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  1. 17 lut 2023 · This paper clarifies the causes of a corrosion process observed in austenitic stainless-steel pipes, grade 316L, used for conducting freshwater in a port area.

  2. 4 wrz 2021 · This article presents the results of the design, structural assessment, and hydrostatic pressure test of a 1000 m water depth-rated stainless steel CTD sensor enclosure.

  3. 1 sty 2021 · Recently, it is suggested that the 316L foil is a promising candidate for the diaphragm material in the pressure sensor of the PWR. For such application, the 316L foil must keep high strength, low anisotropy and good corrosion resistance at a thickness of tens of micrometers.

  4. The Solution: “Develop a guidance document for engineers and consultants to help them properly specify the type of stainless steel most appropriate for a given water system and/or water treatment chemical system application.” Pull the info together that explains how to pick the right steel and how to use it properly.

  5. 8 paź 2021 · The operator used abnormally high-pressure water to clean a stainless steel pipe with one end plugged, and caused the pipe to rupture. Typically, in Asian chemical sites, operators follow the rules and regulations quite strictly.

  6. 1 sty 2021 · From the failure analysis of the welded austenitic stainless-steel piping systems the following conclusions can be obtained: • The Spools studied in this paper showed clear marks inside the pipes showing that there was presence of stagnant water, the same used for the hydrostatic test. •

  7. 15 lut 2022 · The present paper describes investigations of three failure cases of stainless steel 316/316L pipes handling moist H 2 S gas in a heavy water plant. The failure investigation included chemical composition determination, metallographic examination using an optical microscope, and a scanning electron microscopy equipped with energy dispersive ...

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