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ASME SA106M is one of the steel piping code standards established by the American Society of Mechanical Engineers (ASME).

2024-07-25
ASME SA106M is one of the steel piping code standards established by the American Society of Mechanical Engineers (ASME). This standard mainly stipulates in detail the manufacturing, inspection, acceptance and other aspects of seamless steel pipes to ensure that the quality and performance of seamless steel pipes meet specific industrial requirements, especially the oil and gas industry. It covers the requirements for pipe materials, dimensions, manufacturing processes, detection methods, etc. It requires steel pipes to have high lasting strength, high resistance to oxidation and corrosion, and good organizational stability.

The chemical composition of ASME SA106M mainly includes carbon (C), silicon (Si), manganese (Mn), phosphorus (P), sulfur (S) and other elements, but the specific content range will vary according to the specific grade and application requirements of the material. Adjustment.

Seamless steel pipes under the ASME SA106M standard are mainly produced by hot rolling or cold drawing (rolling).

Seamless steel pipes under the ASME SA106M standard have a series of notable features that make them widely applicable in industrial applications.

1. Has excellent long-lasting strength and anti-oxidation corrosion properties. This enables the steel pipe to maintain stable performance in high temperature and high pressure environments and is not prone to deformation or corrosion.

2. Has good tissue stability. The steel pipe can maintain the stability of its microstructure during use and is not prone to structural changes, thus ensuring the long-term reliability and stability of the steel pipe.

3. With high dimensional accuracy and surface quality. Ensure that the dimensional accuracy and surface quality of steel pipes meet standard requirements. It makes the installation and use of steel pipes more convenient and improves work efficiency.

ASME SA106M seamless steel pipe has a wide range of applications, mainly covering many important industrial fields such as petroleum, chemical industry, nuclear power, thermal power, and boiler manufacturing. It is often used to manufacture high-pressure and higher-parameter boiler pipe fittings, such as low-temperature section superheaters, reheaters, economizers, water-cooled walls and other key components. It is used in fields such as engineering, coal mines, pidges, grid structures, and mechanical equipment processing.