JP5002275B2 - Wall bottom structure - Google Patents

Wall bottom structure Download PDF

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JP5002275B2
JP5002275B2 JP2007015694A JP2007015694A JP5002275B2 JP 5002275 B2 JP5002275 B2 JP 5002275B2 JP 2007015694 A JP2007015694 A JP 2007015694A JP 2007015694 A JP2007015694 A JP 2007015694A JP 5002275 B2 JP5002275 B2 JP 5002275B2
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wall
wall material
dry
dry wall
decorative surface
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JP2008180035A (en
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利秀 国分
忍 菊池
一起 西尾
淳一 荒木
耕一郎 眞田
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IG Kogyo Co Ltd
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本発明は建築、構築物の外壁材として使用する乾式壁材の下端部構造であり、流水機能、結露防止、断熱効率の向上、乾式壁材の合成樹脂発泡体の吸水防止、等を向上した壁の下端部構造に関するものである。   The present invention is a lower end structure of a dry type wall material used as an outer wall material of a building or a structure, and has improved water flow function, prevention of condensation, improvement of heat insulation efficiency, prevention of water absorption of a synthetic resin foam of a dry type wall material, etc. It is related with the lower end part structure.

従来から使用されている乾式壁材Bの下端部をカバーする水切りCとしては、壁材と水切りとの間に空間を形成し、水切りに貫通孔を形成して、雨水を外部に排出するものであった。(特許文献1、2参照)。   As the drainer C that covers the lower end of the dry wall material B that has been conventionally used, a space is formed between the wall member and the drainer, a through hole is formed in the drainer, and rainwater is discharged to the outside. Met. (See Patent Documents 1 and 2).

実用新案登録3012289号Utility model registration No. 3012289 特許登録3358474号Patent registration 3358474

しかしながら、芯材として合成樹脂発泡体を使用した乾式壁材を用いた場合には、水切り内部に浸入した雨水が跳ね上がり、乾式壁材端部木口の合成樹脂発泡体に接触し、水分が合成樹脂発泡体内に浸透してしまい、表面材の鉄板の錆発生、合成樹脂発泡体の腐食、濡れ雑巾化による断熱性の低下防止、等の悪影響を与える危険性があった。   However, when a dry wall material using a synthetic resin foam as a core material is used, rainwater that has entered the drainer jumps up and comes into contact with the synthetic resin foam at the end of the dry wall material end, so that the moisture is in the synthetic resin. There was a risk of permeating into the foam and causing adverse effects such as rusting of the iron plate of the surface material, corrosion of the synthetic resin foam, and prevention of deterioration of heat insulation due to wet ragging.

本発明はこのような欠点を除去するため、垂直平面状の固定部と、固定部の上端を外方に傾斜して垂下した傾斜面と、傾斜面の下端を外方かつ上方に傾斜して突出した傾斜化粧面と、傾斜化粧面の先端を上方に突出した化粧面とから形成し、傾斜面と傾斜化粧面の下端に一定間隔で形成した流水兼通気孔とから形成した長尺状の見切縁を、壁下地の土台部に水平に連続状で固定し、見切縁の空間に乾式壁材下端部の木口を挿入して形成すると共に、該乾式壁材は合成樹脂発泡体を芯材とし、裏面側に通気溝を設けた縦張り乾式壁材を使用し、乾式壁材の働き幅壁下地のピッチに対応して形成した壁の下端部構造である。 In order to eliminate such drawbacks, the present invention eliminates such a vertical flat fixed portion, an inclined surface that is slanted with the upper end of the fixed portion inclined downward, and a lower end of the inclined surface that is inclined outward and upward. An elongated decorative surface formed from a protruding inclined decorative surface and a decorative surface protruding upward at the tip of the inclined decorative surface, and a flowing water / vent hole formed at regular intervals at the lower end of the inclined surface and the inclined decorative surface The parting edge is fixed horizontally and continuously to the base part of the wall base, and the dry wall material is formed by inserting a bottom end of the dry type wall material into the parting edge space, and the dry type wall material is made of synthetic resin foam. A vertical dry wall material provided with a ventilation groove on the back side is used, and the working width of the dry wall material is the lower end structure of the wall formed corresponding to the pitch of the wall base.

本発明に係る壁の下端部構造によれば、
(1)流水兼通気孔が内部に浸入した雨水を速やかに外部に排出する。
(2)傾斜面、傾斜化粧面を形成したために、内部に浸入した雨水が速やかに流下し、乾式壁材の木口に雨水が接触せず、乾式壁材の芯材が合成樹脂発泡体である場合に、合成樹脂発泡体の腐食防止、濡れ雑巾化による断熱性の低下防止、壁下地の腐食防止、乾式壁材の強度低下防止に有効である。
(3)壁内の湿気、汚染空気、廃熱、等を屋外に放出する排気機能を有する。
(4)通気路が空気層として機能し、断熱性を生かせる。
(5)通気路(壁)内に結露が生じない。
(6)結露が生じないので、躯体の腐朽が生じにくい。
(7)通気路(空気層)を形成した乾式壁材が断熱材として機能する。
(8)乾式壁材が断熱材として機能するために、夏季の冷房効率、冬季の暖房効率を高められる。
(9)乾式壁材の断熱性により、乾式壁材の裏面および壁内の温度が高く保持され、より内部結露の発生が抑えられる。
(10)壁下地の躯体のピッチに対応した働き幅で形成した乾式壁材を使用したために、壁下地上に横胴縁を形成する必要が無く、コストが低下し、施工性が向上する。
(11)乾式壁材の芯材を合成樹脂発泡体で形成したために、従来の外壁材として窯業系外壁材を使用した時のように昼の熱を蓄積し、夜間に放熱するようなことが無く、夏にはエアコンによる冷房の効率化を図り、冬には暖房の効率化が図られ、省エネルギーとコスト削減が図られる。
等の特徴、効果がある。
According to the wall lower end structure according to the present invention,
(1) Rainwater that has entered the interior of the running water / vent hole is quickly discharged to the outside.
(2) Since the inclined surface and the inclined decorative surface are formed, the rainwater that has entered the interior flows down quickly, the rainwater does not come into contact with the mouth of the drywall material, and the core of the drywall material is a synthetic resin foam. In this case, it is effective for preventing corrosion of the synthetic resin foam, preventing the heat insulation from being lowered due to wetting, and preventing the corrosion of the wall base and the strength of the dry wall material.
(3) It has an exhaust function for releasing moisture, contaminated air, waste heat, etc. in the wall to the outside.
(4) The air passage functions as an air layer and can make use of heat insulation.
(5) No condensation occurs in the air passage (wall).
(6) Since condensation does not occur, it is difficult for the enclosure to decay.
(7) The dry wall material in which the air passage (air layer) is formed functions as a heat insulating material.
(8) Since the dry wall material functions as a heat insulating material, the cooling efficiency in summer and the heating efficiency in winter can be improved.
(9) Due to the heat insulation of the dry wall material, the temperature of the back surface and the wall of the dry wall material is kept high, and the occurrence of internal condensation is further suppressed.
(10) Since a dry wall material formed with a working width corresponding to the pitch of the frame of the wall base is used, it is not necessary to form a horizontal trunk edge on the wall base, reducing the cost and improving the workability.
(11) Since the core material of the dry wall material is formed of a synthetic resin foam, it accumulates daytime heat and dissipates heat at night as when a ceramic-type outer wall material is used as a conventional outer wall material. In summer, air-conditioner cooling efficiency is improved, and in winter, heating efficiency is improved, saving energy and reducing costs.
There are features and effects.

以下に図面を用いて本発明に係る壁の下端部構造の一実施例について詳細に説明する。すなわち、図1、図2(a)、(b)は本発明に係る壁の下端部構造の一実施例を示す断面図、図3(a)〜(c)は本発明に係る壁の下端部構造に使用する見切縁Aを示す断面図と一部切り欠き斜視図である。また、図4(a)、(b)は乾式壁材B、図5は水切りCの断面図である。   Hereinafter, an embodiment of the lower end structure of a wall according to the present invention will be described in detail with reference to the drawings. That is, FIG. 1, FIG. 2 (a), (b) is sectional drawing which shows one Example of the lower end part structure of the wall based on this invention, FIG. 3 (a)-(c) is the lower end of the wall based on this invention. It is sectional drawing which shows the parting edge A used for a partial structure, and a partially cutaway perspective view. 4A and 4B are cross-sectional views of the dry wall material B, and FIG.

見切縁Aは、垂直平面状の固定部1と、固定部1の上端を外方に傾斜して垂下した傾斜面2と、傾斜面2の下端を外方に突出した底面3と、底面3の先端を、外方かつ上方に傾斜して突出した傾斜化粧面4と、傾斜化粧面4の先端を上方に突出した化粧面5と、化粧面5の先端を内方に折り返した舌片6とから形成し、図では底面3に一定間隔で形成した流水兼通気孔7と、傾斜面2、底面3、傾斜化粧面4と化粧面5とから空間8を形成したものである。   The parting edge A includes a vertical flat fixed portion 1, an inclined surface 2 that hangs downward by inclining the upper end of the fixed portion 1, a bottom surface 3 that protrudes outward from the lower end of the inclined surface 2, and a bottom surface 3. An inclined decorative surface 4 that protrudes outwardly and upwardly, a decorative surface 5 that protrudes upward from the distal end of the inclined decorative surface 4, and a tongue piece 6 in which the distal end of the decorative surface 5 is folded inward. In the figure, a space 8 is formed from running water / ventilation holes 7 formed on the bottom surface 3 at regular intervals, the inclined surface 2, the bottom surface 3, the inclined decorative surface 4 and the decorative surface 5.

固定部1は見切縁Aを壁下地αに固定具βにより固定する部分である。   The fixing part 1 is a part for fixing the parting edge A to the wall base α by a fixing tool β.

傾斜面2は、見切縁Aに空間8を形成し、図1に示すように乾式壁材Bの木口B1と見切縁A間に空間8を形成することにより、図6に矢印で示すように雨水が浸入した場合に、雨水が乾式壁材Bの木口B1に接触せず、木口B1が濡れることが無いようにしたものである。 The inclined surface 2 forms a space 8 at the parting edge A, and as shown in FIG. 6, the space 8 is formed between the end B1 of the dry wall material B and the parting edge A as shown in FIG. When rainwater enters, the rainwater does not come into contact with the end B1 of the dry wall material B, and the end B1 is prevented from getting wet.

底面3は、傾斜面2と傾斜化粧面4の下端部分に形成し、主に流水兼通気孔7の形成場所として機能すると共に、内部に浸入した雨水を、スムーズに流水兼通気孔7より外部に排出するために形成した部分である。   The bottom surface 3 is formed at the lower end portion of the inclined surface 2 and the inclined decorative surface 4 and functions mainly as a place where the running water / ventilation hole 7 is formed. It is a part formed for discharging.

傾斜化粧面4は、内部に浸入した雨水を、スムーズに流水兼通気孔7より外部に排出するために形成した傾斜部分であると共に、傾斜することにより、乾式壁材Bの凹部14を垂下した雨水が跳ね返って木口B1の芯材10が濡れるのを防止するものである。このため、芯材10が吸水することによる腐食、濡れ雑巾化による断熱性の低下、壁下地αの腐食、乾式壁材Bの強度低下を防止できるものである。   The inclined decorative surface 4 is an inclined portion that is formed to smoothly drain rainwater that has entered inside to the outside through the flowing water / ventilation hole 7, and the recessed portion 14 of the dry wall material B is suspended by being inclined. This prevents rainwater from splashing and getting the core material 10 of the lip B1 wet. For this reason, it is possible to prevent corrosion due to water absorption by the core material 10, deterioration of heat insulation due to wet ragging, corrosion of the wall base α, and reduction in strength of the dry wall material B.

化粧面5は、乾式壁材Bの下端部の木口B1部分を覆い、乾式壁材Bの下端部分が外部に露出するのを防止する部分である。   The decorative surface 5 is a portion that covers the bottom B1 portion of the lower end portion of the dry wall material B and prevents the lower end portion of the dry wall material B from being exposed to the outside.

舌片6は、金属製板材により形成された見切縁Aの端部により怪我をしないように形成した部分である。   The tongue piece 6 is a portion formed so as not to be injured by the end portion of the parting edge A formed of a metal plate material.

流水兼通気孔7は、底面3にを一定ピッチで形成し、乾式壁材Bと見切縁Aの化粧面5間より浸入した雨水を外部に排出するためのものである。また、流水兼通気孔7の形成ピッチは30〜300mm位である。   The running water / ventilation holes 7 are formed on the bottom surface 3 at a constant pitch, and discharge rainwater that has entered from between the dry wall material B and the decorative surface 5 of the parting edge A to the outside. Moreover, the formation pitch of the flowing water / ventilation holes 7 is about 30 to 300 mm.

その素材としては、金属薄板、例えば鉄、アルミニウム、銅、ステンレス、チタン、アルミ・亜鉛合金メッキ鋼板、ガルバリウム鋼板、ホーロー鋼板、クラッド鋼板、ラミネート鋼板(塩ビ鋼板等)、サンドイッチ鋼板(制振鋼板等)、塩化ビニル樹脂、ポリカーボネイト樹脂等(勿論、これらを各種色調に塗装したカラー板を含む)の一種を押出成形、ロール成形、プレス成形、等によって各種形状に成形したものである。   The materials include thin metal plates such as iron, aluminum, copper, stainless steel, titanium, aluminum / zinc alloy plated steel plates, galvalume steel plates, enameled steel plates, clad steel plates, laminated steel plates (PVC steel plates, etc.), sandwich steel plates (damping steel plates, etc.) ), Vinyl chloride resin, polycarbonate resin, etc. (of course, including color plates coated with various colors) are molded into various shapes by extrusion molding, roll molding, press molding, or the like.

乾式壁材Bは図4に示すように表面材9と裏面材11間に芯材10を形成し、表面材9の化粧面12に、凸部13、凹部14を形成し、上下端に雌型連結部15と雄型連結部16、裏面に通気溝17を形成し、雄型連結部16内にパッキン18を形成したものであり、固定具βの打設と、雌型連結部15と雄型連結部16を嵌合することにより乾式壁材Bを連結するものである
As shown in FIG. 4, the dry wall material B forms a core material 10 between the surface material 9 and the back surface material 11, forms a convex portion 13 and a concave portion 14 on the decorative surface 12 of the surface material 9, and females at the upper and lower ends. A mold connecting portion 15 and a male connecting portion 16, a ventilation groove 17 is formed on the back surface, and a packing 18 is formed in the male connecting portion 16. The dry wall material B is connected by fitting the male connecting portion 16 .

このように、乾式壁材Bの働き幅Wを壁下地αの形成ピッチPに対応して形成することにより、壁下地α上に胴縁などの固定下地を形成することなく、乾式壁材Bを縦に施工することが出来、通気路Tも連続的に土台から軒に向かって連続的に形成されるものである。勿論、壁下地α上にボード等の断熱材を形成した場合にでも、ボードの固定位置により壁下地αの場所が特定できるために、乾式壁材Bの施工には支障は来さないものである。   Thus, by forming the working width W of the dry wall material B corresponding to the formation pitch P of the wall base α, the dry wall material B can be formed without forming a fixed base such as a trunk edge on the wall base α. Can be constructed vertically, and the air passage T is also continuously formed from the base toward the eaves. Of course, even when a heat insulating material such as a board is formed on the wall base α, the location of the wall base α can be specified by the fixing position of the board, so there is no problem in the construction of the dry wall material B. is there.

表面材9、裏面材11は金属薄板、例えば鉄、アルミニウム、銅、ステンレス、チタン、アルミ・亜鉛合金メッキ鋼板、ガルバリウム鋼板、ホーロー鋼板、クラッド鋼板、ラミネート鋼板(塩ビ鋼板等)、サンドイッチ鋼板(制振鋼板等)、塩化ビニル樹脂、ポリカーボネイト樹脂等(勿論、これらを各種色調に塗装したカラー板を含む)の一種をロール成形、プレス成形、押出成形等によって各種形状に成形したもの、あるいは無機質材を押出成形、プレス成形、オートクレーブ養生成形、押出−乾燥−焼成、等して各種任意形状に形成したものである。   The surface material 9 and the back material 11 are metal thin plates, for example, iron, aluminum, copper, stainless steel, titanium, aluminum / zinc alloy plated steel plate, galbarium steel plate, enamel steel plate, clad steel plate, laminated steel plate (vinyl chloride steel plate, etc.), sandwich steel plate (control) Corrugated steel sheets, etc.), vinyl chloride resin, polycarbonate resin, etc. (including color plates coated with various colors, of course) formed into various shapes by roll molding, press molding, extrusion molding, etc., or inorganic materials Are formed into various arbitrary shapes by extrusion molding, press molding, autoclave cultivating form, extrusion-drying-firing, and the like.

芯材10は例えばポリウレタンフォーム、ポリイソシアヌレートフォーム、フェノールフォーム、塩化ビニルフォーム、ポリエチレンフォーム、ポリスチレンフォーム、ユリアフォーム、等の合成樹脂発泡体からなるものであり、例えばレゾール型フェノールの原液と、硬化剤、発泡剤を混合し、表面材9、もしくは裏面材11の裏面側に吐出させ、加熱して反応・発泡・硬化させて形成したものである。   The core material 10 is made of a synthetic resin foam such as polyurethane foam, polyisocyanurate foam, phenol foam, vinyl chloride foam, polyethylene foam, polystyrene foam, urea foam, and the like. An agent and a foaming agent are mixed, discharged onto the back surface side of the surface material 9 or the back material 11, and heated to react, foam and cure.

合成樹脂発泡体よりなる芯材10は、夏には、従来の乾式壁材Bとして窯業系外壁材を使用した時のように、昼の熱を蓄積し、夜間に放熱するようなことが無く、夏にはエアコンによる冷房の効率化を図り、冬には暖房の効率化が図られ、省エネルギーとコスト削減が図られるものである。これは、窯業系外壁材は比重が大きいために、蓄熱すると共に、熱を徐々に放熱する性状を有するのに対して、合成樹脂発泡体よりなる芯材10を使用した本発明に係る壁の下端部構造で使用する乾式壁材Bは、蓄熱することが無いために、夜間に熱を放出することが無く、快適な居住空間を形成すると共に、省エネルギーとコスト削減が図られるものである。   The core material 10 made of a synthetic resin foam does not accumulate heat during the day and dissipate heat at night as in the case of using a ceramic outer wall material as the conventional dry wall material B in summer. In summer, air-conditioner cooling efficiency is improved, and in winter, heating efficiency is improved, saving energy and reducing costs. This is because the ceramic-based outer wall material has the property of storing heat and gradually dissipating heat because the specific gravity is large, whereas the wall according to the present invention using the core material 10 made of synthetic resin foam is used. Since the dry-type wall material B used in the lower end structure does not store heat, it does not emit heat at night, forms a comfortable living space, and saves energy and reduces costs.

図2(b)、図4(b)に示すように壁下地αの形成ピッチをP、乾式壁材Bの働き幅をWとすると、W=P、あるいはW=n×P(nは正整数)で形成するものであり、乾式壁材Bの働き幅Wは壁下地α3の形成ピッチPに対応して形成するものである。WとPの寸法は、具体的には455mm(1尺5寸)、910mm(3尺)、500mm、1000mm、等である。 As shown in FIGS. 2B and 4B, when the formation pitch of the wall base α is P and the working width of the dry wall material B is W, W = P or W = n × P (n is positive) The working width W of the dry wall material B is formed corresponding to the formation pitch P of the wall base α3. Specifically, the dimensions of W and P are 455 mm (1 scale 5 dimensions), 910 mm (3 scales), 500 mm, 1000 mm, and the like.

通気溝17は、乾式壁材Bの裏面を凹条に窪ませてくぼみ形成した部分により形成されるものであり、点線矢印で示すように流水兼通気孔7より侵入した外部の新鮮空気が、屋内の湿気、汚染空気、廃熱、等を屋外に排出するための空間である。その寸法Hとしては、H=7mm〜12mm位である。勿論、通気溝17により形成した通気路Tの上端部分には、通気孔を形成した止縁、あるいは軒天に軒天有孔板を形成し、通気路Tを通ってきた湿気、汚染空気、廃熱、等を屋外に排出するものである。   The ventilation groove 17 is formed by a portion where the back surface of the dry-type wall material B is recessed to form a recess, and as shown by the dotted arrow, fresh external air that has entered through the flowing water / ventilation hole 7 It is a space for exhausting indoor humidity, polluted air, waste heat, etc. to the outdoors. The dimension H is about H = 7 mm to 12 mm. Of course, at the upper end portion of the ventilation path T formed by the ventilation groove 17, a perforated hole formed on the eaves, or an eaves-perforated plate formed on the eaves, moisture, contaminated air passing through the ventilation path T, Waste heat is discharged outdoors.

次に、本発明に係る壁の下端部構造の施工方法について簡単に説明する。まず、図3(a)〜(c)に示すような見切縁Aを図1に示すように固定部1を固定具βにより打設し、基礎γ部分の水切りC上の壁下地αに連続状で複数本固定する。次に、図4(a)に示すような乾式壁材Bを順次連結し、下端の木口B1を空間8内に挿入して縦に施工するものである。   Next, the construction method of the lower end structure of the wall according to the present invention will be briefly described. First, the parting edge A as shown in FIGS. 3 (a) to 3 (c) is driven by the fixture β as shown in FIG. 1, and is continuous with the wall base α on the drainage C of the foundation γ part. Fix several in a shape. Next, dry-type wall materials B as shown in FIG. 4A are sequentially connected, and the bottom end B1 is inserted into the space 8 and installed vertically.

以上説明したのは本発明に係る壁の下端部構造の一実施例にすぎず、図7、図8に示すように形成することもできる。   The above description is only one embodiment of the lower end structure of the wall according to the present invention, and it can be formed as shown in FIGS.

図7は1階と2階等の中間部に本発明に係る壁の下端部構造を施工した状態を示す断面図、図8は窓上に本発明に係る壁の下端部構造を施工した状態を示す断面図である。   FIG. 7 is a cross-sectional view showing a state in which the lower end structure of the wall according to the present invention is constructed in an intermediate part such as the first floor and the second floor, and FIG. 8 is a state in which the lower end structure of the wall according to the present invention is constructed on a window. FIG.

本発明に係る壁の下端部構造の施工状態を示す説明図である。It is explanatory drawing which shows the construction state of the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造の施工状態を示す説明図である。It is explanatory drawing which shows the construction state of the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造に使用する見切縁を示す説明図である。It is explanatory drawing which shows the parting edge used for the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造に使用する乾式壁材を示す断面図である。It is sectional drawing which shows the dry-type wall material used for the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造に使用する水切りを示す断面図である。It is sectional drawing which shows the draining used for the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造の施工状態を示す説明図である。It is explanatory drawing which shows the construction state of the lower end part structure of the wall which concerns on this invention. 本発明に係る壁の下端部構造のその他の実施例を示す断面図である。It is sectional drawing which shows the other Example of the lower end part structure of the wall based on this invention. 本発明に係る壁の下端部構造のその他の実施例を示す断面図である。It is sectional drawing which shows the other Example of the lower end part structure of the wall based on this invention.

符号の説明Explanation of symbols

A 見切縁
B 乾式壁材
B1 木口
C 水切り
T 通気路
α 壁下地
β 固定具
γ 基礎
1 固定部
2 傾斜面
3 底面
4 傾斜化粧面
5 化粧面
6 舌片
7 流水兼通気孔
8 空間
9 表面材
10 芯材
11 裏面材
12 化粧面
13 凸部
14 凹部
15 雌型連結部
16 雄型連結部
17 通気溝
18 パッキン
A Closed edge B Dry wall material B1 Koutlet C Drainer T Air passage α Wall base β Fixture γ Foundation 1 Fixed part 2 Inclined surface 3 Bottom surface 4 Inclined decorative surface 5 Cosmetic surface 6 Tongue piece 7 Flowing and vent hole 8 Space 9 Surface material DESCRIPTION OF SYMBOLS 10 Core material 11 Back surface material 12 Makeup surface 13 Convex part 14 Concave part 15 Female type | mold connection part 16 Male type | mold connection part 17 Ventilation groove 18 Packing

Claims (1)

垂直平面状の固定部と、該固定部の上端を外方に傾斜して垂下した傾斜面と、該傾斜面の下端を外方かつ上方に傾斜して突出した傾斜化粧面と、該傾斜化粧面の先端を上方に突出した化粧面とから形成し、傾斜面と傾斜化粧面の下端に一定間隔で形成した流水兼通気孔とから形成した長尺状の見切縁を、壁下地の土台部に水平に連続状で固定し、該見切縁の空間に乾式壁材下端部の木口を挿入して形成すると共に、該乾式壁材は合成樹脂発泡体を芯材とし、裏面側に通気溝を設けた縦張り乾式壁材を使用し、乾式壁材の働き幅壁下地のピッチに対応して形成したことを特徴とする壁の下端部構造。 A vertical planar fixing portion; an inclined surface that is suspended by inclining the upper end of the fixing portion outward; an inclined decorative surface that protrudes by inclining the lower end of the inclined surface outward and upward; and the inclined makeup The base part of the base of the wall is formed with a decorative surface projecting upward at the front end of the surface, and a long parting edge formed with running water and ventilation holes formed at regular intervals at the lower end of the inclined surface and the inclined decorative surface The dry wall material is formed by inserting a bottom end of a dry wall material into the space of the parting edge, and the dry wall material is made of synthetic resin foam as a core material, and has a ventilation groove on the back side. A wall lower end structure characterized in that the vertical wall dry wall material provided is used and the working width of the dry wall material is formed corresponding to the pitch of the wall base.
JP2007015694A 2007-01-26 2007-01-26 Wall bottom structure Active JP5002275B2 (en)

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Publication number Priority date Publication date Assignee Title
JPS5478225U (en) * 1977-11-14 1979-06-04
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JPH11247307A (en) * 1998-02-26 1999-09-14 Ig Tech Res Inc Venting throating

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