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On the correlation between microstructural evolution and ultrasonic properties: a review

机译:微观结构演变与超声性能之间的相关性:综述

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摘要

The characterization and optimization of the microstructures of materials pertaining to material properties is a primitive necessity to ensure the performance and service life of the materials and components. In the demand of new characterization and evaluation techniques, nondestructive ultrasonic techniques have shown a good potential to characterize the microstructures and mechanical properties of a wide variety of materials. Measurements of ultrasonic parameters such as velocity and attenuation can provide information on the structural and microstructural variations of those materials that have undergone the heat-treatment procedure. In the current review, the correlation of ultrasonic parameters with microstructural features of ferrous and nonferrous metals such as steels, aluminum, and superalloys is investigated. It is proven that ultrasonic parameters are closely correlated to the microstructural evolutions which frequently occur during the heat-treatment procedures in practical situations. To conclude, the ultrasonic measurements contribute to a feasible and accurate characterization of the materials and evaluation of their microstructures and mechanical properties in a straightforward, reliable, and fast, nondestructive manner for practical applications.
机译:表征和优化与材料特性相关的材料的微观结构是确保材料和组件的性能及使用寿命的原始必要条件。在需要新的表征和评估技术的情况下,无损超声技术已显示出表征多种材料的微观结构和机械性能的良好潜力。超声参数(例如速度和衰减)的测量可以提供有关经过热处理程序的那些材料的结构和微观结构变化的信息。在当前的审查中,研究了超声参数与铁和有色金属(如钢,铝和高温合金)的显微组织特征的相关性。事实证明,超声参数与在实际情况下在热处理过程中经常发生的微观结构演变密切相关。总而言之,超声测量有助于对材料进行可行,准确的表征,并以简单,可靠,快速,无损的方式评估其微观结构和机械性能,以用于实际应用。

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