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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Effect of low-temperature quasihydroextrusion on the structure and physical properties of CuCrZr alloy
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Effect of low-temperature quasihydroextrusion on the structure and physical properties of CuCrZr alloy

机译:低温准水挤压对CuCrZr合金组织和物理性能的影响

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The work is devoted to the study of changes in the structural and physical properties of the precipitation-hardened CuCrZr alloy under the influence of low-temperature (77 K) quasihydroextrusion with various degrees of deformation at liquid nitrogen temperature with subsequent aging. Prior to quasihydroextrusion, commercial alloy samples were annealed and quenched from the premelting temperature to obtain a supersaturated solid solution of alloying elements in the copper matrix. After quasihydroextrusion, the microstructure, lattice constant, pole densities, tensile strength and yield strength, microhardness (in different cross-sections of the extrudate), and electrical conductivity of the CuCrZr alloy were studied depending on the degree of deformation by quasihydroextrusion. It is shown that the deformation degree determines the kinetics of decomposition of the supersaturated solid solution and its structure. As a result of extrusion, an anisotropic structure of the matrix and precipitates is formed, which also determines the anisotropy of material properties. Subsequent aging leads to a significant decrease in the anisotropy of properties. With an increase in the deformation degree during extrusion (before aging), a significant monotonous increase in physical and mechanical properties occurs. However, in the range of deformation degrees of 40-50%, an anomalous "jump " of all measured properties and structural parameters is observed. The study proposes a physical mechanism that explains the experimental results. The mechanism is based on the occurrence of two kinetically differently directed processes: dynamic aging and its inhibition due to an increase in the defectiveness of the material. The latter process manifests itself essentially at low temperatures. In general, low-temperature quasihydroextrusion makes it possible to obtain a complex of sufficiently high mechanical and electrical characteristics of the CuCrZr alloy at relatively low degrees of deformation for one extrusion cycle, which is facilitated by low deformation temperature.
机译:工作是致力于研究的变化的结构和物理性质precipitation-hardened CuCrZr合金下低温(77 K)的影响quasihydroextrusion各种程度的在液氮温度下变形随后的老化。商业是退火,合金样品从预熔温度淬火获得的过饱和固溶体铜合金元素的矩阵。quasihydroextrusion,微观结构,晶格常数,极密度、抗拉强度和屈服强度、显微硬度(不同横截面上的挤出物),和电子CuCrZr合金的电导率进行了研究根据变形的程度quasihydroextrusion。变形程度决定了动力学分解的过饱和固体解决方案及其结构。挤压,一个各向异性的结构矩阵和沉淀形成,这也决定了材料的各向异性性质。老化导致显著降低各向异性的特性。在挤压变形程度(之前老化),一个明显的单调增加物理和机械性能。然而,在变形度的范围40 - 50%,异常“跳”的测量属性和结构参数是观察。这项研究提出了一种物理机制解释了实验结果。是基于两个活动的发生不同的定向过程:动态老化和由于增加的抑制有缺陷的材料。本质上体现在低温下。一般来说,低温quasihydroextrusion可以获得复杂的机械和电气足够高相对CuCrZr合金的特征低程度的挤压变形促进的循环,低变形温度。

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