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Effects of dichromate treatment on mechanical properties of passivated single crystal iron (100) and (110) surfaces

机译:重铬酸盐处理对钝化单晶铁(100)和(110)表面机械性能的影响

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摘要

An in situ nanoindentation technique combined with an AFM was applied to evaluate the effects of dichromate treatment on the mechanical properties of the single crystal iron (100) and (1 1 0) surfaces passivated in pH 8.4 borate solution. The dichromate treatment was performed with natural immersion of the iron specimens in 5 x 10~(-2) M K_2Cr_2O_7 solution for 24 h prior to passivation at 0.25 V (SHE) for 1 h. The hardness, H and the works (elastic work, W_e, plastic work, W_p, and total work, W_t = W_e + W_p) made during nanoindentation were obtained from the measured load-depth curves. The values of H and W_e/W_t at the indentation depth larger than 30 nm for the passivated single crystal iron surfaces were increased by the dichromate treatment. The increases in H and W_e/W_t due to the dichromate treatment were attributed to the promotion of repassivation at the sites of passive film ruptured during nanoindentation process.
机译:应用原位纳米压痕技术结合AFM来评估重铬酸盐处理对在pH 8.4硼酸盐溶液中钝化的单晶铁(100)和(1 1 0)表面的机械性能的影响。重铬酸盐处理是将铁样品自然浸入5 x 10〜(-2)M K_2Cr_2O_7溶液中24 h,然后在0.25 V(SHE)钝化1 h。从纳米压痕过程中获得的硬度H和功(弹性功W_e,塑性功W_p和总功W_t = W_e + W_p)是从测得的载荷深度曲线获得的。通过重铬酸盐处理,钝化的单晶铁表面的压痕深度大于30nm时的H和W_e / W_t的值增加。由于重铬酸盐处理,H和W_e / W_t的增加归因于在纳米压痕过程中在钝化膜破裂部位促进了再钝化。

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