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New developments in non-destructive controls of the composite materials and applications in manufacturing engineering

机译:复合材料无损控制的新发展及其在制造工程中的应用

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摘要

Non-destructive controls particularly, X-rays computed tomography (XR-CT) is a useful tool in manufacturing engineering applications in the modern industry to study the texture deformation of mechanical parts with an efficient way. In manufacturing processes, the relationships between the mechanical properties of the materials and their structure and also their composition are crucial for the design of the mechanical parts because they basically influence the general behaviour of these parts in service conditions. Therefore, the great interest of XR-CT is the possibility of viewing with high resolution a transversal plane of an object without destroying the controlled parts. Moreover, X-ray tomography supplants the ultra sound by its spatial resolution and by its attenuation measure which are well adapted for the study of the material. This paper gives a comparative study on the new developments in non-destructive controls of the composite materials and applications in the manufacturing engineering and also reviews essentially the performance and advantages of X-rays computed tomography (XR-CT) medical scanner about its usage at multiple scales (macro, micro, meso and nano), the method and also the terminology. Subsequently, it will deal with the chosen materials to share the performances of this technique for the very different industrial applications.
机译:无损控制尤其是X射线计算机断层扫描(XR-CT)是现代工业中制造工程应用中用于以有效方式研究机械零件的纹理变形的有用工具。在制造过程中,材料的机械性能与其结构及其组成之间的关系对于机械零件的设计至关重要,因为它们基本上会影响这些零件在使用条件下的总体性能。因此,XR-CT的极大兴趣在于可以在不破坏受控部件的情况下以高分辨率查看对象的横向平面。此外,X射线断层扫描通过其空间分辨率和衰减量度来替代超声波,这非常适合材料的研究。本文对复合材料的无损控制的新发展进行了比较研究,并在制造工程中进行了应用,并从本质上回顾了X射线计算机断层摄影(XR-CT)医用扫描仪的性能和优势,探讨了其在临床上的用途。多尺度(宏观,微观,中观和纳米),方法以及术语。随后,它将处理选定的材料,以针对非常不同的工业应用共享该技术的性能。

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