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haracterization of the precipitation behavior and resulting mechanical properties of copper-alloyed ferritic steel

机译:铜铁素体钢的析出行为及其力学性能的表征

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From literature, it is well known that Cu precipitates in steels lead to an increase of hardness and quasi-static strength. However, the relation between Cu precipitates and cyclic mechanical properties has been investigated rather limited. Consequently, in the present work the evolution of Cu precipitates in a copper-alloyed low carbon, ferritic steel, aged at 550 ℃, 600 ℃ and 650 ℃ for various times, and their influence on the resulting static and cyclic material properties were analyzed. Three-dimensional atom probe tomography (3DAPT) provided evidence that the ageing treatment led to the formation of Cu precipitates with different sizes and distribution. The existence of copper precipitates resulted in an increase of the ultimate tensile strength and yield strength of the investigated ferritic steel. Moreover, cyclic indentation tests were performed to investigate the influence of the ageing treatment and, hence, Cu precipitates, on hardness and especially cyclic properties of the material. The present results show a maximum of hardness and cyclic hardening potential at sizes of the precipitates of around 2.2 nm. Additionally, synchrotron X-ray diffraction (SYXRD) measurements were in a first approach proved to be viable for investigating the crystallographic structure of Cu precipitates within ferritic steels. Considering the evolution of Cu precipitates, determined with synchrotron as well as atom probe, a high dependency of quasi-static and cyclic properties on Cu precipitates could be demonstrated.
机译:根据文献,众所周知,钢中的Cu析出导致硬度和准静态强度的增加。然而,已经相当有限地研究了Cu沉淀物与循环机械性能之间的关系。因此,在本工作中,Cu析出在550℃,600℃和650℃时效不同时间的铜合金低碳铁素体钢中的析出物,并分析了它们对所得静态和循环材料性能的影响。三维原子探针层析成像(3DAPT)提供了证据,表明时效处理导致形成了具有不同尺寸和分布的Cu沉淀物。铜沉淀物的存在导致所研究的铁素体钢的极限抗拉强度和屈服强度增加。此外,进行了循环压痕测试以研究时效处理的影响,从而研究Cu沉淀对材料硬度,尤其是循环性能的影响。目前的结果表明,在约2.2 nm的析出物尺寸下,硬度和循环硬化潜力最大。另外,在第一种方法中,同步加速器X射线衍射(SYXRD)测量被证明对于研究铁素体钢中Cu析出物的晶体学结构是可行的。考虑到用同步加速器和原子探针测定的铜沉淀物的演变,可以证明准静态和循环性质对铜沉淀物的高度依赖性。

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