JP2013231340A - Installation structure for solar panel - Google Patents

Installation structure for solar panel Download PDF

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JP2013231340A
JP2013231340A JP2012105096A JP2012105096A JP2013231340A JP 2013231340 A JP2013231340 A JP 2013231340A JP 2012105096 A JP2012105096 A JP 2012105096A JP 2012105096 A JP2012105096 A JP 2012105096A JP 2013231340 A JP2013231340 A JP 2013231340A
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solar panel
elastic seal
nut
seal member
bolt
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JP5882129B2 (en
Inventor
Ryoichi Hiroshige
亮一 広重
Yoshikazu Yamane
良和 山根
Hiroki Nemoto
央希 根元
Akio Usuki
秋男 臼木
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EPUKO KK
YONEKIN KK
Tajima Oyo Kako KK
EPCO Ltd
Yonekin KK
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EPUKO KK
YONEKIN KK
Tajima Oyo Kako KK
EPCO Ltd
Yonekin KK
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    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Photovoltaic Devices (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide an installation structure for a solar panel, which can secure waterproofness without use of a cap member.SOLUTION: An installation structure 100 for a solar panel includes a fixing member 6, an elastic seal member 7, and a nut 9. The fixing member 6 is installed on the surface of the solar panel P to hold the solar panel P on a roof R. A nut hole 61a is formed in the fixing member 6. The nut 9 has a tubular part 91 which is inserted through the nut hole 61a and into which a bolt 4 is to be screwed, and a flange part 92 which protrudes outward from an outside surface of one axial end of the tubular part 91. The elastic seal member 7 is provided at the peripheral edge of the nut hole 61a to seal a section between the fixing member 6 and the flange part 92. The elastic seal member 7 has a washer 8 which reduces a frictional force against the flange part 92 in a part brought into contact with the flange part 92.

Description

本発明は、太陽光パネルの設置構造に関する。   The present invention relates to a solar panel installation structure.

近年、地球温暖化問題や化石燃料の枯渇問題に対する関心の高まりに伴い、発電時に二酸化炭素が発生せず、半永久的な太陽光エネルギーを利用する太陽光発電が注目されている。   In recent years, with increasing interest in the global warming problem and the fossil fuel depletion problem, solar power generation that uses semi-permanent solar energy without generating carbon dioxide during power generation has attracted attention.

一般的に、太陽光発電を行う際に使用する太陽光パネルは、屋根上に設置されることが多い(例えば、特許文献1参照)。   Generally, a solar panel used when performing solar power generation is often installed on a roof (see, for example, Patent Document 1).

太陽光パネルを屋根上に設置する方法としては、瓦などの屋根材上に架台を設置して当該架台上に太陽光パネルを設置する据置型と、太陽光パネルと屋根材とを一体化して屋根下地材及び表面材上に太陽光パネルを設置する屋根材一体型と、が知られている。特に、屋根材一体型では、屋根下地材に水が浸入すると、漏水の原因になることから、防水性が強く求められている。   As a method of installing the solar panel on the roof, a stationary type in which a gantry is installed on a roof material such as a tile and the solar panel is installed on the gantry, and the solar panel and the roof material are integrated. A roof material integrated type in which a solar panel is installed on a roof base material and a surface material is known. In particular, in the roof material integrated type, when water enters the roof base material, it causes water leakage, so that waterproofness is strongly demanded.

屋根材一体型の太陽光パネルの設置構造としては、従来、図8に示すような構造がある。なお、図8は、従来の太陽光パネルの設置構造を示す断面図である。   Conventionally, there is a structure as shown in FIG. 8 as an installation structure of a solar panel integrated with a roof material. In addition, FIG. 8 is sectional drawing which shows the installation structure of the conventional solar panel.

図8に示すように、従来の太陽光パネルの設置構造200は、屋根210の表面材210a上に設置された支持ブロック220と、支持ブロック220上に設置された下地フレーム230と、隣り合う太陽光パネル260,260間の目地部分を止水する目地止水部材240と、目地止水部材240及び太陽光パネル260の表面に設置され、太陽光パネル260を屋根210に対し保持する固定部材250と、を備える。また、下地フレーム230、目地止水部材240、及び固定部材250には、ボルト270を挿通するための孔部230a,240a,250aが夫々形成されている。   As shown in FIG. 8, a conventional solar panel installation structure 200 includes a support block 220 installed on a surface material 210 a of a roof 210, a base frame 230 installed on the support block 220, and an adjacent sun. A joint water-stopping member 240 that stops the joint between the light panels 260 and 260, and a fixing member 250 that is installed on the surface of the joint-water-stopping member 240 and the solar panel 260 and holds the solar panel 260 against the roof 210. And comprising. Further, holes 230a, 240a, and 250a for inserting bolts 270 are formed in the base frame 230, the joint water-stopping member 240, and the fixing member 250, respectively.

そして、太陽光パネル260を屋根210上に設置する際には、孔部230a,240a,250aにボルト270を挿通し、固定部材250側からナット280を螺合して締め付けることによって、太陽光パネル260を屋根210上に固定している。また、ボルト270の先端部及びナット280を覆うキャップ部材290を被せることによって、固定部材250の孔部250aの周囲をシールして防水性を確保している。   And when installing the solar panel 260 on the roof 210, the bolt 270 is inserted into the holes 230a, 240a, 250a, and the nut 280 is screwed and tightened from the fixing member 250 side to thereby tighten the solar panel. 260 is fixed on the roof 210. Further, by covering the tip of the bolt 270 and the cap member 290 that covers the nut 280, the periphery of the hole 250a of the fixing member 250 is sealed to ensure waterproofness.

特開平07−26683号公報JP 07-26683 A

ところが、従来の太陽光パネルの設置構造200では、キャップ部材290が太陽光パネル260の表面よりも上方に大きく突出しているので、意匠性が低下する一方、太陽光パネル260上に積もった雪が滑落したときに、雪とともにキャップ部材290が屋根210上から脱落する虞があった。   However, in the conventional solar panel installation structure 200, since the cap member 290 protrudes greatly upward from the surface of the solar panel 260, the design is deteriorated, while the snow accumulated on the solar panel 260 slides down. When doing so, the cap member 290 may fall off the roof 210 together with snow.

また、屋根方位・季節・時間帯によっては、キャップ部材290がモデュール上に影を作ることがあり、これにより発電量を低下させる虞があった。   In addition, depending on the roof orientation, season, and time zone, the cap member 290 may make a shadow on the module, which may reduce the amount of power generation.

本発明は、このような観点から創案されたものであり、キャップ部材を使用せずに防水性を確保できる太陽光パネルの設置構造を提供することを課題とする。   The present invention was created from such a viewpoint, and an object of the present invention is to provide a solar panel installation structure that can ensure waterproofness without using a cap member.

本発明者らは、前記課題を解決するため鋭意研究を重ねた結果、固定部材とナットとの間に弾性シール部材を配置して防水性を確保する構造を見出だした。更に鋭意研究を進めた結果、弾性シール部材とナットとの間の摩擦力が高いと、ボルトにナットを締め付ける際の締付トルクによって、弾性シール部材の捩れ変形が生じ、固定部材が回転して所望の位置からずれてしまい、太陽光パネルを屋根に対し好適に保持できないことが分かった。そこで、防水性を確保しつつ、摩擦力を低減できる本発明を完成するに至った。   As a result of intensive studies to solve the above problems, the present inventors have found a structure that secures waterproofness by disposing an elastic seal member between the fixing member and the nut. As a result of further earnest research, if the frictional force between the elastic seal member and the nut is high, the elastic seal member is torsionally deformed by the tightening torque when tightening the nut to the bolt, and the fixing member rotates. It turned out that it shifted from the desired position and the solar panel could not be suitably held against the roof. Then, it came to complete this invention which can reduce frictional force, ensuring waterproofness.

本発明は、太陽光パネルの表面に設置され、前記太陽光パネルを基材に対し保持するとともに、孔部が形成された固定部材と、前記孔部に挿通され、内部にボルトが螺合される筒状部と、前記筒状部の軸方向一端部の外側面から外方へ突出する鍔部と、を有するナットと、前記孔部の周縁に設けられ、前記固定部材と前記鍔部との間をシールする弾性シール部材と、を備え、前記弾性シール部材は、前記鍔部に接触する部分において、前記鍔部との摩擦力を減少させる低摩擦部を有することを特徴とする。   The present invention is installed on the surface of a solar panel, holds the solar panel against a base material, and is inserted into a fixing member having a hole and the hole, and a bolt is screwed therein. A nut having a cylindrical portion, and a flange portion protruding outward from an outer surface of one axial end portion of the cylindrical portion, and a fixing member and the flange portion provided on a peripheral edge of the hole portion. An elastic seal member that seals between the two, wherein the elastic seal member has a low friction portion that reduces a frictional force with the flange portion at a portion that contacts the flange portion.

なお、弾性シール部材は、ゴム材料で構成され、低摩擦部は、金属材料で構成されているようにするのが好ましい。   The elastic seal member is preferably made of a rubber material, and the low friction portion is preferably made of a metal material.

本発明によれば、弾性シール部材は、鍔部に接触する部分において、鍔部との摩擦力を減少させる低摩擦部を有することにより、弾性シール部材のうち鍔部に接触する部分の滑性を高めることができるので、締付トルクによる弾性シール部材の捩れ変形を抑制できる。これにより、固定部材の回転を抑制して固定部材を所望の位置に保持することが可能となり、太陽光パネルを基材に対し好適に保持できる。   According to the present invention, the elastic seal member has the low friction part that reduces the frictional force with the collar part in the part that contacts the collar part, so that the sliding property of the part that contacts the collar part of the elastic seal member is reduced. Therefore, the torsional deformation of the elastic seal member due to the tightening torque can be suppressed. Thereby, it becomes possible to hold | maintain a fixing member in a desired position, suppressing rotation of a fixing member, and can hold | maintain a solar panel suitably with respect to a base material.

また、本発明によれば、固定部材と鍔部との間に弾性シール部材を配置して防水性を確保できるので、従来使用していたキャップ部材を省略できる。これにより、太陽光パネルの表面よりも上方に突出する部分の高さを低くできるので、意匠性の低下を抑制できる一方、キャップ部材が脱落する問題と発電量低下を解消できる。   In addition, according to the present invention, since an elastic seal member can be disposed between the fixing member and the collar portion to ensure waterproofness, the conventionally used cap member can be omitted. Thereby, since the height of the part which protrudes upwards rather than the surface of a solar panel can be made low, while the designable fall can be suppressed, the problem that a cap member falls and the power generation amount fall can be eliminated.

また、本発明は、前記弾性シール部材は、前記低摩擦部よりも外側に設けられるとともに、前記鍔部の裏面に圧接する第1シール部を有するように構成するのが好ましい。   In the present invention, it is preferable that the elastic seal member is provided outside the low friction portion and has a first seal portion that is in pressure contact with the back surface of the flange portion.

かかる構成によれば、第1シール部によって、弾性シール部材と鍔部の裏面との間が液密にシールされるので、弾性シール部材と鍔部の裏面との間に水分が浸入するのを抑制でき、ひいては、孔部に水分が浸入するのを抑制できる。これにより、弾性シール部材に低摩擦部を設けた場合であっても、弾性シール部材と鍔部との間の防水性を確保できる。   According to such a configuration, the first seal portion liquid-tightly seals between the elastic seal member and the back surface of the flange portion, so that moisture can enter between the elastic seal member and the back surface of the flange portion. It can suppress and by extension, it can suppress that a water | moisture content permeates into a hole. Thereby, even if it is a case where a low friction part is provided in an elastic seal member, the waterproofness between an elastic seal member and a collar part is securable.

また、本発明は、前記第1シール部は、前記鍔部側へ突出し、前記ナットを前記ボルトに締め付ける前の状態において、前記低摩擦部よりも前記鍔部側に位置しているように構成するのが好ましい。   Further, the present invention is configured such that the first seal portion protrudes toward the flange portion and is positioned closer to the flange portion than the low friction portion in a state before the nut is fastened to the bolt. It is preferable to do this.

かかる構成によれば、ナットをボルトに締め付ける前の状態において、第1シール部が低摩擦部よりも鍔部側に位置していることにより、ボルトにナットを締め付けるときに、低摩擦部よりも先に第1シール部が鍔部の裏面に接触するので、弾性シール部材と鍔部の裏面との間が確実にシールされ、弾性シール部材と鍔部との間の防水性をより一層確保できる。
また、第1シール部が鍔部側へ突出していることにより、ナットの締め付け初期において、弾性シール部材のうち第1シール部が鍔部の裏面に最初に接触するので、弾性シール部材と鍔部の裏面との接触面積を減少させることが可能となり、ナットの締め付け初期における弾性シール部材と鍔部の裏面との摩擦力を減少させることができる。
According to such a configuration, in the state before the nut is tightened to the bolt, the first seal portion is located on the flange side with respect to the low friction portion. Since the 1st seal part contacts the back surface of a collar part first, between the elastic seal member and the back surface of a collar part is sealed reliably, and the waterproofness between an elastic seal member and a collar part can be secured further. .
Further, since the first seal portion protrudes toward the flange portion, the first seal portion of the elastic seal member first contacts the back surface of the flange portion at the initial stage of tightening the nut. It is possible to reduce the contact area with the back surface of the nut, and it is possible to reduce the frictional force between the elastic seal member and the back surface of the flange portion in the initial stage of tightening the nut.

また、本発明は、前記弾性シール部材は、前記低摩擦部よりも外側に設けられるとともに、前記鍔部側へ突出し、前記鍔部の外側面に圧接する第2シール部を有するように構成するのが好ましい。   Further, the present invention is configured such that the elastic seal member has a second seal portion that is provided outside the low friction portion, protrudes toward the flange portion, and presses against the outer surface of the flange portion. Is preferred.

かかる構成によれば、第2シール部によって、弾性シール部材と鍔部の外側面との間が液密にシールされるので、弾性シール部材と鍔部の外側面との間に水分が浸入するのを抑制でき、ひいては、孔部に水分が浸入するのをより一層抑制できる。これにより、弾性シール部材に低摩擦部を設けた場合であっても、弾性シール部材と鍔部との間の防水性をより一層確保できる。   According to such a configuration, the second seal portion provides a liquid-tight seal between the elastic seal member and the outer surface of the collar portion, so that moisture enters between the elastic seal member and the outer surface of the collar portion. This can further suppress the intrusion of moisture into the hole. Thereby, even if it is a case where a low friction part is provided in an elastic seal member, the waterproofness between an elastic seal member and a collar part can be secured further.

本発明によれば、キャップ部材を使用せずに防水性を確保できる太陽光パネルの設置構造を提供することができる。   ADVANTAGE OF THE INVENTION According to this invention, the installation structure of the solar panel which can ensure waterproofness can be provided, without using a cap member.

屋根上に太陽光パネルを設置した状態を示す斜視図である。It is a perspective view which shows the state which installed the solar panel on the roof. 本発明の実施形態に係る太陽光パネルの設置構造を示す図1のI−I線断面図である。It is the II sectional view taken on the line of FIG. 1 which shows the installation structure of the solar panel which concerns on embodiment of this invention. ナット締結前の状態を示す部分拡大断面図である。It is a partial expanded sectional view which shows the state before nut fastening. ナット締結後の状態を示す部分拡大断面図である。It is a partial expanded sectional view which shows the state after nut fastening. 屋根に支持ブロック及び下地フレームを設置する工程を示す斜視図である。It is a perspective view which shows the process of installing a support block and a base frame in a roof. 下地フレームに太陽光パネルを設置する工程を示す斜視図である。It is a perspective view which shows the process of installing a solar panel in a base frame. (a)は、本発明の変形例に係る太陽光パネルの設置構造を示す部分拡大断面図であり、(b)は、本発明の他の変形例に係る太陽光パネルの設置構造を示す部分拡大断面図である。(A) is a partial expanded sectional view which shows the installation structure of the solar panel which concerns on the modification of this invention, (b) is the part which shows the installation structure of the solar panel which concerns on the other modification of this invention It is an expanded sectional view. 従来の太陽光パネルの設置構造を示す断面図である。It is sectional drawing which shows the installation structure of the conventional solar panel.

次に、本発明の実施形態について、適宜図面を参照しながら詳細に説明する。本実施形態では、勾配屋根上に太陽光パネルを設置した場合を例にして説明する。なお、以下の説明において、屋根の勾配方向を「勾配方向X」といい、勾配方向Xに対し直交する方向を「直交方向Y」という。   Next, embodiments of the present invention will be described in detail with reference to the drawings as appropriate. In this embodiment, a case where a solar panel is installed on a sloped roof will be described as an example. In the following description, the gradient direction of the roof is referred to as “gradient direction X”, and the direction orthogonal to the gradient direction X is referred to as “orthogonal direction Y”.

図1に示すように、太陽光パネルPは、勾配方向X及び直交方向Yに沿って屋根(基材)R上に複数設置されている。太陽光パネルPは、矩形状を呈しており、長手方向が直交方向Yに沿うように横向きに設置されている。複数の太陽光パネルP,Pは、互いに所定間隔を空けて設けられており、隣り合う太陽光パネルP,P同士の間には、勾配方向X及び直交方向Yに沿って延在する目地Jが形成されている(図6参照)。太陽光パネルPの周囲には、例えば、瓦等の屋根材Raが複数設置されている。   As shown in FIG. 1, a plurality of solar panels P are installed on a roof (base material) R along the gradient direction X and the orthogonal direction Y. The solar panel P has a rectangular shape and is installed sideways so that the longitudinal direction is along the orthogonal direction Y. The plurality of solar panels P, P are provided at a predetermined interval from each other, and a joint J extending along the gradient direction X and the orthogonal direction Y between the adjacent solar panels P, P is provided. Is formed (see FIG. 6). A plurality of roof materials Ra such as tiles are installed around the solar panel P, for example.

なお、本実施形態の太陽光パネルPは、受光面となる発電セルPb(図2参照)を表面に備えたソーラー発電パネルで構成されているが、本発明はこれに限定されるものではなく、例えば、太陽光の熱エネルギーで温水を得るソーラー給湯パネルで構成されてもよいし、ソーラー発電パネルの機能とソーラー給湯パネルの機能とを兼ね備えたハイブリッドソーラーパネル等で構成されてもよい。   In addition, although the solar panel P of this embodiment is comprised by the solar power generation panel provided with the power generation cell Pb (refer FIG. 2) used as a light-receiving surface on the surface, this invention is not limited to this. For example, it may be configured by a solar hot water supply panel that obtains hot water with the thermal energy of sunlight, or may be configured by a hybrid solar panel that has both the function of the solar power generation panel and the function of the solar hot water supply panel.

次に、図2乃至図6を適宜参照して、本発明の実施形態に係る太陽光パネルの設置構造100について詳細に説明する。   Next, the solar panel installation structure 100 according to the embodiment of the present invention will be described in detail with reference to FIGS. 2 to 6 as appropriate.

図2に示すように、太陽光パネルの設置構造100は、支持ブロック1と、下地フレーム2と、アースプレート3と、ボルト4と、目地止水部材5と、固定部材6と、弾性シール部材7と、ワッシャー8と、ナット9と、を主に備える。   As shown in FIG. 2, the solar panel installation structure 100 includes a support block 1, a base frame 2, a ground plate 3, a bolt 4, a joint water-stopping member 5, a fixing member 6, and an elastic seal member. 7, a washer 8, and a nut 9 are mainly provided.

<支持ブロック>
支持ブロック1は、弾性シール材10を介して、屋根Rの表面材Rb上に複数設置されている。支持ブロック1は、図5に示すように、下地フレーム2の長手方向両端部及び中間部の下方に設置されている。
<Support block>
A plurality of the support blocks 1 are installed on the surface material Rb of the roof R via the elastic sealing material 10. As shown in FIG. 5, the support block 1 is installed below the both ends in the longitudinal direction and the middle part of the base frame 2.

<下地フレーム>
下地フレーム2は、図5に示すように、直交方向Yに沿って延在しており、勾配方向Xに沿って所定間隔を空けて複数設置されている。下地フレーム2は、図2に示すように、太陽光パネルPを載置するための部材であって、アルミニウム製若しくはステンレス製のプレート、又は防錆処理が施された鋼製プレート等を屈曲させて形成されている。下地フレーム2は、当該下地フレーム2の幅方向中間部に設けられ、上方へ突出して形成された突条部21と、突条部21の下端両側から幅方向外方へ延出して形成された一対の支持部22,22と、を有する。
<Base frame>
As shown in FIG. 5, the base frame 2 extends along the orthogonal direction Y, and a plurality of base frames 2 are installed along the gradient direction X with a predetermined interval. As shown in FIG. 2, the base frame 2 is a member for placing the solar panel P, and bends a plate made of aluminum or stainless steel, a steel plate subjected to rust prevention treatment, or the like. Is formed. The base frame 2 is provided at the intermediate portion in the width direction of the base frame 2, and is formed to protrude upward and outward in the width direction from both lower ends of the protrusion 21. A pair of support portions 22, 22.

突条部21は、縦断面視してコ字状を呈する部分である。突条部21の上面には、ボルト4を挿通するためのボルト孔21aが貫通して形成されている。ボルト孔21aは、図5に示すように、下地フレーム2の長手方向に延びる長孔状に形成されている。   The protruding portion 21 is a portion having a U-shape when viewed in a longitudinal section. A bolt hole 21 a for inserting the bolt 4 is formed through the upper surface of the protrusion 21. As shown in FIG. 5, the bolt hole 21 a is formed in a long hole shape extending in the longitudinal direction of the base frame 2.

支持部22は、図2に示すように、縦断面視してハット形状を呈し、太陽光パネルPを下方から支持する部分である。支持部22は、幅方向に所定間隔離間して設けられ、太陽光パネルPの縁端部Paの下面に当接する一対のフランジ部22a,22aと、一対のフランジ部22a,22aを繋ぎ下方へ突出して形成された縦断面視してコ字状の突出部22bと、から構成される。   As shown in FIG. 2, the support portion 22 is a portion that has a hat shape when viewed in a longitudinal section and supports the solar panel P from below. The support portion 22 is provided at a predetermined interval in the width direction, and connects the pair of flange portions 22a and 22a contacting the lower surface of the edge portion Pa of the solar panel P and the pair of flange portions 22a and 22a downward. And a U-shaped protruding portion 22b as viewed in a longitudinal section.

突出部22bは、補強リブの役割を果たしている。突出部22bの底面(下面)には、ネジSを挿通するためのネジ孔22cが貫通して形成されている。突出部22bの底面は、アースプレート3を介して、支持ブロック1の上面に当接している。   The protrusion 22b plays the role of a reinforcing rib. A screw hole 22c for inserting the screw S is formed through the bottom surface (lower surface) of the protruding portion 22b. The bottom surface of the protruding portion 22 b is in contact with the upper surface of the support block 1 via the ground plate 3.

<アースプレート>
アースプレート3は、図2に示すように、縦断面視してクランク形状(Z字状)を呈し、支持ブロック1と下地フレーム2との間に介設される金属製部材である。アースプレート3は、支持ブロック1の上面に沿って延在する本体部31と、本体部31の幅方向一端部から上方へ延出し、支持部22の突出部22bの側面に当接するフランジ部32と、本体部31の幅方向他端部から下方へ延出し、支持ブロック1の側面に当接するフランジ部33と、から構成される。本体部31の幅方向両側には、ネジSを挿通するためのネジ孔31aが貫通して形成されている。
<Earth plate>
As shown in FIG. 2, the earth plate 3 is a metal member that has a crank shape (Z-shape) in a longitudinal section and is interposed between the support block 1 and the base frame 2. The ground plate 3 has a main body 31 extending along the upper surface of the support block 1 and a flange 32 that extends upward from one end in the width direction of the main body 31 and contacts the side surface of the protrusion 22 b of the support 22. And a flange portion 33 that extends downward from the other widthwise end of the main body 31 and contacts the side surface of the support block 1. On both sides in the width direction of the main body 31, screw holes 31 a for inserting screws S are formed so as to penetrate therethrough.

この場合、ネジ孔22c,31aの上方からネジSを挿入するとともに、支持ブロック1及び屋根Rの表面材Rbに貫通し、垂木などの屋根下地材Rcに螺合することによって、支持ブロック1、下地フレーム2、及びアースプレート3が屋根Rに固定されることとなる。   In this case, the screw S is inserted from above the screw holes 22c and 31a, penetrates through the support block 1 and the surface material Rb of the roof R, and is screwed into the roof base material Rc such as a rafter, thereby supporting the support block 1, The base frame 2 and the ground plate 3 are fixed to the roof R.

<ボルト>
ボルト4は、公知のボルトの中から適宜選択して用いられる。本実施形態のボルト4は、図2に示すように、座金42を備えた所謂座付きボルトで構成されている。ボルト4の頭部41及び座金42は、一対の支持部22,22同士の間であって、かつ突条部21の下方に形成された空間内に配置されている。この空間内には、ボルト4が下がるのを防止するボルト受け部材11が設けられている。ボルト受け部材11の上面は、支持部22の幅方向内側に位置するフランジ部22aの下面に当接しているとともに、下面は、アースプレート3の本体部31の上面に当接している。
<Bolt>
The bolt 4 is appropriately selected from known bolts. As shown in FIG. 2, the bolt 4 of the present embodiment is configured by a so-called seated bolt including a washer 42. The head 41 and the washer 42 of the bolt 4 are arranged in a space formed between the pair of support portions 22 and 22 and below the protrusion 21. In this space, a bolt receiving member 11 for preventing the bolt 4 from being lowered is provided. The upper surface of the bolt receiving member 11 is in contact with the lower surface of the flange portion 22 a located on the inner side in the width direction of the support portion 22, and the lower surface is in contact with the upper surface of the main body portion 31 of the earth plate 3.

ボルト4の軸部43のうち、座金42側の外周面には、スプリングワッシャー12及び座金13が装着されている。スプリングワッシャー12は、ボルト4の弛みを抑制する役割を果たしている。軸部43は、下地フレーム2のボルト孔21aに挿入され、ボルト孔21aよりも上方へ突出している。軸部43の突出部分のうち、ボルト孔21a付近の外周面には、Oリング14が装着されている。Oリング14は、ボルト孔21aの開口縁部に当接しており、後記するようにナット9を締め付けるまでのボルト4の仮止め部材として機能している。   A spring washer 12 and a washer 13 are mounted on the outer peripheral surface of the bolt 4 on the washer 42 side. The spring washer 12 plays a role of suppressing loosening of the bolt 4. The shaft portion 43 is inserted into the bolt hole 21a of the base frame 2 and protrudes upward from the bolt hole 21a. An O-ring 14 is mounted on the outer peripheral surface in the vicinity of the bolt hole 21a in the protruding portion of the shaft portion 43. The O-ring 14 is in contact with the opening edge of the bolt hole 21a and functions as a temporary fixing member for the bolt 4 until the nut 9 is tightened as will be described later.

本実施形態では、軸部43の先端部は、太陽光パネルPの表面よりも下方に位置するとともに、後記するナット9の筒状部91の先端部は、太陽光パネルPの表面よりも下方に位置している。つまり、太陽光パネルPの表面よりも下方(目地J内)において、ボルト4にナット9が螺合することとなる。これにより、太陽光パネルPの厚さが変更された場合であっても、目地J内においてナット9の螺合量を調整すること可能となり、軸部43が太陽光パネルPの表面よりも突出することを防止して意匠性を向上させることができる。また、本実施形態では、ボルト4が軸部43を有するとともに、ナット9が筒状部91を有することにより、軸部を有するボルトのみを具備した従来構造(図8参照)に比較して、様々な厚さの太陽光パネルPに対応できる。   In the present embodiment, the distal end portion of the shaft portion 43 is positioned below the surface of the solar panel P, and the distal end portion of the cylindrical portion 91 of the nut 9 described later is lower than the surface of the solar panel P. Is located. That is, the nut 9 is screwed into the bolt 4 below the surface of the solar panel P (in the joint J). Thereby, even if the thickness of the solar panel P is changed, the screwing amount of the nut 9 can be adjusted in the joint J, and the shaft portion 43 protrudes from the surface of the solar panel P. It can prevent and can improve the designability. Moreover, in this embodiment, while the volt | bolt 4 has the axial part 43 and the nut 9 has the cylindrical part 91, compared with the conventional structure (refer FIG. 8) which comprised only the volt | bolt which has an axial part, It can correspond to solar panels P of various thicknesses.

<目地止水部材>
目地止水部材5は、図2に示すように、目地Jを止水する部材である。目地止水部材5は、目地Jを上方から覆うカバー部材51と、カバー部材51と太陽光パネルPとの間に介設される弾性シール材52と、を有する。
<Seamless member>
As shown in FIG. 2, the joint water-stopping member 5 is a member that stops the joint J. The joint water-stopping member 5 includes a cover member 51 that covers the joint J from above, and an elastic sealing material 52 that is interposed between the cover member 51 and the solar panel P.

カバー部材51は、アルミニウム製若しくはステンレス製のプレート、又は防錆処理が施された鋼製プレート等を屈曲させて形成されている。カバー部材51は、図3に示すように、表面部51aと挿入部51bとから構成されている。なお、本実施形態では、一枚のプレートを折曲加工して表面部51aと挿入部51bとを一体で形成したが、押出形材にて一体で形成してもよいし、表面部51aと挿入部51bとを別体で形成して表面部51aに挿入部51bを固定するようにしてもよい。   The cover member 51 is formed by bending an aluminum or stainless steel plate, a steel plate subjected to rust prevention treatment, or the like. As shown in FIG. 3, the cover member 51 is composed of a surface portion 51a and an insertion portion 51b. In the present embodiment, the surface portion 51a and the insertion portion 51b are integrally formed by bending a single plate. However, the surface portion 51a and the insertion portion 51b may be integrally formed. The insertion part 51b may be formed separately and the insertion part 51b may be fixed to the surface part 51a.

表面部51aは、目地Jに沿って延在する板状の部分である。表面部51aの幅方向両端部は、目地Jとともに目地Jの両側に位置する太陽光パネルP,Pの各縁端部Pa,Paの上面を上方から覆っている。表面部51aの幅方向中間部には、後記するナット9の筒状部91を挿通するためのナット孔51cが貫通して形成されている。   The surface portion 51 a is a plate-like portion extending along the joint J. Both end portions in the width direction of the surface portion 51a cover the upper surfaces of the edge portions Pa and Pa of the solar panels P and P located on both sides of the joint J together with the joint J from above. A nut hole 51c through which a cylindrical portion 91 of the nut 9 described later is inserted is formed in the intermediate portion in the width direction of the surface portion 51a.

挿入部51bは、表面部51aの下面から突出して目地Jの内部に挿入される部分である。挿入部51bは、表面部51aに対し直交し、かつ幅方向に所定間隔離間する一対のプレートからなる。挿入部51bは、外側の側面(太陽光パネルPの縁端部Paの側面に対向する面)が、太陽光パネルPの側面に対し所定間隔を空けて形成されている。太陽光パネルPと挿入部51bの間隔は、弾性シール材52が適度な応力で圧縮される寸法に設定されている。   The insertion portion 51b is a portion that protrudes from the lower surface of the surface portion 51a and is inserted into the joint J. The insertion portion 51b is composed of a pair of plates that are orthogonal to the surface portion 51a and spaced apart by a predetermined distance in the width direction. The insertion portion 51b is formed such that the outer side surface (the surface facing the side surface of the edge portion Pa of the solar panel P) is spaced from the side surface of the solar panel P by a predetermined distance. The space | interval of the solar panel P and the insertion part 51b is set to the dimension by which the elastic sealing material 52 is compressed by moderate stress.

弾性シール材52は、弾性を有するゴム又は樹脂で構成されており、カバー部材51の長手方向に沿って延在している。弾性シール材52は、表面部51aの下面と挿入部51bの側面との両面に接した状態で、接着剤によって固定されている。弾性シール材52は、目地止水部材5が目地Jに装着された状態で、太陽光パネルPの縁端部Paの表面と側面によって押圧されている。これにより、弾性シール材52は、太陽光パネルPの縁端部Paの表面に接して形成されるシール面と、縁端部Paの側面に接して形成されるシール面の、二つのシール面を有することとなる。   The elastic sealing material 52 is made of rubber or resin having elasticity and extends along the longitudinal direction of the cover member 51. The elastic seal material 52 is fixed by an adhesive in contact with both the lower surface of the surface portion 51a and the side surface of the insertion portion 51b. The elastic sealing material 52 is pressed by the surface and side surface of the edge portion Pa of the solar panel P in a state where the joint water-stopping member 5 is attached to the joint J. Thereby, the elastic sealing material 52 has two sealing surfaces, a sealing surface formed in contact with the surface of the edge portion Pa of the solar panel P and a sealing surface formed in contact with the side surface of the edge portion Pa. It will have.

<固定部材>
固定部材6は、図3及び図4に示すように、縦断面視してハット状を呈しており、屋根Rに対し太陽光パネルPを保持する部材である。固定部材6は、アルミニウム製若しくはステンレス製のプレート、又は防錆処理が施された鋼製プレート等を屈曲させて形成されている。固定部材6は、目地止水部材5の上側に設置される本体部61と、本体部61の幅方向両端部から下方へ延出し、太陽光パネルPの縁端部Paの表面に当接する一対の当接部62,62と、から構成されている。本体部61の幅方向中間部には、ナット9を挿通するためのナット孔(孔部)61aが貫通して形成されている。
<Fixing member>
As shown in FIGS. 3 and 4, the fixing member 6 has a hat shape as viewed in a longitudinal section, and is a member that holds the solar panel P against the roof R. The fixing member 6 is formed by bending an aluminum or stainless steel plate, a steel plate subjected to rust prevention treatment, or the like. The fixing member 6 is a pair of a main body 61 that is installed on the upper side of the joint water-stopping member 5 and a pair that extends downward from both widthwise ends of the main body 61 and contacts the surface of the edge portion Pa of the solar panel P. The abutting portions 62, 62 are configured. A nut hole (hole) 61 a for inserting the nut 9 is formed through the intermediate portion in the width direction of the main body portion 61.

本実施形態において、目地止水部材5と固定部材6との間には、弾性を有するゴム又は樹脂で構成された弾性シール材15が設けられている。弾性シール材15は、本体部61の下面及び当接部62の内側面との両面に接した状態で、接着剤によって固定されている。弾性シール材15は、固定部材6が目地止水部材5上に設置され、かつボルト4にナット9が螺合された状態で、目地止水部材5の表面部51aの上面及び側面に圧接するように構成されている。   In the present embodiment, an elastic sealing material 15 made of rubber or resin having elasticity is provided between the joint water-stopping member 5 and the fixing member 6. The elastic sealing material 15 is fixed by an adhesive in contact with both the lower surface of the main body portion 61 and the inner surface of the contact portion 62. The elastic sealing material 15 is pressed against the upper surface and the side surface of the surface portion 51 a of the joint water-stopping member 5 in a state where the fixing member 6 is installed on the joint-water-stopping member 5 and the nut 9 is screwed onto the bolt 4. It is configured as follows.

<弾性シール部材、ワッシャー>
弾性シール部材7は、図3及び図4に示すように、ナット孔61aの周縁に設けられ、固定部材6とナット9の鍔部92との間をシールする環状部材である。弾性シール部材7は、弾性を有するゴムで構成されている。弾性シール部材7の上部内周面には、他の部位と比較して所定長だけ拡径した環状の段部71が形成されている。換言すると、段部71は、弾性シール部材7の上面(表面)7aの内周縁を下方へ所定長だけ切り欠いて形成されている。この段部71には、環状のワッシャー8が配置されている。
<Elastic seal member, washer>
As shown in FIGS. 3 and 4, the elastic seal member 7 is an annular member that is provided at the periphery of the nut hole 61 a and seals between the fixing member 6 and the flange portion 92 of the nut 9. The elastic seal member 7 is made of rubber having elasticity. On the upper inner peripheral surface of the elastic seal member 7, an annular stepped portion 71 having a diameter increased by a predetermined length as compared with other portions is formed. In other words, the stepped portion 71 is formed by notching the inner peripheral edge of the upper surface (surface) 7a of the elastic seal member 7 downward by a predetermined length. An annular washer 8 is disposed on the stepped portion 71.

ワッシャー8は、弾性シール部材7に加硫接着されており、弾性シール部材7に比較して摩擦係数の低い金属材料で構成されている。本実施形態では、ワッシャー8が特許請求の範囲でいう「低摩擦部」を構成している。弾性シール部材7がワッシャー8を有することにより、鍔部92に接触する部分の滑性を高めることができるので、締付トルクによる弾性シール部材7の捩れ変形を抑制できる。ワッシャー8は、加硫接着以外の方法で弾性シール部材7に固定されてもよい。   The washer 8 is vulcanized and bonded to the elastic seal member 7 and is made of a metal material having a lower friction coefficient than the elastic seal member 7. In the present embodiment, the washer 8 constitutes a “low friction portion” in the claims. Since the elastic seal member 7 has the washer 8, the slipperiness of the portion in contact with the flange 92 can be improved, so that the torsional deformation of the elastic seal member 7 due to the tightening torque can be suppressed. The washer 8 may be fixed to the elastic seal member 7 by a method other than vulcanization adhesion.

また、弾性シール部材7の上面7aのうち、段部71(ワッシャー8)よりも径方向外側の部分には、第1シール部72及び第2シール部73が形成されている。   In addition, a first seal portion 72 and a second seal portion 73 are formed on a portion of the upper surface 7 a of the elastic seal member 7 that is radially outward from the step portion 71 (washer 8).

第1シール部72は、ナット9の鍔部92の下面(裏面)92aに圧接する環状の突条部分である。第1シール部72は、弾性シール部材7の上面7aから上方へ(鍔部92側へ)所定長だけ突出して形成されている。第1シール部72は、ナット9をボルト4に締め付ける前の状態において、ワッシャー8よりも鍔部92側に位置している。第1シール部72は、図3及び図4に示すように、ナット9をボルト4に締め付けた状態で、下方へ縮まるように弾性変形し、鍔部92の下面92aに圧接するように構成されている。これにより、弾性シール部材7と鍔部92の下面92aとの間が液密にシールされるので、両者間の防水性を確保できる。   The first seal portion 72 is an annular ridge portion that is in pressure contact with the lower surface (back surface) 92 a of the flange portion 92 of the nut 9. The first seal portion 72 is formed so as to protrude from the upper surface 7a of the elastic seal member 7 upward (toward the flange portion 92) by a predetermined length. The first seal portion 72 is located closer to the flange portion 92 than the washer 8 in a state before the nut 9 is fastened to the bolt 4. As shown in FIGS. 3 and 4, the first seal portion 72 is configured to be elastically deformed so as to shrink downward in a state where the nut 9 is fastened to the bolt 4, and to press-contact with the lower surface 92 a of the flange portion 92. ing. Thereby, since the space between the elastic seal member 7 and the lower surface 92a of the flange portion 92 is liquid-tightly sealed, waterproofness between the two can be ensured.

第2シール部73は、ナット9の鍔部92の外側面92bに圧接する環状の部分である。第2シール部73は、弾性シール部材7の上面7aの外周縁から上方へ所定長だけ突出して形成されている。第2シール部73は、その内径が鍔部92の外径よりも大きく形成され、鍔部92の外側面92bと所定間隔を空けるように構成されている。   The second seal portion 73 is an annular portion that is in pressure contact with the outer side surface 92 b of the flange portion 92 of the nut 9. The second seal portion 73 is formed to protrude upward from the outer peripheral edge of the upper surface 7a of the elastic seal member 7 by a predetermined length. The second seal portion 73 is formed so that the inner diameter thereof is larger than the outer diameter of the flange portion 92 and is spaced from the outer surface 92b of the flange portion 92 by a predetermined distance.

この場合、図3及び図4に示すように、ナット9をボルト4に締め付けると、弾性シール部材7のうち第2シール部73を除く部分が下方へ縮まるように弾性変形し、この弾性変形に伴って第2シール部73が径方向内側へ傾倒し、第2シール部73の上部側が鍔部92の外側面92bに圧接することとなる。これにより、弾性シール部材7と鍔部92の外側面92bとの間が液密にシールされるので、両者間の防水性をより一層確保できる。   In this case, as shown in FIGS. 3 and 4, when the nut 9 is fastened to the bolt 4, the elastic seal member 7 is elastically deformed so that the portion excluding the second seal portion 73 is contracted downward. Accordingly, the second seal portion 73 tilts inward in the radial direction, and the upper side of the second seal portion 73 comes into pressure contact with the outer side surface 92 b of the flange portion 92. Thereby, since the space between the elastic seal member 7 and the outer side surface 92b of the flange portion 92 is liquid-tightly sealed, the waterproofness between the two can be further ensured.

<ナット>
ナット9は、図3及び図4に示すように、ボルト4の軸部43の先端部を外方から覆うように袋状に形成された所謂袋ナットで構成されている。ナット9は、内部にボルト4が螺合する有底筒状の筒状部91と、筒状部91の軸方向一端部の外周面から径方向外側へ延出する鍔部92と、を有する。
<Nut>
As shown in FIGS. 3 and 4, the nut 9 is a so-called cap nut formed in a bag shape so as to cover the tip end portion of the shaft portion 43 of the bolt 4 from the outside. The nut 9 has a bottomed cylindrical tubular portion 91 into which the bolt 4 is screwed, and a flange 92 extending radially outward from the outer peripheral surface of one axial end portion of the tubular portion 91. .

筒状部91は、弾性シール部材7、固定部材6のナット孔61a、及び目地止水部材5のナット孔51cに挿通される部分である。鍔部92の外径は、弾性シール部材7の内径及び固定部材6のナット孔61aの内径よりも大きく形成されている。鍔部92は、第1シール部72及びワッシャー8上に配置されるとともに、第2シール部73の径方向内側に配置されている。   The tubular portion 91 is a portion that is inserted through the elastic seal member 7, the nut hole 61 a of the fixing member 6, and the nut hole 51 c of the joint water-stopping member 5. The outer diameter of the flange 92 is formed larger than the inner diameter of the elastic seal member 7 and the inner diameter of the nut hole 61 a of the fixing member 6. The flange portion 92 is disposed on the first seal portion 72 and the washer 8 and is disposed on the radially inner side of the second seal portion 73.

本実施形態では、図2に示すように、下地フレーム2と目地止水部材5及び固定部材6との間に、太陽光パネルPの縁端部Paが挟み込まれて上下に挟持され、ボルト孔21aから突出するボルト4の軸部43にナット9の筒状部91を螺合して締め付けることによって、太陽光パネルPが屋根R上に固定されている。   In the present embodiment, as shown in FIG. 2, the edge portion Pa of the solar panel P is sandwiched between the base frame 2, the joint water-stopping member 5, and the fixing member 6, and is sandwiched up and down. The solar panel P is fixed on the roof R by screwing and tightening the cylindrical portion 91 of the nut 9 to the shaft portion 43 of the bolt 4 protruding from 21a.

本実施形態に係る太陽光パネルの設置構造100は、基本的に以上のように構成されるものであり、次に、図1乃至図6を適宜参照して、太陽光パネルPの設置手順及び本実施形態の作用効果を説明する。なお、図5は、屋根に支持ブロック及び下地フレームを設置する工程を示す斜視図であり、図6は、下地フレームに太陽光パネルを設置する工程を示す斜視図である。   The solar panel installation structure 100 according to the present embodiment is basically configured as described above. Next, referring to FIGS. 1 to 6 as appropriate, the solar panel P installation procedure and The effect of this embodiment is demonstrated. FIG. 5 is a perspective view showing a process of installing the support block and the base frame on the roof, and FIG. 6 is a perspective view showing a process of installing the solar panel on the base frame.

はじめに、図5に示すように、屋根R上に支持ブロック1を設置した後、支持ブロック1上にアースプレート3及び下地フレーム2を載置してネジSで固定する。   First, as shown in FIG. 5, after the support block 1 is installed on the roof R, the ground plate 3 and the base frame 2 are placed on the support block 1 and fixed with screws S.

このとき、支持ブロック1は、下地フレーム2の長手方向両端部及び中間部に設置する。また、下地フレーム2は、勾配方向Xの下方から順次設置し、かつ下地フレーム2,2同士が所定間隔離間するように設置する。   At this time, the support blocks 1 are installed at both ends and an intermediate portion of the base frame 2 in the longitudinal direction. The base frame 2 is sequentially installed from the lower side of the gradient direction X, and the base frames 2 and 2 are installed so as to be separated from each other by a predetermined interval.

更に、図5の部分拡大図に示すように、下地フレーム2のボルト孔21aにボルト4を下方から挿通して、軸部43を上方へ突出させる。そして、軸部43にOリング14を装着するとともに、下地フレーム2のボルト孔21aの開口縁部にOリング14を当接して、下地フレーム2に対するボルト4の仮止めを行う。なお、Oリング14は、ナット9を締め付ける直前に外してもよいし、そのまま残してもよい。   Furthermore, as shown in the partially enlarged view of FIG. 5, the bolt 4 is inserted into the bolt hole 21a of the base frame 2 from below, and the shaft portion 43 protrudes upward. Then, the O-ring 14 is attached to the shaft portion 43, and the O-ring 14 is brought into contact with the opening edge of the bolt hole 21 a of the base frame 2 to temporarily fix the bolt 4 to the base frame 2. The O-ring 14 may be removed immediately before the nut 9 is tightened, or may be left as it is.

続いて、下地フレーム2を設置した後、図6に示すように、太陽光パネルPを下方から順次設置する。   Subsequently, after the base frame 2 is installed, the solar panels P are sequentially installed from below as shown in FIG.

このとき、図2に示すように、支持部22のフランジ部22aの上面に縁端部Paの下面を当接させて太陽光パネルPを載置するとともに、突条部21の側面に縁端部Paの側面を接触させて太陽光パネルPを係止する。   At this time, as shown in FIG. 2, the solar panel P is placed by bringing the lower surface of the edge portion Pa into contact with the upper surface of the flange portion 22 a of the support portion 22, and the edge on the side surface of the ridge portion 21. The solar panel P is locked by bringing the side surface of the part Pa into contact.

このように太陽光パネルPを設置することによって、突条部21を挟むように設置された太陽光パネルP,P(勾配方向Xに沿って隣り合う太陽光パネルP,P)同士の間には、図6に示すように、直交方向Yに沿って延在する目地J(以下、「横目地Ja」という場合がある)が形成されることとなる。   By installing the solar panel P in this way, between the solar panels P and P (solar panels P and P adjacent to each other along the gradient direction X) installed so as to sandwich the ridge 21. As shown in FIG. 6, a joint J extending along the orthogonal direction Y (hereinafter, sometimes referred to as “horizontal joint Ja”) is formed.

一方、直交方向Yに沿って太陽光パネルPを設置する場合、所定間隔離間するように設置することによって、直交方向Yに沿って隣り合う太陽光パネルP,P同士の間には、図6に示すように、勾配方向Xに沿って延在する目地J(以下、「縦目地Jb」という場合がある)が形成されることとなる。   On the other hand, when installing the solar panels P along the orthogonal direction Y, the solar panels P and P adjacent to each other along the orthogonal direction Y are arranged as shown in FIG. As shown, a joint J extending along the gradient direction X (hereinafter sometimes referred to as “longitudinal joint Jb”) is formed.

続いて、太陽光パネルPを設置した後、図2に示すように、目地止水部材5を目地Jに挿入する。   Subsequently, after installing the solar panel P, the joint water-stopping member 5 is inserted into the joint J as shown in FIG.

このとき、下地フレーム2のボルト孔21aから上方へ突出するボルト4の軸部43と、目地止水部材5のナット孔51cとが上下で重なるように、目地止水部材5を下地フレーム2の上方に設置する。   At this time, the joint water-stopping member 5 is attached to the base frame 2 so that the shaft portion 43 of the bolt 4 projecting upward from the bolt hole 21a of the base frame 2 and the nut hole 51c of the joint joint water-stopping member 5 overlap vertically. Install upward.

そして、目地止水部材5を目地Jの内部に手である程度押し込む。なお、目地止水部材5は、弾性シール材52の粘着性(摩擦力)によって、太陽光パネルPに仮固定された状態となっているので、ナット9の締付作業をスムーズに行うことができる。   Then, the joint water stop member 5 is pushed into the joint J to some extent by hand. In addition, since the joint water-stopping member 5 is temporarily fixed to the solar panel P due to the adhesiveness (frictional force) of the elastic sealing material 52, the nut 9 can be tightened smoothly. it can.

続いて、目地止水部材5を設置した後、図2に示すように、固定部材6を目地止水部材5上に設置する。   Subsequently, after the joint water-stopping member 5 is installed, the fixing member 6 is installed on the joint-water-stopping member 5 as shown in FIG.

このとき、目地止水部材5のナット孔51cと、固定部材6のナット孔61aとが上下で重なるように、固定部材6を目地止水部材5上に設置する。   At this time, the fixing member 6 is installed on the joint water-stopping member 5 so that the nut hole 51c of the joint-water-stopping member 5 and the nut hole 61a of the fixing member 6 overlap each other vertically.

ちなみに、本実施形態では、図1及び図6に示すように、縦目地Jbに装着される目地止水部材5(以下、「縦目地止水部材5a」という)は、縦目地Jbの全長に亘って延在する一本物で構成され、横目地Jaに装着される目地止水部材5(以下、「横目地止水部材5b」という)は、太陽光パネルPの数に対応するように分割して構成されている。また、縦目地止水部材5aは、ナット孔を有しておらず、固定部材6を介して横目地止水部材5bに連結されている。つまり、縦目地止水部材5aは、固定部材6及び横目地止水部材5bに作用する締結力を利用して屋根R上に固定されている。なお、固定部材6は、図1に示すように、横目地止水部材5bの長手方向両端部(縦目地止水部材5aとの交差部分)及び中間部の上方に設置されている。   Incidentally, in this embodiment, as shown in FIGS. 1 and 6, the joint water-stopping member 5 (hereinafter, referred to as “vertical joint water-stopping member 5a”) attached to the vertical joint Jb is formed on the entire length of the vertical joint Jb. The joint water-stopping member 5 (hereinafter, referred to as “horizontal joint water-stopping member 5b”), which is composed of a single piece extending over and attached to the horizontal joint Ja, is divided so as to correspond to the number of solar panels P. Configured. Further, the vertical joint water-stopping member 5 a does not have a nut hole and is connected to the horizontal joint water-stopping member 5 b via the fixing member 6. That is, the vertical joint waterproof member 5a is fixed on the roof R by using a fastening force acting on the fixing member 6 and the horizontal joint waterproof member 5b. In addition, as shown in FIG. 1, the fixing member 6 is installed above the longitudinal direction both ends (intersection part with the vertical joint waterproofing member 5a) and the intermediate part of the horizontal joint waterproofing member 5b.

続いて、固定部材6を設置した後、図3に示すように、ワッシャー8が加硫接着された弾性シール部材7を固定部材6上に設置する。そして、図3及び図4に示すように、ナット9の筒状部91をナット孔61a,51cに挿通し、かつボルト4の軸部43に螺合して締め付けるとともに、弾性シール部材7の上面7a及びワッシャー8の上面にナット9の鍔部92を載置する。   Subsequently, after the fixing member 6 is installed, the elastic seal member 7 to which the washer 8 is vulcanized and bonded is installed on the fixing member 6 as shown in FIG. 3 and 4, the cylindrical portion 91 of the nut 9 is inserted into the nut holes 61a and 51c and screwed into the shaft portion 43 of the bolt 4 to be tightened, and the top surface of the elastic seal member 7 7a and the washer portion 92 of the nut 9 are placed on the upper surface of the washer 8.

このとき、本実施形態の弾性シール部材7は、ナット9の鍔部92との接触部分において、鍔部92との摩擦力を減少させるワッシャー8を有していることにより、鍔部92に接触する部分の滑性を高めることができるので、締付トルクによる弾性シール部材7の捩れ変形を抑制できる。これにより、固定部材6の回転を抑制して固定部材6を所望の位置に保持することが可能となり、太陽光パネルPを屋根R上に対し好適に保持できる。   At this time, the elastic seal member 7 of the present embodiment is in contact with the flange portion 92 by having the washer 8 that reduces the frictional force with the flange portion 92 at the contact portion of the nut 9 with the flange portion 92. Therefore, the torsional deformation of the elastic seal member 7 due to the tightening torque can be suppressed. Thereby, it becomes possible to hold | maintain the fixing member 6 in a desired position by suppressing rotation of the fixing member 6, and can hold | maintain the solar panel P suitably with respect to the roof R top.

特に、本実施形態では、第1シール部72が鍔部92側へ突出していることにより、ナット9の締め付け初期において、弾性シール部材7のうち第1シール部72が鍔部92の下面92aに最初に接触するので、弾性シール部材7と鍔部92の下面92aとの接触面積を減少させることが可能となり、ナット9の締め付け初期における弾性シール部材7と鍔部92の下面92aとの摩擦力を減少させることができる。   In particular, in the present embodiment, since the first seal portion 72 protrudes toward the flange portion 92, the first seal portion 72 of the elastic seal member 7 is placed on the lower surface 92 a of the flange portion 92 at the initial stage of tightening of the nut 9. Since the contact is made first, it is possible to reduce the contact area between the elastic seal member 7 and the lower surface 92a of the flange portion 92, and the frictional force between the elastic seal member 7 and the lower surface 92a of the flange portion 92 in the initial tightening of the nut 9. Can be reduced.

また、ボルト4にナット9を締め付けた際に作用する締付力によって、第1シール部72が下方へ縮まるように弾性変形し、鍔部92の下面92aに圧接するので、弾性シール部材7と鍔部92の下面92aとの間が液密にシールされることとなる。そのため、弾性シール部材7と鍔部92の下面92aとの間に水分が浸入するのを抑制でき、ひいては、固定部材6のナット孔61aに水分が浸入するのを抑制できる。これにより、弾性シール部材7にワッシャー8を設けた場合であっても、弾性シール部材7と鍔部92との間の防水性を確保できる。   Further, the first sealing portion 72 is elastically deformed so as to be contracted downward by the tightening force that is applied when the nut 9 is tightened to the bolt 4, and is pressed against the lower surface 92 a of the flange portion 92. The space between the lower surface 92a of the flange 92 is sealed in a liquid-tight manner. Therefore, it is possible to suppress moisture from entering between the elastic seal member 7 and the lower surface 92 a of the flange 92, and consequently to prevent moisture from entering the nut hole 61 a of the fixing member 6. Thereby, even if it is a case where the washer 8 is provided in the elastic seal member 7, the waterproofness between the elastic seal member 7 and the collar part 92 is securable.

特に、本実施形態では、ナット9をボルト4に締め付ける前の状態において、第1シール部72がワッシャー8よりも鍔部92側に位置していることにより、ボルト4にナット9を締め付けるときに、ワッシャー8よりも先に第1シール部72が鍔部92の下面92aに接触するので、弾性シール部材7と鍔部92の下面92aとの間が確実にシールされ、弾性シール部材7と鍔部92との間の防水性をより一層確保できる。   In particular, in this embodiment, when the nut 9 is fastened to the bolt 4 because the first seal portion 72 is positioned on the flange 92 side of the washer 8 before the nut 9 is fastened to the bolt 4. Since the first seal portion 72 comes into contact with the lower surface 92a of the flange portion 92 before the washer 8, the space between the elastic seal member 7 and the lower surface 92a of the flange portion 92 is reliably sealed. The waterproofness between the portions 92 can be further ensured.

また、ボルト4にナット9を締め付けた際に作用する締付力によって、弾性シール部材7のうち第2シール部73を除く部分が下方へ縮まるように弾性変形し、この弾性変形に伴って第2シール部73が径方向内側へ傾倒し、第2シール部73の上部側が鍔部92の外側面92bに圧接するので、弾性シール部材7と鍔部92の外側面92bとの間が液密にシールされることとなる。そのため、弾性シール部材7と鍔部92の外側面92bとの間に水分が浸入するのを抑制でき、ひいては、固定部材6のナット孔61aに水分が浸入するのをより一層抑制できる。これにより、弾性シール部材7にワッシャー8を設けた場合であっても、弾性シール部材7と鍔部92との間の防水性をより一層確保できる。   Further, due to the tightening force acting when the nut 9 is tightened on the bolt 4, the elastic seal member 7 is elastically deformed so that the portion excluding the second seal portion 73 is contracted downward. 2 The seal part 73 tilts inward in the radial direction, and the upper side of the second seal part 73 is in pressure contact with the outer side surface 92b of the flange part 92. It will be sealed. Therefore, it is possible to suppress moisture from entering between the elastic seal member 7 and the outer side surface 92b of the flange portion 92, and further suppress moisture from entering the nut hole 61a of the fixing member 6. Thereby, even if it is a case where the washer 8 is provided in the elastic seal member 7, the waterproofness between the elastic seal member 7 and the collar part 92 can be ensured further.

ちなみに、ボルト4にナット9を締め付けた際に作用する締付力によって、弾性シール部材7の下面が固定部材6の上面に押し付けられて圧接するので、弾性シール部材7と固定部材6との間が液密にシールされることとなる。そのため、弾性シール部材7と固定部材6との間に水分が浸入するのを抑制でき、ひいては、固定部材6のナット孔61aに水分が浸入するのを抑制できる。これにより、弾性シール部材7と固定部材6との間の防水性も確保できる。   Incidentally, the lower surface of the elastic seal member 7 is pressed against the upper surface of the fixing member 6 by the tightening force that is applied when the nut 9 is tightened to the bolt 4, so that the elastic seal member 7 is not in contact with the fixing member 6. Will be sealed in a liquid-tight manner. Therefore, it is possible to suppress moisture from entering between the elastic seal member 7 and the fixing member 6, and consequently to prevent moisture from entering the nut hole 61 a of the fixing member 6. Thereby, the waterproofness between the elastic seal member 7 and the fixing member 6 can also be secured.

更に、本実施形態では、固定部材6と鍔部92との間に弾性シール部材7を配置して防水性を確保できるので、従来使用していたキャップ部材を省略できる。これにより、太陽光パネルPの表面よりも上側に突出する部分の高さを低くできるので、意匠性の低下を抑制できる一方、キャップ部材が脱落する問題と発電量低下を解消できる。   Furthermore, in the present embodiment, the elastic seal member 7 can be disposed between the fixing member 6 and the flange portion 92 to ensure waterproofness, so that a cap member that has been conventionally used can be omitted. Thereby, since the height of the part which protrudes upwards rather than the surface of the solar panel P can be made low, while the designable fall can be suppressed, the problem that a cap member falls and the electric power generation fall can be eliminated.

以上、本発明の実施形態について図面を参照して詳細に説明したが、本発明はこれに限定されるものではなく、発明の主旨を逸脱しない範囲で適宜変更可能である。   As mentioned above, although embodiment of this invention was described in detail with reference to drawings, this invention is not limited to this, In the range which does not deviate from the main point of invention, it can change suitably.

本実施形態の太陽光パネルPは、長手方向が直交方向Yに沿うように横向きに設置されているが、本発明はこれに限定されるものではなく、長手方向が勾配方向Xに沿うように縦向きに設置されてもよい。   Although the solar panel P of this embodiment is installed sideways so that the longitudinal direction is along the orthogonal direction Y, the present invention is not limited to this, and the longitudinal direction is along the gradient direction X. It may be installed vertically.

本実施形態では、ワッシャー8が低摩擦部を構成しているが、本発明はこれに限定されるものではなく、例えば、弾性シール部材7の上面7aのうち、鍔部92に接触する部分に配置(塗布)された潤滑剤が低摩擦部を構成してもよい。また、弾性シール部材7のうち、鍔部92に接触する部分に含んだ潤滑剤が低摩擦部を構成してもよい。この場合、締付力が作用すると、弾性シール部材7の上面7aのうち、鍔部92に接触する部分に潤滑剤が露出することとなる。なお、弾性シール部材7の上面7aのうち、鍔部92に接触する部分に配置された潤滑剤と、鍔部92に接触する部分に含んだ潤滑剤とを組み合わせて低摩擦部を構成してもよい。   In this embodiment, the washer 8 constitutes a low friction portion, but the present invention is not limited to this, and for example, on the portion of the upper surface 7a of the elastic seal member 7 that contacts the flange 92. The arranged (applied) lubricant may constitute the low friction portion. Moreover, the lubricant contained in the part which contacts the collar part 92 among the elastic seal members 7 may comprise a low friction part. In this case, when the tightening force is applied, the lubricant is exposed to a portion of the upper surface 7 a of the elastic seal member 7 that contacts the flange 92. In addition, the low friction part is comprised by combining the lubricant arrange | positioned in the part which contacts the collar part 92 among the upper surfaces 7a of the elastic seal member 7, and the lubricant contained in the part which contacts the collar part 92. Also good.

本実施形態では、単一の第1シール部72を形成したが、本発明はこれに限定されるものではなく、図7(a)に示すように、複数の第1シール部72,72を径方向に所定間隔離間して形成してもよい。このようにすると、複数の第1シール部72,72が鍔部92の下面92aに圧接し、弾性シール部材7とナット9の下面92aとの間で複数段階にわたって防水できるので、弾性シール部材7とナット9との間の防水性をより一層確保できる。   In the present embodiment, the single first seal portion 72 is formed. However, the present invention is not limited to this, and a plurality of first seal portions 72, 72 are provided as shown in FIG. They may be formed spaced apart by a predetermined distance in the radial direction. In this way, the plurality of first seal portions 72, 72 are pressed against the lower surface 92 a of the flange portion 92 and can be waterproofed in a plurality of stages between the elastic seal member 7 and the lower surface 92 a of the nut 9. The waterproofness between the nut 9 and the nut 9 can be further secured.

本実施形態では、第1シール部72は、弾性シール部材7の上面7aから上方へ突出して形成されているが、本発明はこれに限定されるものではなく、図7(b)に示すように、弾性シール部材7の上面7aの複数箇所を下方へ切り欠いて形成されてもよい。換言すると、山部74と谷部75とが交互に連続するように形成し、かかる山部74を第1シール部72として利用してもよい。このようにすると、複数の山部74,74が鍔部92の下面92aに圧接し、弾性シール部材7とナット9の下面92aとの間で複数段階にわたって防水できるので、弾性シール部材7とナット9との間の防水性をより一層確保できる。   In the present embodiment, the first seal portion 72 is formed to protrude upward from the upper surface 7a of the elastic seal member 7, but the present invention is not limited to this, as shown in FIG. 7 (b). Alternatively, a plurality of locations on the upper surface 7a of the elastic seal member 7 may be cut downward. In other words, the peak portions 74 and the valley portions 75 may be formed alternately and continuously, and the peak portions 74 may be used as the first seal portion 72. In this way, the plurality of peak portions 74, 74 are pressed against the lower surface 92 a of the flange 92, and can be waterproofed in a plurality of stages between the elastic seal member 7 and the lower surface 92 a of the nut 9, so that the elastic seal member 7 and the nut The waterproofness between 9 can be further secured.

本実施形態のナット9は、所謂袋ナットで構成されているが、本発明はこれに限定されるものではなく、公知のナットの中から適宜選択して用いてもよい。   Although the nut 9 of the present embodiment is configured by a so-called cap nut, the present invention is not limited to this, and may be appropriately selected from known nuts.

本実施形態では、Oリング14を使用して下地フレーム2に対するボルト4の仮止めを行ったが、本発明はこれに限定されるものではなく、例えば、ボルト冶具などを使用して下地フレーム2に対するボルト4の仮止めを行ってもよい。この場合、ボルト冶具は、ナット9を締め付ける直前に外しておく。   In the present embodiment, the bolt 4 is temporarily fixed to the base frame 2 using the O-ring 14, but the present invention is not limited to this, and for example, the base frame 2 using a bolt jig or the like. The bolt 4 may be temporarily fixed to the bolt. In this case, the bolt jig is removed immediately before the nut 9 is tightened.

100 太陽光パネルの設置構造
P 太陽光パネル
R 屋根(基材)
4 ボルト
6 固定部材
61a ナット孔(孔部)
7 弾性シール部材
7a 上面
71 段部
72 第1シール部
73 第2シール部
8 ワッシャー(低摩擦部)
9 ナット
91 筒状部
92 鍔部
92a 下面(裏面)
92b 外側面
100 Solar panel installation structure P Solar panel R Roof (base material)
4 Bolt 6 Fixing member 61a Nut hole (hole)
7 Elastic seal member 7a Upper surface 71 Step portion 72 First seal portion 73 Second seal portion 8 Washer (low friction portion)
9 Nut 91 Cylindrical part 92 Gutter part 92a Bottom face (back face)
92b outer surface

Claims (5)

太陽光パネルの表面に設置され、前記太陽光パネルを基材に対し保持するとともに、孔部が形成された固定部材と、
前記孔部に挿通され、内部にボルトが螺合される筒状部と、前記筒状部の軸方向一端部の外側面から外方へ突出する鍔部と、を有するナットと、
前記孔部の周縁に設けられ、前記固定部材と前記鍔部との間をシールする弾性シール部材と、を備え、
前記弾性シール部材は、前記鍔部に接触する部分において、前記鍔部との摩擦力を減少させる低摩擦部を有することを特徴とする太陽光パネルの設置構造。
A fixing member that is installed on the surface of the solar panel, holds the solar panel against the substrate, and has a hole formed therein.
A nut having a cylindrical portion inserted through the hole and screwed into a bolt therein, and a flange protruding outward from the outer surface of one axial end of the cylindrical portion;
An elastic seal member that is provided at a peripheral edge of the hole portion and seals between the fixing member and the flange portion;
The solar panel installation structure according to claim 1, wherein the elastic seal member has a low friction portion that reduces a frictional force with the flange portion at a portion in contact with the flange portion.
前記弾性シール部材は、前記低摩擦部よりも外側に設けられるとともに、前記鍔部の裏面に圧接する第1シール部を有することを特徴とする請求項1に記載の太陽光パネルの設置構造。   2. The solar panel installation structure according to claim 1, wherein the elastic seal member includes a first seal portion that is provided outside the low friction portion and press-contacts the back surface of the flange portion. 前記第1シール部は、前記鍔部側へ突出し、前記ナットを前記ボルトに締め付ける前の状態において、前記低摩擦部よりも前記鍔部側に位置していることを特徴とする請求項2に記載の太陽光パネルの設置構造。   The said 1st seal | sticker part protrudes to the said collar part side, and is located in the said collar part side rather than the said low friction part in the state before tightening the said nut to the said bolt. The solar panel installation structure described. 前記弾性シール部材は、前記低摩擦部よりも外側に設けられるとともに、前記鍔部側へ突出し、前記鍔部の外側面に圧接する第2シール部を有することを特徴とする請求項1乃至請求項3のいずれか一項に記載の太陽光パネルの設置構造。   The elastic seal member is provided outside the low friction portion, and has a second seal portion that protrudes toward the flange portion and presses against an outer surface of the flange portion. The installation structure of the solar panel as described in any one of claim | item 3. 前記弾性シール部材は、ゴム材料で構成され、
前記低摩擦部は、金属材料で構成されていることを特徴とする請求項1乃至請求項4のいずれか一項に記載の太陽光パネルの設置構造。
The elastic seal member is made of a rubber material,
The said low friction part is comprised with the metal material, The installation structure of the solar panel as described in any one of Claim 1 thru | or 4 characterized by the above-mentioned.
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CN111364704A (en) * 2020-03-30 2020-07-03 时运 Roof solar panel system
JP2020165280A (en) * 2019-03-28 2020-10-08 パナソニック株式会社 Solar power generation device
KR102323740B1 (en) * 2020-08-27 2021-11-09 주식회사 일강케이스판 A seismic isolator for a solar panel roof that has a joint joint and prevents separation of the insulation material, and a solar panel roof including the same
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JPH10317604A (en) * 1997-05-21 1998-12-02 Sekisui House Ltd Roof waterproof construction equipped with frame for installing rooftop equipment
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JP2020165280A (en) * 2019-03-28 2020-10-08 パナソニック株式会社 Solar power generation device
CN111364704A (en) * 2020-03-30 2020-07-03 时运 Roof solar panel system
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KR102323740B1 (en) * 2020-08-27 2021-11-09 주식회사 일강케이스판 A seismic isolator for a solar panel roof that has a joint joint and prevents separation of the insulation material, and a solar panel roof including the same
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US11742794B2 (en) * 2021-04-23 2023-08-29 Hc Properties Inc Frame with plenum for supporting a photovoltaic array

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