JP2014070678A - Through-hole fire measure tool - Google Patents

Through-hole fire measure tool Download PDF

Info

Publication number
JP2014070678A
JP2014070678A JP2012216815A JP2012216815A JP2014070678A JP 2014070678 A JP2014070678 A JP 2014070678A JP 2012216815 A JP2012216815 A JP 2012216815A JP 2012216815 A JP2012216815 A JP 2012216815A JP 2014070678 A JP2014070678 A JP 2014070678A
Authority
JP
Japan
Prior art keywords
hole
base material
state
elastic
peripheral surface
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.)
Pending
Application number
JP2012216815A
Other languages
Japanese (ja)
Inventor
Seiichi Koga
誠一 古賀
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inaba Denki Sangyo Co Ltd
Original Assignee
Inaba Denki Sangyo Co Ltd
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 Inaba Denki Sangyo Co Ltd filed Critical Inaba Denki Sangyo Co Ltd
Priority to JP2012216815A priority Critical patent/JP2014070678A/en
Publication of JP2014070678A publication Critical patent/JP2014070678A/en
Pending legal-status Critical Current

Links

Images

Abstract

PROBLEM TO BE SOLVED: To provide a through-hole fire measure tool that can be easily installed in a through-hole under a state in which it is hardly released against the through-hole even in a case that an inner diameter is displaced from its designed size.SOLUTION: The present invention relates to a through-hole fire measure tool T for use in inserting a long body installed in a through-hole H belonging to a block body in which a cylindrical surface forming part of a base member 1 constituted to form a cylindrical surface 1a capable of covering an inner peripheral surface h1 of the through-hole H or constituted to enable the cylindrical surface 1a to be formed is provided with resilient salients 3 that are resiliently contacted with the inner peripheral surface h1 of the through-hole H under an adhered state against the through-hole H.

Description

本発明は、建築物の壁や床スラブ等の区画体に貫通形成した貫通孔や区画体にスリーブを貫設して形成した貫通孔などの区画体側に属する貫通孔に対して空調配管やケーブル、給排水管等の長尺体を挿通させる際に、該貫通孔に挿入装着して用いられる貫通孔防火措置具に関する。   The present invention relates to air-conditioning pipes and cables for through holes belonging to a partition body such as a through hole formed through a partition body such as a wall of a building or a floor slab, or a through hole formed by penetrating a sleeve through the partition body. The present invention relates to a fire prevention device for a through-hole that is used by being inserted into and attached to the through-hole when inserting a long body such as a water supply / drain pipe.

この種の貫通孔防火措置具としては、前記貫通孔の内周面を被覆可能な筒状面を形成して構成された筒状基材の外径を使用対象とする貫通孔の内径寸法に略等しい寸法(僅かに大きい寸法)に設定することで、使用対象径の貫通孔に対して外れ難い状態で容易に挿入装着できるようにしたものがある(下記特許文献1参照)。   As this type of through-hole fire prevention device, the outer diameter of a cylindrical base material formed by forming a cylindrical surface capable of covering the inner peripheral surface of the through-hole is set to the inner diameter dimension of the through-hole to be used. There is one that can be easily inserted and mounted in a state in which it is difficult to be removed from a through hole having a diameter to be used by setting the dimensions to be approximately equal (slightly larger) (see Patent Document 1 below).

特開2011−117574号公報JP 2011-117574 A

ところが、作業場所、作業者、作業道具等の要因から設計どおりの内径で区画体に貫通孔を形成するのは難しいため、貫通孔の内径には幾分かの誤差が生じることが多いが、上記従来の貫通孔防火措置具では、貫通孔の内径が小径側にズレると貫通孔に挿入装着できなくなり、また、貫通孔の内径が大径側にズレると貫通孔に挿入装着はできるものの外れ易くなるなど、貫通孔の内径が設計寸法からズレた場合に外れ難い状態での装着が困難になる重大な問題があった。   However, since it is difficult to form a through hole in the partition body with the designed inner diameter due to factors such as work place, worker, work tool, etc., there are often some errors in the inner diameter of the through hole, In the above conventional through-hole fire protection device, if the inner diameter of the through hole is shifted to the small diameter side, it cannot be inserted into the through hole, and if the inner diameter of the through hole is shifted to the larger diameter side, it can be inserted into the through hole. For example, when the inner diameter of the through hole is deviated from the design dimension, there is a serious problem that it is difficult to mount in a state where it is difficult to be removed.

本発明は、上述の実状に鑑みて為されたものであって、その主たる課題は、貫通孔の内径が設計寸法からズレた場合でも貫通孔に対して外れ難い状態で容易に装着することのできる貫通孔防火措置具を提供する点にある。   The present invention has been made in view of the above-described actual situation, and the main problem is that even when the inner diameter of the through hole is deviated from the design dimension, it can be easily mounted in a state in which it is difficult to be detached from the through hole. It is in providing a through-hole fire protection device that can be used.

本発明の第1特徴構成は、区画体側に属する貫通孔に装着される長尺体挿通用の貫通孔防火措置具であって、
貫通孔の内周面を被覆可能な筒状面が形成された又は該筒状面を形成可能に構成された基材の筒状面形成部位に、貫通孔に対する装着状態において貫通孔の内周面に弾接する弾性凸部が突出形成されている点にある。
The first characteristic configuration of the present invention is a through-hole fire prevention device for insertion of a long body that is attached to a through-hole belonging to a partition body side,
The inner periphery of the through hole in the mounting state with respect to the through hole in the cylindrical surface forming part of the base material on which the cylindrical surface capable of covering the inner peripheral surface of the through hole is formed or configured to be able to form the cylindrical surface An elastic convex portion that elastically contacts the surface is formed to protrude.

上記構成によれば、貫通孔に対する装着操作に連れて、筒状面形成部位に突出形成された弾性凸部を弾性変形させる状態で貫通孔に対して装着することができ、そして、貫通孔に対する装着状態では、基材の筒状面で貫通孔の内周面を被覆しながら、その外周面側で弾性凸部を貫通孔の内周面に弾接させることができるから、この弾性凸部の貫通孔内周面への弾接によって基材と貫通孔との相対的な移動抵抗を高めることができる。よって、貫通孔に対して外れ難い状態での装着が可能になる。   According to the above configuration, it is possible to attach to the through hole in a state of elastically deforming the elastic convex portion formed to protrude from the cylindrical surface forming portion in accordance with the attaching operation to the through hole, and to the through hole. In the mounted state, while covering the inner peripheral surface of the through hole with the cylindrical surface of the base material, the elastic convex portion can be elastically contacted with the inner peripheral surface of the through hole on the outer peripheral surface side. The relative movement resistance between the base material and the through hole can be increased by elastic contact with the inner peripheral surface of the through hole. Therefore, it is possible to mount in a state in which it is difficult to be detached from the through hole.

しかも、貫通孔の内径が設計寸法からズレた場合でも、弾性凸部の弾性変形範囲内であれば、貫通孔に対する装着状態で貫通孔の内周面に弾性凸部が弾接した装着状態にすることができるから、そのような場合でも、別途の作業を要することなく外れ難い状態で貫通孔に装着することができる。   In addition, even when the inner diameter of the through hole deviates from the design dimension, if the elastic convex portion is within the elastic deformation range of the elastic convex portion, the elastic convex portion is in elastic contact with the inner peripheral surface of the through hole in the mounted state with respect to the through hole. Therefore, even in such a case, it can be attached to the through hole in a state where it is difficult to come off without requiring a separate operation.

したがって、貫通孔の内径が設計寸法からズレた場合でも、貫通孔に対して外れ難い状態で容易に装着することができる。   Therefore, even when the inner diameter of the through hole deviates from the design dimension, it can be easily mounted in a state in which it does not easily come off from the through hole.

本発明の第2特徴構成は、前記弾性凸部が、貫通孔に対する装着状態で貫通孔の内周面と前記基材の筒状面との間に形成される隙間を貫通孔軸芯方向において遮断するように貫通孔の内周面の少なくとも一周分に弾接する状態で備えられている点にある。   According to a second characteristic configuration of the present invention, the elastic convex portion has a gap formed between the inner peripheral surface of the through hole and the cylindrical surface of the base material in a mounting state with respect to the through hole. It exists in the point which is provided in the state elastically contacted for at least one round of the internal peripheral surface of a through-hole so that it might interrupt | block.

上記構成によれば、貫通孔に対する装着状態において貫通孔の内周面と基材の筒状面との間に形成される隙間を貫通孔軸芯方向において弾性凸部で遮断するから、その弾性凸部による貫通孔の内周面に密着する状態での隙間遮断により、該隙間を通じて火災時の火炎や熱や煙が区画体を通過するのを抑制することができる。   According to the above configuration, since the gap formed between the inner peripheral surface of the through hole and the cylindrical surface of the substrate is blocked by the elastic convex portion in the axial direction of the through hole in the mounting state with respect to the through hole, the elasticity By blocking the gap in a state of being in close contact with the inner peripheral surface of the through hole by the convex portion, it is possible to suppress the passage of flame, heat, and smoke during a fire through the gap.

また、壁の貫通孔に装着した場合は重力で下方に寄り易いため、壁の表側に隙間隠し用の鍔部を設けたとしても貫通孔の上側領域が外部に露出する不都合が起こり得るが、上記構成によれば、弾性凸部による全周囲からの付勢力により貫通孔の径方向中央側に保持することができるから、そのような不都合が発生することも抑止することができる。   In addition, when attached to the through hole of the wall, it is easy to move downward due to gravity, so even if a gap concealing hook is provided on the front side of the wall, there may be a disadvantage that the upper region of the through hole is exposed to the outside, According to the above configuration, since it can be held on the radial center side of the through-hole by the urging force from the entire periphery by the elastic convex portion, it is possible to prevent such inconvenience from occurring.

本発明の第3特徴構成は、前記弾性凸部が、貫通孔に対する装着状態で貫通孔軸心方向に沿う縦断面視において貫通孔軸方向の複数箇所に分散する状態で備えられている点にある。   The third characteristic configuration of the present invention is that the elastic convex portion is provided in a state in which the elastic convex portion is dispersed in a plurality of locations in the through-hole axial direction in a longitudinal sectional view along the through-hole axial direction in a mounted state with respect to the through-hole. is there.

上記構成によれば、貫通孔に対する装着状態において、貫通孔軸芯方向で離れた複数箇所(貫通孔の挿入深さ方向の複数箇所)において弾性凸部と貫通孔の内周面とを弾接させることができるから、貫通孔軸芯方向の一箇所で貫通孔の内周面に弾接するのに比べ、装着姿勢の安定化を図ることができる。   According to the above configuration, the elastic convex portion and the inner peripheral surface of the through hole are elastically contacted at a plurality of positions (a plurality of positions in the insertion depth direction of the through hole) that are separated in the axial direction of the through hole in the mounting state with respect to the through hole. Therefore, it is possible to stabilize the mounting posture as compared to elastic contact with the inner peripheral surface of the through hole at one position in the axial direction of the through hole.

したがって、装着姿勢の変化に起因する弾性凸部の弾接状態の変化によって、基材と貫通孔との相対的な移動抵抗が不測に低下するのを抑止することができる。   Therefore, it is possible to prevent the relative movement resistance between the base material and the through-hole from being unexpectedly lowered due to the change in the elastic contact state of the elastic projection due to the change in the mounting posture.

本発明の第4特徴構成は、前記弾性凸部が、弾性湾曲変形又は弾性倒れ変形する状態で貫通孔の内周面に弾接可能な薄板状又は突起状に構成されている点にある。   A fourth characteristic configuration of the present invention is that the elastic convex portion is configured in a thin plate shape or a protrusion shape that can elastically contact the inner peripheral surface of the through hole in a state of elastic bending deformation or elastic collapse deformation.

上記構成によれば、貫通孔に対する挿入操作に連れて薄板状又は突起状の弾性凸部の先端が挿入口側を向く湾曲姿勢又は倒れ姿勢に弾性変形し、その弾性変形からの弾性復元力で貫通孔の内周面に薄板状又は突起状の弾性凸部の先端側が弾接した状態で装着される。   According to the above-described configuration, the tip of the thin plate-like or protrusion-like elastic convex portion is elastically deformed into a curved posture or a tilted posture facing the insertion port side with the insertion operation to the through hole, and the elastic restoring force from the elastic deformation The thin plate-like or protrusion-like elastic convex portion is attached in an elastic manner to the inner peripheral surface of the through hole.

すなわち、この構成によれば、貫通孔に対する装着状態において薄板状又は突起状の弾性凸部を先端側が挿入口側を向く挿入口側への移動抵抗の大きな姿勢で弾性凸部を貫通孔の内周面に弾接させることができるから、貫通孔に対して一層外れ難い状態で装着することができる。   That is, according to this configuration, the elastic convex portion is inserted into the through hole in a posture with a large movement resistance toward the insertion port side with the tip side facing the insertion port side when the elastic projection is thin or projecting in the mounting state with respect to the through hole. Since it can be elastically contacted with the peripheral surface, it can be mounted in a state in which it is more difficult to be detached from the through hole.

本発明の第5特徴構成は、貫通孔に対する装着状態で、且つ、前記基材の内側に長尺体を挿通させた状態で、基材の内周面と長尺体の外周面との間の隙間の少なくとも一部を遮蔽可能な遮蔽部が基材に備えられている点にある。   The fifth characteristic configuration of the present invention is the state between the inner peripheral surface of the base material and the outer peripheral surface of the long body in a state of being attached to the through hole and in a state where the long body is inserted inside the base material. The base material is provided with a shielding part capable of shielding at least a part of the gap.

上記構成によれば、貫通孔に対する装着状態で、且つ、前記基材の内側に長尺体を挿通させた状態で、基材の内周面と長尺体の外周面との間の隙間の少なくとも一部を遮蔽部で遮蔽することができるから、その分、該隙間を通じて火災時の火炎や熱や煙が区画体を通過するのを抑制することができる。   According to the above configuration, the gap between the inner peripheral surface of the base material and the outer peripheral surface of the long body in a state of being attached to the through-hole and in a state where the long body is inserted inside the base material. Since at least a part can be shielded by the shielding portion, it is possible to suppress the passage of the flame, heat and smoke during the fire through the gap.

第1実施形態の貫通孔防火措置具を示す斜視図The perspective view which shows the through-hole fire prevention tool of 1st Embodiment 第1実施形態の貫通孔防火措置具を示す底面図The bottom view which shows the through-hole fire prevention tool of 1st Embodiment (a)第1実施形態の貫通孔防火措置具の使用状態を示す縦断面図、(b)第1実施形態の貫通孔防火措置具の使用状態を示す縦断面図、(c)第1実施形態の貫通孔防火措置具の使用状態を示す縦断面図(A) Longitudinal sectional view showing the use state of the through-hole fire prevention device of the first embodiment, (b) Longitudinal sectional view showing the use state of the through-hole fire prevention device of the first embodiment, (c) First implementation Longitudinal sectional view showing the state of use of the through-hole fire protection device of the form (a)第2実施形態の貫通孔防火措置具を示す平面図、(b)第2実施形態の貫通孔防火措置具を示す側面図、(c)第2実施形態の貫通孔防火措置具の筒状変形状態を示す斜視図(A) The top view which shows the through-hole fire protection device of 2nd Embodiment, (b) The side view which shows the through-hole fire protection device of 2nd Embodiment, (c) The through-hole fire protection device of 2nd Embodiment A perspective view showing a cylindrical deformation state (a)第2実施形態の貫通孔防火措置具の使用状態を示す縦断面図、(b)第2実施形態の貫通孔防火措置具の使用状態を示す縦断面図(A) Longitudinal sectional view showing the usage state of the through-hole fire protection device of the second embodiment, (b) Vertical sectional view showing the usage state of the through-hole fire protection device of the second embodiment. 第2実施形態の貫通孔防火措置具の使用状態を示す底面図The bottom view which shows the use condition of the through-hole fire prevention tool of 2nd Embodiment

〔第1実施形態〕
図1、図2は、例えば、図3(c)に示すように、区画体の一例である床スラブSに貫通形成された貫通孔Hに対して空調配管や電線等の長尺体Pを挿通させる際に、貫通孔Hに挿入装着して用いられる貫通孔防火措置具Tを示し、この貫通孔防火措置具Tは、貫通孔Hの内周面h1を被覆可能な筒状面1aを設けて構成された略円筒状の基材1から構成されている。
[First Embodiment]
1 and 2, for example, as shown in FIG. 3 (c), a long body P such as an air-conditioning pipe or an electric wire is attached to a through-hole H formed through a floor slab S that is an example of a partition body. A through-hole fire protection device T used by being inserted into the through-hole H when inserted is shown. The through-hole fire protection device T has a cylindrical surface 1a that can cover the inner peripheral surface h1 of the through-hole H. It is comprised from the substantially cylindrical base material 1 provided and comprised.

前記基材1は、火災時に貫通孔Hの内部を膨張閉塞可能なように、熱膨張性と耐熱性を備えた熱膨張性耐熱ゴム(弾性材の一例)から一体的に構成されているとともに、前記筒状面1aは、図3(a)に示すように、貫通孔Hの内径寸法Ahよりも小なる外径寸法A1を有した円筒状面に構成されている。   The base material 1 is integrally formed from a heat-expandable heat-resistant rubber (an example of an elastic material) having heat-expandability and heat-resistance so that the inside of the through hole H can be expanded and closed in a fire. The cylindrical surface 1a is configured as a cylindrical surface having an outer diameter A1 that is smaller than the inner diameter Ah of the through hole H, as shown in FIG.

前記基材1の軸芯方向一端側には、床スラブSの一側面(室内側面、表面)における貫通孔Hの開口周縁部分に当接可能な位置決め機能と化粧機能とを備えた周方向に沿って延びる円環状の鍔部2が径方向外方に一体的に突出形成されている。   On the one end side in the axial direction of the base material 1, in the circumferential direction provided with a positioning function and a makeup function capable of coming into contact with the opening peripheral portion of the through hole H on one side surface (inner side surface, surface) of the floor slab S. An annular flange 2 extending along the projection is integrally formed so as to protrude radially outward.

そして、前記基材1の筒状面形成部位である外周面(本例では筒状面1a)における軸芯方向の複数箇所には、貫通孔Hに対する装着状態において貫通孔Hの内周面h1に弾接する外れ止め機能と姿勢維持機能とを備えた複数の弾性凸部3が径方向外方に一体的に突出形成されている。   And the inner peripheral surface h1 of the through-hole H in the mounting state with respect to the through-hole H in several places of the axial direction in the outer peripheral surface (this example cylindrical surface 1a) which is the cylindrical surface formation site | part of the said base material 1 is demonstrated. A plurality of elastic convex portions 3 each having an anti-separation function and a posture maintaining function that elastically contact with each other are formed integrally and projecting radially outward.

具体的には、図3(a)に示すように、前記弾性凸部3の形成箇所の外径寸法A3が貫通孔Hの内径寸法Ahよりも大となるように弾性凸部3の突出寸法を設定することで、図3(b)、(c)に示すように、貫通孔Hの内部では、弾性凸部3が貫通孔Hとの弾接箇所において貫通孔Hの内周面h1に弾性復元力を作用させる弾性変形状態になるように構成されている。   Specifically, as shown in FIG. 3A, the protruding dimension of the elastic convex portion 3 is such that the outer diameter A3 of the location where the elastic convex portion 3 is formed is larger than the inner diameter Ah of the through hole H. 3 (b) and 3 (c), the elastic convex portion 3 is formed on the inner peripheral surface h1 of the through hole H at the elastic contact portion with the through hole H, as shown in FIGS. It is configured to be in an elastically deformed state in which an elastic restoring force is applied.

なお、本例では、基材1の軸芯方向の長さを床スラブSの厚みよりも大にし、貫通孔Hに対する装着状態で貫通孔H内に位置する領域に加えて、床スラブSの裏側空間に突出位置する軸芯方向他端側の領域にも弾性凸部3を設けてある。   In this example, the length in the axial direction of the base material 1 is made larger than the thickness of the floor slab S, and in addition to the region located in the through hole H in the mounted state with respect to the through hole H, the floor slab S The elastic convex part 3 is provided also in the area | region of the axial direction other end side which protrudes in the back side space.

前記弾性凸部3の各々は、貫通孔Hに対する装着状態で貫通孔Hの内周面h1と基材1の筒状面1aとの間に形成される隙間を貫通孔軸芯方向において遮断し得るように、筒状面1aの全周に亘る円環状に構成されている。   Each of the elastic convex portions 3 blocks a gap formed between the inner peripheral surface h1 of the through hole H and the cylindrical surface 1a of the base member 1 in the through hole axial direction in the mounting state with respect to the through hole H. In order to obtain, it is comprised by the annular | circular shape covering the perimeter of the cylindrical surface 1a.

また、各弾性凸部3の各々は、貫通孔Hに対する挿入装着時(図3参照)に弾性湾曲変形(弾性湾曲変形又は弾性倒れ変形の一例)する薄板状に構成されている。   Each elastic convex portion 3 is configured in a thin plate shape that undergoes elastic bending deformation (an example of elastic bending deformation or elastic collapse deformation) when inserted into the through hole H (see FIG. 3).

更に、前記基材1の内周面1bにおける軸芯方向中間部には、貫通孔Hに対する装着状態で、且つ、基材1の内側に長尺体Pを挿通させた状態で、基材1の内周面1bと長尺体Pの外周面との間の隙間を遮蔽するための遮蔽部4が径方向内方に一体的に突出形成されている。   Furthermore, in the axial center direction intermediate part of the inner peripheral surface 1b of the base material 1, the base material 1 is attached to the through hole H and the long body P is inserted inside the base material 1. A shielding portion 4 for shielding a gap between the inner circumferential surface 1b of the long body P and the outer circumferential surface of the elongated body P is integrally formed to project radially inward.

前記遮蔽部4は、基材1の軸芯(つまり、筒状面1aの軸芯)を中心とする放射状の切り込み線6で分割された略三角形状の多数の遮蔽片部4aから構成されている。   The shielding part 4 is composed of a large number of substantially triangular shielding piece parts 4a divided by radial cut lines 6 centering on the axis of the substrate 1 (that is, the axis of the cylindrical surface 1a). Yes.

そして、この貫通孔防火措置具Tには、基材1の軸芯方向に沿って貫通孔防火措置具Tの外周部の一箇所をその全長に亘って切断するスリット5が形成されている。つまり、この貫通孔防火措置具Tは、スリット5を弾性的に拡開操作することで、その拡開状態のスリット5を通して長尺体Pを収容し得るように構成されている。   And the slit 5 which cut | disconnects one place of the outer peripheral part of the through-hole fire-protection tool T along the axial center direction of the base material 1 is formed in this through-hole fire-protection tool T. In other words, the through-hole fire protection device T is configured to accommodate the elongated body P through the slit 5 in the expanded state by elastically expanding the slit 5.

次に、上述の如く構成された貫通孔防火措置具Tを用いた貫通孔防火措置方法について説明する。   Next, a through-hole fire prevention method using the through-hole fire prevention tool T configured as described above will be described.

まず、図3(a)に示すように、貫通孔防火措置具Tのスリット5を弾性的に拡開(図示省略)させて、その拡開状態のスリット5を通して貫通孔Hに予め挿通されている長尺体Pを貫通孔防火措置具Tの円筒状の基材1に収容する。このとき、基材1に収容された長尺体Pは、基材1の内部に形成された多数の遮蔽片部4aによって基材1の軸芯側に位置保持される。   First, as shown to Fig.3 (a), the slit 5 of the through-hole fire-protection tool T is elastically expanded (illustration omitted), and it is previously inserted by the through-hole H through the slit 5 of the expanded state. The long body P is accommodated in the cylindrical base material 1 of the through-hole fire protection device T. At this time, the elongated body P accommodated in the base material 1 is held at the axial center side of the base material 1 by a large number of shielding pieces 4 a formed inside the base material 1.

次に、図3(b)に示すように、長尺体Pに外嵌装着した貫通孔防火措置具Tを、長尺体Pに対して摺動させる状態で貫通孔Hに向けて移動させる。   Next, as shown in FIG. 3B, the through-hole fire protection device T that is externally fitted to the long body P is moved toward the through-hole H in a state of sliding with respect to the long body P. .

この移動過程において、基材1の外周面側の複数の薄板状の弾性凸部3は、貫通孔Hの内周面h1との当接により先端側が貫通孔Hの挿入口側(つまり、室内側)を向く湾曲姿勢となって貫通孔Hの内周面h1の全周に弾接し、基材1を貫通孔Hの径方向中央側に付勢する。   In this movement process, the plurality of thin elastic protrusions 3 on the outer peripheral surface side of the base material 1 are in contact with the inner peripheral surface h1 of the through hole H, and the tip side is the insertion port side of the through hole H (that is, the chamber It is in a curved posture facing inward) and elastically contacts the entire circumference of the inner peripheral surface h1 of the through hole H, and the base material 1 is urged toward the radial center of the through hole H.

つまり、弾性凸部3は、通孔防火措置具Tの移動過程において基材1を貫通孔Hの径方向の所定位置に案内する案内手段となる。   In other words, the elastic convex portion 3 serves as a guide means for guiding the base material 1 to a predetermined position in the radial direction of the through hole H in the process of moving the through-hole fire protection device T.

そして、図3(c)に示すように、基材1の鍔部2が床スラブSの表面に当接した所定の挿入深さまで移動させることにより、貫通孔防火措置具Tの装着が完了し、貫通孔防火措置構造が完成する。   And as shown in FIG.3 (c), mounting | wearing with the through-hole fire-protection tool T is completed by moving the collar part 2 of the base material 1 to the predetermined | prescribed insertion depth contact | abutted on the surface of the floor slab S. The through-hole fire prevention structure is completed.

このとき、貫通孔Hの内部に位置する弾性凸部3の各々は、上述の如く、先端側が貫通孔Hの挿入口側(つまり、室内側)を向く湾曲姿勢で貫通孔Hの内周面h1の全周に弾接した状態にある。   At this time, each of the elastic convex portions 3 located inside the through-hole H has an inner peripheral surface of the through-hole H in a curved posture in which the tip side faces the insertion port side (that is, the indoor side) of the through-hole H as described above. It is in a state of elastic contact with the entire circumference of h1.

そのため、貫通孔H内に位置する各弾性凸部3の弾性復元力によって基材1を貫通孔H内の径方向中央位置に姿勢維持するとともに、基材1が軸芯方向に沿って移動するのに移動抵抗を付与し、特に、基材1が床スラブSの表側に移動するのを効果的に抑止することができる。   Therefore, the base material 1 is maintained in the radial center position in the through hole H by the elastic restoring force of each elastic convex portion 3 located in the through hole H, and the base material 1 moves along the axial direction. Therefore, it is possible to effectively prevent the base material 1 from moving to the front side of the floor slab S.

更に、貫通孔H内に位置する各弾性凸部3の貫通孔Hの内周面h1の全周への弾接により、基材1の筒状面1aと貫通孔Hの内周面h1との間の隙間を密封する状態で遮断し、この隙間を通じて火災時の火炎や熱や煙が床スラブSを通過すること確実に阻止することができる。   Furthermore, the cylindrical surface 1a of the base material 1 and the inner peripheral surface h1 of the through hole H are elastically contacted with the entire circumference of the inner peripheral surface h1 of the through hole H of each elastic convex portion 3 located in the through hole H. It is possible to reliably prevent a flame, heat, or smoke during a fire from passing through the floor slab S through the gap.

また、床スラブSの裏側空間に位置する各弾性凸部3は、先端側が貫通孔Hの内周面h1よりも径方向外方に位置する元の姿勢に弾性復元した状態にある。   In addition, each elastic convex portion 3 located in the back space of the floor slab S is in a state where the tip side is elastically restored to the original posture positioned radially outward from the inner peripheral surface h1 of the through hole H.

そのため、貫通孔防火措置具Tが床スラブSの表側に抜け出し移動することを、弾性復元状態で床スラブSの裏側に配置された各弾性凸部3と貫通孔Hの裏側周縁部との接当(換言すれば、貫通孔Hの裏側周縁部分への掛止)により抑止することができる。   For this reason, the through-hole fire protection device T is pulled out and moved to the front side of the floor slab S, so that the elastic convex portions 3 arranged on the back side of the floor slab S in the elastically restored state and the back-side peripheral edge portion of the through-hole H. It can be suppressed by this (in other words, the hooking of the through hole H to the back side peripheral edge portion).

また、基材1に収容された長尺体Pは、基材1の内部に形成された多数の遮蔽片部4aによる基材1と長尺体Pとの間の隙間の遮蔽により、この隙間を通じて火災時の火炎や熱や煙が床スラブSを通過するのを抑止することができる。   Further, the long body P accommodated in the base material 1 is formed by shielding the gap between the base material 1 and the long body P by a large number of shielding pieces 4 a formed inside the base material 1. It is possible to prevent the flame, heat, and smoke from passing through the floor slab S through the through-hole.

〔第2実施形態〕
図4は、床スラブSに形成された貫通孔Hに挿入装着して用いられる貫通孔防火措置具Tの別例を示し、この貫通孔防火措置具Tは、貫通孔Hの内周面h1を被覆する筒状面1aを形成可能に構成された基材1から構成されている。
[Second Embodiment]
FIG. 4 shows another example of the through-hole fire protection device T used by being inserted into and installed in the through-hole H formed in the floor slab S. The through-hole fire protection device T is an inner peripheral surface h1 of the through-hole H. It is comprised from the base material 1 comprised so that formation of the cylindrical surface 1a which coat | covers was possible.

具体的には、前記基材1は、左右両端を接続する状態に湾曲変形操作することで前記筒状面1aを形成可能(図4(c)参照)な正面視略長方形状の板状に構成されており、押し出し成形による高い生産性が得られるように構成されている。   Specifically, the base material 1 has a substantially rectangular plate shape in front view that can form the cylindrical surface 1a (see FIG. 4C) by performing a bending deformation operation in a state in which both left and right ends are connected. It is comprised, and it is comprised so that the high productivity by extrusion molding may be obtained.

この基材1の筒状面形成部位である外面1cの縦方向一端側(図4(a)、(b)中の上端側)には、筒状変形状態で円環状の前記鍔部2を構成する鍔部形成凸片2aが横方向に沿って横幅一杯に延設されている。   On the one end side in the longitudinal direction of the outer surface 1c (the upper end side in FIGS. 4 (a) and 4 (b)) which is the cylindrical surface forming portion of the base material 1, the annular flange 2 is formed in a cylindrical deformed state. The ridge forming convex piece 2a to be configured is extended to the full width along the horizontal direction.

また、基材1の外面1cの縦方向中間部の複数箇所には、筒状変形状態で円環状の前記弾性凸部3を形成する弾性凸部形成片3aが横方向に沿って横幅一杯に延設されている。   In addition, at a plurality of locations in the longitudinal intermediate portion of the outer surface 1c of the substrate 1, elastic convex portion forming pieces 3a that form the annular elastic convex portions 3 in a cylindrical deformed state are filled in the horizontal width along the horizontal direction. It is extended.

さらに、基材1の縦方向他端側(図4(a)、(b)中の下端側)には、筒状変形状態で軸芯方向中央側に窄まるように内向きに突出して長尺体Pと基材1の内面との間の隙間を遮蔽する遮蔽部4を形成する複数の遮蔽片部4bが横方向に沿って連設されている。   Furthermore, it protrudes inward so that it may squeeze in the axial direction center side in the cylindrical deformation state at the longitudinal direction other end side (the lower end side in FIG. 4 (a), (b)) of the base material 1, and is long. A plurality of shielding piece portions 4b forming a shielding portion 4 that shields a gap between the scale body P and the inner surface of the substrate 1 are continuously provided along the horizontal direction.

前記遮蔽片部4bの各々は、基端部を屈曲点として斜め裏方向きに突出する状態で備えられているとともに、筒状変形状態で隣り合う遮蔽片部4bの隣接辺どうしが当接して遮蔽片部4bどうしの間の隙間を閉塞(図6参照)するように左右両側辺の傾斜角度が設定された正面視略台形状に切り抜き形成されている。   Each of the shielding piece portions 4b is provided in a state of projecting obliquely backward with the base end portion as a bending point, and is shielded by adjacent sides of the shielding piece portions 4b adjacent to each other in a cylindrical deformation state. It is cut out and formed into a substantially trapezoidal shape in front view in which the inclination angles of the left and right sides are set so as to close the gap between the pieces 4b (see FIG. 6).

次に、上述の如く構成された貫通孔防火措置具Tを用いた貫通孔防火措置方法について説明する。   Next, a through-hole fire prevention method using the through-hole fire prevention tool T configured as described above will be described.

図4(c)、図5(a)に示すように、貫通孔Hに挿通された長尺体Pを床スラブSの表側に位置する部位を囲う状態で基材1を円筒状に湾曲変形操作し、その操作力により基材1を弾性復元力に抗して円筒状に保持する状態で基材1に長尺体Pを収容する。   As shown in FIGS. 4C and 5A, the base material 1 is bent and deformed into a cylindrical shape in a state in which the long body P inserted through the through hole H surrounds a portion located on the front side of the floor slab S. The long body P is accommodated in the base material 1 in a state where the base material 1 is held in a cylindrical shape against the elastic restoring force by the operation force.

この湾曲変形操作により、鍔部形成凸片2aからなる円環状の前記鍔部2、弾性凸部形成片3aからなる前記弾性凸部3、複数の遮蔽片部4bからなる遮蔽部4が形成される。また、操作力で基材1の軸芯方向中央側に窄まる状態で内向き突出姿勢に保持された遮蔽部4によって基材1に収容された長尺体Pが基材1の軸芯側に位置保持される。   By this bending deformation operation, the ring-shaped collar part 2 made of the collar part-forming convex piece 2a, the elastic convex part 3 made of the elastic convex part-forming piece 3a, and the shielding part 4 made of a plurality of shielding piece parts 4b are formed. The Further, the long body P accommodated in the base material 1 by the shielding part 4 held in an inward projecting posture while being constricted to the center side in the axial direction of the base material 1 by the operating force is the axial core side of the base material 1 Is held in position.

なお、操作力で基材1を円筒状に保持した状態から貫通孔H内に貫通孔防火措置具Tを部分的に挿入することで、貫通孔Hの内周面h1と基材1との当接により、換言すれば、貫通孔Hの内周面h1による基材1の一部(下端部)の外周側からの拘束保持により、基材1の弾性復元力に抗して基材1を円筒状に保持するようにするとよい。   In addition, by inserting the through-hole fire protection device T partially into the through-hole H from a state in which the base 1 is held in a cylindrical shape by the operating force, the inner peripheral surface h1 of the through-hole H and the base 1 In other words, the base material 1 resists the elastic restoring force of the base material 1 by restraining and holding from the outer peripheral side of a part (lower end portion) of the base material 1 by the inner peripheral surface h1 of the through hole H. It is good to hold | maintain cylindrical.

また、例えば、粘着テープ等やバンド等の連結保持手段により基材1の左右両端部を連結保持することで、基材1の弾性復元力に抗して基材1を円筒状に保持するようにしてもよい。   In addition, for example, the base 1 is held in a cylindrical shape against the elastic restoring force of the base 1 by connecting and holding the left and right ends of the base 1 with connection holding means such as an adhesive tape or a band. It may be.

そして、図5(b)、図6に示すように、基材1の鍔部2が床スラブSの表面に当接した所定の挿入深さまで移動させることにより、貫通孔防火措置具Tの装着が完了し、貫通孔防火措置構造が完成する。   And as shown in FIG.5 (b) and FIG. 6, the mounting | wearing of the through-hole fire prevention tool T is carried out by moving the collar part 2 of the base material 1 to the predetermined insertion depth contact | abutted on the surface of the floor slab S Is completed, and the through-hole fire prevention structure is completed.

尚、その他の構成は、第1実施形態で説明した構成と同一であるから、同一の構成箇所には、第1実施形態と同一の番号を付記してそれの説明は省略する。   In addition, since the other structure is the same as the structure demonstrated in 1st Embodiment, the same number is attached to the same structure location as 1st Embodiment, and the description is abbreviate | omitted.

〔その他の実施形態〕
(1)区画体側に属する貫通孔は、前述の各実施形態で示した区画体に貫通形成された貫通孔Hに限らず、例えば、区画体に埋め込み状態に貫設した金属製等のスリーブで形成された貫通孔(つまり、スリーブの内部)等であってもよい。
[Other Embodiments]
(1) The through hole belonging to the partition side is not limited to the through hole H formed through the partition body shown in each of the above-described embodiments. For example, the through hole is a sleeve made of metal or the like that is embedded in the partition body. It may be a formed through hole (that is, the inside of the sleeve) or the like.

(2)前述の各実施形態では、貫通孔軸心方向に沿う縦断面視で貫通孔軸方向に沿う複数箇所に分散する状態で備えられた弾性凸部として、貫通孔軸芯方向の複数箇所に分散配置された複数の円環状の弾性凸部3を例に示したが、基材1の外周面を複数周するように螺旋状に延設された螺旋状の弾性凸部等であってもよい。   (2) In each of the above-described embodiments, a plurality of locations in the axial direction of the through-hole are provided as the elastic convex portions dispersed in a plurality of locations along the axial direction of the through-hole in a longitudinal sectional view along the axial direction of the through-hole. A plurality of annular elastic convex portions 3 dispersedly arranged in the example are shown as an example, but are helical elastic convex portions or the like that are spirally extended so as to surround the outer peripheral surface of the substrate 1 a plurality of times. Also good.

(3)前述の各実施形態では、貫通孔Hに対する装着状態で貫通孔Hの内周面h1に弾接する弾性凸部3が薄板状である場合を例に示したが、半球状や突起状であってもよい。   (3) In each of the above-described embodiments, the case where the elastic convex portion 3 elastically contacting the inner peripheral surface h1 of the through-hole H in a mounted state with respect to the through-hole H is illustrated as an example. It may be.

(4)前述の各実施形態では、弾性凸部3が基端から先端まで同じ厚みに構成されている場合を例に示したが、例えば、先端側ほど厚みが薄くなるように構成されていてもよい。   (4) In each of the above-described embodiments, the case where the elastic convex portion 3 is configured to have the same thickness from the proximal end to the distal end has been described as an example, but, for example, the elastic convex portion 3 is configured to be thinner toward the distal end side. Also good.

(5)前述の第2実施形態では、板状の基材1の外面1cに形成された鍔部形成凸片2aや弾性凸部形成凸片3が、延設方向(横幅方向)において同一の厚みに構成されている場合を例に示したが、例えば、筒状姿勢への変形操作抵抗を低減すべく、延設方向の一箇所又は複数箇所の厚みが薄く構成されていてもよい。   (5) In the second embodiment described above, the flange-forming convex pieces 2a and the elastic convex-forming convex pieces 3 formed on the outer surface 1c of the plate-like substrate 1 are the same in the extending direction (lateral width direction). Although the case where it was comprised by thickness was shown as an example, in order to reduce the deformation | transformation operation resistance to a cylindrical attitude | position, the thickness of one place or several places of the extending direction may be comprised thinly, for example.

(6)前述の各実施形態では、基材1の内周面1bと長尺体Pの外周面との間の隙間を閉塞するための遮蔽片部4a、4bが、貫通孔Hに対する装着状態で貫通孔軸芯方向の1箇所に集合位置するように基材1の軸芯方向の同一箇所に形成されている場合を例に示したが、基材1の軸芯方向の複数箇所に分散する状態で形成されていてもよい。   (6) In each of the above-described embodiments, the shielding pieces 4a and 4b for closing the gap between the inner peripheral surface 1b of the base material 1 and the outer peripheral surface of the elongated body P are attached to the through hole H. As an example, the case where the base material 1 is formed at the same location in the axial direction of the base 1 so as to be gathered at one location in the axial direction of the through hole is shown as an example. You may be formed in the state to do.

(7)前述の各実施形態では、貫通孔防火措置具Tの全体が弾性材から構成されている場合を例に示したが、例えば、少なくとも弾性凸部3が弾性材から構成されていればよい。   (7) In each above-mentioned embodiment, although the case where the whole through-hole fire-protection tool T was comprised from the elastic material was shown as an example, if at least the elastic convex part 3 is comprised from the elastic material, for example Good.

(8)前述の各実施形態では、基材1の筒状面1aが円筒状面である場合を例に示したが、角筒状面などであってもよい。   (8) In each of the above-described embodiments, the case where the cylindrical surface 1a of the substrate 1 is a cylindrical surface has been described as an example, but a square cylindrical surface or the like may be used.

本発明は、建築物に限らず各種の構造物の防火措置に好適に適用することができる。   The present invention can be suitably applied not only to buildings but also to fire prevention measures for various structures.

1 基材
1a 筒状面
1b 基材の内周面
3 弾性凸部
4 遮蔽部
H 貫通孔
h1 貫通孔の内周面
P 長尺体
S 区画体(床スラブ)
DESCRIPTION OF SYMBOLS 1 Base material 1a Tubular surface 1b Inner peripheral surface of base material 3 Elastic convex part 4 Shielding part H Through hole h1 Inner peripheral surface of through hole P Long body S Partition body (floor slab)

Claims (5)

区画体側に属する貫通孔に装着される長尺体挿通用の貫通孔防火措置具であって、
貫通孔の内周面を被覆可能な筒状面が形成された又は該筒状面を形成可能に構成された基材の筒状面形成部位に、貫通孔に対する装着状態において貫通孔の内周面に弾接する弾性凸部が突出形成されている貫通孔防火措置具。
A through-hole fire prevention tool for inserting a long body attached to a through-hole belonging to the partition body side,
The inner periphery of the through hole in the mounting state with respect to the through hole in the cylindrical surface forming part of the base material on which the cylindrical surface capable of covering the inner peripheral surface of the through hole is formed or configured to be able to form the cylindrical surface A through-hole fire-protecting device in which an elastic convex portion elastically contacting the surface is formed to protrude.
前記弾性凸部が、貫通孔に対する装着状態で貫通孔の内周面と前記基材の筒状面との間に形成される隙間を貫通孔軸芯方向において遮断するように貫通孔の内周面の少なくとも一周分に弾接する状態で備えられている請求項1記載の貫通孔防火措置具。   The inner circumference of the through-hole so that the elastic convex portion blocks the gap formed between the inner circumferential surface of the through-hole and the cylindrical surface of the base material in the mounting state with respect to the through-hole in the axial direction of the through-hole. The through-hole fire protection device according to claim 1, wherein the through-hole fire prevention device is provided in a state of elastic contact with at least one round of the surface. 前記弾性凸部が、貫通孔に対する装着状態で貫通孔軸心方向に沿う縦断面視において貫通孔軸方向の複数箇所に分散する状態で備えられている請求項1又は2記載の貫通孔防火措置具。   The through-hole fire-protection measure according to claim 1 or 2, wherein the elastic convex portion is provided in a state of being dispersed at a plurality of locations in the through-hole axial direction in a longitudinal sectional view along the through-hole axial direction in a mounted state with respect to the through-hole. Ingredients. 前記弾性凸部が、弾性湾曲変形又は弾性倒れ変形する状態で貫通孔の内周面に弾接可能な薄板状又は突起状に構成されている請求項1〜3のいずれか1項に記載の貫通孔防火措置具。   The said elastic convex part is comprised in the thin-plate shape or protrusion shape which can be elastically contacted to the internal peripheral surface of a through-hole in the state which carries out elastic bending deformation or elastic fall deformation, The method of any one of Claims 1-3 Through-hole fire protection device. 貫通孔に対する装着状態で、且つ、前記基材の内側に長尺体を挿通させた状態で、基材の内周面と長尺体の外周面との間の隙間の少なくとも一部を遮蔽可能な遮蔽部が基材に備えられている請求項1〜4のいずれか1項に記載の貫通孔防火措置具。   It is possible to shield at least a part of the gap between the inner peripheral surface of the base material and the outer peripheral surface of the long body with the long body inserted through the base material while being attached to the through hole. The through-hole fire prevention device according to any one of claims 1 to 4, wherein a simple shielding portion is provided on the base material.
JP2012216815A 2012-09-28 2012-09-28 Through-hole fire measure tool Pending JP2014070678A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2012216815A JP2014070678A (en) 2012-09-28 2012-09-28 Through-hole fire measure tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2012216815A JP2014070678A (en) 2012-09-28 2012-09-28 Through-hole fire measure tool

Publications (1)

Publication Number Publication Date
JP2014070678A true JP2014070678A (en) 2014-04-21

Family

ID=50746088

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2012216815A Pending JP2014070678A (en) 2012-09-28 2012-09-28 Through-hole fire measure tool

Country Status (1)

Country Link
JP (1) JP2014070678A (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015209933A (en) * 2014-04-28 2015-11-24 日動電工株式会社 Fireproof treatment tool using fire compartment wall open hole, and fireproof treatment structure
JP2016112345A (en) * 2014-12-18 2016-06-23 株式会社古河テクノマテリアル Fire-proof member, fire-protection structure, structure, and construction method for fire-protection structure
JP2016185199A (en) * 2015-03-27 2016-10-27 積水化学工業株式会社 Fireproofing device and building fireproof structure
JP2016223279A (en) * 2015-05-29 2016-12-28 積水化学工業株式会社 Sleeve and compartment penetration structure
JP2017180508A (en) * 2016-03-28 2017-10-05 積水化学工業株式会社 Fire prevention cover and fire protection construction for block penetration part
JP2017207155A (en) * 2016-05-19 2017-11-24 積水化学工業株式会社 Fire protection material and fire protection structure for partition penetration part
JP2019084291A (en) * 2017-11-10 2019-06-06 古河電気工業株式会社 Construction method of fire protection construction body
JP2019214932A (en) * 2019-07-19 2019-12-19 積水化学工業株式会社 Fire resistant structure
CN110829314A (en) * 2019-12-27 2020-02-21 江苏玖泰电力实业有限公司 Engineering protection device applied to underground civil air defense construction

Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4914902Y1 (en) * 1968-11-30 1974-04-13
JPS513777Y2 (en) * 1972-02-24 1976-02-03
JPS5195020U (en) * 1975-01-29 1976-07-30
JPS56108084U (en) * 1980-01-22 1981-08-21
EP0278544A1 (en) * 1987-01-28 1988-08-17 Pidou B.V. Sealing device
JP2001193841A (en) * 1999-11-19 2001-07-17 Hilti Ag Sealing device
JP2003247667A (en) * 2002-02-26 2003-09-05 Misawa Homes Co Ltd Waterproof member of wall surface piercing pipe
US20040045233A1 (en) * 2000-11-30 2004-03-11 Beele Johannes Alfred Sealing system and gasket therefor
JP2005065375A (en) * 2003-08-08 2005-03-10 Sekisui House Ltd Waterproofing member
JP2006514249A (en) * 2003-06-18 2006-04-27 ベーレ エンフィネーリンフ ベー.フェー. System for sealing the space between a tubular hole and a tube
JP2007205472A (en) * 2006-02-02 2007-08-16 Denki Kagaku Kogyo Kk Fire-proof component
JP2008240866A (en) * 2007-03-27 2008-10-09 Matsushita Electric Works Ltd Waterproof bushing
JP2008241027A (en) * 2007-02-28 2008-10-09 Mirai Ind Co Ltd Thermally expansive fireproof implement and fire resistive structure
JP2009501303A (en) * 2005-07-13 2009-01-15 ベーレ エンフィネーリンフ ベー.フェー. System for sealing a space between an inner wall of a tubular opening and at least one tube or duct inserted at least partially into the opening
JP2011208719A (en) * 2010-03-30 2011-10-20 Sekisui Chem Co Ltd Method of renewing piping of building, and pipe material used for the method

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4914902Y1 (en) * 1968-11-30 1974-04-13
JPS513777Y2 (en) * 1972-02-24 1976-02-03
JPS5195020U (en) * 1975-01-29 1976-07-30
JPS56108084U (en) * 1980-01-22 1981-08-21
EP0278544A1 (en) * 1987-01-28 1988-08-17 Pidou B.V. Sealing device
JP2001193841A (en) * 1999-11-19 2001-07-17 Hilti Ag Sealing device
US20040045233A1 (en) * 2000-11-30 2004-03-11 Beele Johannes Alfred Sealing system and gasket therefor
JP2003247667A (en) * 2002-02-26 2003-09-05 Misawa Homes Co Ltd Waterproof member of wall surface piercing pipe
JP2006514249A (en) * 2003-06-18 2006-04-27 ベーレ エンフィネーリンフ ベー.フェー. System for sealing the space between a tubular hole and a tube
JP2005065375A (en) * 2003-08-08 2005-03-10 Sekisui House Ltd Waterproofing member
JP2009501303A (en) * 2005-07-13 2009-01-15 ベーレ エンフィネーリンフ ベー.フェー. System for sealing a space between an inner wall of a tubular opening and at least one tube or duct inserted at least partially into the opening
JP2007205472A (en) * 2006-02-02 2007-08-16 Denki Kagaku Kogyo Kk Fire-proof component
JP2008241027A (en) * 2007-02-28 2008-10-09 Mirai Ind Co Ltd Thermally expansive fireproof implement and fire resistive structure
JP2008240866A (en) * 2007-03-27 2008-10-09 Matsushita Electric Works Ltd Waterproof bushing
JP2011208719A (en) * 2010-03-30 2011-10-20 Sekisui Chem Co Ltd Method of renewing piping of building, and pipe material used for the method

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015209933A (en) * 2014-04-28 2015-11-24 日動電工株式会社 Fireproof treatment tool using fire compartment wall open hole, and fireproof treatment structure
JP2016112345A (en) * 2014-12-18 2016-06-23 株式会社古河テクノマテリアル Fire-proof member, fire-protection structure, structure, and construction method for fire-protection structure
JP2016185199A (en) * 2015-03-27 2016-10-27 積水化学工業株式会社 Fireproofing device and building fireproof structure
JP2016223279A (en) * 2015-05-29 2016-12-28 積水化学工業株式会社 Sleeve and compartment penetration structure
JP2017180508A (en) * 2016-03-28 2017-10-05 積水化学工業株式会社 Fire prevention cover and fire protection construction for block penetration part
JP2017207155A (en) * 2016-05-19 2017-11-24 積水化学工業株式会社 Fire protection material and fire protection structure for partition penetration part
JP2019084291A (en) * 2017-11-10 2019-06-06 古河電気工業株式会社 Construction method of fire protection construction body
JP2019214932A (en) * 2019-07-19 2019-12-19 積水化学工業株式会社 Fire resistant structure
CN110829314A (en) * 2019-12-27 2020-02-21 江苏玖泰电力实业有限公司 Engineering protection device applied to underground civil air defense construction

Similar Documents

Publication Publication Date Title
JP2014070678A (en) Through-hole fire measure tool
US20170148542A1 (en) Wire harness, electrical wire protector, and electrical wire holder
JP5857997B2 (en) Grommet
US10480728B2 (en) Electrical cover with concentric removable annular rings
JP6860535B2 (en) Grommet
TW201541777A (en) Insert casing for fastening an electrical component, object for fastening an insert casing of this type, and method for fastening an insert casing to an object
JP6360351B2 (en) Waterproof stopper
US10518723B2 (en) Grommet
JP7117624B2 (en) joint
US10562471B2 (en) Grommet
JP2008256108A (en) Pipe joint and overvoltage protection method for pipe
JP2016167351A (en) Fixing member
JP6561872B2 (en) Wire harness and exterior member
CN109890643A (en) The mounting structure of the built-in components of fuel tank
JP2007051680A (en) Bushing for corrugated pipe
JP6297840B2 (en) Pipe fitting
JP6792419B2 (en) Grommet
JP5669194B2 (en) Long body cover fixture and long body cover device
JP5917189B2 (en) Ventilator
JP7446611B2 (en) protective tube
JP7428077B2 (en) grommet
JP5781966B2 (en) Ring reducer
JP5675328B2 (en) Device protection cap
JP2016180453A (en) Arrangement path formation device and arrangement path structure
JP2015033185A (en) Grommet

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20150901

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20160719

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20160726

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20160921

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20161227

A02 Decision of refusal

Free format text: JAPANESE INTERMEDIATE CODE: A02

Effective date: 20170627