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Coupling microstructure outputs of process models to ultrasonic inspectability predictions

机译:将过程模型的微结构输出与超声可检查性预测耦合

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The efforts of the materials community can be characterized as the study of the relationship of processing, a structure, propertie and performance, as schematically illustrated in Figure 1. Added, in parentheses, are quantities of importance when these ideas are applied to ultrasonic NDE. It would be highly desirable if one could start from models of processes such as rolling, casting and extrusion; predict the microstructural features produced, such as grain size or shape, texture (preferred grain orientation), or the two-point correlation of elastic constants (to be discussed later); predict the resulting ultrasonic properties such as velocity v, attenuation #alpha# and backscattering coefficient #eta# ; and ultimately determine the inspectability of the part.
机译:材料界的努力可以表征为对工艺,结构,性能和性能之间的关系的研究,如图1所示。在括号中,当将这些思想应用于超声NDE时,其重要性是很重要的。如果能够从诸如轧制,铸造和挤压的过程模型开始,那将是非常可取的。预测产生的微观结构特征,例如晶粒尺寸或形状,质地(首选晶粒取向)或弹性常数的两点关联(将在后面讨论);预测最终的超声特性,例如速度v,衰减#alpha#和反向散射系数#eta#;并最终确定零件的可检查性。

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