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The role of hydrogen in hot-salt stress corrosion cracking of titanium-aluminum alloys

机译:氢在钛铝合金热盐应力腐蚀裂纹中的作用

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摘要

Additional support is presented for the previously proposed role of hydrogen as an embrittling agent in hot-salt stress corrosion cracking of titanium-aluminum alloys. The main source of hydrogen formed during the reactions of titanium alloys with hot salt was identified as water associated with the salt. Hydrogen is produced by the reaction of an intermediate (hydrogen halide) with the alloy rather than from metal-water reactions. The fracture mode of precracked tensile specimens was ductile when the specimens were tested in air, and brittle when tests were made in high-pressure hydrogen. Stressed titanium-aluminum alloys also were cracked by bombardment with hydrogen ions produced in a proton accelerator. The approximate concentrations of the hydrogen ions in the alloys were calculated.
机译:对于先前提出的氢作为脆化剂在钛铝合金的热盐应力腐蚀开裂中的作用,提出了额外的支持。钛合金与热盐反应期间形成的氢的主要来源被确定为与该盐相关的水。氢是通过中间体(卤化氢)与合金的反应而不是金属与水的反应产生的。当在空气中测试时,预裂纹拉伸样品的断裂模式是延性的,而在高压氢气中进行测试时,断裂模式是脆性的。质子促进剂中产生的氢离子轰击也使应力钛铝合金破裂。计算出合金中氢离子的近似浓度。

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    Ondrejcin, R. S.;

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  • 年度 1971
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