JP2011001693A - Ventilation pipe joint - Google Patents

Ventilation pipe joint Download PDF

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Publication number
JP2011001693A
JP2011001693A JP2009143190A JP2009143190A JP2011001693A JP 2011001693 A JP2011001693 A JP 2011001693A JP 2009143190 A JP2009143190 A JP 2009143190A JP 2009143190 A JP2009143190 A JP 2009143190A JP 2011001693 A JP2011001693 A JP 2011001693A
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flat
connection port
vent pipe
joint
ventilation
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JP5023105B2 (en
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Takeshi Mogi
剛 茂木
Jun Yumiba
淳 弓場
Toshihiro Kikuchi
俊宏 菊地
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Sumitomo Forestry Co Ltd
Maezawa Kasei Kogyo KK
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Sumitomo Forestry Co Ltd
Maezawa Kasei Kogyo KK
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Abstract

PROBLEM TO BE SOLVED: To provide a ventilation pipe joint capable of securing sufficient ventilation performance while restraining projection toward an indoor side.SOLUTION: A flat part 47 is communicated respectively with a lower connection port 51 and an upper connection port 65, by a lower flat connection part 48 flattened gradually from a lower connection port 51 side toward the flat part 47, and an upper flat connection part 57 flattened gradually from an upper connection port 65 side toward the flat part 47. The ventilation pipe joint 11 is restrained from being projected toward a room 14 inside, because the ventilation pipe joint 11 can be installed in a cut-out part 44 or the like of a horizontal member 43. The sufficient ventilation performance is secured by making a ventilation area of a flat pipe line part 68 at least a ventilation area of a lower ventilation pipe 35.

Description

本発明は、床下内に配置された排水管から上方へと分岐された下部通気管と、壁内に配置された上部通気管とを接続する通気管用継手に関する。   The present invention relates to a vent pipe joint that connects a lower vent pipe branched upward from a drain pipe arranged in a floor and an upper vent pipe arranged in a wall.

従来、戸建住宅などに用いられる排水管には、排水設備の封水部(トラップ)を保護し、円滑な排水を確保するために、先端部に吸気弁を取り付けた通気管が設置されている。近年では、居住スペースを可能な限り広く取るために壁を極力薄くすることがあり、このような場合には通気管を設置するためのスペースが狭くなることから、複数に分割された通気管用継手を床下内で互いに接続することで床下内の排水管から分岐された下部通気管と壁内に配置された上部通気管とを連結する構成が提案されている(例えば、特許文献1参照。)。   Conventionally, drain pipes used in detached houses have been installed with a vent pipe fitted with an intake valve at the tip to protect the sealing part (trap) of drainage equipment and ensure smooth drainage. Yes. In recent years, in order to make the living space as wide as possible, the wall may be made as thin as possible. In such a case, the space for installing the vent pipe becomes narrow, so the joint for the vent pipe divided into a plurality of parts The structure which connects the lower ventilation pipe branched from the drain pipe in the underfloor and the upper ventilation pipe arrange | positioned in the wall by connecting each other in the underfloor is proposed (for example, refer patent document 1). .

しかしながら、壁を薄くする場合でも、実際には躯体強度を考慮すると最低限度の厚みは確保されるため、壁内に設置される通気管の管径に対してはあまり厳しい要求がないのが実情である。   However, even when the wall is thinned, the minimum thickness is actually secured in consideration of the strength of the housing, so there is actually no strict requirement for the diameter of the vent pipe installed in the wall. It is.

特開平7−268922号公報(第2−4頁、図2)JP 7-268922 A (page 2-4, FIG. 2)

また、同様に居住スペースを広く取るために、いわゆるふかし壁を設置しないようにすることが行われているものの、この場合には、床下から壁内に通気管を通すために、床下の土台、あるいは梁などの横架材に欠込部を形成する必要がある。   Similarly, in order to take a large living space, it is attempted not to install a so-called soft wall, but in this case, in order to pass a ventilation pipe from under the floor into the wall, Or it is necessary to form a notch in a horizontal member such as a beam.

しかしながら、建築基準法の改正により、躯体強度に対する要求が厳しくなったことで、横架材に形成する欠込部に関する基準が厳しくなり、従来の手法で床下から壁内に通気管を通すためには、室内側に突出部が形成されてしまうという問題が生じる。   However, due to the stricter requirements for the strength of the frame due to the revision of the Building Standards Law, the standards for the notches formed in the horizontal members have become stricter, and the conventional method allows the ventilation pipe to pass through the wall from under the floor. Causes a problem that a protruding portion is formed on the indoor side.

本発明は、このような点に鑑みなされたもので、室内側への突出を抑制しつつ充分な通気性を確保できる通気管用継手を提供することを目的とする。   This invention is made | formed in view of such a point, and it aims at providing the coupling for vent pipes which can ensure sufficient air permeability, suppressing the protrusion to the indoor side.

請求項1記載の通気管用継手は、床下側に配置された排水管から上方へと分岐された下部通気管と、壁内に配置された上部通気管とを接続する通気管用継手であって、前記下部通気管に接続される円形状の下部接続口と、前記上部通気管に接続される円形状の上部接続口と、扁平状に形成された扁平部、前記下部接続口側から前記扁平部側へと徐々に扁平してこれら下部接続口と扁平部とを連通させる下部扁平接続部、および、前記上部接続口側から前記扁平部側へと徐々に扁平してこれら上部接続口と扁平部とを連通させる上部扁平接続部を備え、前記下部通気管の通気面積以上の通気面積を有する扁平管路部とを具備したものである。   The vent pipe joint according to claim 1 is a vent pipe joint that connects a lower vent pipe branched upward from a drain pipe arranged under the floor and an upper vent pipe arranged in a wall, A circular lower connection port connected to the lower vent pipe, a circular upper connection port connected to the upper vent pipe, a flat part formed in a flat shape, and the flat part from the lower connection port side A lower flat connecting portion that gradually flattens toward the side and communicates the lower connecting port and the flat portion, and the upper connecting port and the flat portion that are gradually flattened from the upper connecting port side to the flat portion side. And a flat pipe line portion having a ventilation area equal to or larger than the ventilation area of the lower ventilation pipe.

請求項2記載の通気管用継手は、請求項1記載の通気管用継手において、扁平部は、扁平円形状に形成され、配置される横架材の欠込部の上限寸法をa×b×wとしたとき、短手側がa×b/√(a2+b2)よりも小さく、かつ、長手側がwよりも小さいものである。 The vent pipe joint according to claim 2 is the vent pipe joint according to claim 1, wherein the flat portion is formed in a flat circular shape, and the upper limit dimension of the notched portion of the horizontal member to be arranged is a × b × w , The short side is smaller than a × b / √ (a 2 + b 2 ), and the long side is smaller than w.

請求項3記載の通気管用継手は、請求項1または2記載の通気管用継手において、下部接続口側と上部接続口側とが扁平部にて互いに分割され、一方を他方に嵌合させることにより連結可能であるものである。   The vent pipe joint according to claim 3 is the vent pipe joint according to claim 1 or 2, wherein the lower connection port side and the upper connection port side are divided from each other by a flat portion, and one is fitted to the other. It can be connected.

請求項1記載の発明によれば、下部接続口側から扁平部側へと徐々に扁平する下部扁平接続部と、上部接続口側から扁平部側へと徐々に扁平する上部扁平接続部とにより、扁平部と下部接続口および上部接続口とをそれぞれ連通させることで、横架材の欠込部などに設置できるので室内側への突出を抑制でき、かつ、扁平管路部の通気面積を下部通気管の通気面積以上とすることで、充分な通気性を確保できる。   According to the first aspect of the present invention, the lower flat connection portion gradually flattenes from the lower connection port side to the flat portion side, and the upper flat connection portion gradually flattenes from the upper connection port side to the flat portion side. By connecting the flat part with the lower connection port and the upper connection port, the flat part can be installed in the notch of the horizontal member, etc., so that protrusion to the indoor side can be suppressed, and the ventilation area of the flat pipe part can be reduced. Sufficient air permeability can be ensured by setting it to be equal to or larger than the ventilation area of the lower ventilation pipe.

請求項2記載の発明によれば、横架材の欠込部内に完全に収まる形状とすることができ、床面および壁面から室内側に突出することがない。   According to invention of Claim 2, it can be set as the shape completely accommodated in the notch part of a horizontal member, and it does not protrude to the indoor side from a floor surface and a wall surface.

請求項3記載の発明によれば、施工の際に床下側に予め配管した下部通気管に対して、分割された下部接続口側を接続し、その後に床面を形成してからでも、分割された上部接続口側と下部接続口側とを嵌合させて接続できるので、施工性が良好になる。   According to the invention described in claim 3, even after the divided lower connection port side is connected to the lower vent pipe previously piped to the lower floor side at the time of construction and the floor surface is formed after that, the divided Since the upper connection port side and the lower connection port side can be fitted and connected, the workability is improved.

本発明の一実施の形態の通気管用継手近傍を示す縦断側面図である。It is a vertical side view which shows the joint vicinity for ventilation pipes of one embodiment of this invention. 同上通気管用継手近傍を示す正面図である。It is a front view which shows the coupling pipe vicinity vicinity same as the above. 同上通気管用継手の扁平部を示す断面図である。It is sectional drawing which shows the flat part of the joint for vent pipes same as the above. 同上通気管用継手を設置した排水設備の一部を模式的に示す説明断面図である。It is explanatory sectional drawing which shows typically a part of drainage installation which installed the coupling for vent pipes same as the above.

以下、本発明の一実施の形態の構成を図1ないし図4を参照して説明する。   Hereinafter, the configuration of an embodiment of the present invention will be described with reference to FIGS.

図1において、11は通気管用継手を示し、この通気管用継手11は、図4に示すように、建物13の室14内に設置されたトイレなどの排水設備15に対して用いられるものである。   In FIG. 1, reference numeral 11 denotes a vent pipe joint. The vent pipe joint 11 is used for a drainage facility 15 such as a toilet installed in a room 14 of a building 13 as shown in FIG. .

ここで、排水設備15は、図示しないトラップを備え、このトラップの下端部に位置する排水口21は、エルボ22およびチーズ23を介して排水管24に接続されている。この排水管24は、床面26の下部、すなわち床下27に配管されており、床下27側に位置する外壁28と内壁29との間、すなわち壁内31に区画されたパイプシャフト32内に沿って垂直に配管されている。そして、排水管24には、上方に向けて下部通気管35が分岐され、この下部通気管35が、通気管用継手11を介して、床面26よりも上側の壁内31に区画された空間部36内に配管された上部通気管37と連結されており、この上部通気管37の上端部に、トラップの封水を保護するための吸気弁38が取り付けられている。   Here, the drainage facility 15 includes a trap (not shown), and a drain outlet 21 located at the lower end of the trap is connected to a drain pipe 24 via an elbow 22 and cheese 23. This drain pipe 24 is piped to the lower part of the floor surface 26, that is, the underfloor 27, and extends between the outer wall 28 and the inner wall 29 located on the underfloor 27 side, that is, along the pipe shaft 32 defined in the wall 31. It is plumbed vertically. A lower vent pipe 35 is branched upward in the drain pipe 24, and the lower vent pipe 35 is partitioned into a wall interior 31 above the floor 26 via the vent pipe joint 11. An upper vent pipe 37 piped in the section 36 is connected to the upper vent pipe 37, and an intake valve 38 is attached to the upper end of the upper vent pipe 37 to protect the trap water.

通気管用継手11は、図1および図2に示すように、嵌合部となる下部継手本体41と、被嵌合部となる上部継手本体42とに分割され、これら継手本体41,42を連結可能に構成されており、床下27の土台などの横架材43の室14側の上端の角部に部分的に切り欠き形成された欠込部44に挿通されている。そして、この通気管用継手11は、全体として、上下に略対称に形成されている。換言すれば、この通気管用継手11の形状には、上下方向の方向性がない。   As shown in FIGS. 1 and 2, the vent pipe joint 11 is divided into a lower joint body 41 serving as a fitting portion and an upper joint body 42 serving as a fitted portion, and these joint bodies 41 and 42 are connected to each other. It is configured to be possible, and is inserted into a notch 44 that is partially cut out at the corner of the upper end on the chamber 14 side of a horizontal member 43 such as a base under the floor 27. The vent pipe joint 11 is generally formed vertically symmetrically as a whole. In other words, the shape of the vent pipe joint 11 has no vertical directionality.

下部継手本体41は、例えば硬質のポリ塩化ビニルなどの合成樹脂をブロー成型して形成されている。そして、この下部継手本体41は、下部通気管35の上端部が内部に挿入接続される円筒状の下部接続部46と、左右方向に扁平な断面長円状(図3)の扁平部47とを、下部扁平接続部48により一体に連結して構成されている。   The lower joint body 41 is formed, for example, by blow molding a synthetic resin such as hard polyvinyl chloride. The lower joint body 41 includes a cylindrical lower connection portion 46 into which the upper end portion of the lower vent pipe 35 is inserted and connected, and a flat portion 47 having an elliptical cross section (FIG. 3) flat in the left-right direction. Are integrally connected by a lower flat connecting portion 48.

下部接続部46は、下端部に円形状の下部接続口51が形成されているとともに、上端部である下部扁平接続部48との連続部の内周側に、下部通気管35の上端部と当接して下部継手本体41を下部通気管35に対して位置決めするための下部位置決め段部52が段差状に形成されている。   The lower connection portion 46 has a circular lower connection port 51 formed at the lower end portion, and an upper end portion of the lower vent pipe 35 on the inner peripheral side of the continuous portion with the lower flat connection portion 48 that is the upper end portion. A lower positioning step portion 52 for positioning the lower joint body 41 with respect to the lower vent pipe 35 by contacting is formed in a step shape.

下部接続口51は、下部通気管35が挿入嵌合される内径寸法を有している。すなわち、この下部接続口51の内径寸法は、下部通気管35の外径寸法L1と略等しく設定されている。   The lower connection port 51 has an inner diameter dimension into which the lower ventilation pipe 35 is inserted and fitted. That is, the inner diameter dimension of the lower connection port 51 is set substantially equal to the outer diameter dimension L1 of the lower vent pipe 35.

下部位置決め段部52は、下部接続口51に挿入された下部通気管35の内周面と下部扁平接続部48の内周面とが略段差なく滑らかに連続するように、下部通気管35の肉厚と略等しい幅寸法に形成されている。   The lower positioning step 52 is formed so that the inner peripheral surface of the lower vent pipe 35 inserted into the lower connection port 51 and the inner peripheral surface of the lower flat connection portion 48 are smoothly continuous without a substantial step. It is formed in a width dimension substantially equal to the wall thickness.

扁平部47は、横架材43の欠込部44に挿入されており、下側が横架材43の側方に位置し、上側が横架材43の上方の空間部36内に位置する長手状に形成されている。また、扁平部47は、断面視で、図3に示すように、円弧状に湾曲した湾曲部47aを両側に有し、これら湾曲部47a,47a間が湾曲しない直線部47bとなっている。   The flat portion 47 is inserted into the notch 44 of the horizontal member 43, the lower side is located on the side of the horizontal member 43, and the upper side is located in the space 36 above the horizontal member 43. It is formed in a shape. Further, as shown in FIG. 3, the flat portion 47 has a curved portion 47a curved in an arc shape on both sides as shown in FIG. 3, and a straight portion 47b between the curved portions 47a and 47a is not curved.

ここで、この扁平部47の寸法は、図1に示すように、欠込部44の上下寸法をa、奥行き寸法をb、および、図2に示すように、幅寸法をwとしたとき、すなわち欠込部44の上限寸法をa×b×wとしたとき、短手寸法cの最大値が以下の式で示されている。   Here, the dimensions of the flat portion 47 are as follows when the vertical dimension of the notch 44 is a, the depth dimension is b, and the width dimension is w as shown in FIG. That is, when the upper limit dimension of the notch 44 is a × b × w, the maximum value of the short dimension c is expressed by the following equation.

c=a×b/√(a2+b2) c = a × b / √ (a 2 + b 2 )

すなわち、扁平部47の短手寸法cは、図1に示す床面26の下端側の角部26aと横架材43の欠込部44の傾斜面44aとの最短距離以下となっている。この短手寸法cは、下部通気管35の外径寸法L1および上部通気管37の外径寸法L2よりも小さく設定されている。   That is, the short dimension c of the flat portion 47 is equal to or shorter than the shortest distance between the corner portion 26a on the lower end side of the floor surface 26 and the inclined surface 44a of the notched portion 44 of the horizontal member 43 shown in FIG. The short dimension c is set smaller than the outer diameter dimension L1 of the lower ventilation pipe 35 and the outer diameter dimension L2 of the upper ventilation pipe 37.

また、扁平部47の幅寸法すなわち長手寸法dは、図2に示すように、欠込部44の幅寸法w以下の寸法で、かつ、下部通気管35の外径寸法L1よりも大きく設定されている。   Further, the width dimension, that is, the longitudinal dimension d of the flat portion 47 is set to a dimension equal to or smaller than the width dimension w of the notch portion 44 and larger than the outer diameter dimension L1 of the lower vent pipe 35 as shown in FIG. ing.

したがって、図1に示すように、扁平部47は、欠込部44に対して嵌合可能な大きさとなっている。換言すれば、扁平部47は、床面26を室14内である上方に突出させたり、内壁29を室14内に突出させたりしてスペースを広げることなく、欠込部44を横架材43に形成するのみで配置することが可能となっている。   Therefore, as shown in FIG. 1, the flat portion 47 has a size that can be fitted to the notch portion 44. In other words, the flat portion 47 extends the notch 44 into the horizontal member without expanding the space by projecting the floor 26 upward in the chamber 14 or projecting the inner wall 29 into the chamber 14. It is possible to arrange only by forming in 43.

さらに、扁平部47の通気面積すなわち断面積は、下部通気管35の通気面積すなわち断面積以上、換言すれば下部扁平接続部48の下部接続部46側の断面積以上に設定されている。   Further, the ventilation area, that is, the cross-sectional area of the flat portion 47 is set to be equal to or greater than the ventilation area, that is, the cross-sectional area of the lower ventilation pipe 35, in other words, the cross-sectional area on the lower connection portion 46 side of the lower flat connection portion 48.

そして、扁平部47の上端部は、上部継手本体42に挿入接続される挿口となっている。   The upper end portion of the flat portion 47 serves as an insertion opening that is inserted into and connected to the upper joint body 42.

また、下部扁平接続部48は、下部接続部46側から扁平部47へと徐々に連続的に変形している。すなわち、下部扁平接続部48は、下側から上側に向けて、円形状から長円状へと、徐々に幅方向に大きくなり上下方向に小さくなるように断面形状が変形している。   Further, the lower flat connecting portion 48 is gradually and continuously deformed from the lower connecting portion 46 side to the flat portion 47. That is, the cross section of the lower flat connecting portion 48 is deformed so as to gradually increase in the width direction and decrease in the vertical direction from the circular shape to the oval shape from the lower side to the upper side.

一方、上部継手本体42は、例えば硬質のポリ塩化ビニルなどの合成樹脂をブロー成型して形成されている。そして、この上部継手本体42は、扁平部47の上端部が内部に挿入接続される扁平部連結部55と、上部通気管37の下端部が内部に挿入接続される円筒状の上部接続部56とを、上部扁平接続部57により一体に連結して構成されている。   On the other hand, the upper joint body 42 is formed by blow molding a synthetic resin such as hard polyvinyl chloride. The upper joint body 42 includes a flat portion connecting portion 55 in which the upper end portion of the flat portion 47 is inserted and connected therein, and a cylindrical upper connection portion 56 in which the lower end portion of the upper vent pipe 37 is inserted and connected therein. Are integrally connected by an upper flat connecting portion 57.

扁平部連結部55は、挿入された扁平部47の上端部を受ける受口となる接続開口部61が下端部に形成されているとともに、上端部に、挿入された扁平部47の上端部と当接して上部継手本体42(扁平部47)を扁平部47(上部継手本体42)に対して位置決めする位置決め部62が形成されている。すなわち、扁平部連結部55および接続開口部61は、それぞれ長円状に形成されている。   The flat portion connecting portion 55 has a connection opening 61 serving as a receiving port for receiving the upper end portion of the inserted flat portion 47 formed at the lower end portion, and the upper end portion of the inserted flat portion 47 and the upper end portion. A positioning portion 62 is formed that contacts and positions the upper joint body 42 (flat portion 47) with respect to the flat portion 47 (upper joint body 42). That is, the flat portion connecting portion 55 and the connection opening 61 are each formed in an oval shape.

接続開口部61は、扁平部47が挿入嵌合される内側寸法を有している。すなわち、この接続開口部61の内側寸法は、扁平部47の外形寸法と略等しく設定されている。したがって、この接続開口部61は、短手寸法がcであり、長手寸法がdである。   The connection opening 61 has an inner dimension into which the flat portion 47 is inserted and fitted. That is, the inner dimension of the connection opening 61 is set substantially equal to the outer dimension of the flat part 47. Accordingly, the connection opening 61 has a short dimension c and a long dimension d.

位置決め部62は、接続開口部61に挿入された扁平部47の内周面と上部扁平接続部57の内周面とが略段差なく滑らかに連続するように、扁平部47の肉厚と略等しい幅寸法に形成されている。   The positioning part 62 is substantially the same as the thickness of the flat part 47 so that the inner peripheral surface of the flat part 47 inserted into the connection opening 61 and the inner peripheral surface of the upper flat connection part 57 are smoothly continuous without any step. They are formed with equal width dimensions.

また、上部接続部56は、上端部に円形状の上部接続口65が形成されているとともに、下端部である上部扁平接続部57との連続部の内周側に、上部通気管37の下端部と当接して上部継手本体42を上部通気管37に対して位置決めするための上部位置決め段部66が段差状に形成されている。   Further, the upper connection portion 56 has a circular upper connection port 65 formed at the upper end portion, and the lower end of the upper vent pipe 37 on the inner peripheral side of the continuous portion with the upper flat connection portion 57 as the lower end portion. An upper positioning step portion 66 for positioning the upper joint main body 42 with respect to the upper vent pipe 37 in contact with the upper portion is formed in a step shape.

上部接続口65は、上部通気管37が挿入嵌合される内径寸法を有している。すなわち、この上部接続口65の内径寸法は、上部通気管37の外径寸法L2と略等しく設定されている。さらに、この上部接続口65は、例えば下部接続口51と略等しい径寸法を有している。   The upper connection port 65 has an inner diameter dimension into which the upper ventilation pipe 37 is inserted and fitted. That is, the inner diameter dimension of the upper connection port 65 is set substantially equal to the outer diameter dimension L2 of the upper vent pipe 37. Furthermore, the upper connection port 65 has a diameter dimension substantially equal to that of the lower connection port 51, for example.

上部位置決め段部66は、上部接続口65に挿入された上部通気管37の内周面と上部扁平接続部57の内周面とが略段差なく滑らかに連続するように、上部通気管37の肉厚と略等しい幅寸法に形成されている。   The upper positioning step portion 66 is formed so that the inner peripheral surface of the upper vent pipe 37 inserted into the upper connection port 65 and the inner peripheral surface of the upper flat connection portion 57 are smoothly continuous without substantially steps. It is formed in a width dimension substantially equal to the wall thickness.

上部扁平接続部57は、扁平部47側である扁平部連結部55側から上部接続部56側からへと徐々に連続的に変形している。すなわち、上部扁平接続部57は、下側から上側に向けて、長円状から円形状へと、徐々に幅方向に小さくなり上下方向に大きくなるように断面形状が変形している。また、この上部扁平接続部57は、下部扁平接続部48と略上下対称に形成されている。そして、扁平部47、下部扁平接続部48、および、上部扁平接続部57により、扁平管路部68が構成されている。したがって、この扁平管路部68は、下部通気管35および上部通気管37の通気面積以上の通気面積を有している。   The upper flat connecting portion 57 is gradually and continuously deformed from the flat portion connecting portion 55 side which is the flat portion 47 side to the upper connecting portion 56 side. That is, the cross-sectional shape of the upper flat connecting portion 57 is deformed so as to gradually decrease in the width direction and increase in the vertical direction from an oval shape to a circular shape from the lower side to the upper side. Further, the upper flat connecting portion 57 is formed substantially symmetrically with the lower flat connecting portion 48. The flat portion 47, the lower flat connecting portion 48, and the upper flat connecting portion 57 constitute a flat duct portion 68. Therefore, the flat pipe line portion 68 has a ventilation area larger than the ventilation area of the lower ventilation pipe 35 and the upper ventilation pipe 37.

次に、上記一実施の形態の排水設備への施工方法を説明する。   Next, a construction method for the drainage facility according to the embodiment will be described.

本実施の形態では、例えば各通気管35,37として、呼び径がφ40のVU管を用い、欠込部44の寸法を30mm×30mm×100mmとした。このとき、通気管用継手11の扁平部47の寸法は、短手寸法を21.2mm(<30×30/√(302+302)≒21.21mm)、幅寸法を80mm(<100mm)とし、扁平部47の内周側の断面積を、呼び径φ40のVU管の内周の断面積と等しくなるように設定した。また、各継手本体41,42は、それぞれ呼び径がφ30のVP管をブロー成型法によって呼び径φ40のVU管に接続可能となるように各接続口51,65や扁平部47などをそれぞれ成型した。 In the present embodiment, for example, VU pipes having a nominal diameter of φ40 are used as the vent pipes 35 and 37, and the size of the notch 44 is 30 mm × 30 mm × 100 mm. At this time, the flat portion 47 of the vent pipe joint 11 has a short dimension of 21.2 mm (<30 × 30 / √ (30 2 +30 2 ) ≈21.21 mm) and a width dimension of 80 mm (<100 mm). The cross-sectional area on the inner peripheral side of the flat portion 47 was set to be equal to the cross-sectional area on the inner periphery of the VU pipe having a nominal diameter of φ40. In addition, each joint body 41, 42 is molded with each connection port 51, 65, flat portion 47, etc. so that a VP pipe having a nominal diameter of φ30 can be connected to a VU pipe having a nominal diameter of φ40 by a blow molding method. did.

そして、例えば、建物13に内壁29を形成する以前の状態で、図4に示すように、この建物13の室14内に設置した排水設備15のトラップの排水口21に排水管24の上流端を液密に接続する。   Then, for example, before the inner wall 29 is formed in the building 13, as shown in FIG. 4, the upstream end of the drain pipe 24 is connected to the drain outlet 21 of the trap of the drainage facility 15 installed in the room 14 of the building 13. Connect liquid tightly.

この後、エルボ22およびチーズ23を順次介してこの排水管24を建物13の床下27に沿って水平に配管した後、パイプシャフト32を挿通させて下方へと配管する。   After this, the drain pipe 24 is horizontally piped along the under floor 27 of the building 13 through the elbow 22 and the cheese 23 in order, and then the pipe shaft 32 is inserted and piped downward.

次いで、排水管24のチーズ23の上端に下部通気管35を接続し、この下部通気管35の上端部に、図1に示すように通気管用継手11の下部継手本体41の下部接続口51を取り付け、下部通気管35の上端部を下部位置決め段部52に当接させた状態で、下部通気管35と下部継手本体41とを接着剤などにより気密に固着する。   Next, the lower vent pipe 35 is connected to the upper end of the cheese 23 of the drain pipe 24, and the lower connection port 51 of the lower joint body 41 of the vent pipe joint 11 is connected to the upper end of the lower vent pipe 35 as shown in FIG. The lower vent pipe 35 and the lower joint body 41 are hermetically fixed with an adhesive or the like with the upper end of the lower vent pipe 35 being in contact with the lower positioning step 52.

そして、下部継手本体41は、扁平部47を横架材43の欠込部44に挿入して横架材43の上方でかつ外壁28の室14側へと位置させておく。   In the lower joint body 41, the flat portion 47 is inserted into the notched portion 44 of the horizontal member 43 and is positioned above the horizontal member 43 and toward the chamber 14 side of the outer wall 28.

さらに、床面26を設置した後、扁平部47の上端部に、上部継手本体42の接続開口部61を取り付け、扁平部47の上端部を位置決め部62に当接させた状態で、上部継手本体42と下部継手本体41とを接着剤などにより気密に固着する。   Further, after the floor surface 26 is installed, the connection opening 61 of the upper joint body 42 is attached to the upper end portion of the flat portion 47, and the upper joint portion 42 is in contact with the positioning portion 62 with the upper end portion of the flat portion 47 in contact with the positioning portion 62. The main body 42 and the lower joint main body 41 are hermetically fixed with an adhesive or the like.

この後、上部継手本体42の上部接続口65に、上端部に吸気弁38(図4)を取り付けた上部通気管37の下端部を挿入し、この上部通気管37の下端部を上部位置決め段部66に当接させた状態で、上部継手本体42と上部通気管37とを接着剤などにより気密に固着する。   Thereafter, the lower end portion of the upper vent pipe 37 having the intake valve 38 (FIG. 4) attached to the upper end portion is inserted into the upper connection port 65 of the upper joint body 42, and the lower end portion of the upper vent pipe 37 is inserted into the upper positioning step. The upper joint main body 42 and the upper vent pipe 37 are hermetically fixed with an adhesive or the like in a state of being in contact with the portion 66.

そして、内壁29を外壁28に対向して形成することで、これら内壁29と外壁28との間の空間部36内に上部通気管37を収納する。   Then, by forming the inner wall 29 so as to face the outer wall 28, the upper ventilation pipe 37 is accommodated in the space portion 36 between the inner wall 29 and the outer wall 28.

なお、上記通気管用継手11の組み付けの手順は、実際の建物13の施工手順に応じて適宜変えることができる。   Note that the procedure for assembling the vent pipe joint 11 can be appropriately changed according to the actual construction procedure of the building 13.

そして、図4に示す排水設備15から排水を急激に排水させた際に、排水管24の内部の気圧が大気圧よりも低下することにより、この大気圧と排水管24の内部の圧力との差によって吸気弁38が開いて上部通気管37へと外部の空気が流入され、この空気が、通気管用継手11および下部通気管35を介して排水管24内へと流入されることで、排水管24内の気圧の低下を防止し、排水設備15のトラップの封水が排水管24へと吸い出されることを防止する。なお、吸気弁38は、排水管24の内部の圧力が大気圧と同等に復帰することで閉じる。   Then, when drainage is suddenly drained from the drainage facility 15 shown in FIG. 4, the atmospheric pressure inside the drainage pipe 24 decreases below the atmospheric pressure, so that the atmospheric pressure and the pressure inside the drainage pipe 24 are reduced. Due to the difference, the intake valve 38 opens and external air flows into the upper vent pipe 37. This air flows into the drain pipe 24 through the vent pipe joint 11 and the lower vent pipe 35, thereby The pressure in the pipe 24 is prevented from decreasing, and the sealed water in the trap of the drainage facility 15 is prevented from being sucked out into the drain pipe 24. The intake valve 38 is closed when the pressure inside the drain pipe 24 returns to the atmospheric pressure.

上述したように、上記一実施の形態によれば、下部接続口51側から扁平部47へと徐々に扁平する下部扁平接続部48と、上部接続口65側から扁平部47側へと徐々に扁平する上部扁平接続部57とにより、扁平部47と下部接続口51および上部接続口65とをそれぞれ連通させることで、通気管用継手11を横架材43の欠込部44などに設置できるので、室14内側への突出を抑制でき、かつ、扁平管路部68の通気面積を下部通気管35の通気面積以上とすることで、充分な通気性を確保できる。   As described above, according to the above-described embodiment, the lower flat connection portion 48 that gradually flattens from the lower connection port 51 side to the flat portion 47, and the upper connection port 65 side gradually to the flat portion 47 side. By connecting the flat portion 47, the lower connection port 51, and the upper connection port 65 with the flat upper connection portion 57, the vent pipe joint 11 can be installed in the notch portion 44 of the horizontal member 43, etc. The protrusion of the inside of the chamber 14 to the inside can be suppressed, and sufficient ventilation can be ensured by setting the ventilation area of the flat pipe line portion 68 to be equal to or larger than the ventilation area of the lower ventilation pipe 35.

すなわち、通気管用継手11は、扁平な扁平部47を有し下部通気管35の通気面積以上の扁平管路部68を備えているので、床下27から壁内31という狭い空間であっても、通気路の通気面積(断面積)を維持でき、通気性能の低下を抑制しつつ通気を取ることができるとともに、扁平管路部68の内面が各扁平接続部48,57によりなだらかな曲面となるので、空気の流れを乱すことなく効果的に通気を取ることができる。さらに、各接続口51,65を円形状とすることにより、既存の一般的な通気管を各通気管35,37としてそのまま利用でき、特殊な通気管などを用いる必要がないので、汎用性に優れ、使い勝手が良好である。   That is, the vent pipe joint 11 has a flat flat portion 47 that has a flat flat portion 47 and is equal to or larger than the ventilation area of the lower vent pipe 35. The ventilation area (cross-sectional area) of the ventilation path can be maintained, and ventilation can be taken while suppressing a decrease in ventilation performance, and the inner surface of the flat pipe line section 68 becomes a gently curved surface by the flat connection parts 48 and 57. Therefore, ventilation can be effectively taken without disturbing the air flow. Further, by making the connection ports 51 and 65 circular, existing general ventilation pipes can be used as they are as the ventilation pipes 35 and 37, and there is no need to use special ventilation pipes. Excellent and convenient to use.

具体的に、扁平部47を、扁平円形状に形成し、配置する横架材43の欠込部44の例えば住宅会社などから要求される上限寸法の基準をa×b×wとしたとき、短手側をa×b/√(a2+b2)よりも小さく、かつ、長手側をwよりも小さくすることで、通気管用継手11を横架材43の欠込部44内に完全に収まる形状とすることができ、床面26および内壁29の壁面から室14内側に通気管用継手11などが突出することがなく、室14内を広く取ることができる。 Specifically, when the flat portion 47 is formed into a flat circular shape and the reference of the upper limit dimension required by, for example, a housing company of the notch 44 of the horizontal member 43 to be arranged is a × b × w, By making the short side smaller than a × b / √ (a 2 + b 2 ) and the long side smaller than w, the vent pipe joint 11 is completely in the notch 44 of the horizontal member 43. The vent pipe joint 11 and the like do not protrude from the wall surface of the floor surface 26 and the inner wall 29 to the inside of the chamber 14, and the interior of the chamber 14 can be widened.

また、実際の施工現場においては、上記のように、床下27の配管を終えてから床面26を配置した後、床上の配管を行う場合が多くあるので、通気管用継手11を扁平部47で上部継手本体42と下部継手本体41とに上下に分割し、これら継手本体41,42を互いに嵌合させることで連結可能とすることにより、施工の際に予め配管した下部通気管35に対して、分割された下部接続口51側、すなわち下部継手本体41を接続し、その後に床面26を形成してからでも、分割された上部接続口65側、すなわち上部継手本体42を下部継手本体41側に嵌合させて接続できるので、施工性が良好になる。   Also, in actual construction sites, as described above, after placing the floor surface 26 after finishing the piping of the floor 27, the piping on the floor is often performed. The upper joint body 42 and the lower joint body 41 are divided into upper and lower parts, and these joint bodies 41, 42 are connected to each other so that they can be connected to each other. Even after the divided lower connection port 51 side, that is, the lower joint body 41 is connected and then the floor surface 26 is formed, the divided upper connection port 65 side, that is, the upper joint body 42 is connected to the lower joint body 41. Since it can be connected by being fitted to the side, workability is improved.

特に、通気管用継手11を略上下対称としているので、床面26を設置した後に床上の配管を設置する場合、上下を区別する必要がなく、また、扁平部47の最も扁平が大きい位置で下部継手本体41と上部継手本体42とを分割しているので、仮に上下を誤って配管した際に、床面26の設置が終わった後に気付いても手遅れとなることがなく、施工のやり直しなどの労力が必要なくなり、施工作業性が良好になる。   In particular, since the vent pipe joint 11 is substantially symmetrical in the vertical direction, when installing pipes on the floor after installing the floor 26, it is not necessary to distinguish the upper and lower sides, and the flat part 47 is located at the position where the flatness is the largest. Since the joint body 41 and the upper joint body 42 are separated, it is not too late to notice after the installation of the floor 26 when piping up and down by mistake, such as reworking. Eliminates labor and improves workability.

勿論、下部継手本体41と上部継手本体42とは、一方が嵌合部で他方が被嵌合部であるから、実際には通気管用継手11には上下の区別があるものの、仮に上下を誤って取り付けた場合でも、施工をやり直さなくてもよいことには変わりがない。   Of course, one of the lower joint body 41 and the upper joint body 42 is a fitting portion and the other is a fitted portion. Even if it is installed, there is no change in that it is not necessary to redo the construction.

特に、下部継手本体41と上部継手本体42との接続位置を横架材43の上方の位置とすることにより、扁平部連結部55が床面26の角部26a、あるいは欠込部44の傾斜面44aなどと干渉することがなく、施工作業性が良好になる。   In particular, when the connection position of the lower joint body 41 and the upper joint body 42 is set to a position above the horizontal member 43, the flat portion connecting portion 55 is inclined to the corner portion 26a of the floor surface 26 or the notch portion 44. Construction workability is improved without interfering with the surface 44a.

なお、上記一実施の形態において、下部継手本体41と上部継手本体42とは、扁平部47のいずれかの位置でそれぞれ分割していれば、いずれが嵌合部であっても被嵌合部であってもよい。   In the above-described embodiment, if the lower joint body 41 and the upper joint body 42 are respectively divided at any position of the flat part 47, any of the fitted parts is a fitted part. It may be.

また、下部継手本体41と上部継手本体42とは、いずれか一方を他方に嵌合させる以外でも、例えば接着など、任意の構成で連結することが可能である。   Further, the lower joint main body 41 and the upper joint main body 42 can be connected by any configuration such as bonding, for example, except that either one is fitted to the other.

さらに、通気管用継手11は、扁平部47以外の任意の位置で分割してもよく、3つ以上に分割してもよい。また、通気管用継手11は、分割されておらず、一体であってもよい。   Further, the vent pipe joint 11 may be divided at any position other than the flat portion 47, or may be divided into three or more. Further, the vent pipe joint 11 is not divided and may be integrated.

11 通気管用継手
24 排水管
35 下部通気管
37 上部通気管
43 横架材
44 欠込部
47 扁平部
48 下部扁平接続部
51 下部接続口
57 上部扁平接続部
65 上部接続口
68 扁平管路部
11 Vent pipe fittings
24 Drain pipe
35 Lower vent pipe
37 Upper vent pipe
43 Horizontal member
44 Notch
47 Flat part
48 Lower flat connection
51 Bottom connection port
57 Upper flat connection
65 Upper connection port
68 Flat duct section

Claims (3)

床下側に配置された排水管から上方へと分岐された下部通気管と、壁内に配置された上部通気管とを接続する通気管用継手であって、
前記下部通気管に接続される円形状の下部接続口と、
前記上部通気管に接続される円形状の上部接続口と、
扁平状に形成された扁平部、前記下部接続口側から前記扁平部側へと徐々に扁平してこれら下部接続口と扁平部とを連通させる下部扁平接続部、および、前記上部接続口側から前記扁平部側へと徐々に扁平してこれら上部接続口と扁平部とを連通させる上部扁平接続部を備え、前記下部通気管の通気面積以上の通気面積を有する扁平管路部と
を具備したことを特徴とした通気管用継手。
A joint for a vent pipe connecting a lower vent pipe branched upward from a drain pipe arranged under the floor and an upper vent pipe arranged in a wall,
A circular lower connection port connected to the lower vent pipe;
A circular upper connection port connected to the upper vent pipe;
A flat portion formed in a flat shape, a lower flat connection portion that gradually flattens from the lower connection port side to the flat portion side and communicates the lower connection port and the flat portion, and from the upper connection port side An upper flat connection portion that gradually flattens toward the flat portion side and communicates the upper connection port and the flat portion, and a flat duct portion having a ventilation area that is equal to or larger than the ventilation area of the lower ventilation pipe. This is a joint for vent pipes.
扁平部は、扁平円形状に形成され、配置される横架材の欠込部の上限寸法をa×b×wとしたとき、短手側がa×b/√(a2+b2)よりも小さく、かつ、長手側がwよりも小さい
ことを特徴とした請求項1記載の通気管用継手。
The flat portion is formed in a flat circular shape, and when the upper limit dimension of the notched portion of the horizontal member to be arranged is a × b × w, the short side is more than a × b / √ (a 2 + b 2 ) The vent pipe joint according to claim 1, wherein the joint is small and the longitudinal side is smaller than w.
下部接続口側と上部接続口側とが扁平部にて互いに分割され、一方を他方に嵌合させることにより連結可能である
ことを特徴とした請求項1または2記載の通気管用継手。
The joint for a vent pipe according to claim 1 or 2, wherein the lower connection port side and the upper connection port side are separated from each other by a flat portion and can be connected by fitting one into the other.
JP2009143190A 2009-06-16 2009-06-16 Vent pipe fittings Active JP5023105B2 (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07139019A (en) * 1993-11-17 1995-05-30 Maezawa Kasei Ind Co Ltd Tube joint with breather
JPH07268922A (en) * 1994-03-31 1995-10-17 Sekisui House Ltd Ventilation pipe unit incorporable into wall body
JP2002309639A (en) * 2001-04-17 2002-10-23 Maezawa Kasei Ind Co Ltd Induction valve mounting method, induction valve apparatus, and pipe joint
JP2004324239A (en) * 2003-04-25 2004-11-18 Maezawa Kasei Ind Co Ltd Branch pipe joint for air intake of drainage canal, and intake device for drainage canal
JP2004353445A (en) * 2001-05-28 2004-12-16 Kitz Corp Aerator for drainage
JP2005290841A (en) * 2004-03-31 2005-10-20 Sumitomo Forestry Co Ltd Wall back underfloor connecting hardware

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07139019A (en) * 1993-11-17 1995-05-30 Maezawa Kasei Ind Co Ltd Tube joint with breather
JPH07268922A (en) * 1994-03-31 1995-10-17 Sekisui House Ltd Ventilation pipe unit incorporable into wall body
JP2002309639A (en) * 2001-04-17 2002-10-23 Maezawa Kasei Ind Co Ltd Induction valve mounting method, induction valve apparatus, and pipe joint
JP2004353445A (en) * 2001-05-28 2004-12-16 Kitz Corp Aerator for drainage
JP2004324239A (en) * 2003-04-25 2004-11-18 Maezawa Kasei Ind Co Ltd Branch pipe joint for air intake of drainage canal, and intake device for drainage canal
JP2005290841A (en) * 2004-03-31 2005-10-20 Sumitomo Forestry Co Ltd Wall back underfloor connecting hardware

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