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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Inverse surface integrity problem in ultrasonic impact-treated AISI 304 stainless steel components
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Inverse surface integrity problem in ultrasonic impact-treated AISI 304 stainless steel components

机译:超声波抗冲击处理AISI 304不锈钢组分的逆表面完整性问题

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摘要

The inverse problem for surface integrity is still not solved in practice during high-performance component manufacturing, i.e., it is not possible selecting an appropriate process as well as process parameters in advance according to the given surface integrity required for the high performance. The desired surface integrity is usually created by trial and error based on an iterative approach due to lack of quantitative correlations between the loads of a process and the surface integrity variations during manufacturing. The inverse surface integrity problem is studied for manufacturing AISI 304 stainless steel components by employing an ultrasonic impact treatment (UIT) to achieve an enhanced fatigue performance. The correlations are explored between the process loads of mechanical impact, corresponding material loading within the treated component and surface integrity change in the surface layer due to surface modification. Based on experimental and numerical studies, such correlations of UIT process are identified primarily as the quantitative correlation between external mechanical load and material loading of strain and stress, and that between material loading and changes in surface integrity parameters such as residual stress and microhardness due to surface modification. It is demonstrated that a knowledge-based solution of the inverse surface integrity problem is possibly achieved by establishing the correlations to derive process parameters from a given surface integrity for manufacturing of high-performance components.
机译:在高性能组件制造期间,在实践中仍未解决表面完整性的逆问题,即,根据高性能所需的给定表面完整性,不可能提前选择适当的过程以及工艺参数。由于在制造过程中的加载和表面完整性变化之间缺乏定量相关性而基于迭代方法,通常通过试验和误差来产生所需的表面完整性。通过采用超声波冲击处理(UIT)来实现增强疲劳性能的逆表面完整性问题,用于制造AISI 304不锈钢组分。在机械冲击的过程负荷之间探索相关性,由于表面改性,表面层内处理的部件内的相应材料负载和表面完整性。基于实验和数值研究,UIT过程的这种相关性主要是作为菌株和应力的外部机械负荷和材料负荷之间的定量相关性,以及材料负载与表面完整性参数的变化,如残余应力和微硬度表面改性。结果证明,通过建立与来自给定表面完整性的相关性参数来制造高性能组件来实现基于逆表面完整性问题的基于知识的逆曲面完整性问题。

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