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Precipitation Hardening With Copper Sulfide In Cu Bearing Extra Low Carbon Steel Sheet

机译:含铜超低碳钢板中硫化铜的沉淀硬化

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High strength cold-rolled bake hardenable steel sheets for automotive use have been developed. In the last decade, the major strengthening methods of extra low carbon (ELC) steel and interstitial free (IF) steel were the solid-solution strengthening with silicon, manganese and phosphorous and the precipitation strengthening with microalloying elements, such as niobium and titanium. When the steels are strengthened with the high amount of solid-solution elements such as silicon and manganese, it shows the low surface quality due to surface oxidation. In addition, phosphorous added ELC and IF steels become susceptible to the secondary work embrittlement because of the lack of grain boundary strength, which is the essential drawback of the steels.rnIn this paper, we propose the extra low carbon bake hardenable steel which is precipitation strengthened by means of the fine distribution of Copper sulfide (Cu_2S) precipitates instead of solid-solution strengthening and precipitation strengthening using silicon, manganese, niobium and titanium. These Cu sulfides are oriented to the body-centered cubic α-Fe matrix in (001)_(Cu_2S)//(001)_(α-Fe) and [001]_(Cu_2S)//[001]_(α-Fe) relationships.
机译:已经开发出用于汽车的高强度冷轧烘烤可硬化钢板。在过去的十年中,超低碳(ELC)钢和无间隙(IF)钢的主要强化方法是用硅,锰和磷进行固溶强化,以及用铌和钛等微合金元素进行析出强化。当用大量固溶元素(如硅和锰)增强钢时,由于表面氧化,其表面质量较低。另外,添加磷的ELC和IF钢由于缺乏晶界强度而易于二次加工脆化,这是该钢的本质缺陷。本文提出了一种超低碳烘烤硬化钢,它是析出相。通过精细分布的硫化铜(Cu_2S)沉淀来强化,而不是使用硅,锰,铌和钛进行固溶强化和沉淀强化。这些硫化铜以(001)_(Cu_2S)//(001)_(α-Fe)和[001] _(Cu_2S)// [001] _(α -Fe)关系。

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