首页> 美国政府科技报告 >2014 Accomplishments - Tritium Aging Studies on Stainless Steel: Fracture Toughness Properties of Forged Stainless Steels - Effect of Hydrogen, Forging Strain Rate, and Forging Temperature.
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2014 Accomplishments - Tritium Aging Studies on Stainless Steel: Fracture Toughness Properties of Forged Stainless Steels - Effect of Hydrogen, Forging Strain Rate, and Forging Temperature.

机译:2014年成就 - 不锈钢的氚老化研究:锻造不锈钢的断裂韧性 - 氢,锻造应变率和锻造温度的影响。

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Forged stainless steels are used as the materials of construction for tritium reservoirs. During service, tritium diffuses into the reservoir walls and radioactively decays to helium-3. Tritium and decay helium cause a higher propensity for cracking which could lead to a tritium leak or delayed failure of a tritium reservoir. The factors that affect the tendency for crack formation and propagation include: Environment; steel type and microstructure; and, vessel configuration (geometry, pressure, residual stress). Fracture toughness properties are needed for evaluating the long-term effects of tritium on their structural properties. Until now, these effects have been characterized by measuring the effects of tritium on the tensile and fracture toughness properties of specimens fabricated from experimental forgings in the form of forward-extruded cylinders. A key result of those studies is that the long-term cracking resistance of stainless steels in tritium service depends greatly on the interaction between decay helium and the steels’ forged microstructure.

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