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The use of ultrasonic flaw and noise models in designing titanium test blocks

机译:超声波和噪声模型在设计钛检验块时

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Recently, computer models of inspection processes are emerging as important simulation tools in many aspects of applications of nondestructive evaluation. This work reports one such application to the design of test samples for studying the detection of hardalpha inclusions in titanium alloys. The infrequent occurrence of natural hard-alpha defects has necessitated extensive use of synthetic-hard-alpha (SHA) test samples. However, in manufacturing these tituanium test samples, the traditional "trial and error" practice has proven to be costly and time-consuming. The current goal of designing a block simulating a titanium billet containing numerious SHA defects, with properties approximating those of natural hard-alpha defects, presents an even more complex challenge.
机译:最近,在非破坏性评估应用中的许多方面,检查过程的计算机模型是重要的仿真工具。这项工作报告了一种在测试样品设计中进行了一种这样的应用,用于研究钛合金中的Hardalpha夹杂物的检测。罕见的天然硬α缺陷发生的发生已经大量使用合成硬-α(SHA)测试样品。然而,在制造这些钛测试样品中,传统的“试验和错误”实践已被证明是昂贵和耗时的。设计模拟含有富裕SHA缺陷的钛坯料的块的目前的目的,具有近似天然硬α缺陷的性质,具有更复杂的挑战。

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