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冷轧Cu30Zn黄铜微观结构变形机制的声学评估

Acoustic Assessment of Microstructural Deformation Mechanisms on a Cold Rolled Cu30Zn Brass.

作者信息

Sosa María, Carvajal Linton, Salinas Barrera Vicente, Lund Fernando, Aguilar Claudio, Castro Cerda Felipe

机构信息

Departamento de Ingeniería Metalúrgica, Universidad de Santiago de Chile, Av. Ecuador 3735, Santiago 9170022, Chile.

Grupo de Investigación Aplicada en Robótica e Industria 4.0, Instituto de Ciencias Aplicadas, Facultad de Ingeniería, Universidad Autónoma de Chile, Av. Pedro de Valdivia 641, Santiago 7500912, Chile.

出版信息

Materials (Basel). 2024 Jul 4;17(13):3321. doi: 10.3390/ma17133321.

Abstract

The relationship between acoustic parameters and the microstructure of a Cu30Zn brass plate subjected to plastic deformation was evaluated. The plate, previously annealed at 550 °C for 30 min, was cold rolled to reductions ranging from 10% to 70%. Linear ultrasonic measurements were performed on each of the nine specimens, corresponding to the nine different reductions, using the pulse-echo method to record the times of flight of longitudinal waves along the thickness axis. Subsequently, acoustic measurements were conducted to determine the nonlinear parameter β through second harmonic generation. Microstructural analysis, carried out by X-ray diffraction, Vickers hardness testing, and optical microscopy, revealed an increase in deformation twins, reaching a maximum at 40% thickness reduction. At higher deformations, the microstructure showed the generation and proliferation of shear bands, coinciding with a decrease in the twinning structure and an increase in dislocation density. The longitudinal wave velocity exhibited a 0.9% decrease at 20% deformation, attributed to dislocations and initial twin formation, followed by a continuous increase up to 2% beyond this point, resulting from the combined effects of twinning and shear banding. The nonlinear parameter β displayed a notable maximum, approximately one order of magnitude greater than its original value, at 40% deformation. This peak correlates with a roughly tenfold increase in twinning fault probability at the same deformation level.

摘要

评估了声学参数与经过塑性变形的Cu30Zn黄铜板微观结构之间的关系。该板材先前在550°C下退火30分钟,然后冷轧至10%至70%的不同压下率。使用脉冲回波法沿厚度方向记录纵波的飞行时间,对九个试样(对应九种不同的压下率)分别进行了线性超声测量。随后,通过二次谐波产生进行声学测量以确定非线性参数β。通过X射线衍射、维氏硬度测试和光学显微镜进行的微观结构分析表明,形变孪晶增加,在压下率为40%时达到最大值。在更高的变形程度下,微观结构显示出剪切带的产生和增殖,同时孪晶结构减少,位错密度增加。纵波速度在20%变形时下降了0.9%,这归因于位错和初始孪晶的形成,在此之后持续增加,直至超过该点2%,这是孪晶和剪切带共同作用的结果。非线性参数β在40%变形时显示出一个显著的最大值,比其原始值大约高一个数量级。这个峰值与在相同变形水平下孪晶错配概率大约增加十倍相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcf0/11243704/dbe6eb005d06/materials-17-03321-g001.jpg

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