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ON MECHANISM OF HYDROGEN INTERACTION WITH TITANIUM AT PRESSURES UP TO 150 Mpa

机译:高达150 Mpa压力下氢与钛相互作用的机理

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The investigation of hydrogen interaction with titanium has been carried out at temperatures 300, 373, 473 K and pressures up to 150 MPa as in conditions of all-side compression as when stretching stresses up to 0.9 of yield strength. As a result of carried out investigations at temperature 300 K and pressure up to 150 MPa, the hydrogen penetration into titanium was not found out even when stretching stresses up to 0.9 of yield strength were applied to a specimen. With increasing temperature up to 373 K hydrogen occlusion into titanium takes place, this effect sharply increases when in case of applying stretching stresses to a specimen. Sharp increase of hydrogen consumption by titanium takes place at temperature 473 K and higher, however in this conditions no stress influence can be found. This work says about mechanism of temperature and stresses influence on hydrogen penetration into titanium.
机译:氢与钛的相互作用的研究是在300、373、473 K的温度和最高150 MPa的压力下进行的,在全侧压缩条件下,当拉伸应力达到0.9屈服强度时。在300 K的温度和最高150 MPa的压力下进行研究的结果是,即使将高达0.9屈服强度的拉伸应力施加到样品上,也没有发现氢渗透到钛中。随着温度升高,直至373 K,钛中会发生氢吸收,当向样品施加拉伸应力时,该效应会急剧增加。钛在473 K或更高温度下的氢消耗急剧增加,但是在这种情况下,找不到应力影响。这项工作是关于温度和应力对氢渗入钛的影响的机理的。

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