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Evaluation of Residual Stresses in the Bulk of Materials by High Energy Synchrotron Diffraction

机译:高能量同步衍射评价大量材料中的残余应力

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摘要

High energy synchrotron diffraction is introduced as a new method for residual stress analysis in the bulk of materials. It is shown that energy dispersive measurements are sufficiently precise so that strains as small 10~(-4) can be determined reliably. Due to the high intensity and the high parallelism of the high energy synchrotron radiation the sample gauge volume can be reduced to approximately 50 μm * 1 mm & 1 mm compared to gauge volume of one mm~3 up to several mm~3 achievable by neutron diffraction. The benefits of the high penetration depth and the small gauge volume are demonstrated by the results of stress studies performed on a fiber reinforced ceramic, a functional gradient material and a metal-ceramic compound. Furthermore, it is shown that in case of a cold extruded metal specimen the energy dispersive measurement technique yields simultaneous information about texture and residual stresses and thus allows a detailed investigation of elastic and plastic deformation gradients.
机译:引入高能同步衍射作为大部分材料中的残余应力分析的新方法。结果表明,能量分散测量足够精确,从而可以可靠地确定为小10〜(-4)的菌株。由于高能量同步辐射的高强度和高平行度,样品规格体积可以减小到大约50μm* 1mm&1mm,而不是由中子可实现的一个mm〜3的仪表容积,其达到1mm〜3。衍射。通过对纤维增强陶瓷,功能梯度材料和金属陶瓷化合物进行的应力研究的结果来证明高渗透深度和小规格体积的益处。此外,示出了在冷挤出金属样品的情况下,能量分散测量技术产生关于质地和残余应力的同时信息,从而允许详细研究弹性和塑性变形梯度。

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