JP4811630B2 - U-shaped groove - Google Patents

U-shaped groove Download PDF

Info

Publication number
JP4811630B2
JP4811630B2 JP2004211915A JP2004211915A JP4811630B2 JP 4811630 B2 JP4811630 B2 JP 4811630B2 JP 2004211915 A JP2004211915 A JP 2004211915A JP 2004211915 A JP2004211915 A JP 2004211915A JP 4811630 B2 JP4811630 B2 JP 4811630B2
Authority
JP
Japan
Prior art keywords
shaped groove
bridging
bridging material
main body
portions
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2004211915A
Other languages
Japanese (ja)
Other versions
JP2004332536A (en
Inventor
俊夫 鎌田
高栄 寺沢
Original Assignee
炭平コーポレーション株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 炭平コーポレーション株式会社 filed Critical 炭平コーポレーション株式会社
Priority to JP2004211915A priority Critical patent/JP4811630B2/en
Publication of JP2004332536A publication Critical patent/JP2004332536A/en
Application granted granted Critical
Publication of JP4811630B2 publication Critical patent/JP4811630B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Sewage (AREA)

Description

本発明は、農業用及び工業用水路及び排水路、並びに一般土木用水路及び排水路に用いることができる合成樹脂製のU字溝に関する。   The present invention relates to a U-groove made of synthetic resin that can be used for agricultural and industrial waterways and drainage channels, and general civil engineering waterways and drainage channels.

山野の土木開発現場並びに一般道路の側溝および排水路として、従来コンクリート製のU字溝が用いられてきたが、近年、コンクリート製のU字溝に代えて合成樹脂製のU字溝が用いられるに至っている。この合成樹脂製のU字溝は、従来のコンクリート製のU字溝よりも軽量であるため、輸送面や施工面で取扱いが容易であるが、一方合成樹脂製のものは、コンクリート製のものと比較して一般に、剛性が低いため、特に側壁外から大きな土圧がかかった場合には、側壁が内側に折れこんで変形しやすくなるという問題があった。そこでこの問題を解決するべく、U字溝の底壁面から側壁面を波形もしくは類似の凹凸形状に成形することにより合成樹脂製U字溝の側壁外からの土圧に対する剛性の向上を達成する方法が提案され利用されていることが知られている(特開昭61−83731号公報、特開平11−1956号公報等)。なおこの種の、U字溝において、その底部付近について上記の凹凸形状をあまりに大きな凹凸に設計することは、雨水や地下水等の流通を妨げ、本来の使用目的である流路としての機能を十分に果たすことはできなくなる。従って、U字溝の内壁面を平坦な面に保ちかつ凹凸形状を外側壁面にのみに付ける方法も検討されている(例えば特開平8−151677号公報等)が、剛性の格段の向上が期待できず、これは有利な手段とは必ずしもいえない。   Conventional U-grooves made of concrete have been used as side gutters and drainage channels for civil engineering development in Yamano, but in recent years, synthetic resin U-grooves have been used in place of concrete U-grooves. Has reached. This synthetic resin U-shaped groove is lighter than the conventional concrete U-shaped groove, so it is easy to handle in terms of transportation and construction, while synthetic resin is made of concrete. In general, since the rigidity is low, particularly when a large earth pressure is applied from the outside of the side wall, there is a problem that the side wall is easily folded and deformed. Therefore, in order to solve this problem, a method of achieving improvement in rigidity against earth pressure from the outside of the side wall of the synthetic resin U-shaped groove by forming the side wall surface from the bottom wall surface of the U-shaped groove into a corrugated shape or similar uneven shape. Are known and used (Japanese Patent Laid-Open Nos. 61-83731 and 11-1956). It should be noted that in this type of U-shaped groove, designing the above uneven shape in the vicinity of the bottom of the U-shaped groove to prevent the rainwater or groundwater from flowing sufficiently, and the function as a flow path that is originally intended for use is sufficient. Can no longer be fulfilled. Therefore, a method of keeping the inner wall surface of the U-shaped groove flat and providing an uneven shape only on the outer wall surface (for example, Japanese Patent Laid-Open No. 8-151677, etc.) has been studied. This is not possible and this is not necessarily an advantageous measure.

しかしながら、U字溝の側壁外からの土圧に対する剛性を高めるためにU字溝の形状に単に凹凸条を与えるのみでは自ずと限界があり、またその壁厚を厚くするとしても製造コストが上昇する。加えてU字溝の、使用時に左右の側壁を内側に押し変形させる土圧は側壁に対して垂直の方向に働く場合の他、側壁に対して斜めの方向にも働く。さらに、U字溝に加わる土圧の程度は、U字溝全体についてみると不均等なものとなりやすく、ねじれ応力がU字溝に作用する結果になり易い。従ってU字溝は、種々の荷重方向からの圧力に
も耐える剛性を備えるように配慮する必要がある。そこで従来、U字溝の形状を工夫するほか、U字溝の一番弱い部分であるU字溝上部において、U字溝の両側壁を架け渡す補強材を幅方向に数カ所取り付けることにより、合成樹脂製U字溝の側壁への土圧に対して剛性を向上させる方法も知られている。例えば、上記特開平11−1956号公報においてはより強度を確保するため両側壁部上端に沿ってあてがい補強材を配し、リベットやボルト・ナットにより前記補強材に固定した金属製の複数の架け渡し材で架け渡した構造を開示している。また、特開2000−129768号公報は合成樹脂製のU字溝部材の対向する側壁の上端部に形成した受容部にその長手方向に形鋼からなる補強材を配設した上で、受容部間にボルト・ナットで固定した横架材により架け渡しするかまたはその両端部が逆U字形に折り曲げられて、U字溝の両側壁上端部に上方から跨ぐように成形された嵌め込み可能な嵌込部を有する横架材にて架け渡ししたU字溝部材を示す。後者の場合にはU字溝に固定する横架材の止め具を必要としないものである。
特開昭61−83731号公報 特開平11−1956号公報 特開平8−151677号公報 特開2000−129768号公報
However, in order to increase the rigidity against the earth pressure from outside the sidewall of the U-shaped groove, there is a limit to merely providing the shape of the U-shaped groove with an uneven groove, and the manufacturing cost increases even if the wall thickness is increased. . In addition, the earth pressure that pushes and deforms the left and right side walls inward during use of the U-shaped groove works not only in a direction perpendicular to the side walls but also in a direction oblique to the side walls. Further, the degree of earth pressure applied to the U-shaped groove is likely to be uneven when the entire U-shaped groove is viewed, and torsional stress tends to act on the U-shaped groove. Therefore, it is necessary to consider that the U-shaped groove has rigidity that can withstand pressure from various load directions. Therefore, in addition to devising the shape of the U-shaped groove, it has been synthesized by attaching several reinforcing materials across the side walls of the U-shaped groove at the upper part of the U-shaped groove, which is the weakest part of the U-shaped groove. A method for improving the rigidity against earth pressure on the side wall of the resin U-shaped groove is also known. For example, in the above-mentioned Japanese Patent Application Laid-Open No. 11-1956, a plurality of metal bridges that are provided with a reinforcing member arranged along the upper ends of both side wall portions and secured to the reinforcing member with rivets, bolts, and nuts in order to secure more strength. Disclosed is a structure spanned by a delivery material. Japanese Patent Laid-Open No. 2000-129768 discloses a receiving portion formed by arranging a reinforcing member made of a shape steel in the longitudinal direction in a receiving portion formed at the upper end portion of the opposite side wall of a synthetic resin U-shaped groove member. Fitted with a horizontal member fixed with bolts and nuts between them, or both ends are bent in an inverted U shape, and fitted into the upper end of both side walls of the U-shaped groove so as to straddle from above The U-shaped groove member bridged with the horizontal member which has a ridge part is shown. In the latter case, there is no need for a stopper for the horizontal member to be fixed to the U-shaped groove.
JP 61-83731 A JP-A-11-1956 Japanese Patent Laid-Open No. 8-151677 JP 2000-129768 A

上記従来技術において、U字溝上部にU字溝の両側壁を架け渡す補強材は、主に、断面略L字形のアングル型鋼材等の金属製で、U字溝の壁側部上部にネジや、ボルト・ナット等の止め具(固定具)を使用するものであるか、固定具を要しなくても架け渡し補強材の両端が複雑な形状をなすものである。しかしながら、U字溝に架け渡し材を架け渡すために、従来のようなネジや、ボルト・ナット等の固定具を使用することは、U字溝の敷設作業がとても煩雑な作業になる。また、架け渡し補強材の両端が複雑な形状をなすものでは、その形状を製造する際に、折り曲げ加工すべき箇所が多く、工程数を多く要し、製造コスト面で不利である。さらに、上記従来のU字溝は、架け渡し材の補強材受容部として、U字溝の長手方向に延びる補強用の金属製の補助部材を併用する必要があるもの(特開平11−1956号公報)であるか、または補強材としての金属を一体成形してU字溝の両側壁上部に直接埋込む形式のもの(特開2000−129768号公報)である。これは、金属製の補強材を長手方向と幅方向にはしご状に配置することが剛性の著しい向上を図る上で効果的であると考えられるためである。しかしながら、架け渡し材の配置のために、U字溝に補助部材を装着しなければならないことは、U字溝の敷設の作業性をより悪くする。また、一体成形にてU字溝に補強材を埋込む形式のものはU字溝の製造に当たって工程数が多くコスト高になる。また、金属は腐食するので、金属製の架け渡し材は腐食による強度の減少および外観の悪化が生じるおそれがある。また、L字形のアングル型鋼材は、鋭利な部分が突出した状態で取り付けられるため、作業者を負傷させたり、作業者の衣服が引掛かり破れるおそれもある。
従って、本発明の課題は、取り付けのために補助部材や固定具を必要とせずに簡単に取付けられ、しかも、簡単な形状で製造費も安価な架け渡し材を、横架、固定することによって、十分な強度と高い剛性を確保し得る、架け渡し材を備えた合成樹脂製のU字溝を提供することにある。また、金属製架け渡し材を使用した場合と比較してそれに劣らない強度が得られ、しかも腐食による悪影響がなくかつ、作業者が負傷しがちな鋭利な部分が突出した形状をもたない部材からなり、設置作業を安全にかつ容易迅速に行い得るU字溝を提供することにある。
In the above prior art, the reinforcing material that bridges both side walls of the U-shaped groove on the upper part of the U-shaped groove is mainly made of metal such as an angle-type steel material having a substantially L-shaped cross section, and is screwed on the upper side of the U-shaped groove. In addition, a stopper (fixing tool) such as a bolt or a nut is used, or both ends of the spanning reinforcing material have a complicated shape without requiring a fixing tool. However, the use of conventional fasteners such as screws and bolts and nuts to bridge the bridging material in the U-shaped groove makes the U-shaped groove laying work very complicated. Moreover, when both ends of the bridge reinforcing material have a complicated shape, there are many places to be bent when manufacturing the shape, which requires a large number of steps, which is disadvantageous in terms of manufacturing cost. Further, the conventional U-shaped groove requires a reinforcing metal auxiliary member extending in the longitudinal direction of the U-shaped groove as a reinforcing material receiving portion of the bridging material (Japanese Patent Laid-Open No. 11-1956). Japanese Patent Laid-Open No. 2000-129768), or a metal integrally formed as a reinforcing material and directly embedded in the upper part of both side walls of the U-shaped groove. This is because it is considered that arranging the metal reinforcing members in a ladder shape in the longitudinal direction and the width direction is effective in achieving a significant improvement in rigidity. However, the fact that the auxiliary member has to be mounted in the U-shaped groove for the arrangement of the bridging material makes the workability of laying the U-shaped groove worse. Further, the type in which the reinforcing material is embedded in the U-shaped groove by integral molding has a large number of processes and high cost in manufacturing the U-shaped groove. Further, since the metal corrodes, there is a possibility that the strength of the metal bridge material may be reduced and the appearance may be deteriorated due to the corrosion. Further, since the L-shaped angle-type steel material is attached in a state in which a sharp portion protrudes, there is a possibility that the worker may be injured or the worker's clothes may be caught and torn.
Therefore, an object of the present invention is to lay and fix a bridging material that can be easily mounted without requiring an auxiliary member or a fixture for mounting, and that is simple in shape and inexpensive to manufacture. Another object of the present invention is to provide a synthetic resin U-shaped groove provided with a bridging material that can ensure sufficient strength and high rigidity. In addition, it has a strength that is not inferior to that when using a metal bridging material, has no adverse effects due to corrosion, and does not have a shape that protrudes sharp parts that are prone to injury to workers. It is to provide a U-shaped groove that can be installed safely and easily.

本発明者は上記課題を解決するべく鋭意検討を行った。その結果、凹条部位と凸条部位を交互にU字溝の長手方向に連続形成することにより波形に成形されたU字溝本体と、該本体の左右の壁側部の間に横架された架け渡し材とを備えてなるU字溝であって、該本体
の左右の内壁側部の上部にそれぞれ架け渡し材受け部を形成し、そこに簡単な構造の架け渡し材を単に嵌め止めることによって容易に取り付けることができるU字溝が、従来の金属製の補強材を用いたU字溝に劣らない十分な強度と高い剛性をもち、かつ、作業性に優れていることを見出した。
すなわち、本発明は、
断面U字形状の壁を形成するU字溝本体であって、該本体の壁底部から左右の壁側部の上部へと延びる凹条部位および凸条部位を交互に、U字溝の長手方向に連続形成することにより、波形に成形されたU字溝本体と、該本体の左右の壁側部の間に横架、固定される架け渡し材と、前記左右の壁側部の上部においてそれぞれ形成された、該架け渡し材の端部を嵌め止めることができる架け渡し材受け部とを備えてなる、U字溝であって、
前記架け渡し材は、管材、筒材または両端部に差込み孔を形成する軸材からなり、一方、
前記架け渡し材受け部は、前記凹条部位に形成された、該架け渡し材の端部の内部に挿入し該端部によって嵌合される突部と、該突部の下側に形成された、嵌合された架け渡し材を下方より支持し固定する支持部よりなることを特徴とする、硬質合成樹脂または繊維強化樹脂からなるU字溝に関する。
The present inventor has intensively studied to solve the above problems. As a result, a U-shaped groove body formed in a corrugated shape by alternately forming a concave portion and a convex portion in the longitudinal direction of the U-shaped groove, and a horizontal wall between the left and right wall sides of the main body. A U-shaped groove provided with a bridging material, each of which forms a bridging material receiving portion at the upper part of the left and right inner wall sides of the main body, and simply fits the bridging material with a simple structure there It has been found that the U-shaped groove that can be easily attached has sufficient strength and high rigidity that is not inferior to the U-shaped groove using a conventional metal reinforcing material, and is excellent in workability. .
That is, the present invention
A U-shaped groove main body that forms a U-shaped wall in cross-section, wherein the concave stripes and the convex stripes extending from the bottom of the wall to the upper part of the left and right wall sides are alternately arranged in the longitudinal direction of the U-shaped groove. The U-shaped groove main body formed into a corrugated shape, the bridging material fixed horizontally between the left and right wall side portions of the main body, and the upper portions of the left and right wall side portions, respectively. A U-shaped groove comprising a formed bridging material receiving part capable of fitting the end of the bridging material formed;
The bridging material is a tube material, a cylindrical material or a shaft material that forms insertion holes at both ends,
The bridging material receiving portion is formed on the concave portion, and is formed on the lower side of the projecting portion inserted into the end portion of the bridging material and fitted by the end portion. Further, the present invention relates to a U-shaped groove made of a hard synthetic resin or a fiber reinforced resin, characterized by comprising a support portion that supports and fixes the fitted bridging material from below.

本発明のU字溝において、架け渡し材の横架、固定は、該U字溝本体の左右の壁側部の上部に設けられた架け渡し材受け部にそれぞれ架け渡し材の端部を嵌め止めることによって行うことができる構成となっている。従って、架け渡し材の取り付けはネジやボルト・ナット止め等の固定具を必要せず、極めて簡単な作業で迅速に行うことができ、U字溝の設置作業時間を短縮できる。また、固定具を必要としないことから製造コストも低減できる。しかも、本発明のU字溝では、架け渡し材受け部が、U字溝本体の構造の一部として成形と同時に得られるので、架け渡し材の取付けのために、U字溝本体に取付ける他の補助部材を必要としない。また、架け渡し材には、管材、筒材または両端部に差込み孔を形成する軸材という簡単な形状のものが使用できるため、複雑な形状の架け渡し材を製造する必要がない。従って、本発明は、U字溝本体と架け渡し材の二つの部材のみの簡単な構成でU字溝を提供でき、またこれらを製造する工程も煩雑にはならない。さらに本発明のU字溝は全ての部材が硬質合成樹脂または繊維強化樹脂からなるので、従来技術のように金属製の架け渡し材を使用した場合と比べ腐食による強度の減少や外観の悪化が生じることがなく、架け渡し材も軽量であり、作業者の負担が軽減される。その上、本発明のU字溝は、従来の金属製の架け渡し材を使用する場合に劣らずその左右の壁側部上部付近に加わる種々の方向からの土圧荷重に対して十分な剛性をもつ、変形し難いU字溝である。また、本発明のU字溝の部材は、鋭利な部分が突出しない構造であるので作業者を負傷させたり、作業者の衣服が引掛かり破れるおそれも減少する。   In the U-shaped groove of the present invention, the bridging material is horizontally mounted and fixed by fitting the end portions of the bridging material to the bridging material receiving portions provided at the upper portions of the left and right wall sides of the U-shaped groove main body. It has a configuration that can be performed by stopping. Therefore, the attachment of the bridging material does not require fixing tools such as screws, bolts and nuts, and can be quickly performed by an extremely simple operation, and the time for installing the U-shaped groove can be shortened. In addition, since no fixture is required, the manufacturing cost can be reduced. Moreover, in the U-shaped groove of the present invention, the bridging material receiving portion is obtained simultaneously with molding as a part of the structure of the U-shaped groove main body. No auxiliary member is required. Moreover, since the thing of a simple shape called the shaft material which forms an insertion hole in a pipe material, a cylindrical material, or both ends can be used for a bridging material, it is not necessary to manufacture the bridging material of a complicated shape. Therefore, the present invention can provide a U-shaped groove with a simple configuration of only two members, a U-shaped groove main body and a bridging material, and the process of manufacturing these is not complicated. Furthermore, since all the members of the U-shaped groove of the present invention are made of hard synthetic resin or fiber reinforced resin, the strength is reduced by the corrosion and the appearance is deteriorated as compared with the case of using a metal bridging material as in the prior art. It does not occur, and the bridging material is lightweight, reducing the burden on the operator. In addition, the U-shaped groove of the present invention is not inferior to the case of using a conventional metal bridging material, and has sufficient rigidity against earth pressure loads from various directions applied near the upper part of the left and right side walls. This is a U-shaped groove that is difficult to deform. In addition, since the U-shaped groove member of the present invention has a structure in which a sharp portion does not protrude, the risk of injury to the operator and the possibility of the operator's clothes being caught and torn is reduced.

本発明の硬質合成樹脂または繊維強化樹脂からなるU字溝本体は、壁底部から左右の壁側部の上部へと延びる凹条部位および凸条部位を交互に、U字溝の長手方向に連続形成することにより、波形に成形されて剛性をはかっている。そして、本発明のU字溝は、特にその側部における種々の荷重方向からの土圧に対し、剛性を高めるために架け渡し材をU字溝本体の左右の壁側部の間に横架・固定するが、架け渡し材の取付けをU字溝本体の左右の壁側部への嵌め止めによりなしうるようにするために、該左右の壁側部の上部において架け渡し材受け部を形成するべく成形されていることを特徴とするものである。従って、本発明のU字溝における架け渡し材の取り付けは、ネジやボルト・ナット止め等の固定具を全く必要としないので従来の取付け固定作業を省力化でき、取付け作業を極めて迅速容易に行うことができる。この架け渡し材受け部はU字溝本体の成形と同時に形成されるので、架け渡し材の配置のために、成形したU字溝本体の他に補助部材や固定具は必要とならない。   The U-shaped groove main body made of the hard synthetic resin or the fiber reinforced resin of the present invention is continuous in the longitudinal direction of the U-shaped groove alternately with the ridges and ridges extending from the wall bottom to the upper part of the left and right wall sides. By forming, it is formed into a corrugated shape and has rigidity. The U-shaped groove of the present invention is installed horizontally between the left and right wall side portions of the U-shaped groove main body in order to increase the rigidity particularly against earth pressure from various load directions at the side portion.・ In order to fix the bridge material so that it can be attached to the left and right wall sides of the U-shaped groove body, a bridge material receiving part is formed at the upper part of the left and right wall sides. It is characterized in that it is shaped to do this. Therefore, the mounting of the bridging material in the U-shaped groove of the present invention does not require any fixing tools such as screws, bolts and nuts, so the conventional mounting and fixing work can be saved, and the mounting work can be performed very quickly and easily. be able to. Since this bridging material receiving portion is formed simultaneously with the molding of the U-shaped groove main body, no auxiliary member or fixture is required in addition to the shaped U-shaped groove main body in order to arrange the bridging material.

本発明のU字溝は、架け渡し材としてU字溝と同様の硬質合成樹脂または繊維強化樹脂からなる管材、筒材または両端部に差込み孔を形成する軸材を使用し、これを嵌め止める側のU字溝本体の左右の壁側部の上部には、凹条部位に形成された、該架け渡し材の端部の内部に挿入し該端部によって嵌合される突部と、該突部の下側に、嵌合された架け渡し材を下方より支持し固定する支持部よりなる架け渡し材受け部が設けられるものである。本発明においては、架け渡し材の端部を突部に嵌合することにより、架け渡し材がU字溝本体の左右の壁側部間に横架され、同時に突部の下側の支持部により架け渡し材が下方より支持される。上記の架け渡し材受け部はU字溝の凹条部位に設けられるため、架け渡し材が、U字溝本体側の突部に嵌合されたとき、その左右両側面が隣り合う凸条部位と密接する構造に設計されていると、U字溝本体への架け渡し材の固定がより確実となる。管材、筒材または両端部に差込み孔を形成する軸材からなる架け渡し材は極めて簡単に取り付けることが可能である上に、それらがもつ材料力学的特性により十分に高い剛性をもつので、U字溝本体の左右の壁側部上部付近に加わる種々の方向からの土圧荷重に対して十分な剛性を与える。しかもかかる架け渡し材は極めて簡単な形状であるため製造に多くの工程を必要としない。
なお、前記波形に成形された本発明のU字溝本体は、その左右の壁側部の上部において凹条部位が内方に反った構造に成形されていれば、該壁側部上部においては外方から内方に絞り込まれた形状になるので、壁側部の上部の剛性をより一層高めることができる。さらに、本発明のU字溝本体は左右の壁側部に外方に突出するリブ部を設けることによって、より一層高い剛性が達成でき、また、このリブ部によって構成される壁側部から外側に突出した部分は、U字溝埋設の際に土砂が堆積しその荷重が負荷されるためU字溝をより安定して敷設でき、U字溝の浮き上がりを防止する。
The U-shaped groove of the present invention uses, as a bridging material, a tube material made of a hard synthetic resin or a fiber reinforced resin similar to the U-shaped groove, a cylindrical material, or a shaft material that forms insertion holes at both ends, and is fastened. On the upper part of the left and right wall side parts of the U-shaped groove body on the side, a protrusion formed in a concave portion and inserted into the end of the bridging member and fitted by the end, and A bridging material receiving portion including a support portion that supports and fixes the fitted bridging material from below is provided below the protrusion. In the present invention, by fitting the end portion of the bridging material to the protrusion, the bridging material is horizontally mounted between the left and right wall side portions of the U-shaped groove main body, and at the same time the lower support portion of the protrusion Thus, the bridge material is supported from below. Since the above bridging material receiving portion is provided in the concave portion of the U-shaped groove, when the bridging material is fitted into the protrusion on the U-shaped groove main body side, the right and left side surfaces are adjacent to the convex portion. When it is designed closely to the structure and, that Do more reliably fixed hung passing material to U-shaped groove body. The bridging material consisting of a tubular material, a cylindrical material, or a shaft material that forms insertion holes at both ends can be attached very easily, and has a sufficiently high rigidity due to the material mechanical properties of the material. Sufficient rigidity is given to earth pressure load from various directions applied to the vicinity of the upper part of the left and right wall side portions of the gutter body. Moreover, since such a bridging material has an extremely simple shape, it does not require many steps for manufacturing.
In addition, if the U-shaped groove body of the present invention formed into the corrugated shape is formed in a structure in which the concave portion is warped inward at the upper part of the left and right wall side parts, Since the shape is narrowed from the outside to the inside, the rigidity of the upper portion of the wall side portion can be further increased. Furthermore, the U-shaped groove main body of the present invention can achieve higher rigidity by providing rib portions projecting outwardly on the left and right wall side portions, and further, on the outside from the wall side portion constituted by the rib portions. The portion that protrudes into the U-shaped groove can be laid more stably because earth and sand are accumulated and the load is applied when the U-shaped groove is buried, and the U-shaped groove is prevented from rising.

図面を参照して本発明をさらに詳細に説明する。以下の実施例は本発明を限定することを目的とするものではない。   The present invention will be described in more detail with reference to the drawings. The following examples are not intended to limit the invention.

実施例
本実施例は、図1および図2に示すように、U字溝1において、架け渡し材として図4に示す管材7Cを使用した態様を示す。図1は本実施例のU字溝1の形状を説明する斜視図であり、図2は本実施例のU字溝1の平面図であり、図3は、図2に対応する側面図である。
U字溝1は、例えば幅180mm、240mm、300mm、400mm、500mm、600mm、700mm、800mm、900mm、1000mmの寸法規格を有する各種製品よりなり、いずれも直壁タイプである。図1ないし図3から明らかなように、ポリエチレン樹脂からなるU字溝本体2は、左右の壁側部4、4が各々、壁底部3から垂直に立ちあがった形状をなし、壁底部3から左右の壁側部4、4の上部へと延びるところの凹条部位5・・および凸条部位6・・を交互にU字溝1の長手方向に連続形成することにより、波形に成形されている。本実施例のように壁底部3から垂直に立ち上がった形状の他、U字溝本体2は上部に向けてやや外開きに立ち上がった形状をとってもよい。また本発明における断面のU字形状とは、流体通路を形成する凹部空間を形成するもの一般を含み、本来のU字形の他、断面コの字形、あるいは上面が開放された断面半円状のものを含むものとする。また、本実施例ではU字溝本体及び、その他の部材(架け渡し材など)の材質としてポリエチレン樹脂を使用したが、他に、ポリ塩化ビニル、ポリプロピレン、ポリエチレンテレフタレート、ポリアミド、ポリフェニレンスルフィド等が使用でき、また、不飽和ポリエステル等に、ガラス繊維、炭素繊維、有機繊維(ケブラー等)などを含有させた繊維強化樹脂(FRP、FRTP)等が利用できる。さらに、本発明のU字溝本体2はブロー成形、回転成形等により成形できる。本実施例のU字溝1の構造は、凸条部位6・・についてはそのまま左右の壁側部4、4の上端まで延び、その上端から外方に延び
て平坦な面8、8を形成する。これに対し、凹条部位5・・は、左右の壁側部4、4の上部において、そのまま上端まで延びるのではなく、内方に反った形状5a・・をとりながら左右の壁側部4、4の上端まで延び、上端から外方に延びて前記平坦な面8、8に繋がっている。この結果、U字溝本体2の両壁側部4、4の上部は全体として、外方から内方へ絞り込まれたような形状の構造をとる。この構造によって、左右の壁側部4、4の上部付近に加わる種々の荷重方向からの土圧に対しより一層の剛性を与えるものである。
Example In this example, as shown in FIGS. 1 and 2, in the U-shaped groove 1, a tubular material 7C shown in FIG. 4 is used as a bridging material. 1 is a perspective view for explaining the shape of the U-shaped groove 1 of the present embodiment, FIG. 2 is a plan view of the U-shaped groove 1 of the present embodiment, and FIG. 3 is a side view corresponding to FIG. is there.
The U-shaped groove 1 is made of various products having dimensional standards of, for example, widths 180 mm, 240 mm, 300 mm, 400 mm, 500 mm, 600 mm, 700 mm, 800 mm, 900 mm, and 1000 mm, and each is a straight wall type. As is apparent from FIGS. 1 to 3, the U-shaped groove body 2 made of polyethylene resin has a shape in which the left and right wall side portions 4, 4 are each vertically raised from the wall bottom portion 3. Are formed into a corrugated shape by alternately forming in the longitudinal direction of the U-shaped groove 1 the concave stripe portions 5... And the convex stripe portions 6. . In addition to the shape rising vertically from the wall bottom 3 as in the present embodiment, the U-shaped groove body 2 may take a shape rising slightly outward toward the top. In addition, the U-shape of the cross section in the present invention includes a general one that forms a recessed space that forms a fluid passage. In addition to the original U-shape, the U-shape of the cross-section or a semicircular cross-section with an open upper surface is used. Including things. In this embodiment, polyethylene resin is used as the material of the U-shaped groove body and other members (such as bridging materials), but polyvinyl chloride, polypropylene, polyethylene terephthalate, polyamide, polyphenylene sulfide, etc. are also used. Further, fiber reinforced resin (FRP, FRTP) or the like in which glass fiber, carbon fiber, organic fiber (Kevlar or the like) is contained in unsaturated polyester or the like can be used. Furthermore, the U-shaped groove body 2 of the present invention can be formed by blow molding, rotational molding, or the like. The structure of the U-shaped groove 1 according to the present embodiment extends to the upper ends of the left and right wall side portions 4 and 4 as they are with respect to the ridge portions 6... And extends outward from the upper ends to form flat surfaces 8 and 8. To do. On the other hand, the concave stripe portions 5... Do not extend to the upper ends as they are at the upper portions of the left and right wall side portions 4, 4, but take the shape 5 a. 4 extends to the upper end of 4, extends outward from the upper end and is connected to the flat surfaces 8, 8. As a result, the upper portions of the side wall portions 4 and 4 of the U-shaped groove body 2 as a whole have a structure that is narrowed from the outside to the inside. With this structure, further rigidity is given to earth pressure from various load directions applied near the upper portions of the left and right wall side portions 4 and 4.

図1、図5及び図6からも明らかなように、内方に反った形状5a・・の一部は、U字溝1の長手方向に対して一定の間隔で、架け渡し材である管材7Cが嵌合し得る突部11a・・を左右の壁側部4、4上部で対になるように形成し、かつ前記各突部11a・・の下側に嵌合された架け渡し材としての管材7Cを下方から支持するための支持部11b・・を形成している。すなわち管材7Cのための架け渡し材受け部11・・はこれら突部11a・・と支持部11b・・により構成されるものである。本実施例では、図4に示すようなU字溝本体2と同じ材質からなる中空の角形の管材7Cを使用するが、架け渡し材は他の形状の管材、筒材または両端部に差込み孔を形成する軸材等の形状であってよく、使用する架け渡し材の形状に合せて突部11a・・および支持部11b・・の形状が設計される。図1、図5及び図6に示すように、架け渡し材である図4の樹脂製の管材7Cは、その両端部をU字溝壁側部4、4の両側を押し開くようにして凹条部位5、5に形成された突部11a、11aに嵌合させて両壁側部の間に横架させ、その際、同時に支持部11b、11bより下方より支持固定される。さらに、本実施例では、図1及び図5に示すように、U字溝本体2において前記管材7Cは、突部11aに嵌合したとき、その左右両側面が隣り合う凸条部位6・・と密接する構造に設計されているので、U字溝本体2への管材7Cは三方から支持されることとなり固定はより確実となる。管材7Cを横架することによって、本発明のU字溝1はU字溝本体2の両壁側部4、4にかかる土圧に対し高い剛性を得ることができ、U字溝本体2の変形が防止できる。架け渡し材としてこの管材7Cは、単なる嵌め込み作業により取り付けられるので、ネジやボルト・ナットならびにリベット等の固定具を必要とせず、架け渡し作業をより迅速に進めることができる。なお、本実施例の場合にも図2に示すように、リベット10で鋲着することにより取付ける、他の架け渡し材7Bを併用することも可能である。また、図1ないし図3にも示すように本実施例においては、U字溝本体2の左右の壁側部4、4にリブ部15を設けており、さらにまた、壁底部3に浮上防止材30を取付けることもできる。   As is clear from FIGS. 1, 5, and 6, a part of the inwardly curved shape 5 a... Is a pipe material that is a bridging material at a constant interval with respect to the longitudinal direction of the U-shaped groove 1. As a bridging material formed with a pair of protrusions 11a that can fit 7C on the left and right wall side parts 4 and 4 and that is fitted below the protrusions 11a. The support portions 11b for supporting the tube material 7C from below are formed. That is, the bridging material receiving portion 11 for the pipe material 7C is constituted by the protrusion 11a and the support portion 11b. In this embodiment, a hollow rectangular tube material 7C made of the same material as that of the U-shaped groove body 2 as shown in FIG. 4 is used, but the bridge material is inserted into another shape of tube material, tubular material, or both ends. The shape of the projecting portion 11a,... And the support portion 11b,... Is designed in accordance with the shape of the bridging material to be used. As shown in FIGS. 1, 5 and 6, the resin tube 7 </ b> C of FIG. 4, which is a bridging material, is recessed so that both ends thereof are pushed open on both sides of the U-shaped groove wall side parts 4, 4. The protrusions 11a and 11a formed on the strip portions 5 and 5 are fitted to the side walls and horizontally placed, and at the same time, they are simultaneously supported and fixed from below the support portions 11b and 11b. Further, in this embodiment, as shown in FIGS. 1 and 5, when the tube material 7C is fitted to the protrusion 11a in the U-shaped groove body 2, the left and right side surfaces thereof are adjacent to the protruding ridge portions 6. Since the tube material 7C to the U-shaped groove main body 2 is supported from three sides, the fixing becomes more reliable. By laying the tube material 7C horizontally, the U-shaped groove 1 of the present invention can obtain high rigidity against the earth pressure applied to the both side portions 4, 4 of the U-shaped groove main body 2. Deformation can be prevented. Since this pipe member 7C is attached by a simple fitting operation as a bridging material, it does not require fixing tools such as screws, bolts and nuts, and rivets, and the bridging operation can be advanced more quickly. In the case of this embodiment as well, as shown in FIG. 2, it is possible to use another bridging material 7B attached by attaching with rivets 10 together. Further, as shown in FIGS. 1 to 3, in this embodiment, rib portions 15 are provided on the left and right wall side portions 4, 4 of the U-shaped groove body 2, and further, the wall bottom portion 3 is prevented from rising. The material 30 can also be attached.

本発明の実施例のU字溝を示す斜視図である。It is a perspective view which shows the U-shaped groove | channel of the Example of this invention. 本発明の実施例のU字溝を示す平面図である。It is a top view which shows the U-shaped groove | channel of the Example of this invention. 図2に示す本発明の実施例のU字溝の側面図である。It is a side view of the U-shaped groove | channel of the Example of this invention shown in FIG. 本発明の実施例のU字溝に使用された架け渡し材である管材の正面図(a)および側面図(b)である。It is the front view (a) and side view (b) of the pipe material which are the bridging materials used for the U-shaped groove of the Example of this invention. 図4に示す管材をU字溝本体の突部に嵌合してなるU字溝の部分平面図である。FIG. 5 is a partial plan view of a U-shaped groove formed by fitting the tubular material shown in FIG. 4 to a protrusion of the U-shaped groove main body. 図5のE−E線で切断した断面図である。It is sectional drawing cut | disconnected by the EE line | wire of FIG.

1 U字溝 2 U字溝本体 3 壁底部 4 壁側部 5 凹条部位
5a 内方に反った形状 6 凸条部位 7B 角アングル材
7C 管材 8 架け渡し材受け面 9 受け凹部 10 リベット
11a 突部 11b 支持部 15 リブ部 20 補強材
DESCRIPTION OF SYMBOLS 1 U-shaped groove 2 U-shaped groove main body 3 Wall bottom part 4 Wall side part 5 Convex part 5a Warped shape 6 Convex part 7B Square angle material 7C Pipe material 8 Crossing material receiving surface 9 Receiving recessed part 10 Rivet 11a Protrusion Part 11b Support part 15 Rib part 20 Reinforcing material

Claims (1)

断面U字形状の壁を形成するU字溝本体であって、該本体の壁底部から左右の壁側部の上部へと延びる凹条部位および凸条部位を交互に、U字溝の長手方向に連続形成することにより、波形に成形されたU字溝本体と、該本体の左右の壁側部の間に横架、固定される架け渡し材と、前記左右の壁側部の上部においてそれぞれ形成された、該架け渡し材の端部を嵌め止めることができる架け渡し材受け部とを備えてなる、U字溝であって、
前記架け渡し材は、管材、筒材または両端部に差込み孔を形成する軸材からなり、一方、
前記架け渡し材受け部は、前記凹条部位に形成された、該架け渡し材の端部の内部に挿入し該端部によって嵌合される突部と、該突部の下側に形成された、嵌合された架け渡し材を下方より支持し固定する支持部よりなることを特徴とする、硬質合成樹脂または繊維強化樹脂からなるU字溝。
A U-shaped groove main body that forms a U-shaped wall in cross-section, wherein the concave stripes and the convex stripes extending from the bottom of the wall to the upper part of the left and right wall sides are alternately arranged in the longitudinal direction of the U-shaped groove. The U-shaped groove main body formed into a corrugated shape, the bridging material fixed horizontally between the left and right wall side portions of the main body, and the upper portions of the left and right wall side portions, respectively. A U-shaped groove comprising a formed bridging material receiving part capable of fitting the end of the bridging material formed;
The bridging material is a tube material, a cylindrical material or a shaft material that forms insertion holes at both ends,
The bridged passing member receiving portion, said concave is formed at a portion, and the projection to be fitted by the end portion and inserted into the ends of the cross only pass material, it is formed on the lower side of the projecting portion A U-shaped groove made of hard synthetic resin or fiber reinforced resin, characterized by comprising a support portion for supporting and fixing the fitted bridging material from below .
JP2004211915A 2004-07-20 2004-07-20 U-shaped groove Expired - Fee Related JP4811630B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004211915A JP4811630B2 (en) 2004-07-20 2004-07-20 U-shaped groove

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004211915A JP4811630B2 (en) 2004-07-20 2004-07-20 U-shaped groove

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP2001100948A Division JP3605724B2 (en) 2001-03-30 2001-03-30 U-shaped groove

Publications (2)

Publication Number Publication Date
JP2004332536A JP2004332536A (en) 2004-11-25
JP4811630B2 true JP4811630B2 (en) 2011-11-09

Family

ID=33509419

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2004211915A Expired - Fee Related JP4811630B2 (en) 2004-07-20 2004-07-20 U-shaped groove

Country Status (1)

Country Link
JP (1) JP4811630B2 (en)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0434229Y2 (en) * 1988-09-21 1992-08-14
JP2536284Y2 (en) * 1991-04-23 1997-05-21 タキロン株式会社 U-shaped groove member made of synthetic resin
JP2533208Y2 (en) * 1991-08-30 1997-04-23 タキロン株式会社 U-shaped groove
JP3065562B2 (en) * 1997-06-12 2000-07-17 鳥居化成株式会社 U-shaped groove
JP3605724B2 (en) * 2001-03-30 2004-12-22 俊夫 鎌田 U-shaped groove

Also Published As

Publication number Publication date
JP2004332536A (en) 2004-11-25

Similar Documents

Publication Publication Date Title
KR101969127B1 (en) Corrugated metal plate and overhead structure incorporating same
CA2790109C (en) Structural part
JP4970133B2 (en) Flexible water stop structure
EP3282064B1 (en) A connector set for use in a flashing assembly for roof windows mounted side-by-side
KR102524469B1 (en) Clip for connecting deck
JP4811630B2 (en) U-shaped groove
JP4811631B2 (en) U-shaped groove
JP3605724B2 (en) U-shaped groove
JP3567325B2 (en) U-shaped groove
KR101736575B1 (en) Assembled Reinforced Cap for Head of Pile
JP3567326B2 (en) U-shaped groove
KR101249007B1 (en) Wire type safety fence
WO2007021078A1 (en) Replaceable drainage device of expansion joint
JP2019148156A (en) Drain ditch unit and construction method thereof
JP2020133184A (en) Installation method of rebar assembly for secondary tunnel lining
KR102428828B1 (en) Composite beam and construction method thereof
JP4654218B2 (en) Fixing bracket for origami roofing material
JP3511176B2 (en) U-shaped groove
JP3997276B2 (en) Protective fence
KR200393766Y1 (en) Snow guard device
JP4401160B2 (en) Refurbished roof and its renovation method
JP7086789B2 (en) Safety equipment with main rope support and how to install it
KR102060885B1 (en) Assembly type handrail
JP5735794B2 (en) Folded plate roof structure and reinforcement used therefor
JP6571120B2 (en) Building roof structure and drainage system

Legal Events

Date Code Title Description
A711 Notification of change in applicant

Free format text: JAPANESE INTERMEDIATE CODE: A711

Effective date: 20050513

A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20080311

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20110302

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20110415

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20110425

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20110803

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20110810

R150 Certificate of patent or registration of utility model

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140902

Year of fee payment: 3

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees