触变挤压 CuSn10P1 合金的偏析行为、微结构演变和力学性能

Hao Chen, Zheng Sun, Yang Tao, Zhiqiang Yang, Qingbiao Zhang, Han Xiao
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引用次数: 0

摘要

铜合金部件采用触变挤压工艺生产,然后在 500 °C 至 600 °C 的温度下退火 2 小时。固相中存在液岛,触变挤压铜合金的主相包括 α-Cu、Cu41Sn11 和 Cu3P 相。随着退火温度的升高,平均晶粒尺寸开始减小,随后增大。各向同性挤压铜合金在 550 ℃ 退火 2 小时后,偏析情况得到改善,平均晶粒尺寸变细。由于退火后形成的优先取向可以忽略不计,因此可以忽略纹理对机械性能的影响。在 550 ℃ 退火 2 小时后,触变挤压铜合金的拉伸强度和伸长率均得到改善,最高值分别为 449.8 MPa 和 19 pct。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Segregation Behavior, Microstructure Evolution and Mechanical Properties of Thixotropic Extruded CuSn10P1 Alloy

The copper alloy components are produced using the process of thixotropic extrusion and subsequently subjected to annealing at temperatures ranging from 500 °C to 600 °C for 2 hours. The liquids islands exist inside the solid phases, and the primary phases consist of α-Cu, Cu41Sn11, and Cu3P phases of thixotropic extruded copper alloy. The average grain size initially declines and subsequently increases as the annealing temperature rises. The segregation is improved, and the average grain size is fined of thixotropic extruded copper alloy by annealing at 550 °C for 2h. The impact of texture on mechanical properties can be ignored due to negligible preferred orientation is formed following annealing. The tensile strength and elongation of thixotropic extruded copper alloy are improved after annealing at 550 °C for 2h, resulting in the highest values of 449.8 MPa and 19 pct, respectively.

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