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Study of the tensile behavior of AISI type 316 stainless steel using acoustic emission and infrared thermography techniques

机译:利用声发射和红外热成像技术研究AISI 316不锈钢的拉伸性能

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Acoustic emission (AE) and infrared thermography technique (IRT) have been used to study the tensile behavior of AISI type 316 stainless steel. Strain rates of tensile testing were varied from 1.4×10?3s?1to 1.4×10?2s?1. AE root mean square voltage increases with increase in strain rate due to the increase in source activation. Dominant frequency of the AE signals generated during different regions of tensile deformation has also been used to compare the results for different strain rates. The dominant frequency increases from elastic region to around 590kHz during work hardening and 710kHz around ultimate tensile strength (UTS) for all the strain rates. Temperature changes during different regions of deformation are monitored using infrared thermography. The temperature rise in the work hardening region is found to approximately increase linearly with time and from the slopes of the linear regression analyses the rate of temperature rise in the work-hardening region is obtained which is found to be very sensitive to strain rates. From the experimental results an empirical equation that relates the rate of temperature increase with strain rate and thermal hardening coefficient is obtained. The correlation between the variation of AE dominant frequency and temperature rise during different deformation regions provided better insight into the tensile behavior of AISI type 316 SS for different strain rates.
机译:声发射(AE)和红外热成像技术(IRT)已用于研究AISI 316不锈钢的拉伸性能。拉伸试验的应变率从1.4×10 2 3s 1到1.4×10 3 2s 1。由于源激活的增加,AE均方根电压随应变率的增加而增加。在拉伸变形的不同区域中产生的AE信号的主导频率也已用于比较不同应变率的结果。对于所有应变速率,在工作硬化过程中,主频率从弹性区域增加到大约590kHz,在极限拉伸强度(UTS)附近增加到710kHz。使用红外热像仪监测不同变形区域的温度变化。发现加工硬化区域中的温度升高随时间近似线性增加,并且从线性回归分析的斜率获得了加工硬化区域中的温度升高速率,发现该速率对应变速率非常敏感。从实验结果中获得了一个将温度升高速率与应变速率和热硬化系数相关联的经验方程。 AE主导频率的变化与不同变形区域中温度升高之间的相关性提供了对不同应变速率下AISI 316 SS型拉伸性能的更好了解。

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