Stress Corrosion Study Of Ph13 8mo Stainless Steel Using The Slow Strain Rate Technique PDF Download

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Stress Corrosion Study of Ph13-8mo Stainless Steel Using the Slow Strain Rate Technique

Stress Corrosion Study of Ph13-8mo Stainless Steel Using the Slow Strain Rate Technique
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 32
Release: 2018-07-12
Genre:
ISBN: 9781722805210

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The need for a fast and reliable method to study stress corrosion in metals has caused increased interest in the Slow Strain Rate Technique (SSRT) during the last few decades. PH13-8MoH950 and H1000 round tensile specimens were studied by this method. Percent reduction-in-area, time-to-failure, elongation at fracture, and fracture energy were used to express the loss in ductility, which has been used to indicate susceptibility to stress corrosion cracking (SCC). Results from a 3.5 percent salt solution (corrosive medium) were compared to those in air (inert medium). A tendency to early failure was found when testing in the vicinity of 1.0 x 10(-6) mm/mm/sec in the 3.5 percent salt solution. PH13-8Mo H1000 was found to be less likely to suffer SCC than PH13-8Mo H950. This program showed that the SSRT is promising for the SCC characterization of metals and results can be obtained in much shorter times (18 hr for PH steels) than those required using conventional techniques. Torres, Pablo D. Marshall Space Flight Center ...


Stress Corrosion Cracking

Stress Corrosion Cracking
Author: G. M. Ugiansky
Publisher: ASTM International
Total Pages: 462
Release: 1979
Genre: Science
ISBN: 9780803105799

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Slow Strain-Rate Testing in High Temperature Water

Slow Strain-Rate Testing in High Temperature Water
Author: TM. Devine
Publisher:
Total Pages: 17
Release: 1979
Genre: Alloy XM-19
ISBN:

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The apparatus and technique employed in slow strain-rate testing of stainless steels in high temperature high purity water are described and discussed. Typical results from work in progress on the influence of heat treatment and surface treatment on the intergranular stress corrosion cracking of Types 304 and 308 stainless steel and Alloy XM-19 are described. The correspondence between strain-rate tests varies from alloy to alloy. The minimum strain rate required to cause intergranular cracking varied significantly with the alloy and with the surface treatment. It is suggested that reduction of area and observation of the fracture mode provide better measures of environmental interactions than measures of tensile parameters obtained from the test records.