JP4826541B2 - Solar panel mounting structure - Google Patents

Solar panel mounting structure Download PDF

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JP4826541B2
JP4826541B2 JP2007119501A JP2007119501A JP4826541B2 JP 4826541 B2 JP4826541 B2 JP 4826541B2 JP 2007119501 A JP2007119501 A JP 2007119501A JP 2007119501 A JP2007119501 A JP 2007119501A JP 4826541 B2 JP4826541 B2 JP 4826541B2
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waterproof cover
flat roof
solar cell
cell panel
fixing
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JP2008274647A (en
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雅利 世古口
朋秀 吉田
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Panasonic Corp
Panasonic Electric Works Co Ltd
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Panasonic Corp
Matsushita Electric Works Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S25/00Arrangement of stationary mountings or supports for solar heat collector modules
    • F24S25/30Arrangement of stationary mountings or supports for solar heat collector modules using elongate rigid mounting elements extending substantially along the supporting surface, e.g. for covering buildings with solar heat collectors
    • F24S25/33Arrangement of stationary mountings or supports for solar heat collector modules using elongate rigid mounting elements extending substantially along the supporting surface, e.g. for covering buildings with solar heat collectors forming substantially planar assemblies, e.g. of coplanar or stacked profiles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S25/00Arrangement of stationary mountings or supports for solar heat collector modules
    • F24S25/60Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules
    • F24S25/61Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for fixing to the ground or to building structures
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Description

本発明は、太陽電池パネルの取付構造に関するものである。   The present invention relates to a solar cell panel mounting structure.

従来から、平板屋根材に対して太陽電池パネルを固定する場合、太陽電池パネルの複数箇所に固定金具が予め固定されており、太陽電池パネルを屋根に載置した状態で、各固定金具を平板屋根材に対してそれぞれビスで固定するようにした取付構造が知られている(例えば、特許文献1参照)。   Conventionally, when fixing a solar cell panel to a flat roof material, fixing brackets are fixed in advance at a plurality of locations of the solar cell panel, and each fixing bracket is flattened in a state where the solar cell panel is placed on the roof. There is known a mounting structure that is fixed to a roof material with screws (for example, see Patent Document 1).

ところが上記特許文献1に見られる従来例では、工場で太陽電池パネルの複数箇所に予め固定金具が取り付けられた大型サイズの太陽電池パネルユニットを製造し、これを現場で屋根の上に運び、屋根の上で複数の固定金具を屋根の複数箇所にそれぞれビス固定する大掛かりな作業を行なう必要がある。しかも、複数の固定金具の取り付け途中で大型サイズの太陽電池パネルを手で支えながらの作業となり、このため傾斜した屋根上での高所作業に多大な労力及び時間がかかるなど、作業性及び安全性を向上させることが困難であった。
特開2005−36548号公報
However, in the conventional example shown in the above-mentioned Patent Document 1, a large-sized solar panel unit in which fixing brackets are attached in advance to a plurality of locations of the solar panel is manufactured at a factory, and this is carried on the roof on the site, It is necessary to perform a large-scale work for fixing a plurality of fixing brackets to a plurality of locations on the roof. In addition, it becomes work while supporting a large-sized solar cell panel by hand while attaching a plurality of fixing brackets, and therefore it takes a lot of labor and time to work at a high place on an inclined roof. It was difficult to improve the property.
JP 2005-36548 A

本発明は上記の従来の問題点に鑑みて発明したものであって、太陽電池パネルの取付作業を安全で無理のない姿勢で簡単に行なうことができ、これにより施工性が大幅に向上すると共に工場での生産性が向上し、さらに平板屋根材に対して固定金具をビス固定する際に、平板屋根材のビス孔回りの雨仕舞いを安価に、しかも確実に且つ効率的に行なうことができる太陽電池パネルの取付構造を提供することを課題とするものである。   The present invention has been invented in view of the above-described conventional problems, and can easily perform a solar panel mounting operation in a safe and reasonable posture, thereby greatly improving workability. Productivity is improved at the factory, and when the fixing brackets are screwed to the flat roofing material, it is possible to carry out the rain around the screw holes of the flat roofing material inexpensively, reliably and efficiently. An object of the present invention is to provide a solar cell panel mounting structure.

前記課題を解決するために本発明は、水下側Bから水上側Aに上下多段に葺き重ねられた平板屋根材2からなる屋根1の複数個所に、太陽電池パネル3Aを平板屋根材2に対して固定するための固定金具4が各々配置され、前記各々の固定金具4が配置される屋根1の各箇所P1〜P4……において、それぞれ、屋根1の勾配方向に隣接する少なくとも上下2段以上の平板屋根材2A,2B……のそれぞれの表面露出部8を連続して防水カバー5にて覆うと共に、防水カバー5の上端部に設けた上差込み片6を、防水カバー5で覆われる最上段の平板屋根材2Aの水上側Aの上部とこれよりも上段側の平板屋根材2Cの水下側Bの下部との重なり部分9の隙間に差し込み、前記防水カバー5の表面側に前記上下2段以上の平板屋根材2A,2B……に跨るようにして1つの固定金具4を配置すると共に該1つの固定金具4の複数箇所に設けられた固定部7のうち水上側Aに位置する固定部7Aを防水カバー5の水上側Aの上部を介して上段側の平板屋根材2Aにビス固定し、水下側Bに位置する固定部7Bを防水カバー5の水下側Bの下部を介して下段側の平板屋根材2Bにビス固定するようにして、屋根1の各個所P1〜P4……に固定金具4を各々固定し、各固定金具4に対して太陽電池パネル3Aを取り付け、前記防水カバー5の裏面に、前記平板屋根材2A,2B……のビス孔回りnを囲むように配置される防水パッキン11を取り付けたことを特徴としている。 In order to solve the above-mentioned problems, the present invention provides a solar cell panel 3A as a flat roof material 2 at a plurality of locations of a roof 1 made of flat roof materials 2 that are stacked up and down in multiple stages from a water side B to a water side A. Fixing brackets 4 for fixing to each other are disposed, and at each of the locations P1 to P4... Of the roof 1 where the respective fixing brackets 4 are disposed, at least two upper and lower stages adjacent to each other in the gradient direction of the roof 1. Each surface exposed portion 8 of the flat roof materials 2A, 2B... Is continuously covered with the waterproof cover 5 and the upper insertion piece 6 provided on the upper end portion of the waterproof cover 5 is covered with the waterproof cover 5. The upper portion of the flat roof material 2A on the uppermost side is inserted into a gap of an overlapping portion 9 between the upper portion of the upper side A of the flat roof material 2C and the lower portion of the lower side B of the flat roof material 2C. Flat roof material 2A, 2 above and below two steps ... Are arranged so as to straddle the fixing part 7A located on the water side A among the fixing parts 7 provided at a plurality of locations of the one fixing metal part 4. Screws are fixed to the upper flat roof material 2A through the upper part of A, and the fixing portion 7B located on the lower water side B is fixed to the lower flat roof material 2B through the lower part of the lower water side B of the waterproof cover 5. The fixing brackets 4 are fixed to the respective portions P1 to P4... Of the roof 1 so as to be fixed with screws, and the solar cell panels 3A are attached to the respective fixing brackets 4. The flat plate is attached to the back surface of the waterproof cover 5. The waterproof packing 11 arranged so as to surround the screw hole periphery n of the roofing materials 2A, 2B... Is attached .

このような構成とすることで、固定金具4と太陽電池パネル3Aとを別体とし、複数の固定金具4を屋根1の複数個所P1〜P4……にビス固定してから、この固定金具4に対して太陽電池パネル3Aを取り付けることができるので、従来のように太陽電池パネルと一体の固定金具を平板屋根材にビス固定する場合と比較して、太陽電池パネル3Aの取付作業を安全で無理のない姿勢で行なうことができる。しかも、平板屋根材2に対して固定金具4をビス固定する際に、固定金具4が固定される上下2段以上の平板屋根材2A,2B……を防水カバー5で覆うと共に、防水カバー5の上差込み片6を上段側の平板屋根材2B,2C間の重なり部分9に差し込むことにより、水上側Aから流れ落ちる雨水が防水カバー5の上端部から防水カバー5の裏面へと回り込むことができず、防水カバー5の裏面側における平板屋根材2A,2B……のビス孔回りnへの雨水の浸入を防止できると共に、固定金具4に設けた水上側Aに位置する固定部7Aと水下側Bに位置する固定部7Bとが、防水カバー5で覆われる上下2段以上の平板屋根材2A,2B……に対して各々固定されるので、各々の平板屋根材2A,2B……においてビス締めによるクラックの発生を極力防止できると共に各々の平板屋根材2A,2B……へのダメージを最小限に抑えることができるようになる。また、前記防水カバー5の裏面に、前記平板屋根材2A,2B……のビス孔回りnを囲むように配置される防水パッキン11を取り付けるので、雨水が防水カバー5の裏面に浸入した場合でも、その雨水は防水パッキン11によって平板屋根材2A,2B……のビス孔回りnへの進行を防水パッキン11によって阻まれることにより、平板屋根材2A,2B……のビス孔回りnへの雨水の浸入防止効果をより高めることができる。 With such a configuration, the fixing bracket 4 and the solar cell panel 3A are separated, and a plurality of fixing brackets 4 are screw-fixed to a plurality of locations P1 to P4. Since the solar cell panel 3A can be attached to the solar cell panel, the mounting operation of the solar cell panel 3A is safer than the conventional case where the fixing bracket integrated with the solar cell panel is screwed to the flat roof material. It can be done with a reasonable posture. Moreover, when the fixing bracket 4 is screw-fixed to the flat roof material 2, the upper and lower flat roof materials 2A, 2B... To which the fixing bracket 4 is fixed are covered with the waterproof cover 5, and the waterproof cover 5 is also covered. By inserting the upper insertion piece 6 into the overlapping portion 9 between the flat roof materials 2B and 2C on the upper stage side, rain water flowing from the water upper side A can circulate from the upper end of the waterproof cover 5 to the back surface of the waterproof cover 5. In addition, it is possible to prevent rainwater from entering the screw holes around the screw holes n of the flat roof materials 2A, 2B... On the back surface side of the waterproof cover 5, and the fixing portion 7A located on the water upper side A provided on the fixing bracket 4 and the Since the fixing portion 7B located on the side B is fixed to the upper and lower flat roof materials 2A, 2B... Covered with the waterproof cover 5, the flat roof materials 2A, 2B. Crack due to screw tightening Each flat roofing 2A with the occurrence can be prevented as much as possible, it is possible to minimize the damage to the 2B ....... Moreover, since the waterproof packing 11 arrange | positioned so that the screw hole periphery n of the said flat roof materials 2A, 2B ..... may be attached to the back surface of the said waterproof cover 5, even when rainwater permeates into the back surface of the waterproof cover 5. The rainwater is prevented by the waterproof packing 11 from being advanced around the screw holes n of the flat roof materials 2A, 2B... It is possible to further enhance the intrusion prevention effect.

また、前記各々の固定金具4には、太陽電池パネル3Aに対して取り付けられる太陽電池パネル取付具12が設けられ、該太陽電池パネル取付具12の位置を固定金具4の固定位置に対して屋根1の勾配方向に可変自在とするのが好ましく、この場合、仮りに固定金具4の固定位置が勾配方向にずれている場合でも、固定部7の固定位置を調整することなく、太陽電池パネル取付具12の位置を調整するだけで、太陽電池パネル3Aの水平位置の調整を容易にでき、これにより太陽電池パネル3Aの取付作業が容易となり、取付効率がより一層向上する。   In addition, each of the fixing brackets 4 is provided with a solar cell panel fixture 12 that is attached to the solar cell panel 3 </ b> A. 1 is preferably variable in the gradient direction, and in this case, even if the fixing position of the fixing bracket 4 is shifted in the gradient direction, the solar cell panel can be mounted without adjusting the fixing position of the fixing portion 7. By simply adjusting the position of the tool 12, the horizontal position of the solar cell panel 3A can be easily adjusted. This facilitates the mounting operation of the solar cell panel 3A and further improves the mounting efficiency.

また、前記防水カバー5の下端部に下方に突出する下係止片10を設け、下係止片10を防水カバー5で覆われる最下段の平板屋根材2の下端面に引っ掛けることで前記上差込み片6の重なり部分9間への差込み寸法mを規制するのが好ましく、この場合、下係止片10を防水カバー5で覆われる最下段の平板屋根材2の下端面に引っ掛けることで、上差込み片6の重なり部分9間への差込み寸法mを規制することができ、これにより平板屋根材2に対する防水カバー5の位置決めが容易となり、防水カバー5の取り付け精度を容易に確保できると共に、水下側Bからの雨水の吹き込みに対する耐性が向上し、平板屋根材2A,2B……のビス孔回りnの防水効果がより確実に得られるものである。   Further, a lower locking piece 10 protruding downward is provided at the lower end of the waterproof cover 5, and the lower locking piece 10 is hooked on the lower end surface of the lowermost flat roof material 2 covered with the waterproof cover 5. It is preferable to regulate the insertion dimension m between the overlapping portions 9 of the insertion pieces 6, and in this case, by hooking the lower locking piece 10 on the lower end surface of the lowermost flat roof material 2 covered with the waterproof cover 5, The insertion dimension m between the overlapping portions 9 of the upper insertion piece 6 can be regulated, thereby facilitating the positioning of the waterproof cover 5 with respect to the flat roofing material 2, and easily securing the mounting accuracy of the waterproof cover 5. Resistance to the rainwater blowing from the underwater side B is improved, and the waterproof effect around the screw holes n of the flat roof materials 2A, 2B.

本発明は、固定金具と太陽電池パネルとを別体で構成したことにより、従来のように太陽電池パネルと一体の固定金具を平板屋根材にビス固定する場合と比較して、太陽電池パネルの取付作業を安全で無理のない姿勢で簡単に行なうことができ、これにより施工性が大幅に向上する効果が得られ、さらに、工場で固定金具と太陽電池パネルとを別々に作製できるので、工場での生産性が向上する効果が得られる。そのうえ平板屋根材に対して固定金具をビス固定する際に、平板屋根材のビス孔回りの雨仕舞いを安価に、しかも確実に且つ効率的に行なうことができる効果も得られる。   In the present invention, since the fixing bracket and the solar cell panel are configured separately, the solar cell panel is compared with the case where the fixing bracket integral with the solar cell panel is screw-fixed to the flat roof material as in the past. Installation work can be easily performed in a safe and reasonable posture, which has the effect of greatly improving workability, and because the fixture and solar panel can be manufactured separately at the factory, The effect of improving the productivity at is obtained. In addition, when fixing the fixing bracket to the flat roof material with screws, it is possible to obtain an effect that the rain around the screw hole of the flat roof material can be carried out inexpensively, reliably and efficiently.

以下、本発明を添付図面に示す実施形態に基いて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the accompanying drawings.

図1は、水下側Bから水上側Aに上下多段に葺き重ねられた平板屋根材2の上に設置される屋根設置用設備3を、平板屋根材2に対して固定するための固定金具4の取付構造の一例を示す側面図である。   FIG. 1 shows a fixing bracket for fixing a roof installation equipment 3 installed on a flat roof material 2 that is stacked in a multistage manner from the lower side B to the upper side A. It is a side view which shows an example of the attachment structure of 4.

ここで、屋根設置用設備3として、太陽光で発電を行なう太陽電池パネル3Aを説明する。   Here, a solar cell panel 3 </ b> A that generates power with sunlight will be described as the roof installation equipment 3.

平板屋根材2は、例えばスレート瓦を例示するが、それ以外にセメント瓦、粘土瓦、樹脂瓦等でもよい。この種の平板屋根材2は軽量性及び取り扱い性の良さから近年多く用いられている。   The flat roof material 2 is exemplified by a slate tile, for example, but may be a cement tile, a clay tile, a resin tile, or the like. This type of flat roofing material 2 has been widely used in recent years because of its light weight and good handleability.

本例では、左右方向に密接配置された横列の平板屋根材2が、水下側Bから水上側Aへと上下に多段にわたって葺き重ねられていると共に、各段ごとに平板屋根材1/2枚分だけ左右にずらした状態でアスファルトルーフィング(図示せず)上に葺き重ねられている。   In this example, the horizontal flat roof materials 2 closely arranged in the left-right direction are vertically stacked in multiple stages from the lower water side B to the upper water surface A, and the flat roof material 1/2 for each step. It is rolled up on asphalt roofing (not shown) in a state shifted by left and right.

また、各平板屋根材2の小割感を出すため、各平板屋根材2の水下側Bの下部に、それぞれ、屋根1の勾配方向(軒棟方向)に直線状に延びるスリット部15を左右方向(軒棟方向と直交する方向)に等間隔をあけて複数形成されている。   In addition, in order to give a feeling of subdivision of each flat roof material 2, slit portions 15 extending linearly in the gradient direction (eave ridge direction) of the roof 1 are respectively provided in the lower part of the underwater side B of each flat roof material 2. A plurality are formed at equal intervals in the left-right direction (direction perpendicular to the eaves-ridge direction).

なお、図1中の16は野地板、17は瓦釘、Aは屋根1の水上側(棟側)、Bは屋根1の水下側(軒側)をそれぞれ示している。   In FIG. 1, 16 indicates a field plate, 17 indicates a brick nail, A indicates a water side (ridge side) of the roof 1, and B indicates a water side (eave side) of the roof 1.

ここで本発明においては、太陽電池パネル3Aの固定金具4が固定される平板屋根材2を覆うための防水カバー5を備えている。この防水カバー5は、平板屋根材2A,2Bのビス孔回りnへの雨水の浸入を防止し、さらに平板屋根材2A,2Bのビス孔に注入されるコーキング剤18が切れたり、或いはコーキング剤18の注入忘れがあった場合でも、その部分からの水漏れも防止する働きをする。図2(a)は防水カバー5の平面図、(b)は側面図、(c)は屋根1の勾配方向に隣接する上下2段(或いは上下3段以上でもよい)の平板屋根材2A,2Bのそれぞれの表面露出部8を連続して覆う状態を説明する側面図である。本例では、防水カバー5の中央側に、上下2段の平板屋根材2A,2Bの表面露出部8に沿うように折り曲げられた段部5aが形成されており、防水カバー5の裏面が上下2段の平板屋根材2A,2Bの表面露出部8にそれぞれ密着して敷設できるようになっている。   Here, in this invention, the waterproof cover 5 for covering the flat roof material 2 to which the fixing metal fitting 4 of the solar cell panel 3A is fixed is provided. The waterproof cover 5 prevents rainwater from entering the screw holes n of the flat roof materials 2A and 2B, and the caulking agent 18 injected into the screw holes of the flat roof materials 2A and 2B is cut or the caulking agent. Even if 18 injections are forgotten, it works to prevent water leakage from that part. 2A is a plan view of the waterproof cover 5, FIG. 2B is a side view, and FIG. 2C is a flat roof material 2A having two upper and lower stages (or three or more upper and lower stages) adjacent to the gradient direction of the roof 1. It is a side view explaining the state which covers each surface exposure part 8 of 2B continuously. In this example, a step portion 5a is formed on the center side of the waterproof cover 5 so as to be bent along the surface exposed portions 8 of the two-level flat roof materials 2A and 2B. It can be laid in close contact with the surface exposed portions 8 of the two-step flat roof materials 2A and 2B.

防水カバー5のサイズは、固定金具4よりも長く且つ固定金具4よりも巾広に形成されている。本例では、例えば図5(b)のように下段側の1枚の平板屋根材2Bから上段側の左右2枚の平板屋根材2A,2Aに跨って、計3枚の表面を覆う大きさを有している。具体的には巾は450mm、全長は400mm程度とされるが、勿論この数値に限定されるものではない。なお、防水カバー5の材質は、鉄やステンレス等の板金のプレス加工品とか、ポリカーボネイトなどの樹脂成型品等を適用できるが、特に限定されない。 The size of the waterproof cover 5 is longer than the fixing bracket 4 and wider than the fixing bracket 4. In this example, for example, as shown in FIG. 5B, a total of three surfaces are covered across one flat roof material 2B on the lower stage side and two left and right flat roof materials 2A 1 and 2A 2 on the upper stage side. It has a size. Specifically, the width is about 450 mm and the total length is about 400 mm, but it is not limited to this value. The material of the waterproof cover 5 is not particularly limited, although a pressed product of sheet metal such as iron or stainless steel or a resin molded product such as polycarbonate may be used.

前記防水カバー5の上端部は上差込み片6となっている。上差込み片6は、図2(c)のように防水カバー5で覆われる最上段の平板屋根材2Aの水上側Aの上部とこれよりも更に上段側の平板屋根材2Cの水下側Bの下部との重なり部分9の隙間に差し込まれる。このときの差込み寸法mは例えば40mm程度とされる。上差込み片6は水上側Aから流れ落ちる雨水が防水カバー5の上端部から裏面に回り込むのを防止する役目を果たし、さらに防水カバー5の上端部を平板屋根材2Cに対して固定する役目も果たす。   The upper end portion of the waterproof cover 5 is an upper insertion piece 6. As shown in FIG. 2C, the upper insertion piece 6 includes an upper part on the upper side A of the uppermost flat roof material 2A covered with the waterproof cover 5 and an underwater side B of the upper level flat roof material 2C. It is inserted into the gap of the overlapping portion 9 with the lower part of. The insertion dimension m at this time is about 40 mm, for example. The upper insertion piece 6 serves to prevent rain water flowing from the water upper side A from flowing from the upper end portion of the waterproof cover 5 to the back surface, and further serves to fix the upper end portion of the waterproof cover 5 to the flat roof material 2C. .

前記防水カバー5の下端部には、下方に突出する下係止片10が設けられている。下係止片10は防水カバー5で覆われる最下段の平板屋根材2Bの下端面に引っ掛けることで前記上差込み片6の重なり部分9間への差込み寸法mを規制できるようにしている。なお、下係止片10の折り曲げ形状は図2のようなL字状、或いは図3のようなコ字形の折り返し形状のいずれでもよい。   A lower locking piece 10 that protrudes downward is provided at the lower end of the waterproof cover 5. The lower locking piece 10 is hooked on the lower end surface of the lowermost flat roof material 2 </ b> B covered with the waterproof cover 5 so that the insertion dimension m between the overlapping portions 9 of the upper insertion piece 6 can be regulated. The bent shape of the lower locking piece 10 may be either an L shape as shown in FIG. 2 or a U-shaped folded shape as shown in FIG.

前記防水カバー5の裏面には、図3(a)に示すように、平板屋根材2A,2Bのビス孔回りnを囲むように配置される防水パッキン11が取着されている。この防水パッキン11は、例えば底辺のない略台形状をしたエプトシーラー等のシーリング材で構成されている。防水パッキン11は防水カバー5の裏面に万一雨水が浸入しても、この雨水が平板屋根材2A,2Bのビス孔回りnまで到達するのを阻止するものである。   As shown in FIG. 3A, a waterproof packing 11 is attached to the back surface of the waterproof cover 5 so as to surround the screw holes n of the flat roof materials 2A and 2B. The waterproof packing 11 is made of a sealing material such as an eptosealer having a substantially trapezoidal shape with no bottom. The waterproof packing 11 prevents rainwater from reaching the screw holes n of the flat roof materials 2A and 2B even if rainwater enters the back surface of the waterproof cover 5.

一方、防水カバー5の表面側には、図4に示す固定金具4が配置される。固定金具4は、防水カバー5で覆われた上下2段の平板屋根材2A,2Bに跨るようにして配置される断面逆U字形に形成されており、その上面には固定金具4の長さ方向に沿って一直線状の溝14が開口しており、この溝14の中に太陽電池パネル取付具としてのナット付き連結ボルト12(図1)がスライド嵌合され、屋根1の勾配方向に可変自在とされている。   On the other hand, a fixing metal fitting 4 shown in FIG. The fixing bracket 4 is formed in an inverted U-shaped cross section arranged so as to straddle the upper and lower flat roof materials 2A and 2B covered with the waterproof cover 5, and the length of the fixing bracket 4 is on the upper surface thereof. A straight groove 14 is opened along the direction, and a connecting bolt 12 with a nut (FIG. 1) as a solar panel mounting tool is slid into the groove 14 so as to be variable in the gradient direction of the roof 1. It is supposed to be free.

前記固定金具4の前部及び後端部には、それぞれ左右一対の平板状の固定部7が突設されている。各固定部7には、パッキン付ビス13(図1)を挿入するビス孔が開口している。ここでは、水上側Aに位置する左右の固定部7Aに挿入されるパッキン付ビス13は、防水カバー5の水上側Aの上部を貫通して上段側の平板屋根材2Aに打ち込まれるものであり、水下側Bに位置する固定部7Bに取り付けたパッキン付ビス13は防水カバー5の水下側Bの下部を貫通して下段側の平板屋根材2Bに打ち込まれるものである。また本例では図1のように、水上側Aのパッキン付ビス13は、上段側の平板屋根材2Aと下段側の平板屋根材2Bとの重なり部分9を貫通して野地板16に打ち込まれ、一方、水下側Bのパッキン付ビス13は、下段側の平板屋根材2Bとそれよりも下段側の平板屋根材2との重なり部分9を貫通して野地板16に打ち込まれるようになっている。   A pair of left and right flat plate-shaped fixing portions 7 are projected from the front and rear end portions of the fixing metal 4. Each fixing portion 7 has a screw hole into which a screw 13 with packing (FIG. 1) is inserted. Here, the screw 13 with packing inserted into the left and right fixing portions 7A located on the water upper side A penetrates the upper part of the water upper side A of the waterproof cover 5 and is driven into the upper flat roof material 2A. The screw 13 with packing attached to the fixing portion 7B located on the underwater side B penetrates the lower side of the underwater side B of the waterproof cover 5 and is driven into the lower flat roof material 2B. Further, in this example, as shown in FIG. 1, the packing-side screw 13 on the water upper side A is driven into the base plate 16 through the overlapping portion 9 of the flat roof material 2A on the upper stage side and the flat roof material 2B on the lower stage side. On the other hand, the screw 13 with packing on the underwater side B penetrates the overlapping portion 9 between the flat roof material 2B on the lower stage side and the flat roof material 2 on the lower stage side, and is driven into the base plate 16. ing.

次に、前記平板屋根材2の上に固定金具4、太陽電池パネル3Aを順に設置する手順を図5、図8を参照して説明する。   Next, a procedure for sequentially installing the fixture 4 and the solar cell panel 3A on the flat roof material 2 will be described with reference to FIGS.

図5(a)に示す既存の屋根1において、先ず、図5(b)のように屋根1の所定箇所に葺き重ねられている上下2段の平板屋根材2A,2Bのそれぞれの表面露出部8を連続して覆うように防水カバー5を配置する。このとき図2(c)のように、防水カバー5の上端部に設けた上差込み片6を、防水カバー5で覆われる最上段の平板屋根材2Aの水上側Aの上部とこれよりも上段側の平板屋根材2Cの水下側Bの下部との重なり部分9の隙間に差し込む。   In the existing roof 1 shown in FIG. 5 (a), first, the surface exposed portions of the upper and lower two-level flat roof materials 2A and 2B that are piled up at predetermined locations on the roof 1 as shown in FIG. 5 (b). The waterproof cover 5 is disposed so as to continuously cover 8. At this time, as shown in FIG. 2 (c), the upper insertion piece 6 provided at the upper end of the waterproof cover 5 is connected to the upper part of the upper side A of the uppermost flat roof material 2A covered with the waterproof cover 5 and the upper part thereof. It inserts in the clearance gap of the overlap part 9 with the lower part of the underwater side B of the flat roof material 2C of the side.

その後、図5(c)のように、防水カバー5の表面側に、前記上下2段の平板屋根材2A,2Bに跨るようにして固定金具4を配置する。この段階では平板屋根材2への固定は行なわない。   Thereafter, as shown in FIG. 5C, the fixing bracket 4 is arranged on the surface side of the waterproof cover 5 so as to straddle the two upper and lower flat roof materials 2A and 2B. At this stage, fixing to the flat roof material 2 is not performed.

その後、図5(d)に示す電動穴あけ工具20aで防水カバー5及び上下2段の平板屋根材2A,2Bに対して、それぞれ先穴をあけ、ダストポンプ(図示せず)で切削粉を除去してから、図5(e)に示すコーキング剤供給装置19を用いて、先穴内にコーキング剤18を注入する。   Then, the electric drilling tool 20a shown in FIG. 5 (d) is used to drill the front holes in the waterproof cover 5 and the upper and lower two-level flat roof materials 2A and 2B, and the cutting powder is removed with a dust pump (not shown). Then, the caulking agent 18 is injected into the tip hole using the caulking agent supply device 19 shown in FIG.

その後、固定金具4の複数箇所に設けられた固定部7A,7Bのうち、水上側Aに位置する固定部7Aに取り付けたパッキン付ビス13(図1)を図5(f)に示す電動ドライバー20bで防水カバー5の先穴を貫通して上段側の平板屋根材2Aの先穴に打ち込む。同様にして、水下側Bに位置する固定部7Bに取り付けたパッキン付ビス13を防水カバー5の先穴を貫通して下段側の平板屋根材2Bの先穴に打ち込むことにより、防水カバー5の取り付けを終了する(図6の状態)。ここで、防水カバー5及び平板屋根材2A,2Bに先孔を事前にあけておくことにより、ビスの打ち込み時に防水カバー5や平板屋根材2が持ち上がったり、割れたりするのを防止でき、ビス止め作業が容易となる。   After that, among the fixing portions 7A and 7B provided at a plurality of locations of the fixing bracket 4, the screw 13 with packing (FIG. 1) attached to the fixing portion 7A located on the waterside A is shown in FIG. 5 (f). 20b penetrates the tip hole of the waterproof cover 5 and drives it into the tip hole of the upper flat roof material 2A. Similarly, the waterproof cover 5 is formed by driving the screw with packing 13 attached to the fixing portion 7B located on the waterside B through the front hole of the waterproof cover 5 and driving into the front hole of the flat roof material 2B on the lower stage side. Is finished (state shown in FIG. 6). Here, by making a front hole in the waterproof cover 5 and the flat roof materials 2A and 2B in advance, it is possible to prevent the waterproof cover 5 and the flat roof material 2 from being lifted or broken when the screws are driven. Stopping work becomes easy.

その後、図7のように、固定金具4の溝14内に太陽電池パネル取付具としてのナット付き連結ボルト12をスライド自在に嵌め込む。   After that, as shown in FIG. 7, the nut-attached connecting bolt 12 as the solar cell panel mounting tool is slidably fitted into the groove 14 of the fixture 4.

上記一連の防水カバー5及び固定金具4の取付作業を、屋根1の4箇所(図8(a)の4箇所P1〜P4)においてそれぞれ行なう。   The above-described series of waterproof cover 5 and fixing bracket 4 are attached at four locations on the roof 1 (four locations P1 to P4 in FIG. 8A).

その後、図8(b)のように、上下一対の横桟21を各固定金具4に設けたナット付き連結ボルト12を用いて取り付け、最後に、図8(c)のように、横桟21に対して太陽電池パネル3Aを取り付ける。なお、図8の横桟21を用いた取り付け方法に代えて、図9のように横桟21を用いず、屋根1の例えば6箇所P1〜P6に固定金具4を固定し、各固定金具4のナット付き連結ボルト12に対して太陽電池パネル3Aを直接取り付けることも可能である。   Thereafter, as shown in FIG. 8 (b), a pair of upper and lower horizontal bars 21 are attached using the connecting bolts 12 with nuts provided on the respective fixing brackets 4. Finally, as shown in FIG. 8 (c), the horizontal bars 21 are attached. A solar cell panel 3A is attached to the panel. In place of the mounting method using the horizontal rail 21 in FIG. 8, the fixing bracket 4 is fixed to, for example, six locations P1 to P6 of the roof 1 without using the horizontal rail 21 as shown in FIG. It is also possible to directly attach the solar cell panel 3A to the connecting bolt 12 with a nut.

しかして、前記構成のように固定金具4と太陽電池パネル3Aとを別体とし、複数の固定金具4を屋根1の複数個所P1〜P4……にビス固定してから、この固定金具4に対して太陽電池パネル3Aを取り付けることができるので、従来のように大型サイズの太陽電池パネルと一体の固定金具を平板屋根材にビス固定する場合と比較して、太陽電池パネル3Aの取付作業を安全で無理のない姿勢で行なうことができ、これにより施工性が大幅に向上する効果が得られ、さらに、工場で固定金具4と太陽電池パネル3Aとを別々に作製できるので、工場での生産性が向上する効果が得られる。   As described above, the fixing bracket 4 and the solar cell panel 3A are separated from each other, and the plurality of fixing brackets 4 are screw-fixed to a plurality of locations P1 to P4. On the other hand, since the solar cell panel 3A can be attached, the solar cell panel 3A can be attached as compared with the conventional case where the fixing bracket integrated with the large-sized solar cell panel is fixed to the flat roof material by screws. It can be carried out in a safe and reasonable posture, and this has the effect of significantly improving workability. Furthermore, since the fixing bracket 4 and the solar cell panel 3A can be separately manufactured at the factory, production at the factory The effect which improves property is acquired.

また現場では、固定金具4の溝14の中に太陽電池パネル取付具としてのナット付き連結ボルト12をスライド嵌合させて屋根1の勾配方向に可変自在となっているので、仮りに固定金具4の固定位置が勾配方向にずれている場合でも、ナット付き連結ボルト12の位置を調整するだけで、太陽電池パネル3Aの水平位置の調整を容易にでき、固定部7A,7Bの固定位置を調整する必要がないため、太陽電池パネル3Aの取付作業が容易となり、取付効率がより一層向上する。   In addition, in the field, a connecting bolt 12 with a nut as a solar panel mounting tool is slidably fitted in the groove 14 of the fixing bracket 4 so as to be variable in the gradient direction of the roof 1. Even when the fixing position of the solar panel 3A is shifted in the gradient direction, the horizontal position of the solar panel 3A can be easily adjusted by adjusting the position of the connecting bolt 12 with a nut, and the fixing positions of the fixing portions 7A and 7B can be adjusted. Since there is no need to do this, the mounting operation of the solar cell panel 3A is facilitated, and the mounting efficiency is further improved.

また本例では、太陽電池パネル3Aの固定金具4が固定される上下2段の平板屋根材2A,2Bを防水カバー5で覆うと共に、防水カバー5の上差込み片6を防水カバー5の上端部よりも上段側に位置する平板屋根材2A,2C間の重なり部分9に差し込むことにより、水上側Aから流れ落ちる雨水が防水カバー5の上端部から防水カバー5の裏面へと回り込むことができず、防水カバー5の表面を伝って水下側Bへと排水される。従って、防水カバー5の裏面側における平板屋根材2A,2Bのビス孔回りnへの雨水の浸入を防止できるので、仮りに平板屋根材2A,2Bのビス孔回りnにクラックが生じている場合でも、雨水が該クラックに浸入することがなく、該クラックから小屋裏への漏水や腐食を確実に防止できる。しかも、防水カバー5は屋根1全体ではなく、固定金具4が取り付けられる上下2段の平板屋根材2A,2Bに部分的に設置されるので、防水性を向上させつつ防水カバー5の小型化を図ることができ、この結果、防水カバー5によって平板屋根材2A,2Bのビス孔回りnの雨仕舞いを安価に且つ効率的に行なえるようになる。さらに、固定金具4に設けた水上側Aに位置する固定部7Aと水下側Bに位置する固定部7Bとが上下2段の平板屋根材2A,2Bに対して各々固定されるので、各々の平板屋根材2A,2Bにおいてビス締めによるクラックの発生を極力防止できると共に各々の平板屋根材2へのダメージを最小限に抑えることができる。   In this example, the upper and lower two-level flat roof materials 2A and 2B to which the fixing bracket 4 of the solar battery panel 3A is fixed are covered with the waterproof cover 5, and the upper insertion piece 6 of the waterproof cover 5 is the upper end of the waterproof cover 5. By inserting into the overlapping portion 9 between the flat roof materials 2A and 2C located on the upper stage side, rainwater flowing down from the water upper side A cannot wrap around from the upper end of the waterproof cover 5 to the back surface of the waterproof cover 5, The water is drained to the lower side B along the surface of the waterproof cover 5. Accordingly, it is possible to prevent rainwater from entering the screw holes n of the flat roof materials 2A and 2B on the back surface side of the waterproof cover 5, so that there is a crack in the screw holes n of the flat roof materials 2A and 2B. However, rainwater does not enter the crack, and leakage and corrosion from the crack to the back of the hut can be reliably prevented. Moreover, since the waterproof cover 5 is partially installed on the upper and lower two-level flat roof materials 2A and 2B to which the fixing bracket 4 is attached, not the entire roof 1, but the waterproof cover 5 can be reduced in size while improving the waterproof property. As a result, the waterproof cover 5 allows the rain around the screw holes n of the flat roof materials 2A and 2B to be carried out at low cost and efficiently. Furthermore, since the fixing part 7A located on the water upper side A and the fixing part 7B located on the water lower side B provided on the fixing bracket 4 are respectively fixed to the upper and lower flat roof materials 2A and 2B, In the flat roofing materials 2A and 2B, the generation of cracks due to screwing can be prevented as much as possible, and damage to each flat roofing material 2 can be minimized.

また、防水カバー5の裏面に、平板屋根材2A,2Bのビス孔回りnを囲むようにして防水パッキン11が取り付けられているので、水上側A及び横方向から防水カバー5の裏面に雨水が浸入しても、その雨水は防水パッキン11によって平板屋根材2A,2Bのビス孔回りnへの進行を阻まれ、下方に排出される。また本例のように各段の平板屋根材2の水下側Bの下部にそれぞれ小割感を高めるためのスリット部15が穿孔されている場合に、防水カバー5で覆われた上下2段の平板屋根材2A,2Bにおいて、雨水が上段側の平板屋根材2Aのスリット部15から下段側の平板屋根材2Bとの重なり部分9に浸入する場合がある(図6の破線部分は雨水の浸入方向の一例を示している)。しかし、本例では、防水カバー5の裏面に平板屋根材2A,2Bのビス孔回りnを囲むようにして底辺のない略台形状をした防水パッキン11が取り付けられているので、防水カバー5の裏面に浸入した雨水が防水パッキン11にて阻止され、平板屋根材2A,2Bのビス孔回りnへ到達するのを防止できるようになる。   Further, since the waterproof packing 11 is attached to the back surface of the waterproof cover 5 so as to surround the screw holes n of the flat roof materials 2A and 2B, rainwater enters the back surface of the waterproof cover 5 from the water upper side A and the lateral direction. However, the rainwater is prevented from advancing around the screw holes n of the flat roofing materials 2A and 2B by the waterproof packing 11, and is discharged downward. Moreover, when the slit part 15 for raising a feeling of splitting is perforated in the lower part of the underwater side B of each level of the flat roof material 2 as in this example, the upper and lower two levels covered with the waterproof cover 5 In the flat roof materials 2A and 2B, rainwater may enter the overlapping portion 9 with the lower flat roof material 2B from the slit portion 15 of the upper flat roof material 2A (the broken line portion in FIG. An example of intrusion direction is shown). However, in this example, a waterproof packing 11 having a substantially trapezoidal shape with no bottom is attached to the back surface of the waterproof cover 5 so as to surround the screw holes n of the flat roof materials 2A and 2B. The rainwater that has entered is blocked by the waterproof packing 11 and can be prevented from reaching around the screw holes n of the flat roof materials 2A and 2B.

さらに、水下側Bからの雨水の吹き上げによって雨水が水下側Bから逆流する場合でも、防水カバー5の下端部から下方に突出する下係止片10の存在によって防水カバー5の下端部から防水カバー5の裏面への雨水の浸入を防止できるようになり、結果、水下側Bからの雨水の吹き込みに対する耐性が向上し、平板屋根材2A,2Bのビス孔回りnの防水効果がより確実に得られるようになる。   Further, even when rainwater flows backward from the underwater side B by blowing up rainwater from the underwater side B, the presence of the lower locking piece 10 protruding downward from the lower end portion of the waterproof cover 5 causes the lower end portion of the waterproof cover 5 to As a result, it becomes possible to prevent rainwater from entering the back surface of the waterproof cover 5, and as a result, resistance to rainwater blowing from the underwater side B is improved, and the waterproof effect around the screw holes n of the flat roofing materials 2A and 2B is further improved. It will surely be obtained.

また本例では、防水カバー5の下係止片10を防水カバー5で覆われる最下段の平板屋根材2Bの下端面に引っ掛けることで、上差込み片6の重なり部分9間への差込み寸法mを規制することができる。平板屋根材2A,2Bに対する防水カバー5の位置決めが容易となり、防水カバー5の取り付け精度を容易に確保でき、そのうえ薄板状の防水カバー5の下端から下係止片10を折り曲げているため、防水カバー5の剛性が強くなる。従って、上下2段の平板屋根材2A,2Bの適切な位置に防水カバー5を介して太陽電池パネル3Aの固定金具4を簡単且つ強固に取り付けることができ、施工性及び防水性がより向上する利点もある。   Further, in this example, the lower engagement piece 10 of the waterproof cover 5 is hooked to the lower end surface of the lowermost flat roof material 2B covered with the waterproof cover 5, so that the insertion dimension m between the overlapping portions 9 of the upper insertion piece 6 is m. Can be regulated. Since the waterproof cover 5 can be easily positioned with respect to the flat roof materials 2A and 2B, the mounting accuracy of the waterproof cover 5 can be easily secured, and the lower locking piece 10 is bent from the lower end of the thin waterproof cover 5, so that the waterproof cover 5 is waterproof. The rigidity of the cover 5 is increased. Accordingly, the fixing bracket 4 of the solar cell panel 3A can be easily and firmly attached to the appropriate positions of the upper and lower two-level flat roof materials 2A and 2B via the waterproof cover 5, and the workability and waterproofness are further improved. There are also advantages.

前記実施形態では太陽電池パネル3Aを例示したが、これに類する太陽熱を収集して温水として利用する太陽熱集熱パネルとか、植物を植えた緑化パネルなどにも広く適用可能である。   Although the solar cell panel 3A has been exemplified in the above-described embodiment, it can be widely applied to a solar heat collecting panel that collects solar heat similar to this and uses it as hot water, or a greening panel in which plants are planted.

本発明の一実施形態の太陽電池パネルの固定金具の取付構造を説明する側面図である。It is a side view explaining the attachment structure of the fixing fixture of the solar cell panel of one Embodiment of this invention. (a)は同上の防水カバーの表面の説明図、(b)は(a)の概略側面図、(c)は防水カバーを上下2段の平板屋根材の表面露出部に沿って敷設する状態を説明する側面図である。(A) is explanatory drawing of the surface of a waterproof cover same as the above, (b) is a schematic side view of (a), (c) is a state in which the waterproof cover is laid along the surface exposed portion of the two-level flat roof material FIG. (a)は同上の防水カバーの裏面に設けられる防水パッキンの説明図、(b)は防水カバーの概略側面図である。(A) is explanatory drawing of the waterproof packing provided in the back surface of a waterproof cover same as the above, (b) is a schematic side view of a waterproof cover. (a)〜(d)は同上の固定金具の平面図、正面図、左側面図、右側面図である。(A)-(d) is a top view, a front view, a left side view, and a right side view of the same fixing bracket. (a)〜(f)は同上の固定金具を防水カバーを介して平板屋根材に対してビス固定する手順を説明する説明図である。(A)-(f) is explanatory drawing explaining the procedure of screw-fixing the fixing bracket same as the above to a flat roof material via a waterproof cover. 同上の防水カバー裏面の防水パッキンにより雨水が平板屋根材のビス孔回りに浸入するのを防止する場合の説明図である。It is explanatory drawing in the case of preventing a rainwater permeating around the screw hole of a flat roof material with the waterproof packing of the back surface of a waterproof cover same as the above. 同上の固定金具に太陽電池パネル取付具をスライド自在に取り付けた場合の説明図である。It is explanatory drawing at the time of attaching a solar cell panel attachment tool to the fixing bracket same as the above freely. (a)〜(c)は同上の平板屋根材の上に固定した固定金具に対して横桟を介して太陽電池パネルを設置する手順の一例を説明する説明図である。(A)-(c) is explanatory drawing explaining an example of the procedure which installs a solar cell panel via a crosspiece with respect to the fixing bracket fixed on the flat roof material same as the above. (a)(b)は同上の平板屋根材の上に固定した固定金具に対して太陽電池パネルを直接設置する手順の一例を説明する説明図である。(A) (b) is explanatory drawing explaining an example of the procedure which installs a solar cell panel directly with respect to the fixing bracket fixed on the flat roof material same as the above.

符号の説明Explanation of symbols

1 屋根
2 平板屋根材
3A 太陽電池パネル
4 固定金具
5 防水カバー
6 上差込み片
7 固定部
8 表面露出部
9 重なり部分
10 下係止片
11 防水パッキン
12 太陽電池パネル取付具
m 差込み寸法
n 平板屋根材のビス孔回り
DESCRIPTION OF SYMBOLS 1 Roof 2 Flat roof material 3A Solar cell panel 4 Fixing metal fitting 5 Waterproof cover 6 Upper insertion piece 7 Fixing part 8 Surface exposed part 9 Overlapping part 10 Lower locking piece 11 Waterproof packing 12 Solar cell panel attachment m Insertion dimension n Flat roof Around the screw hole of the material

Claims (3)

水下側から水上側に上下多段に葺き重ねられた平板屋根材からなる屋根の複数個所に、太陽電池パネルを平板屋根材に対して固定するための複数の固定金具が各々配置され、前記各々の固定金具が配置される屋根の各個所において、それぞれ、屋根の勾配方向に隣接する少なくとも上下2段以上の平板屋根材のそれぞれの表面露出部を連続して防水カバーにて覆うと共に、防水カバーの上端部に設けた上差込み片を、防水カバーで覆われる最上段の平板屋根材の水上側の上部とこれよりも上段側の平板屋根材の水下側の下部との重なり部分の隙間に差し込み、前記防水カバーの表面側に前記上下2段以上の平板屋根材に跨るようにして1つの固定金具を配置すると共に該1つの固定金具の複数箇所に設けられた固定部のうち水上側に位置する固定部を防水カバーの水上側の上部を介して上段側の平板屋根材にビス固定し、水下側に位置する固定部を防水カバーの水下側の下部を介して下段側の平板屋根材にビス固定するようにして、屋根の各個所に固定金具を各々固定し、各固定金具に対して太陽電池パネルを取り付け、前記防水カバーの裏面に、前記平板屋根材のビス孔回りを囲むように配置される防水パッキンを取り付けたことを特徴とする太陽電池パネルの取付構造。 A plurality of fixing brackets for fixing the solar cell panel to the flat roof material are respectively disposed at a plurality of locations of the roof made of flat roof materials that are stacked in a multistage manner from the lower side to the upper side of the water. In each part of the roof where the fixed metal fittings are arranged, the surface exposed portions of the flat roof materials of at least two steps above and below adjacent to each other in the gradient direction of the roof are continuously covered with the waterproof cover, and the waterproof cover The upper insertion piece provided at the upper end of the upper part of the flat roof of the uppermost flat roof covered with a waterproof cover and the gap between the upper part of the flat roof of the upper flat and the lower part of the flat roof One fixing bracket is arranged on the surface side of the waterproof cover so as to straddle the two or more flat roof materials on the surface side of the waterproof cover, and on the water side among the fixing portions provided at a plurality of locations of the one fixing bracket. To position The fixed part is screw-fixed to the upper flat roof material via the upper part of the waterproof cover, and the lower part of the waterproof cover is fixed to the lower part of the waterproof cover via the lower part of the waterproof cover. Fix the fixing brackets to the various parts of the roof, attach the solar panel to each fixing bracket, and surround the screw roof of the flat roof material on the back of the waterproof cover. A structure for mounting a solar cell panel, which is provided with a waterproof packing disposed on the surface. 前記各々の固定金具には、太陽電池パネルに対して取り付けられる太陽電池パネル取付具が設けられ、該太陽電池パネル取付具の位置を固定金具の固定位置に対して屋根の勾配方向に可変自在としたことを特徴とする請求項1記載の太陽電池パネルの取付構造。 Each of the fixing brackets is provided with a solar cell panel fixture that is attached to the solar cell panel, and the position of the solar cell panel fixture can be varied in the direction of the roof slope with respect to the fixing position of the fixing bracket. The solar cell panel mounting structure according to claim 1, wherein: 前記防水カバーの下端部に下方に突出する下係止片を設け、下係止片を防水カバーで覆われる最下段の平板屋根材の下端面に引っ掛けることで前記上差込み片の重なり部分間への差込み寸法を規制するようにしたことを特徴とする請求項1記載の太陽電池パネルの取付構造 A lower locking piece protruding downward is provided at the lower end portion of the waterproof cover, and the lower locking piece is hooked on the lower end surface of the lowermost flat roof material covered with the waterproof cover, to the overlapping portion of the upper insertion piece. 2. The solar cell panel mounting structure according to claim 1, wherein the insertion size of the solar cell panel is regulated .
JP2007119501A 2007-04-27 2007-04-27 Solar panel mounting structure Active JP4826541B2 (en)

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