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ASSEMBLY-TYPE REACTION FORCE BODY, SLOPE STABILIZATION STRUCTURE, AND SLOPE STABILIZATION METHOD
To provide an assembly-type reaction force body, a slope stabilization structure, and a slope stabilization method that are lightweight, easy to carry, and extremely easy to install and position a bearing plate.SOLUTION: A slope stabilization method comprises a step S3 of inserting the reinforcing material into the ground with a part of the rod-shaped reinforcing material remaining above the ground, a fixing step S4 in which a fixing member is installed on a part of the reinforcing material to form a reinforcing material assembly, and the reinforcing material assembly is fixed to the ground, and a step S5 of installing a bearing plate in the reinforcing material assembly and forming an assembly type reaction force body. The fixing step S4 includes a step S4d of installing a connecting socket in the reinforcing material assembly. In the bearing plate installation step S5, by installing a hollow hole having a shape corresponding to the connecting socket in the bearing plate and inserting the connecting socket into the hollow hole, the bearing plate is installed and positioned on the reinforcing material assembly at the same time.SELECTED DRAWING: Figure 3
【課題】軽量で運搬しやすく、支圧板の据付・位置決めが極めて容易な組立式反力体、斜面安定化構造体、及び斜面安定化工法を提供する。【解決手段】斜面安定化工法は、棒状の補強材の一部が地盤より上側に残る状態で、該補強材を地盤に挿入する工程S3と、補強材の一部に定着部材を設置して補強材アセンブリを構成し、該補強材アセンブリを地盤に定着させる定着工程S4と、補強材アセンブリに支圧板を設置し、組立式反力体を形成する工程S5と、を含む。定着工程S4では、補強材アセンブリに連結ソケットを設置する工程S4dを含む。支圧板設置工程S5では連結ソケットに対応した形状を有した中空孔を支圧板に設置し、かつ、連結ソケットを中空孔に挿入することで、補強材アセンブリ上に支圧板の設置と位置決めとを同時に行うことを特徴とする。【選択図】図3
ASSEMBLY-TYPE REACTION FORCE BODY, SLOPE STABILIZATION STRUCTURE, AND SLOPE STABILIZATION METHOD
To provide an assembly-type reaction force body, a slope stabilization structure, and a slope stabilization method that are lightweight, easy to carry, and extremely easy to install and position a bearing plate.SOLUTION: A slope stabilization method comprises a step S3 of inserting the reinforcing material into the ground with a part of the rod-shaped reinforcing material remaining above the ground, a fixing step S4 in which a fixing member is installed on a part of the reinforcing material to form a reinforcing material assembly, and the reinforcing material assembly is fixed to the ground, and a step S5 of installing a bearing plate in the reinforcing material assembly and forming an assembly type reaction force body. The fixing step S4 includes a step S4d of installing a connecting socket in the reinforcing material assembly. In the bearing plate installation step S5, by installing a hollow hole having a shape corresponding to the connecting socket in the bearing plate and inserting the connecting socket into the hollow hole, the bearing plate is installed and positioned on the reinforcing material assembly at the same time.SELECTED DRAWING: Figure 3
【課題】軽量で運搬しやすく、支圧板の据付・位置決めが極めて容易な組立式反力体、斜面安定化構造体、及び斜面安定化工法を提供する。【解決手段】斜面安定化工法は、棒状の補強材の一部が地盤より上側に残る状態で、該補強材を地盤に挿入する工程S3と、補強材の一部に定着部材を設置して補強材アセンブリを構成し、該補強材アセンブリを地盤に定着させる定着工程S4と、補強材アセンブリに支圧板を設置し、組立式反力体を形成する工程S5と、を含む。定着工程S4では、補強材アセンブリに連結ソケットを設置する工程S4dを含む。支圧板設置工程S5では連結ソケットに対応した形状を有した中空孔を支圧板に設置し、かつ、連結ソケットを中空孔に挿入することで、補強材アセンブリ上に支圧板の設置と位置決めとを同時に行うことを特徴とする。【選択図】図3
ASSEMBLY-TYPE REACTION FORCE BODY, SLOPE STABILIZATION STRUCTURE, AND SLOPE STABILIZATION METHOD
組立式反力体、斜面安定化構造体、及び斜面安定化工法
MURAYAMA MASAYUKI (Autor:in) / KAKI HIDEJI (Autor:in)
30.04.2021
Patent
Elektronische Ressource
Japanisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
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