Patent classifications
F16L58/04
Pipe-conforming structure
The present techniques are directed to systems and methods for forming a pipe-conforming structure. The pipe-conforming structure includes a polymer material and one or more optic fibers embedded within the polymer material. The polymer material is formed into a structure that is conformed to the shape of a pipe. A method includes forming a polymer material into a structure including an edge region and a center region. The center region has a greater thickness than the edge region. The method includes inserting one or more optic fibers into the polymer material.
Pipe-conforming structure
The present techniques are directed to systems and methods for forming a pipe-conforming structure. The pipe-conforming structure includes a polymer material and one or more optic fibers embedded within the polymer material. The polymer material is formed into a structure that is conformed to the shape of a pipe. A method includes forming a polymer material into a structure including an edge region and a center region. The center region has a greater thickness than the edge region. The method includes inserting one or more optic fibers into the polymer material.
PROCESS FOR PREPARING PIPE SECTIONS OF PIPELINE FOR MECHANICAL PRESS FIT PIPE JOINTS
Processes and systems for preparing sections of pipeline pipe for machine processing to form pin and box ends for assembly into pipelines using mechanical press-fit pipe joints. The prepared pipe sections are prepared to be fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration, operation and management, and troubleshooting of pipelines.
PROCESS FOR PREPARING PIPE SECTIONS OF PIPELINE FOR MECHANICAL PRESS FIT PIPE JOINTS
Processes and systems for preparing sections of pipeline pipe for machine processing to form pin and box ends for assembly into pipelines using mechanical press-fit pipe joints. The prepared pipe sections are prepared to be fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration, operation and management, and troubleshooting of pipelines.
PROCESS FOR FORMING AND ASSEMBLING PIPE SECTIONS USING MECHANICAL PRESS FIT PIPE JOINTS IN A PIPELINE
Processes and systems for preparing pipe for machine processing to form pin and box ends for assembly into pipelines or to assemble pipe sections in pipelines using mechanical press-fit pipe joints in which hydraulic pressure and linear displacement parameters, respectively P and L, are fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration, operation and management, and troubleshooting of pipelines.
PROCESS FOR FORMING AND ASSEMBLING PIPE SECTIONS USING MECHANICAL PRESS FIT PIPE JOINTS IN A PIPELINE
Processes and systems for preparing pipe for machine processing to form pin and box ends for assembly into pipelines or to assemble pipe sections in pipelines using mechanical press-fit pipe joints in which hydraulic pressure and linear displacement parameters, respectively P and L, are fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration, operation and management, and troubleshooting of pipelines.
PROCESSES FOR PREPARING, FORMING AND ASSEMBLING PIPE SECTIONS IN A PIPELINE USING MECHANICAL PRESS FIT PIPE JOINTS
A process for assembling a pipeline from pipe sections connected together using mechanical press-fit joints using mechanical press-fit pipe joints that are fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration operation and management, and troubleshooting of pipelines.
PROCESSES FOR PREPARING, FORMING AND ASSEMBLING PIPE SECTIONS IN A PIPELINE USING MECHANICAL PRESS FIT PIPE JOINTS
A process for assembling a pipeline from pipe sections connected together using mechanical press-fit joints using mechanical press-fit pipe joints that are fully measured and documented during both manufacturing and assembly. Installed pipelines include pipeline data monitoring systems coupled to a pipeline data management center for receiving, archiving, and analysis of the data records to aid in administration operation and management, and troubleshooting of pipelines.
ELECTRIC WIRE PROTECTION MEMBER AND WIRE HARNESS
An electric wire protection member capable of suppressing the occurrence of breakage and swelling of a resin coating and separation of the resin coating from a metal pipe for a long period of time, and a wire harness including the electric wire protection member. The electric wire protection member includes a metal pipe into which an electric wire is to be inserted, and a resin coating that covers an outer surface of the metal pipe. The resin coating has at least one of a glass transition point of 40 C. or higher and a water vapor permeability coefficient of 260 g.Math.mm/m.sup.2.Math.24 hr or less, and has a thickness of 30 m or more.
ELECTRIC WIRE PROTECTION MEMBER AND WIRE HARNESS
An electric wire protection member capable of suppressing the occurrence of breakage and swelling of a resin coating and separation of the resin coating from a metal pipe for a long period of time, and a wire harness including the electric wire protection member. The electric wire protection member includes a metal pipe into which an electric wire is to be inserted, and a resin coating that covers an outer surface of the metal pipe. The resin coating has at least one of a glass transition point of 40 C. or higher and a water vapor permeability coefficient of 260 g.Math.mm/m.sup.2.Math.24 hr or less, and has a thickness of 30 m or more.