JP3226480B2 - End treatment device and end treatment structure for exterior material with solar energy conversion device - Google Patents

End treatment device and end treatment structure for exterior material with solar energy conversion device

Info

Publication number
JP3226480B2
JP3226480B2 JP23624997A JP23624997A JP3226480B2 JP 3226480 B2 JP3226480 B2 JP 3226480B2 JP 23624997 A JP23624997 A JP 23624997A JP 23624997 A JP23624997 A JP 23624997A JP 3226480 B2 JP3226480 B2 JP 3226480B2
Authority
JP
Japan
Prior art keywords
joiner
exterior material
connection
solar energy
energy conversion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP23624997A
Other languages
Japanese (ja)
Other versions
JPH1181595A (en
Inventor
謙二 成田
Original Assignee
元旦ビューティ工業株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 元旦ビューティ工業株式会社 filed Critical 元旦ビューティ工業株式会社
Priority to JP23624997A priority Critical patent/JP3226480B2/en
Publication of JPH1181595A publication Critical patent/JPH1181595A/en
Application granted granted Critical
Publication of JP3226480B2 publication Critical patent/JP3226480B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S20/00Solar heat collectors specially adapted for particular uses or environments
    • F24S20/60Solar heat collectors integrated in fixed constructions, e.g. in buildings
    • F24S20/67Solar heat collectors integrated in fixed constructions, e.g. in buildings in the form of roof constructions
    • 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
    • Y02E10/50Photovoltaic [PV] energy

Landscapes

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

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、表面側に太陽電池
等の太陽エネルギー変換装置を一体的に備えた外装材の
桁行き方向の端部を処理すると共に、前記太陽エネルギ
ー変換装置の配線処理を行うことができる太陽エネルギ
ー変換装置付き外装材の端部処理装置及び端部処理構造
に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for treating an end portion in a digit direction of an exterior material integrally provided with a solar energy conversion device such as a solar cell on a surface side, and a wiring process for the solar energy conversion device. The present invention relates to an end processing device and an end processing structure of an exterior material with a solar energy conversion device capable of performing the above.

【0002】[0002]

【従来の技術】近年、太陽エネルギー変換装置を既存の
屋根材と一体化した提案が数多くなされているが、最近
になって曲げ加工可能な折り曲げ成形部を備えた太陽電
池モジュールの提案(特開平7−297440号公報)
がなされている。上記公報に記載の太陽電池モジュール
は、従来のモジュールが、既存の屋根材の面板部に太陽
電池を接着その他の手段により一体化するものであった
のに対し、素材状態で一体化した後にロールフォーミン
グが可能なので、屋根材としての生産性の向上が期待さ
れる。また、前記公報などに記載の太陽電池モジュール
の母屋(桁行き)方向の電気的接続に関して、太陽電池
付き横葺き屋根ユニットの提案(特開平7−30292
4号)もなされている。ところで従来公知の例えば0.
4乃至0.6mm程度の薄肉金属板等を敷設してなる横
葺き屋根は、施工中或いは施工後のメンテナンス等のた
め作業者が屋根面を歩行する場合、裏面側に空間部が存
在するが故に、集中荷重による部分的な激しい弾性変形
を伴う。また、空間部の存在で面板部が振動するため、
雨音等の騒音が他の屋根に比べてうるさい要因にもなっ
ている。このため近年、一般住宅用を含め高級な横葺き
屋根では、屋根板の裏面に断面が矩形状や略3角形状の
バックアップ部材を前記空間部に介在させ、各種外的要
因による変形や振動を防止し、必要に応じて断熱性能の
一層の向上を図るのが一般的である。
2. Description of the Related Art In recent years, many proposals have been made in which a solar energy conversion device is integrated with an existing roofing material. No. 7-297440)
Has been made. The solar cell module described in the above publication is a conventional module in which a solar cell is integrated with a face plate portion of an existing roofing material by bonding or other means. Since forming is possible, improvement in productivity as a roofing material is expected. Also, regarding the electrical connection of the solar cell module in the purlin (girderwise) direction described in the above-mentioned publications and the like, a proposal of a horizontal-roofing unit with solar cells (Japanese Patent Laid-Open No. 7-30292)
No. 4) has also been made. By the way, conventionally known, for example, 0.
When a worker walks on the roof surface during construction or for maintenance after construction, there is a space on the back side of a horizontal roof that is constructed by laying a thin metal plate of about 4 to 0.6 mm. Therefore, it is accompanied by partial severe elastic deformation due to the concentrated load. Also, because the face plate vibrates due to the presence of the space,
Noise such as rain noise is also a noisy factor compared to other roofs. For this reason, in recent years, in high-grade side-roofing roofs including those for general houses, a back-up member having a rectangular or substantially triangular cross section is interposed in the space on the back surface of the roof plate to prevent deformation and vibration due to various external factors. It is common practice to prevent and, if necessary, further improve the heat insulation performance.

【0003】[0003]

【発明が解決しようとする課題】前記公報の太陽電池付
き横葺き屋根ユニットは、太陽電池モジュールの母屋
(桁行き)方向の電気的接続を従来公知の横葺き屋根に
おいて必然的に生じる屋根下地材と屋根板裏面間の断面
略3角形状の空間部で行う構成であるが、以下のような
問題がある。前記空間部を太陽電池モジュールの電気的
接続を行うための空間として使用すると、前述の各種外
的要因による変形や振動の防止、さらに断熱性能の一層
の向上のためバックアップ部材を前記空間部に介在させ
たいとの要望があっても対応できない。逆に、前記空間
部にバックアップ材を介在させると、太陽電池モジュー
ルの電気的接続を行うことができない。また、前記公報
の太陽電池モジュールは、従来公知の薄肉金属板の屋根
板に追従する柔軟性を有するが故に、前述の薄肉金属板
の屋根板と同様の問題を有し、集中荷重によって部分的
な電気上の破損を生じ易い。さらに、この種の太陽電池
モジュール一体型外装材を、ロールフォーミングにより
生産する場合、長手方向の左右端部は軒棟方向の接続の
ための加工部となるので、成形ロールによる加圧を避け
るため、太陽電池モジュールの接続用端子を前記左右端
部に設けるのは適当でない。
The roofing unit with a solar cell disclosed in the above-mentioned publication is a roof base material in which electric connection in the purlin (girder) direction of a solar cell module is inevitably generated in a conventionally known roofing roof. And a space portion having a substantially triangular cross-section between the roof and the back of the shingle, but has the following problems. When the space is used as a space for electrical connection of the solar cell module, a backup member is interposed in the space to prevent deformation and vibration due to the various external factors described above and to further improve heat insulation performance. Even if there is a request to make it, we can not respond. Conversely, if a backup material is interposed in the space, the solar cell module cannot be electrically connected. In addition, the solar cell module disclosed in the above publication has the same problem as the above-described thin metal plate roofing sheet because it has the flexibility to follow a conventionally known thin metal sheet roofing sheet, and is partially affected by a concentrated load. Electrical damage is likely to occur. Furthermore, when this type of solar cell module-integrated exterior material is produced by roll forming, the left and right ends in the longitudinal direction are processed parts for connection in the eaves ridge direction, so that pressurization by forming rolls is avoided. It is not appropriate to provide the connection terminals of the solar cell module at the left and right ends.

【0004】尚、これらの問題を解決するため、出願人
は特願平8−23773号にて、幅方向中央に、太陽電
池モジュールの接続ケーブルを収納可能な配線用溝部を
形成した継手捨て板の提案を行っている。しかしこの提
案は、継手捨て板単体で配線用溝部を形成する構成のた
め、接続ケーブルの接続等の施工性は優れているが、製
造コストが嵩むという問題と、接続ケーブル等の配線の
保持がやや不安定であるという問題があり、本発明はそ
れらの解消も図るものである。
[0004] In order to solve these problems, the applicant has disclosed in Japanese Patent Application No. 8-23773 a joint discard plate having a wiring groove formed in the center in the width direction for accommodating a connection cable of a solar cell module. Has made a proposal. However, this proposal has a structure in which a wiring groove is formed by a joint discarding plate alone, so that the workability of connection cable connection and the like is excellent, but the production cost is increased and the retention of the wiring of the connection cable and the like is difficult. There is a problem that it is somewhat unstable, and the present invention also aims to solve the problem.

【0005】[0005]

【課題を解決するための手段】本発明は前記事情に鑑み
提案されたもので、面板部に太陽電池等の太陽エネルギ
ー変換装置を一体的に備える横葺き形式の外装材の端部
処理装置であって、前記外装材の桁行き方向の端部裏面
側のほぼ全長に沿って配される捨て板と、該捨て板上に
配置されて外装材の端部を表面側と裏面側から挟み込む
上部ジョイナー、下部ジョイナーとからなり、前記捨て
板は、下部ジョイナーを保持するジョイナー用保持部を
有し、取り付け状態における前記上部ジョイナーと下部
ジョイナーとの間には、太陽エネルギー変換装置の接続
ケーブルや連結ケーブルを収容可能な配線用空間が形成
されることを特徴とする太陽エネルギー変換装置付き外
装材の処理装置、及び端部処理構造に関するものであ
る。
DISCLOSURE OF THE INVENTION The present invention has been proposed in view of the above circumstances, and is an end processing apparatus for a side-roof type exterior material having a solar energy conversion device such as a solar cell integrated in a face plate portion. A disposal plate arranged along substantially the entire length of the back surface side of the end in the girder direction of the exterior material, and an upper portion disposed on the disposal plate and sandwiching the end of the exterior material from the front side and the back side The discard plate includes a joiner holding portion for holding the lower joiner, and a connection cable or connection of a solar energy conversion device is provided between the upper joiner and the lower joiner in an attached state. The present invention relates to a processing device for an exterior material with a solar energy conversion device, wherein a wiring space capable of accommodating a cable is formed, and an end processing structure.

【0006】[0006]

【発明の実施の形態】本発明の太陽エネルギー変換装置
12付き外装材(以下、単に外装材という)1の端部処
理装置は、図1,2に示すように、概略すると、外装材
1の桁行き方向の端部裏面側のほぼ全長に沿って配され
る捨て板2と、該捨て板2上に配置されて外装材1の端
部を表面側と裏面側から挟み込む上部ジョイナー4、下
部ジョイナー3とからなり、取り付け状態における前記
上部ジョイナー4と下部ジョイナー3との間には、太陽
エネルギー変換装置12の接続ケーブル121を収容可
能な配線用空間5が形成される構成であり、後述する外
装材1の桁行方向の端部処理(接続を含む)を行うと共
に、太陽エネルギー変換装置12の配線処理に用いるも
のである。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An end treatment device of an exterior material (hereinafter simply referred to as an exterior material) 1 with a solar energy converter 12 according to the present invention is, as shown in FIGS. A discarding plate 2 disposed substantially along the entire length of the back side of the end in the girder direction; an upper joiner 4 disposed on the discarding plate 2 to sandwich the end of the exterior material 1 from the front side and the back side; A wiring space 5 that can accommodate the connection cable 121 of the solar energy conversion device 12 is formed between the upper joiner 4 and the lower joiner 3 in the attached state, which will be described later. In addition to performing the end processing (including connection) of the exterior material 1 in the row and column direction, it is used for the wiring processing of the solar energy conversion device 12.

【0007】前記の捨て板2は、後述する外装材1の基
材と同素材で作製することができ、素材が金属板の場合
にはロール成形(ロールフォーミング)、或いはプレス
成型、或いは両者の組合せにより成形(成型)される。
この捨て板2は、基本構成として、略平板状の受板部2
1に下部ジョイナー3を保持するジョイナー用保持部2
13を、軒側に、下段の外装材1の棟側側縁上に位置す
る軒側端部23を、棟側に、水返し部221を備えた棟
側端部22を有する構成であり、上記の具体的構成(形
状)或いは上記以外の構成については特に限定するもの
ではなく、どのように設計、実施しても良い。
The discard plate 2 can be made of the same material as the base material of the packaging material 1 to be described later. When the material is a metal plate, roll forming (roll forming), press forming, or both of them are used. Molded (molded) by combination.
This discard plate 2 has a substantially flat receiving plate portion 2 as a basic configuration.
A holding unit 2 for a joiner that holds a lower joiner 3 at 1
13, on the eaves side, the eaves-side end 23 located on the ridge-side edge of the lower exterior material 1, and on the ridge side, a ridge-side end 22 provided with a water return portion 221, The specific configuration (shape) or the configuration other than the above is not particularly limited, and may be designed and implemented in any manner.

【0008】図1,2に示す捨て板2は、プレス成型と
ロール成型とを併用して作製したものであり、受板部2
1の両側縁に内側へ折り返された水返し片211が形成
されると共に、長さ方向に亙って複数(左右に2条づ
つ)の突条リブ212、213が形成されている。この
突条リブ212、213は、長さ方向に亙ってそれぞれ
内方に向かって傾斜し、前記水返し片211と同様に雨
水の侵入があった場合の水返し構造であるが、そのうち
内側の2条の突条リブ213は外側の2条の突状リブ2
12より長く、後述する下部ジョイナー3を保持するジ
ョイナー用保持部を兼ねている。また、受板部21の軒
側には、受板部21の軒端を下方へ折曲した軒側端部2
3が形成され、受板部21の棟側には、受板部21の棟
端を上方へ折曲した水返し部221を備える棟側端部2
2が形成されている。さらに、前記受板部21の長さ方
向の寸法は、後述する外装材1の面板部11の幅方向の
寸法とほぼ等しいか、或いは僅かに大きく形成する。
The discard plate 2 shown in FIGS. 1 and 2 is manufactured by using both press molding and roll molding.
A water return piece 211 folded inward is formed on both side edges of one, and a plurality of (two on the left and right) protrusion ribs 212 and 213 are formed in the length direction. The protruding ribs 212 and 213 are inclined inward in the longitudinal direction, respectively, and have a water return structure in the case of rainwater intrusion similarly to the water return piece 211. The two protruding ribs 213 are the outer two protruding ribs 2.
It is longer than 12 and also serves as a joiner holding section for holding a lower joiner 3 described later. Also, on the eave side of the receiving plate portion 21, an eave side end portion 2 obtained by bending the eave end of the receiving plate portion 21 downward.
3 is formed, and a ridge-side end 2 having a water return portion 221 formed by bending the ridge end of the receiving plate 21 upward on the ridge side of the receiving plate 21.
2 are formed. Further, the length in the length direction of the receiving plate portion 21 is substantially equal to or slightly larger than the size in the width direction of the face plate portion 11 of the exterior material 1 described later.

【0009】前記の上部ジョイナー4及び下部ジョイナ
ー3は、所要強度等により、通常0.6乃至3.2mm
程度のステンレス鋼板やメッキ鋼板等をプレス加工する
等して成型される。基本構成として、上部ジョイナー4
は、平板状の被覆部41の下面に接続部42を有し、下
部ジョイナー3は、平板状の取付部31の上面に前記接
続部42と一体的に係合等にて組み付けられる接続受部
32を有し、取り付け状態においてジョイナー3,4間
に配線用空間5が形成される構成であれば、上記の具体
的構成(形状)或いは上記以外の構成については特に限
定するものではなく、どのように設計、実施しても良
い。そして、配線用空間5は、桁行き方向に分断されな
い空間であればどのような形状或いは大きさの空間でも
良い。
The upper joiner 4 and the lower joiner 3 are usually 0.6 to 3.2 mm depending on required strength and the like.
It is formed by pressing a stainless steel plate, a plated steel plate, or the like. As a basic configuration, upper joiner 4
Has a connecting portion 42 on the lower surface of a flat covering portion 41, and the lower joiner 3 is connected to the upper surface of the flat mounting portion 31 integrally with the connecting portion 42 by a connection receiving portion and the like. The specific configuration (shape) or the configuration other than the above is not particularly limited as long as the configuration includes the wiring space 5 between the joiners 3 and 4 in the attached state. It may be designed and implemented as follows. The wiring space 5 may be of any shape or size as long as it is a space that is not divided in the ordering direction.

【0010】図1(図2ではカバー材40の裏面で見え
ない)に示す上部ジョイナー4は、被覆部41の下面か
ら僅かに外側へ鉛直状に垂下する左右一対の垂下片で構
成された接続部42を有し、各垂下片の基端外方には僅
かに下側へ拡開状に外方へ延在する押圧片43が形成さ
れている。尚、前記垂下片は長さ方向に連続し、各垂下
片の内側には係合凸部が形成され、弾性に抗して僅かに
外方へ傾斜できる構成である。また、この上部ジョイナ
ー4がカバー材を兼ねる場合には、後述する外装材1の
基材と同一素材から構成される 図1,2に示す下部ジョイナー3は、前記捨て板2より
も短尺な取付部31の上面からほぼ鉛直状に起立する左
右一対の起立片で構成された接続受部32を有し、各起
立片の外方には鉛直状に起立する規制部33が形成され
ている。尚、前記起立片は長さ方向に連続し、各起立片
の外側には前記垂下片の係合凸部と係合する係合凹部が
形成され、弾性に抗して僅かに内方へ傾斜できる構成で
ある。また、取付部31の幅(桁行き方向の長さ)は、
前記捨て板2のジョイナー用保持部213,213間の
幅と同一か僅かに狭く形成されている。前記接続受部3
2及び接続部42の内側には、配線用空間5が形成され
る構成であって、この配線用空間5は謂わば上下左右を
ジョイナー3,4に保護されている。
The upper joiner 4 shown in FIG. 1 (not shown in FIG. 2 on the back surface of the cover member 40) is a connection composed of a pair of right and left hanging pieces vertically hanging slightly downward from the lower surface of the covering portion 41. A pressing piece 43 having a portion 42 and extending outward slightly outward from the base end of each hanging piece is formed. The hanging pieces are continuous in the longitudinal direction, and an engaging projection is formed inside each hanging piece, so that the hanging piece can be slightly inclined outwardly against elasticity. When the upper joiner 4 also serves as a cover material, the lower joiner 3 shown in FIGS. It has a connection receiving portion 32 composed of a pair of right and left standing pieces that stand substantially vertically from the upper surface of the portion 31, and a vertically-regulated restricting portion 33 is formed outside each of the rising pieces. The upright pieces are continuous in the longitudinal direction, and an outer side of each upright piece is formed with an engaging recess which engages with the engaging convex portion of the hanging piece, and is slightly inclined inward against elasticity. It is a configuration that can be done. In addition, the width (length in the digit-wise direction) of the mounting portion 31 is
The width of the discard plate 2 is the same as or slightly smaller than the width between the joiner holding portions 213 and 213. The connection receiving part 3
The wiring space 5 is formed inside the connection portion 2 and the connection portion 42, and the wiring space 5 is protected so-called upper, lower, left and right by the joiners 3 and 4.

【0011】これら捨て板2、上部ジョイナー4、下部
ジョイナー3にて構成される本発明の端部処理装置によ
り桁行方向の接続等の端部処理を行われる外装材1は、
面板部11に太陽電池等の太陽エネルギー変換装置12
を一体的に備え、面板部11の軒縁と棟縁に、相互に係
合又は重合する接続部13、接続受部14を有する構成
であれば良く、上記各部位の具体的な構成(構造,形
状)或いは上記以外の構成については特に限定するもの
ではなく、どのように設計、実施しても良い。尚、以下
の説明においては、近年ロールフォーミングが可能で、
生産性に優れた外装材1を例にして説明する。即ち、太
陽エネルギー変換装置(12,同図には図示せず)を埋
設する樹脂層15と裏面支持板16とを接着剤や熱ラミ
などにて一体的に積層してなる外装材1について説明す
る。
The exterior material 1 to be subjected to end processing such as connection in the row and column direction by the end processing apparatus of the present invention constituted by the discarding plate 2, the upper joiner 4, and the lower joiner 3,
A solar energy conversion device 12 such as a solar cell
It is only necessary that the connecting portion 13 and the connecting receiving portion 14 engage or overlap with each other on the eaves edge and the ridge edge of the face plate portion 11. , Shape) or configurations other than those described above are not particularly limited, and may be designed and implemented in any manner. In the following description, roll forming is possible in recent years.
A description will be given by taking the exterior material 1 having excellent productivity as an example. That is, a description will be given of the exterior material 1 in which a resin layer 15 for embedding a solar energy conversion device (12, not shown in the figure) and a back support plate 16 are integrally laminated with an adhesive or a heat laminator. I do.

【0012】前記太陽エネルギー変換装置12は、特に
その構成を限定するものではなく、どのような構成のも
のでも適用することができる。一般的に太陽電池は、導
電性基体、裏面反射層、光電変換部材としての半導体
層、透明導電層から構成され、前記導電性基体として
は、例えば鋼板、銅、チタン、アルミニウム、ステンレ
ス、カーボンシートを用いることができ、その他にも導
電層が設けられたポリエステル、ポリイミド、ポリエチ
レンナフタライド、エポキシ等の樹脂フィルムやセラミ
ックス等を用いることもできる。前記半導体層は特に限
定するものではなく、アモルファスシリコン半導体、多
結晶シリコン半導体、結晶シリコン半導体、銅インジウ
ムセレナイド等の化合物半導体を用いることができる。
また、樹脂層への埋設方法についても特に限定するもの
ではない。例えば近年提案された可撓性を有するアモル
ファスシリコン太陽電池は極めて薄肉で軽量であるため
好ましい。このように太陽エネルギー変換装置12は、
どのように構成することもできるが、図示実施例では外
装材1の桁行方向端縁に、前記太陽エネルギー変換装置
12の接続ケーブル121が位置するように形成した。
尚、接続ケーブル121等は説明するまでもなく防水処
理されている。また、前記樹脂層15は、エチレン−酢
酸ビニル共重合体(EVA)、ポリビニルブチロール、
シリコーン樹脂等を素材として使用することができる
が、特にこれらに限定されるものではない。さらに、前
記裏面支持板16は、例えば溶融亜鉛メッキ鋼板やガル
バリウム鋼板等の防錆処理鋼板、特殊鋼及び非鉄金属、
ステンレス鋼板、耐候性鋼板、銅板、アルミニウム合金
板、鉛板、亜鉛板、チタニウム板などを素材として使用
することができるが、特にこれらに限定されるものでは
ない。また、既設の外装材を転用(再利用)するように
しても良い。
The structure of the solar energy converter 12 is not particularly limited, and any structure can be applied. In general, a solar cell is composed of a conductive substrate, a back reflection layer, a semiconductor layer as a photoelectric conversion member, and a transparent conductive layer. Examples of the conductive substrate include steel plates, copper, titanium, aluminum, stainless steel, and carbon sheets. In addition, a resin film such as polyester, polyimide, polyethylene naphthalide, or epoxy provided with a conductive layer, a ceramic, or the like can also be used. The semiconductor layer is not particularly limited, and a compound semiconductor such as an amorphous silicon semiconductor, a polycrystalline silicon semiconductor, a crystalline silicon semiconductor, and copper indium selenide can be used.
Also, the method of embedding in the resin layer is not particularly limited. For example, a recently proposed amorphous silicon solar cell having flexibility is preferable because it is extremely thin and lightweight. Thus, the solar energy conversion device 12
Although any configuration can be adopted, in the illustrated embodiment, the connection cable 121 of the solar energy conversion device 12 is formed at the edge in the row direction of the exterior material 1.
Note that the connection cable 121 and the like are subjected to a waterproof treatment without being described. Further, the resin layer 15 is made of ethylene-vinyl acetate copolymer (EVA), polyvinyl butyrol,
Silicone resin or the like can be used as a material, but is not particularly limited thereto. Further, the back support plate 16 may be, for example, a rust-preventive steel plate such as a galvanized steel plate or a galvalume steel plate, a special steel and a non-ferrous metal,
A stainless steel plate, a weather-resistant steel plate, a copper plate, an aluminum alloy plate, a lead plate, a zinc plate, a titanium plate, or the like can be used as a material, but is not particularly limited thereto. Further, the existing exterior material may be diverted (reused).

【0013】これらの各素材を一体化する態様について
も特に限定するものではなく、例えば予め裏面支持板1
6の棟端及び軒端を除く表面を太陽エネルギー変換装置
12を埋設した樹脂層15で被覆すると共に必要に応じ
てその表面を透明な耐候性フィルムで保護しておき、こ
れを適宜に成形して接続部13や接続受部14などを形
成しても良い。太陽エネルギー変換装置12を埋設した
樹脂層15と耐候性フィルムは予め一体状に積層してシ
ート状にしておき、これを接着剤や熱ラミ等で裏面支持
板16と接合するようにしても良い。また、予め裏面支
持板16に成形加工を施した後に樹脂層15を積層して
も良い。尚、耐候性フィルムは、表面保護材としてその
表面を歩行しても破損することがないものを用いる。
The manner in which these materials are integrated is not particularly limited. For example, the back support plate 1
The surface except for the ridge end and the eaves end of No. 6 is covered with a resin layer 15 in which the solar energy conversion device 12 is embedded, and if necessary, the surface is protected with a transparent weather-resistant film. The connection part 13 and the connection receiving part 14 may be formed. The resin layer 15 in which the solar energy conversion device 12 is embedded and the weather-resistant film may be integrally laminated in advance to form a sheet, and this may be bonded to the back support plate 16 with an adhesive, heat lamination, or the like. . Alternatively, the resin layer 15 may be laminated after the back support plate 16 has been subjected to molding. In addition, as the weather-resistant film, a film that does not break even when walking on the surface is used as a surface protection material.

【0014】図1,2に示す実施例における前記外装材
1は、図3に示した複合素材からなり、裏面支持板16
の棟端及び軒端を除く表面に太陽エネルギー変換装置1
2(図中、122は電極)が埋設され、表面には耐候性
フィルム(図示せず)が積層された構成である。そし
て、この複合素材をロール成型し、面板部11の棟縁と
軒縁に接続受部14、接続部13を形成した。面板部1
1の軒縁に設けた接続部13は、図1(b)に示すよう
に面板部11の軒端縁を下方へ折曲し、続いて棟側へ直
角状に折曲した構成であり、樹脂層15の接続部13の
端縁(軒縁被保持部154)は、裏面支持板16の接続
部13の端縁から延在する軒縁保持部162にて包持状
に銜えられて保持されている。面板部11の棟縁に設け
た接続受部14は、図1(b)に示すように面板部11
から同一平面状に棟側へ延在する端縁を軒側やや斜め上
方へ折曲した水返し部分と、その上端を軒側へ折り返し
た部分と、軒側斜め下方へ折曲すると共にその先端を折
り返し状に屈曲した係合部分とからなる構成である。こ
れら接続部13及び接続受部14は、相互に係合し、こ
の係合部分から雨水等が裏面に侵入しない構造となって
いる。
The exterior material 1 in the embodiment shown in FIGS. 1 and 2 is made of the composite material shown in FIG.
Solar energy converter 1 on the surface excluding the ridge and eaves edges
2 (electrodes 122 in the drawing) are embedded, and a weather-resistant film (not shown) is laminated on the surface. Then, the composite material was roll-formed to form the connection receiving portions 14 and the connection portions 13 at the ridge edge and the eave edge of the face plate portion 11. Face plate part 1
As shown in FIG. 1 (b), the connecting portion 13 provided at the edge of the eaves 1 is formed by bending the edge of the eaves of the face plate portion 11 downward and then at right angles to the ridge side. An edge of the connection portion 13 of the layer 15 (eave edge held portion 154) is held and held by the eave edge holding portion 162 extending from the edge of the connection portion 13 of the back support plate 16 in an envelope shape. ing. As shown in FIG. 1B, the connection receiving portion 14 provided on the ridge of the face plate portion 11 is
A water-returned part with the edge extending to the ridge side in the same plane from the eaves side slightly bent upwards, a part with its upper end folded back to the eaves side, and a diagonally downwards eaves side and its tip And an engaging portion bent in a folded shape. The connection portion 13 and the connection receiving portion 14 are engaged with each other, and have a structure in which rainwater or the like does not enter the back surface from the engagement portion.

【0015】図1,2は、本発明の端部処理装置を用い
た桁行き方向に隣り合う外装材1,1の接続構造を示す
が、以下にその配設手順の一例を示す。まず、外装材1
の桁行き方向の端部の裏面側に、該外装材1のほぼ全長
に沿って捨て板2を配し、該捨て板2のジョイナー用保
持部211に下部ジョイナー3の取付部31を嵌め付け
る。予め配設以前に、捨て板2に下部ジョイナー3を嵌
め付けておくようにしても良い。次に、下部ジョイナー
3の規制部33に外装材1の端部を係止させると共に、
外装材1の桁行方向端縁に位置する接続ケーブル121
を下部ジョイナー3の接続受部32の内側(配線用空間
5)に配設する。図示実施例の左右の外装材1,1の接
続ケーブル121,121は、防水処理されたケーブル
接続部123で接続される。その後、上部ジョイナー4
を配設するのであるが、その配設以前にカバー材40を
被覆部41に取り付ける。そして、カバー材40が外装
材1,1の桁行き方向の端部間を覆うように上部ジョイ
ナー4を臨ませ、上方から押圧し、その接続部42を下
部ジョイナー3の接続受部32に係合させ、押圧片43
で外装材1,1の面板部11,11を上方から押圧する
ように配設する。接続ケーブル121,121は形成さ
れる配線用空間5に位置する(収容される)ものとな
る。尚、カバー材40は通常外装材1の基材と同一素材
から構成されるが、意匠性を考慮して外装材1の基材と
は異なる化粧材を用いても良い。
FIGS. 1 and 2 show the connection structure of the exterior materials 1 and 1 which are adjacent to each other in the spar direction using the edge processing apparatus of the present invention. An example of the arrangement procedure will be described below. First, exterior material 1
A disposal plate 2 is arranged along the substantially entire length of the exterior material 1 on the back side of the end in the girder direction, and the mounting portion 31 of the lower joiner 3 is fitted to the joiner holding portion 211 of the disposal plate 2. . Before disposing, the lower joiner 3 may be fitted to the discard plate 2 in advance. Next, the end of the exterior material 1 is locked to the regulating portion 33 of the lower joiner 3,
Connection cable 121 located at the edge in the column direction of exterior material 1
Is arranged inside the connection receiving portion 32 of the lower joiner 3 (the wiring space 5). The connection cables 121, 121 of the left and right exterior materials 1, 1 in the illustrated embodiment are connected by a cable connection portion 123 that has been subjected to a waterproof treatment. Then, upper joiner 4
The cover member 40 is attached to the cover portion 41 before the arrangement. Then, the upper joiner 4 is faced so that the cover member 40 covers the ends of the exterior members 1 and 1 in the girder direction and pressed from above, and the connection portion 42 is engaged with the connection receiving portion 32 of the lower joiner 3. The pressing piece 43
Are arranged so as to press the face plate portions 11, 11 of the exterior materials 1, 1 from above. The connection cables 121 are located (accommodated) in the wiring space 5 to be formed. Although the cover member 40 is usually made of the same material as the base material of the exterior material 1, a decorative material different from the base material of the exterior material 1 may be used in consideration of design.

【0016】このように本発明の端部処理装置は、その
取り付け状態において一体的に組み付けられる捨て板2
とジョイナー3,4とからなり、外装材1,1の桁行き
方向の端部処理(接続)を行うと共に太陽エネルギー変
換装置12の配線処理を配線用空間5にて容易に行うこ
とができる。そのため、後述する図5や図6に示すよう
に外装材1の裏面と下地8との間の空間部にはバックア
ップ材7を介在させることができ、その結果、強風時等
の木の枝などの衝突や施工作業者の体重など各種外的要
因による変形や振動を防止すると共に、断熱性能の一層
の向上を図ることができ、集中荷重による太陽電池の破
損も防止することができる。
As described above, according to the end processing apparatus of the present invention, the discard plate 2 integrally assembled in the attached state is provided.
And the joiners 3 and 4, so that the end processing (connection) of the exterior materials 1 and 1 in the digit direction can be performed, and the wiring processing of the solar energy conversion device 12 can be easily performed in the wiring space 5. For this reason, as shown in FIGS. 5 and 6 described later, the backup material 7 can be interposed in the space between the back surface of the exterior material 1 and the base 8, and as a result, a tree branch or the like in a strong wind or the like can be obtained. In addition to preventing deformation and vibration due to various external factors such as collision of the vehicle and the weight of the construction worker, the heat insulation performance can be further improved, and the solar cell can be prevented from being damaged by a concentrated load.

【0017】特に図示実施例の端部処理構造(接続構
造)では、ジョイナー3,4の接続部32及び接続受部
42の内側に配線用空間5を形成したので、この内部に
収容された接続ケーブル121は、荷重に対して保護さ
れている。また、下部ジョイナー3の接続受部32は、
左右一対の起立片により構成されているので、配線用空
間5への雨水の浸入が抑制される。例えば接続受部32
を低く(縦長さが短く)形成して接続部42を縦長に形
成しても同様の形状の配線用空間5を形成することがで
きるが、この場合の雨水に対する浸入抑制効果は前記図
示実施例の構成に比べて低いものとなる。さらに、図示
実施例の接続構造では、下部ジョイナー3の規制部33
に外装材1の端部を係止させるようにしたので、外装材
1が桁行き方向にズレ動いたり傾いたりすることがなく
位置規制される。また、上部ジョイナー4の押圧片43
で外装材1の面板部11を押圧するようにしたので、外
装材1の端部はより安定に固定される。
Particularly, in the end processing structure (connection structure) of the illustrated embodiment, the wiring space 5 is formed inside the connection portions 32 and the connection receiving portions 42 of the joiners 3 and 4, so that the connection accommodated therein is formed. The cable 121 is protected against a load. The connection receiving portion 32 of the lower joiner 3 is
Since it is constituted by a pair of right and left standing pieces, infiltration of rainwater into the wiring space 5 is suppressed. For example, the connection receiving section 32
The wiring space 5 having the same shape can be formed by forming the connection portion 42 vertically long by forming the connection portion 42 vertically long (short vertical length). Is lower than that of the above configuration. Further, in the connection structure of the illustrated embodiment, the restricting portion 33 of the lower joiner 3 is provided.
Since the end portion of the exterior material 1 is locked at the first position, the position of the exterior material 1 is regulated without shifting or tilting in the spar direction. Also, the pressing piece 43 of the upper joiner 4
Then, the face plate portion 11 of the exterior material 1 is pressed, so that the end of the exterior material 1 is more stably fixed.

【0018】尚、その他の構成については図示並びに説
明を省略するが、従来の横葺き形式の外装材の施工に適
用されるどのような手法を用いても良い。また、同一屋
根面に太陽エネルギー変換装置12が備えられない外装
材と組み合わせて配設するようにしても良い。さらに、
適宜箇所に前記本発明の接続構造に代えて例えば本出願
人が特願平8−232773号にて提案した接続構造を
組み合わせるようにしても良い。
Although illustrations and explanations of other structures are omitted, any method applied to the construction of a conventional side-roof type exterior material may be used. Moreover, you may make it arrange | position in combination with the exterior material which is not provided with the solar energy converter 12 on the same roof surface. further,
Instead of the connection structure of the present invention, a connection structure proposed by the present applicant in Japanese Patent Application No. 8-232773 may be combined at an appropriate place.

【0019】図4は、本発明の端部処理装置をケラバに
用いたものであり、謂わば外装材1とケラバ材10とを
桁行き方向に接続した構造を示し、左半のみに水返し片
211、突条リブ212が形成された構成の捨て板2が
用いられている。また、配線用空間5には、外装材1の
接続ケーブル121とこれらを棟軒方向に連結する連結
ケーブル124が収容されている。基本的な端部処理構
造及び前記以外の構成については、前記外装材1,1同
士の接続構造と同様であるから、同一符号を付して説明
を省略する。この接続構造におけるケラバ材10は、同
図(c)に示すように平面部17と縦面部18とからな
り、平面部17の側端には係止片171が、縦面部18
の下端には水返し片181が設けられている。また、縦
面部18は、棟側から軒側へ向かって縦長になるように
形成され、水返し片181が設けられない棟端に上段側
のケラバ材10の軒端が重合被覆し、水返し片181の
下端は直線状に連続するように構成されている。このよ
うに本発明の端部処理装置は、外装材1のケラバにも適
用することができる。
[0019] Figure 4, the end processing apparatus of the present invention are those used in the verge,-called if shows a structure in which connection between the outer package 1 and the verge member 10 digits bound direction, water flashing only the left half A discard plate 2 having a configuration in which a piece 211 and a ridge rib 212 are formed is used. In the wiring space 5, a connection cable 121 for the exterior material 1 and a connection cable 124 for connecting these in the building eaves direction are accommodated. Since the basic end processing structure and the configuration other than the above are the same as the connection structure between the exterior materials 1 and 1, the same reference numerals are given and the description is omitted. Verge member 10 in the connecting structure consists of flat part 17 and the vertical surface portion 18. As shown in FIG. (C), the engaging piece 171 on the side edge of the flat portion 17, the vertical face portion 18
A water return piece 181 is provided at the lower end of. Further, the vertical surface portion 18 is formed so as to be vertically elongated from the ridge side toward the eaves side, and the eaves end of the upper-side side keraba material 10 is covered by polymerization at the ridge end where the water return pieces 181 are not provided. The lower end of 181 is configured to be linearly continuous. Thus, the edge processing apparatus of the present invention can be applied to the keraba of the exterior material 1.

【0020】図5に示す外装構造は、前記図1にて端部
を処理した外装材1の裏面と下地8との間の空間部にバ
ックアップ材7を介在させた構成である。このバックア
ップ材7としては、ポリウレタン、ポリスチレン、フェ
ノール等の高い断熱性を備えた発泡樹脂素材が用いられ
るが、防火性を考慮して木毛セメント板等を用いること
もできる。また、外装材1の接続受部14は、断面L字
状の吊子6により上方から保持されている。この吊子6
は、水平片状の下地或いは躯体への固定部61と接続
受部14の水返し部分の棟側に沿う傾斜縦片部62とか
らなり、傾斜縦片部62の上端には押さえ保持部621
が設けられている。したがって、この吊子6により外装
材1は下地8へ取り付けられている。前記のように本発
明の端部処理装置による太陽エネルギー変換装置12の
配線処理は、前述の従来例のように外装材1の裏面と下
地8との間の空間部で行うものではないので、この外装
構造のように前記空間部にバックアップ材7を介在させ
ることができる。その結果、外装材1は強風時等の木の
枝などの衝突や施工作業者の体重など各種外的要因によ
って激しい弾性変形を生ずることもないし、振動が防止
されて雨音等の騒音が大きくなることもない。また、断
熱性能の一層の向上をも図ることができる。さらには、
集中荷重による太陽電池の破損も防止することができ
る。
The exterior structure shown in FIG. 5 has a configuration in which a backup material 7 is interposed in the space between the back surface of the exterior material 1 whose end is treated in FIG. As the backup material 7, a foamed resin material having high heat insulation such as polyurethane, polystyrene, phenol or the like is used, but a wood wool cement board or the like can be used in consideration of fire resistance. Further, the connection receiving portion 14 of the exterior material 1 is held from above by a suspender 6 having an L-shaped cross section. This suspension 6
Is composed of a horizontal strip-shaped base or fixing portion 61 to the frame 8 and a slanted vertical piece 62 along the ridge side of the water return portion of the connection receiving section 14. 621
Is provided. Therefore, the exterior material 1 is attached to the base 8 by the suspenders 6. As described above, the wiring processing of the solar energy conversion device 12 by the edge processing device of the present invention is not performed in the space between the back surface of the exterior material 1 and the base 8 as in the above-described conventional example. A backup material 7 can be interposed in the space as in this exterior structure. As a result, the exterior material 1 does not undergo severe elastic deformation due to various external factors such as a collision of a tree branch or the like in a strong wind or the weight of a construction worker, and vibration is prevented and noise such as rain noise is increased. It won't be. Further, the heat insulation performance can be further improved. Moreover,
The damage of the solar cell due to the concentrated load can also be prevented.

【0021】一方、図6に示す外装構造は、前記図5よ
りも厚肉に成形されたバックアップ材7が介装され、こ
のバックアップ材7の軒端には、切欠き断面が直角隅部
状の重合用空部71が形成されている。また、吊子6に
は、傾斜縦片部62と固定部61との間に段差63が設
けられている。そして、バックアップ材7の棟端を吊子
6の段差63が上方から保持し、さらに上段側のバック
アップ材7の重合用空部71が上方から臨んでいる。
尚、図中、72は捨て板2及び下部ジョイナー3の逃げ
部である。この図6の外装構造では、バックアップ材7
が厚いことは勿論、棟軒方向にバックアップ材7が隙間
なく配設されているため、図5の外装構造に比べて断熱
性能が高いものとなる。また、この外装構造では、外装
材1が下地に接触していない構造であって表面に作用す
る衝撃はバックアップ材7が吸収するため、耐衝撃性能
が高いものとなる。この場合、前記図5の説明にて示し
た効果に加え、吊子6の変形も抑制されるものとなる。
On the other hand, in the exterior structure shown in FIG. 6, a backup material 7 formed thicker than that of FIG. 5 is interposed, and the eave end of the backup material 7 has a cut-out cross section having a right-angled corner. A polymerization cavity 71 is formed. Further, the suspension 6 has a step 63 between the inclined vertical piece 62 and the fixed part 61. The step 63 of the suspension 6 holds the ridge end of the backup material 7 from above, and the overlapping space 71 of the upper-side backup material 7 faces from above.
In the drawing, reference numeral 72 denotes an escape portion for the discard plate 2 and the lower joiner 3. In the exterior structure shown in FIG.
Of course, since the backup material 7 is arranged without gaps in the building eaves direction, the heat insulation performance is higher than that of the exterior structure of FIG. In addition, in this exterior structure, the exterior material 1 is not in contact with the base, and the impact acting on the surface is absorbed by the backup material 7, so that the impact resistance is high. In this case, in addition to the effects shown in the description of FIG. 5, the deformation of the suspension 6 is also suppressed.

【0022】以上本発明を図面の実施の形態に基づいて
説明したが、本発明は前記実施の形態に限定されるもの
ではなく、特許請求の範囲に記載の構成を変更しない限
りどのようにでも実施することができる。例えば複数の
太陽エネルギー変換装置22の接続は直列でも並列でも
適宜に行うことができる。
Although the present invention has been described with reference to the embodiments shown in the drawings, the present invention is not limited to the above-described embodiments, and may be implemented in any manner unless the structure described in the claims is changed. Can be implemented. For example, the connection of the plurality of solar energy conversion devices 22 can be appropriately performed in series or in parallel.

【0023】[0023]

【発明の効果】以上要するに本発明の端部処理装置は、
その取り付け状態において一体的に組み付けられる捨て
板とジョイナーとからなり、外装材の桁行き方向の端部
処理を行うと共に太陽エネルギー変換装置の配線処理を
配線用空間にて容易に行うことができる。したがって、
外装材の裏面と下地との間の空間部にはバックアップ材
などを介在させることができ、その結果、強風時等の木
の枝などの衝突や施工作業者の体重など各種外的要因に
よる変形や振動を防止すると共に、断熱性能の一層の向
上を図ることができ、集中荷重による太陽電池の破損も
防止することができる。即ち、従来では実施が不可能で
あった高級な横葺き屋根にも太陽発電を利用可能とした
ものである。
In summary, the edge processing apparatus of the present invention is
It is composed of a discard plate and a joiner that are integrally assembled in the mounted state, so that the end processing of the exterior material in the direction of the beam can be performed, and the wiring processing of the solar energy converter can be easily performed in the wiring space. Therefore,
A backup material can be interposed in the space between the back surface of the exterior material and the base, and as a result, deformation due to various external factors such as collision of tree branches in strong winds and the weight of construction workers In addition to preventing vibration and vibration, the heat insulation performance can be further improved, and damage to the solar cell due to a concentrated load can be prevented. That is, the solar power generation can be used even on a high-grade side-roofed roof, which was impossible in the past.

【0024】特に配線用空間を接続部及び接続受部の内
側に形成した場合、接続ケーブルは上下左右を保護され
ることになり、荷重や雨水の影響を受け難いものとな
る。
In particular, when the wiring space is formed inside the connection portion and the connection receiving portion, the connection cable is protected at the top, bottom, left, and right, and is hardly affected by load or rainwater.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の一実施例である端部処理装置を用いた
接続構造を示す(a)断面図、(b)側断面図、(c)
一部を欠截した平面図である。
FIG. 1A is a cross-sectional view, FIG. 1B is a side cross-sectional view, and FIG. 1C is a cross-sectional view showing a connection structure using an edge processing apparatus according to an embodiment of the present invention.
FIG. 3 is a plan view with a part cut away.

【図2】図1の接続構造を示す斜視図である。FIG. 2 is a perspective view showing the connection structure of FIG.

【図3】図1の外装材の成形以前の素材構成を示す平面
図である。
FIG. 3 is a plan view showing a material configuration before molding of the exterior material of FIG. 1;

【図4】本発明の一実施例である端部処理装置を用いた
ケラバ構造を示す(a)断面図、(b)側断面図、
(c)それに用いたケラバ材である。
FIGS. 4A and 4B are a cross-sectional view, a side cross-sectional view, and a cross-sectional view, respectively, illustrating a kerava structure using an edge processing apparatus according to an embodiment of the present invention.
(C) Keraba wood used for it.

【図5】(a)本発明の端部処理構造を実施した外装構
造の一例を示す側断面図、(b)それに用いたバックア
ップ材を示す側面図である。
FIG. 5A is a side sectional view showing an example of an exterior structure in which the edge treatment structure of the present invention is implemented, and FIG. 5B is a side view showing a backup material used therein.

【図6】(a)本発明の端部処理構造を実施した外装構
造の一例を示す側断面図、(b)それに用いたバックア
ップ材を示す側面図である。
FIG. 6A is a side sectional view showing an example of an exterior structure in which the edge treatment structure of the present invention is implemented, and FIG. 6B is a side view showing a backup material used for the same.

【符号の説明】[Explanation of symbols]

1 太陽エネルギー変換装置付き外装材 11 面板部 12 太陽エネルギー変換装置 121 接続ケーブル 124 連結ケーブル 13 接続部 14 接続受部 2 捨て板 21 受板部 22 棟側端部 23 軒側端部 3 下部ジョイナー 32 接続受部 4 上部ジョイナー 42 接続部 5 配線用空間 6 吊子 7 バックアップ材 REFERENCE SIGNS LIST 1 exterior material with solar energy conversion device 11 face plate portion 12 solar energy conversion device 121 connection cable 124 connection cable 13 connection portion 14 connection receiving portion 2 throw-away plate 21 receiving plate portion 22 ridge end 23 eaves end 3 lower joiner 32 Connection receiving part 4 Upper joiner 42 Connection part 5 Wiring space 6 Hanger 7 Backup material

───────────────────────────────────────────────────── フロントページの続き (58)調査した分野(Int.Cl.7,DB名) E04D 13/18 E04D 3/30 - 3/40 H01L 31/042 ──────────────────────────────────────────────────続 き Continued on the front page (58) Fields surveyed (Int. Cl. 7 , DB name) E04D 13/18 E04D 3/30-3/40 H01L 31/042

Claims (3)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 面板部に太陽電池等の太陽エネルギー変
換装置を一体的に備える横葺き形式の外装材の端部処理
装置であって、 前記外装材の桁行き方向の端部裏面側のほぼ全長に沿っ
て配される捨て板と、該捨て板上に配置されて外装材の
端部を表面側と裏面側から挟み込む上部ジョイナー、下
部ジョイナーとからなり、 前記捨て板は、下部ジョイナーを保持するジョイナー用
保持部を有し、 取り付け状態における前記上部ジョイナーと下部ジョイ
ナーとの間には、太陽エネルギー変換装置の接続ケーブ
ルや連結ケーブルを収容可能な配線用空間が形成される
ことを特徴とする太陽エネルギー変換装置付き外装材の
処理装置。
1. An end treatment device for a side-roof type exterior material integrally provided with a solar energy conversion device such as a solar cell on a face plate portion, comprising: A discard plate arranged along the entire length, and an upper joiner and a lower joiner disposed on the discard plate and sandwiching the end of the exterior material from the front side and the back side, and the discard plate holds the lower joiner A connection space for accommodating a connection cable or a connection cable of the solar energy conversion device is formed between the upper joiner and the lower joiner in an attached state. Equipment for treating exterior materials with a solar energy converter.
【請求項2】 配線用空間は上部ジョイナーの接続部及
び下部ジョイナーの接続受部の内側に形成されることを
特徴とする請求項1に記載の太陽エネルギー変換装置付
き外装材の処理装置。
2. The apparatus according to claim 1, wherein the wiring space is formed inside the connection part of the upper joiner and the connection receiving part of the lower joiner.
【請求項3】 面板部に太陽電池等の太陽エネルギー変
換装置を一体的に備える横葺き形式の外装材の桁行き方
向の端部の裏面側に、該外装材のほぼ全長に沿って配線
用継手捨て板を配してなる端部処理構造にあって、 前記捨て板上に形成したジョイナー用保持部に下部ジョ
イナーを保持し、下部ジョイナーに上部ジョイナーを取
り付けると共に外装材の端部を挟み込み、この取り付け
状態において配線用空間が形成されるようにし、この配
線用空間に太陽エネルギー変換装置の接続ケーブルや連
結ケーブルを収容させたことを特徴とする太陽エネルギ
ー変換装置付き外装材の端部処理構造。
3. A wiring for a wiring along a substantially entire length of the exterior material on a back surface side of an end portion in a girder direction of an exterior material of a horizontal roofing type having a solar energy conversion device such as a solar cell integrated on a face plate portion. In the end processing structure in which a joint discard plate is arranged, the lower joiner is held by the joiner holding portion formed on the discard plate, the upper joiner is attached to the lower joiner, and the end of the exterior material is sandwiched, A wiring space is formed in this mounted state, and a connection cable or a connection cable of the solar energy conversion device is accommodated in the wiring space. .
JP23624997A 1997-09-01 1997-09-01 End treatment device and end treatment structure for exterior material with solar energy conversion device Expired - Fee Related JP3226480B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP23624997A JP3226480B2 (en) 1997-09-01 1997-09-01 End treatment device and end treatment structure for exterior material with solar energy conversion device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23624997A JP3226480B2 (en) 1997-09-01 1997-09-01 End treatment device and end treatment structure for exterior material with solar energy conversion device

Publications (2)

Publication Number Publication Date
JPH1181595A JPH1181595A (en) 1999-03-26
JP3226480B2 true JP3226480B2 (en) 2001-11-05

Family

ID=16997992

Family Applications (1)

Application Number Title Priority Date Filing Date
JP23624997A Expired - Fee Related JP3226480B2 (en) 1997-09-01 1997-09-01 End treatment device and end treatment structure for exterior material with solar energy conversion device

Country Status (1)

Country Link
JP (1) JP3226480B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000320083A (en) * 1999-05-13 2000-11-21 Kanegafuchi Chem Ind Co Ltd Solar battery module and roof member
JP5898461B2 (en) * 2011-11-02 2016-04-06 日鉄住金鋼板株式会社 Roofing material

Also Published As

Publication number Publication date
JPH1181595A (en) 1999-03-26

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