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Anneal-Hardening Behavior of Cr-Fe-C Alloy Deposits Prepared in a Cr3+-Based Bath with Fe2+ Ions

机译:在含Fe2 +离子的Cr3 +基镀液中制备的Cr-Fe-C合金镀层的退火硬化行为

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摘要

Cr-Fe-C alloy deposits were successfully prepared on high-carbon tool steel in a Cr3+-based electroplating bath containing Fe2+ ions and suitable complex agents. A Cr-based alloy deposit was obtained with an electroplating current density higher than 25 Adm−2, and a Fe-based alloy deposit was obtained using a current density of 20 Adm−2. Following electroplating, these alloy deposited specimens were annealed via rapid thermal annealing (RTA) at 500 °C for different periods up to 30 s. The experimental results show that Cr- and Fe-based alloy deposits could be significantly hardened after RTA at 500 °C for a few seconds. The maximum hardness was that of the Cr-Fe-C alloy deposit annealed at 500 °C for 10 s. The maximum hardness of 1205 Hv was detected from the annealed Cr-based alloy deposit prepared with 30 ASD. The hardening mechanism of annealed Cr- and Fe-based alloy deposits is attributed to the precipitation of C-related membranes. The hardness values of the annealed Cr- and Fe-based alloy deposits increase with the increasing degree of crystallization of the C-related membranes.
机译:在含Fe 2 + 离子和合适的络合剂的Cr 3 + 基电镀浴中,成功地在高碳工具钢上制备了Cr-Fe-C合金镀层。获得了电镀电流密度高于25 Adm -2 的Cr基合金沉积物,使用20 Adm -2 的电流密度获得了Fe基合金沉积物。 sup>。电镀后,通过快速热退火(RTA)在500°C下对这些合金沉积的标本进行退火,退火时间长达30 s。实验结果表明,在500°C的温度下放置几秒钟后,Cr和Fe基合金沉积物可以显着硬化。最大硬度是在500°C下退火10 s的Cr-Fe-C合金镀层的硬度。从用30 ASD制备的退火Cr基合金沉积物中检测到最大硬度为1205 Hv。退火的Cr和Fe基合金沉积物的硬化机理归因于C相关膜的沉淀。 Cr和Fe基合金退火后的硬度值随C相关膜的结晶度增加而增加。

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