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Peculiarities of Structure Formation in Copper/Steel Bimetal Fabricated by Electron-Beam Additive Technology

机译:电子束添加技术制造铜/钢双金属结构结构形成的特性

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摘要

In the present paper, the microstructure of heterogeneous material bimetal compound fabricated by wire-feed electron-beam additive technology from CrNiTi stainless steel and C11000 copper has been investigated. The bimetallic compound is characterized by the well-defined interface between the two materials and possesses two-phase transition areas on both sides of the interface. The heterogeneity of strength properties (microhardness) in the transition zones is associated with a solid solution hardening of the bimetal basis components and formation of composite structures in the transition zone of the bimetal: spherical inclusions of steel in the copper part and copper inclusions in the steel section. In the copper part of the bimetal sample, a heterogeneous grain structure is formed - areas with macroscale non-equiaxed grain structure and zones with spherical grains were observed. The heterogeneity of grain structure does not have significant influence on the yield strength, but affects the macroscopic deformation pattern of the bimetal copper part, as has been revealed by microstructural analysis of slip traces and grain structure calculated using the Hall-Petch relationship.
机译:在本文中,研究了来自CRNITI不锈钢和C11000铜的丝反馈电子束添加剂技术制造的异质材料双金属化合物的微观结构。双金属化合物的特征在于两种材料之间的明确界面,并且在界面的两侧具有两相过渡区域。过渡区中强度性质(显微硬度)的异质性与双金属基成分的固体溶液硬化相关,并在双金属的过渡区中形成复合结构:铜部分中的钢的球形夹杂物和铜夹杂物钢结构。在双金属样品的铜部分中,形成异质晶粒结构 - 具有宏观的非等式晶粒结构和具有球形颗粒的区域。谷粒结构的异质性对屈服强度没有显着影响,而是影响双金属铜部件的宏观变形图案,如使用霍尔辅助关系计算的滑动迹线和晶粒结构的微观结构分析所揭示的。

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