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Suppression Mechanism of Strain-age-hardening in Carbon Steel Associated with Hydrogen Uptake

机译:碳钢与氢吸收相关的应变时效硬化的抑制机理

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We investigated the suppression mechanism of strain-age-hardening in a ferritic carbon steel associated with hydrogen uptake. We considered hydrogen-related three factors suppressing the strain aging: 1) solution softening, for instance, arising from a reduction in Peierls potential of screw dislocations and a change in Young’s modulus, 2) suppression of dislocation-carbonitrogen interaction through hydrogen/carbon and nitrogen site competition, and 3) change in plastic strain evolution behavior by hydrogen-enhanced localized plasticity (HELP). According to the present experiments under in-situ hydrogen charging, it was concluded that the solution softening (factor1) and the site competition (factor2) by hydrogen did not significantly suppress the strain aging but the change in the pre-straining behavior (factor3) did.
机译:我们研究了与氢吸收有关的铁素体碳钢中应变时效硬化的抑制机理。我们考虑了与氢有关的三个因素来抑制应变时效:1)溶液软化,例如,由于螺钉位错的Peierls电位降低和杨氏模量的变化而引起; 2)通过氢/氢抑制位错-碳/氮相互作用碳和氮的位点竞争,以及3)通过氢增强的局部可塑性(HELP)改变塑性应变的演化行为。根据当前在原位氢充填下的实验,可以得出结论,氢的溶液软化(因子1)和位点竞争(因子2)并没有显着抑制应变时效,而是预应变行为的改变(因子3)做到了。

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