Photovoltaic frame and photovoltaic module
This invention relates to the field of photovoltaic module technology and discloses a photovoltaic frame and a photovoltaic module. The photovoltaic frame, comprising multiple steel frame strips connected end-to-end in sequence and corner connectors joining steel frame strips adjacent to each other at a corner; wherein each steel frame strip comprises: a first mounting chamber and second mounting chamber, the second mounting chamber includes a fourth steel wall, the top and bottom of the fourth steel wall are bent to connect to the protruding/recessing portion and one side of the fifth steel wall, respectively, and the free end of the fifth steel wall has a bent section; the corner connector comprises a first connecting part and a second connecting part, joined by a bend; the first connecting part comprises a first connecting wall and a second connecting wall connected by a bend, while the second connecting part comprises a third connecting wall and fourth connecting wall connected by a bend; both the first connecting wall and the third connecting wall are vertical or horizontal steel walls, while the second connecting wall and fourth connecting wall can be horizontal or vertical steel walls; the upper end of the vertical steel wall snaps into the protruding/recessing portion, and the horizontal steel wall snaps into a chamber defined by the lower end of the fourth steel wall, the fifth steel wall, and the bent section on the free end of the fifth steel wall. Thus, the mechanical strength and installation stability of the photovoltaic frame can be improved, and the cost can be reduced.
1 . A photovoltaic frame, wherein, comprising multiple steel frame strips ( 01 ) connected end-to-end in sequence and corner connectors ( 04 ) joining steel frame strips ( 01 ) adjacent to each other at a corner; each steel frame strip ( 01 ) comprises a first mounting chamber ( 1 ) configured to secure a photovoltaic laminate using encapsulating adhesive and a second mounting chamber ( 2 ) positioned below the first mounting chamber ( 1 ) for mounting a corner connector ( 04 ); the first mounting chamber ( 1 ) comprises a first steel wall ( 12 ), a second steel wall ( 13 ) and a third steel wall ( 14 ) connected sequentially by bends, with upper and lower ends of the second steel wall ( 13 ) respectively connecting to left sides of the first steel wall ( 12 ) and third steel wall ( 14 ) to form an mounting chamber opening ( 11 ) on a right side of the first mounting chamber ( 1 ); the second mounting chamber ( 2 ) comprises a fourth steel wall ( 21 ) and a fifth steel wall ( 22 ) connected sequentially by bends, a top inside of the second mounting chamber ( 2 ) having a protruding/recessing portion ( 23 ) connected by bends to the third steel wall ( 14 ) and for an upper end of the corner connector to snap fit; upper and lower ends of the fourth steel wall ( 21 ) are connected by bends to the protruding/recessing portion ( 23 ) and one side of the fifth steel wall ( 22 ), respectively, and a free end of the fifth steel wall ( 22 ) has a bent section ( 24 ) for accommodating a lower end of the corner connector ( 04 ) to snap into place; each corner connector ( 04 ) comprises a first connecting part ( 41 ) and a second connecting part ( 42 ) joined by a bend; the first connecting part ( 41 ) and the second connecting part ( 42 ) are respectively installed within the second mounting chambers ( 2 ) of two steel frame strips ( 01 ) adjacent to each other at a corner; the first connecting part ( 41 ) comprises a first connecting wall ( 411 ) and a second connecting wall ( 412 ) connected by a bend, while the second connecting part ( 42 ) comprises a third connecting wall ( 421 ) and a fourth connecting wall ( 422 ) connected by a bend; both the first connecting wall ( 411 ) and the third connecting wall ( 421 ) are vertical or horizontal steel walls, while both the second connecting wall ( 412 ) and the fourth connecting wall ( 422 ) are horizontal or vertical steel walls; an upper end of the vertical steel wall snaps into the protruding/recessing portion ( 23 ), and the horizontal steel wall snaps into a chamber formed by the lower end of the fourth steel wall ( 21 ), the fifth steel wall ( 22 ) and the bent section ( 24 ).
2 . The photovoltaic frame according to claim 1 , wherein, an outer edge of the first connecting wall ( 411 ) and/or second connecting wall ( 412 ) is configured with a serrated structure ( 43 ) for connection to a steel frame strip ( 01 ) adjacent at the corner; the outer edge of the third connecting wall ( 421 ) and/or fourth connecting wall ( 422 ) is configured with a serrated structure ( 43 ) for connection to another steel frame strip adjacent at the corner; and the first connecting wall ( 411 ) and third connecting wall ( 421 ), or the second connecting wall ( 412 ) and fourth connecting wall ( 422 ) are integrally molded structure.
3 . The photovoltaic frame according to claim 2 , wherein a plane of the first connecting wall ( 411 ) intersects with a plane of the third connecting wall ( 421 ), while the second connecting wall ( 412 ) and the fourth connecting wall ( 422 ) lie in a same plane, and the first connecting wall ( 411 ) and third connecting wall ( 421 ) are connected by a bend.
4 . The photovoltaic frame according to claim 2 , wherein the first connecting wall ( 411 ) and the third connecting wall ( 421 ) lie in a same plane, while a plane of the second connecting wall ( 412 ) intersects with a plane of the fourth connecting wall ( 422 ), and the first connecting wall ( 411 ) and third connecting wall ( 421 ) form an L-shaped structure created by cutting.
5 . The photovoltaic frame according to claim 2 , wherein the serrated structure ( 43 ) comprises reversed teeth.
6 . The photovoltaic frame according to claim 2 , wherein the serrated structure ( 43 ) comprises multiple first reversed teeth ( 431 ) inclining outward from the corner connector ( 04 ) and multiple second reversed teeth ( 432 ) inclining inward from the corner connector ( 04 ), the first reversed teeth ( 431 ) and the second reversed teeth ( 432 ) arranged in alternating sequence such that tips ( 433 ) of free ends of adjacent first reversed teeth ( 431 ) and second reversed teeth ( 432 ) facing different side-directions respectively engage different inner walls of the steel frame strips ( 01 ).
7 . The photovoltaic frame according to claim 6 , wherein the tips ( 433 ) on both sides of the free ends of the first reversed teeth ( 431 ) are respectively inclined outward and downward, and inward and upward from the corner connector ( 04 ), while the tips ( 433 ) on both sides of the free ends of the second reversed teeth ( 432 ) are respectively inclined inward and downward, and outward and upward from the corner connector ( 04 ).
8 . The photovoltaic frame according to claim 3 , wherein, a first reinforcing rib ( 423 ) is provided at the bent connection between the first connecting wall ( 411 ) and third connecting wall ( 421 ).
9 . The photovoltaic frame of claim 1 , wherein the fourth steel wall ( 21 ) is positioned to a left side of the protruding/recessing portion ( 23 ) and the fifth steel wall ( 22 ), and the bent section ( 24 ) extends upward along a right side of the fifth steel wall ( 22 ).
10 . The photovoltaic frame of claim 9 , wherein an upper end of the bent section ( 24 ) is inclined inward to the second mounting chamber ( 2 ), or the upper end of the bent section ( 24 ) further provides an inner edge ( 241 ) horizontally extending inward to the second mounting chamber ( 2 ).
11 . The photovoltaic frame according to claim 1 , wherein the protruding/recessing portion ( 23 ) comprises a sixth steel wall ( 231 ) and a seventh steel wall ( 232 ), a left side of the sixth steel wall ( 231 ) engages with a lower left of the third steel wall ( 14 ), and connects to the upper end of the fourth steel wall ( 21 ) by a bend, with the sixth steel wall ( 231 ) inclining downward from left to right; a left side of the seventh steel wall ( 232 ) connects to a lower right end of the sixth steel wall ( 231 ); and a right side of the seventh steel wall ( 232 ) connects to a right side of the third steel wall ( 14 ) by a bend for transition.
12 . The photovoltaic frame according to claim 1 , wherein, the protruding/recessing portion ( 23 ) further comprises a sixth steel wall ( 231 ), a seventh steel wall ( 232 ), and an eighth steel wall ( 233 ), with the sixth steel wall ( 231 ) inclining upward from left to right, the seventh steel wall ( 232 ) inclining upward from right to left; an upper right end of the sixth steel wall ( 231 ) connected to an upper left end of the seventh steel wall ( 232 ), where a connecting position between the six steel wall ( 231 ) and the seventh steel wall ( 232 ) engages with a bottom of the third steel wall ( 14 ); a lower left end of the sixth steel wall ( 231 ) connected to the upper end of the fourth steel wall ( 21 ) by a bend; upper and lower end of eighth steel wall ( 233 ) respectively connects with a right side of the third steel wall ( 14 ) and a lower right end of the seventh steel wall ( 232 ) by bend.
13 . The photovoltaic frame according to claim 1 , wherein the protruding/recessing portion ( 23 ) further comprises a sixth steel wall ( 231 ), a seventh steel wall ( 232 ), an eighth steel wall ( 233 ), and a ninth steel wall ( 234 ); left and right sides of the sixth steel wall ( 231 ) are respectively connected to upper ends of the fourth steel wall ( 21 ) and the seventh steel wall ( 232 ) by bends, left and right sides of the eighth steel wall ( 233 ) are respectively connected to lower ends of the seventh steel wall ( 232 ) and the ninth steel wall ( 234 ) by bends, and an upper end of the ninth steel wall ( 234 ) is connected to a right side of the third steel wall ( 14 ) by bend.
14 . The photovoltaic frame according to claim 13 , wherein the sixth steel wall ( 231 ) is engaged with a lower left or middle lower section of the third steel wall ( 14 ).
15 . The photovoltaic frame according to claim 13 , wherein a second reinforcing rib ( 237 ) is bent and connected between the eighth steel wall ( 233 ) and the ninth steel wall ( 234 ), and a cross-sectional shape of the second reinforcing rib ( 237 ) is either “\” shaped or “L” shaped.
16 . The photovoltaic frame according to claim 1 , wherein the protruding/recessing portion ( 23 ) comprises a sixth steel wall ( 231 ), a seventh steel wall ( 232 ), an eighth steel wall ( 233 ), and a ninth steel wall ( 234 ), the sixth steel wall ( 231 ) inclines upward from left to right, the eighth steel wall ( 233 ) inclines upward from right to left; the seventh steel wall ( 232 ) is engaged with a lower section of the third steel wall ( 14 ), and left and right sides of the seventh steel wall ( 232 ) are respectively connected to an upper right end of the sixth steel wall ( 231 ) and an upper left end of the eighth steel wall ( 233 ); an upper left end of the sixth steel wall ( 231 ) is connected to the upper end of the fourth steel wall ( 21 ) by a bend, and upper and lower ends of the ninth steel wall ( 234 ) are respectively connected to a right side of the third steel wall ( 14 ) and a lower right end of the eighth steel wall ( 233 ) by a bend.
17 . The photovoltaic frame according to claim 16 , wherein, both the sixth steel wall ( 231 ) and the eighth steel wall ( 233 ) are provided with a third reinforcing rib ( 238 ) arranged horizontally and/or vertically.
18 . The photovoltaic frame according to claim 1 , wherein the protruding/recessing portion ( 23 ) comprises a sixth steel wall ( 231 ), a seventh steel wall ( 232 ), an eighth steel wall ( 233 ), a ninth steel wall ( 234 ), a tenth steel wall ( 235 ), and a eleventh steel wall ( 236 ); the eighth steel wall ( 233 ) is engaged with a lower section of the third steel wall ( 14 ); left and right sides of the eighth steel wall ( 233 ) are respectively connected to the seventh steel wall ( 233 ) and an upper end of the ninth steel wall ( 234 ) by bends; left and right sides of the sixth steel wall ( 231 ) are respectively connected to the upper end of the fourth steel wall ( 21 ) and a lower end of the seventh steel wall ( 232 ) by bends; left and right sides of the tenth steel wall ( 235 ) are respectively connected to lower ends of the ninth steel wall ( 234 ) and the eleventh steel wall ( 236 ) by bends, and an upper end of the eleventh steel wall ( 236 ) is connected to a right side of the third steel wall ( 14 ) by a bend.
19 . The photovoltaic frame according to claim 1 , wherein, an adhesive chamber ( 15 ) for accommodating the encapsulating adhesive is formed between inner walls of the first mounting chamber ( 1 ) and the photovoltaic laminate ( 05 ) within the first mounting chamber ( 1 ); the third steel wall ( 14 ) has a partial recess forming an overflow prevention groove ( 152 ) connected to the adhesive chamber ( 15 ); a ratio between a depth (S) of the overflow prevention groove ( 152 ) to a width (W 1 ) of the overflow prevention groove ( 152 ) is less than 0.5 times the width (W 3 ) of the first steel wall ( 12 ), and a ratio of the depth (S) of the overflow prevention groove ( 152 ) to a thickness (D) of the third steel wall ( 14 ) is more than 0.5 times the thickness (D) of the third steel wall ( 14 ).
20 . The photovoltaic frame according to claim 19 , wherein, the overflow prevention groove ( 152 ) is positioned in a middle-right section of the third steel wall ( 14 ), and a distance (d) between a right side of the overflow prevention groove ( 152 ) and a right end of the third steel wall ( 14 ) is greater than or equal to the thickness (D) of the third steel wall ( 14 ).
21 . The photovoltaic frame according to claim 19 , wherein, the protruding/recessing portion ( 23 ) is engaged with a left side of the third steel wall ( 14 ), and a buffer chamber ( 25 ) is formed between the protruding/recessing portion ( 23 ) and a right side of the third steel wall ( 14 ).
22 . The photovoltaic frame according to claim 21 , wherein the buffer chamber ( 25 ) is aligned with the overflow prevention groove ( 152 ) above and below.
23 . The photovoltaic frame according to claim 1 , wherein an adhesive chamber ( 15 ) for accommodating the encapsulating adhesive is formed between inner walls of the first mounting chamber ( 1 ) and the photovoltaic laminate ( 05 ) within the first mounting chamber ( 1 ); and a right end of the first steel wall ( 12 ) is pressed downward to form a lower pressed edge ( 121 ), resulting an upper left section of the adhesive chamber ( 15 ) to widen and form an adhesive collecting groove ( 151 ); the first steel wall ( 12 ) is provided with a transition section ( 122 ) smoothly connecting to the lower pressed edge ( 121 ).
24 . The photovoltaic frame according to claim 23 , wherein a height (a) within the adhesive collecting groove ( 151 ) is less than or equal to a thickness (D) of the first steel wall ( 12 ).
25 . The photovoltaic frame according to claim 23 , wherein a height of a right end of the lower pressed edge ( 121 ) is less than twice a thickness (D) of the first steel wall ( 12 ), and a height of the right end of the lower pressed edge ( 121 ) is greater than or equal to 0.5 times the thickness (D) of the first steel wall ( 12 ).
26 . A photovoltaic frame, comprising a frame and a cross bar ( 03 ), wherein the frame comprises multiple steel frame strips ( 01 ) and corner connectors ( 04 ) joining steel frame strips ( 01 ) adjacent to each other at corners, characterized in that the frame is a photovoltaic frame as claimed in claim 1 , the steel frame strips ( 01 ) are fixed around the photovoltaic laminate ( 05 ), and the cross bar ( 03 ) is installed on a back of the photovoltaic laminate ( 05 ) with ends of the cross bar ( 03 ) snap into the steel frame strips ( 01 ).
27 . The photovoltaic frame according to claim 26 , wherein an end of the cross bar ( 03 ) is mounted in a middle section of a steel frame strip ( 01 ); the photovoltaic laminate ( 05 ) is connected with a junction box ( 06 ), a junction box installation chamber ( 31 ) for placing the junction box ( 06 ) is provided inside the cross bar ( 03 ), and a cable hole ( 311 ) is provided on the junction box installation chamber ( 31 ).
28 . The photovoltaic frame according to any one of claim 1 or 26 , wherein the protruding/recessing portion ( 23 ) and the bent section ( 24 ) are provided with protrusions or recessed holes ( 26 ) for engaging with corner connectors ( 04 ).
29 . The photovoltaic frame according to claim 26 , wherein a reinforcing wall ( 16 ) is bent and connected underneath the first steel wall ( 12 ) and overlies it; a length of the reinforcing wall ( 16 ) is less than or equal to a length of the first steel wall ( 12 ); or a right side of the first steel wall ( 12 ) is inclined toward the opening ( 11 ) of the first mounting chamber ( 1 ) to secure a photovoltaic module.
30 . A photovoltaic module, comprising a photovoltaic laminate ( 05 ) and a photovoltaic frame for mounting the photovoltaic laminate ( 05 ), characterized in that the photovoltaic frame is the photovoltaic frame claimed in claim 1 .
31 . The photovoltaic module according to claim 30 , wherein the photovoltaic frame is fixed around the photovoltaic laminate ( 05 ), the photovoltaic frame is provided with a cross bar ( 03 ), and the photovoltaic laminate ( 05 ) comprises a back panel ( 51 ), a first adhesive film, a cell string ( 53 ), a second adhesive film, and a front panel stacked in sequence; the front panel comprises two glass front panels ( 52 ) mounted side by side on the second adhesive film; a buffer gap ( 521 ) is formed between the two glass front panels ( 52 ), and a sealing strip ( 54 ) is provided in the buffer gap ( 521 ).