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首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Strain ratchetting of titanium upon reversible alloying with hydrogen
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Strain ratchetting of titanium upon reversible alloying with hydrogen

机译:与氢可逆合金化时的钛应变应变

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During cyclic hydrogen charging (e.g., in metal-hydride systems), internal stresses and strains can be developed due to lattice swelling and/or phase transformation (e.g., allotropic transformation or hydride precipitation). We examine macroscopic plastic deformation due to such internal stresses (strain ratchetting) in the Ti-H system, where gaseous hydrogen is alloyed with Ti, causing the Ti alpha-beta allotropic transformation, and subsequently removed, producing the beta-alpha transformation. Cyclic hydrogen charging is found to cause macroscopic plastic shrinkage strains in directions normal to the hydrogen concentration gradient. Furthermore, increasing the charging time leads to larger ratchetting strains. A simple adaptation of diffusion theory is used to describe the kinetics of strain evolution, and the contributions to total ratchetting from both the alpha-beta phase transformation and the lattice swelling strains are quantified. [References: 43]
机译:在循环充氢期间(例如,在金属氢化物系统中),由于晶格膨胀和/或相变(例如,同素异形转变或氢化物沉淀),会产生内部应力和应变。我们检查了由于Ti-H系统中的这种内部应力(应变不稳)而引起的宏观塑性变形,其中气态氢与Ti合金化,引起Tiα-β同素异形转变,随后被去除,产生β-α转变。发现环状氢带电会在垂直于氢浓度梯度的方向上引起宏观的塑性收缩应变。此外,增加充电时间会导致更大的棘轮应变。一个简单的扩散理论适应性描述了应变演化的动力学,并量化了α-β相变和晶格膨胀应变对总棘齿的贡献。 [参考:43]

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