel 2, the size of each limiting hole 6 is identical to that of each first threaded rod 32 and each second threaded rod 33, when two solar cell panels 2 are placed inside the frame 1, the limiting assembly 3 is taken out, the limiting assembly 3 is placed inside the solar cell panel 2, and the first threaded rods 32 and the second threaded rods 33 inside the limiting assembly 3 are connected with the limiting holes 6, so that the limiting assembly 3 and the solar cell panel 2 are tightly connected.
By adopting the technical scheme:
The solar cell panel 2 is arranged inside the frame 1, and a limit component 3 is arranged at the intersection of the inside of the frame 1 and the solar cell panel 2 and comprises a sleeve 31, a first threaded rod 32 and a second threaded rod 33 at two ends of the sleeve 31, and the limit component 3 is taken out when the two solar cell panels 2 are installed inside the frame 1, so that the first threaded rod 32 and the second threaded rod 33 inside are rotated, the length of the limit component 3 can be changed, and the solar cell panels 2 with different lengths can be installed with the frame 1.
Example 2:
The embodiment provides a specific structure of an anti-interference solar cell module, as shown in fig. 1-6, the bottom end of a frame 1 is provided with a bottom plate 4, the top end of the frame 1 is provided with a limiting plate 9, the distance between the bottom plate 4 and the limiting plate 9 is the same as the thickness of a solar cell panel 2, so that the solar cell panel 2 installed inside the frame 1 can be limited, and the width of the bottom plate 4 is larger than the width of the limiting plate 9, so that the installed solar cell panel 2 can be limited, and the falling problem is avoided.
The frame 1 one end is equipped with stull 7, and stull 7 one end is equipped with connecting piece 8, and stull 7 is connected with frame 1 through connecting piece 8, and connecting piece 8 runs through stull 7 and is connected with connecting hole 5 for stull 7 is connected stably with frame 1, and when installing solar cell panel 2 inside frame 1, the problem that drops appears in solar cell panel 2 inside avoiding through stull 7 simultaneously.
The connecting hole 5 has been seted up to crossing department of frame 1 and connecting piece 8, and connecting piece 8 runs through stull 7 and connects soon with connecting hole 5, when being connected stull 7 with frame 1, and connecting piece 8 of stull 7 one end runs through stull 7 and is connected with connecting hole 5 that frame 1 table wall was seted up for stull 7 is connected with frame 1 to change the elasticity of connecting piece 8, can rotate stull 7.
The frame 1 is in an opening structure with the connection part of the cross brace 7, when the solar cell panel 2 is connected with the frame 1, the solar cell panel 2 is installed inside the frame 1 from the opening part, the inside solar cell panel 2 is stably connected under the limit of the bottom plate 4 and the limit plate 9 inside the frame 1, and the other end of the frame 1 is in a closed structure.
By adopting the technical scheme:
install solar cell panel 2 inside frame 1 from the opening part, under the spacing of bottom plate 4 and limiting plate 9 through frame 1 inside, connect inside solar cell panel 2 stably, the interval of bottom plate 4 and limiting plate 9 is the same with the thickness of solar cell panel 2 to can be spacing to frame 1 internally mounted's solar cell panel 2, and the width of bottom plate 4 is greater than the width of limiting plate 9, can carry out spacingly to the solar cell panel 2 of installation like this, avoid appearing the problem that drops.
Finally, it should be noted that the above-mentioned examples are given for the purpose of illustration only and are not intended to limit the utility model to the particular embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present utility model.