The present invention relates to a protection module for protecting a solar panel, especially the corner of a solar panel, inserted between the adjacent stacked solar panels when manufactured solar panels are stacked for storage and transport.
A photovoltaic module for converting sunlight into electricity is manufactured as below. Photovoltaic layers made of silicon film and electric conductive layers are formed on the back of a glass board. Further, a protection layer of synthetic resin is formed on that surface. The fringe of a photovoltaic module is surrounded with a frame made of processed drawn metal of aluminum or aluminum alloy to build a solar panel.
A frame is made of drawn metal with a connecting groove of square-U cross section. The drawn metal with the square-U connecting groove is mounted on all edges around the photovoltaic module to build a frame (refer to
The solar panel surrounded with frames as above is accumulated for storage and transport. At this time, it is necessary to prevent collapse of cargo piles and breakage of solar panels. Therefore, the protection modules are attached to four corners of a solar panel when stacked. It is already proposed in the following patent document 1.
[Patent document 1] JP2006-032978A
The protection module as disclosed in the patent document 1 is for attaching to four corners of a solar panel. However, if they are attached to four corners of an accomplished solar panel, they fall off when the panel is lifted up. Therefore, the protection modules are not attached to solar panels until the solar panels are packaged.
A panel corner may be damaged at the period until packaging after completion of a solar panel. Then, it is required to equip a solar panel with a protection module immediately after completion of a solar panel.
The mass-produced solar panel is not a square but a rectangle. Two sorts of drawn metal are used for longer side and shorter side. Their cross-sections are different from each other. It is because of mechanical strength of the frame for supporting the photovoltaic module and the convenience of installation of panels.
The drawn metal 2 on longer side, as shown in the section of
These drawn metal 2 on longer side and the drawn metal 3 on shorter side are combined to build a frame 1 like a fine-art painting frame as shown in the plan view of
Therefore, the protection module for a solar panel of this invention is invented to achieve the following objects. The protection module does not fall off if a solar panel is lifted up or tilted when the protection modules are attached to each corner of frame 1 as constituted above. And the protection module prevents collapse of cargo piles at the accumulation of solar panels.
A protection module for a solar panel of this invention is for protecting a solar panel as follows. The above-mentioned photovoltaic module is inserted to the frame to build a solar panel. The frame is made of processed drawn metal with upper edge forming a connection groove with square-U cross section and lower edge. The protection module has rectangular sidewalls to cover two corner edges of the stacked solar panel. The protection module has a stage-like insertion member. The insertion member is inserted between the stacked solar panels. The insertion member is molded integrally with connecting its two edges to the sidewalls. A bank is formed on the top surface of the insertion member. The bank has hooking slopes for hooking on lower edges of the frame. Terraces with ridge for grasping upper edges of the frame are formed on the underside of the insertion member.
The protection module of this invention has following advantages. The protection modules protect a solar panel when attached to the corners of the accomplished solar panel. The protection modules do not fall off when the solar panel is lifted up or tilted. The protection modules prevent collapse of cargo piles at the accumulation of solar panels.
The first embodiment of the protection module for a solar panel of this invention is molded from synthetic resin as shown in the plan view of
A square flat bank 45 is formed at the corner apart from two sidewalls 41, 41 on the upper surface of the stage-like insertion member 44. The bank has two hooking slopes 46, 46 with wedge-shaped cross-section. The slope is deeply cut to the inner side. These hooking slopes 46, 46 are for hooking on the edge face of the wide lower edge 34 of the drawn metal 3 as shown in the longitudinal section in
On the lower surface of this insertion member 44, two terraces 47, 47 are formed in parallel and adjacent to the inner surface 42 of the sidewalls 41, 41 except the corner area. The terrace 47 has a ridge 48 for hooking on the slopes 23, 23 formed inside of the upper edges 22, 32 of the drawn metals 2, 3 (refer to
In addition, the cylindrical hollow 43 formed in the inside corner where the sidewalls 41 and 41 meet is formed so that the corner of the solar panel might not be damaged when the corner of the solar panel would collide against the inside corner of the sidewalls.
When the protection module as constituted as above is attached in the corner of the solar panel, as shown in
The distance Y (refer to
And, when the plural solar panels are stacked, as shown in the longitudinal section in
In addition, on the longer side and the shorter side of the frame 1, two sorts of drawn metals 2, 3 with different cross-section, especially widths x, y of the lower edges 24, 34, are used. Two hooking slopes 46, 46 are formed at the symmetric position with respect to the diagonal line of the protection module 4. Therefore, the protection module is constituted to be able to attach to any upper or lower corner of ether side of the frame 1.
The second embodiment of the protection module for a solar panel is that to reduce the used amount of the material while keeping mechanical strength.
As shown in the plan view of
On the upper surface of this stage-like insertion member 54, at the corner apart from two sidewalls 51, 51, two banks 55, 55 are formed. Each bank is parallel to each sidewall crossing perpendicular to each other. The overhangs 56, 56 are formed at the top of the side surface against the sidewalls 51, 51 of these two banks 55, 55. These overhangs 56, 56 are, as shown in the longitudinal section in
On the lower surface of this insertion member 54, plural terraces 57 are formed against the inner surfaces 52, 52 of the sidewalls 51, 51. The terrace has a ridge 58 for grasping the slopes 23, 23 formed inside of the upper edges 22, 32 of the drawn metals 2, 3.
In addition, the hole 59 at the center of the stage-like insertion member 44 is a hole opened at the part indifferent to the mechanical strength. It is opened to reduce the amount of the materials.
When the protection module constituted as above is attached to the corner of a solar panel, same as the first embodiment, as shown in
In the second embodiment as explained above, the overhang 56 of the bank 55 formed at the insertion member 54 is hooked on the lower edge 34 of the drawn material 3 on the shorter side of the frame 1. Then, the protection module 5 is attached to four corners of the photovoltaic module 6.
About the attached protection module 5, one hand of the overhangs 56 formed on two sides of the banks 55 is hooked on the lower edge 34 of the drawn metal 3 on the shorter side. But, it is not hooked on the lower edge 24 of the drawn metal 2 on longer side. Then, if it is attached with some offset in parallel to the drawn metal 3 on shorter side, a gap may arise between the inner surface of the protection module 5 and the side surface of the drawn metal 2 on longer side.
Therefore, in the third embodiment, the protection module 5 is constituted to attach to the corner of the frame 1 with positioning by hooking on both of the drawn metal 2 on longer side and the drawn metal 3 on shorter side.
As shown in the plan view of
Next, the position to form the cubical boss S is explained.
When both ends of the drawn metal 2 on longer side are processed by cutting, as shown in the plan view (a) and the bottom view (b) of
When both ends of the drawn metal 3 on shorter side are processed by cutting, as shown in the plan view (c) and the bottom view (d) of
Thus, in the state where the drawn metal 2 on longer side and the drawn metal 3 on shorter side with both ends cut were connected at right angle, the gap T is formed as shown in the bottom view (a) of
As shown in the bottom view (c) of
When the boss S is arranged thus, in a symmetrical position with respect to the diagonal line P-Q of the protection module 4, two banks 55 and the boss S are formed. Therefore, it can be attached to anyone of four corners of the frame 1.
The boss S explained above is applicable also to the first embodiment. Moreover, a pillar is sufficient as the form of the boss S, without restricting to a square pole. It is enough that the pillar is arranged so that the diagonal line P-Q passes through the center of this pillar.
1 frame
2 drawn metal on longer side
3 drawn metal on shorter side
23, 33 upper edge
24, 34 lower edge
25, 35 tubular part
26 projection member
4, 5 protection module
41, 51 sidewall
42, 52 inner surface of sidewall
44, 54 insertion member
45, 55 bank
46 hooking slope
56 overhang
6 photovoltaic module
S boss
T gap
Number | Date | Country | Kind |
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2010-027615 | Feb 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2011/052252 | 2/3/2011 | WO | 00 | 8/9/2012 |