从兰姆波传播中确定复合材料的特性:概率、区间和模糊方法

Fariba Ansari, William Durrer, S. Nazarian, V. Kreinovich
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引用次数: 0

摘要

一种最有效的非破坏性技术,以发现隐藏的故障在一个板是使用超声波兰姆波。这些波被断层反射,通过这种反射,我们可以定位断层。为此,我们需要知道兰姆波是如何传播的。它们的传播是由动态弹性常数C'/ pq/决定的,所以我们必须求出这些常数。这些常数不能直接测量;相反,我们测量频率c(f)的速度依赖性,我们必须从c(f)的测量值重建c '/sub pq/。在本文中,我们展示了如何在存在概率、区间和模糊不确定性的情况下做到这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of properties of composite materials from the Lamb wave propagation: probabilistic, interval, and fuzzy approaches
One of the most efficient non-destructive techniques for finding hidden faults in a plate is the use of ultrasonic Lamb waves. These waves are reflected by faults, and from this reflection, we can locate the faults. For that, we need to know how the Lamb waves propagate. Their propagation is determined by the dynamic elastic constants C'/sub pq/, so we must find these constants. These constants cannot be measured directly; instead, we measure the dependence of the speed of frequency c(f), and we must reconstruct C'/sub pq/ from the measured values of c(f). In this paper, we show how this can be done in the presence of probabilistic, interval, and fuzzy uncertainty.
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