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Engineering Science at the I12 Beamline at Diamond Light Source

机译:钻石光源I12梁线上的工程科学

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摘要

Synchrotron-based engineering science covers a large field of applications. However, they are all connected in two ways. First, the very synchrotron techniques employed to study the various applications all work in the same way in that they determine structural parameters on the atomic and microscopic scale. Secondly, the portfolio of applications discussed here describes the complete life cycle of an engineering material, starting with processing of the base material-often from the melt-then the characterization of material properties, followed by the forming and joining into components, then component characterization during service, material aging, damage and failure and, finally, recycling or decommissioning. The structural problems which occur during the different stages in the life cycle of a material are complex, due to the advanced material technology of today's devices. We have created alloys for special applications, compound materials with novel properties, sophisticated bulk and surface treatments, and new forming and joining techniques. We are also concerned with the effect of the material on the environment after it has ended its service.
机译:基于同步的工程科学涵盖了大型应用领域。但是,它们都以两种方式连接。首先,用于研究各种应用的非常同步技术以相同的方式研究它们确定原子和微观规模上的结构参数。其次,这里讨论的应用程序组合描述了工程材料的完整生命周期,从基材的加工开始 - 通常来自熔体 - 然后是材料特性的表征,然后是成型和连接成分,然后组分表征在服务期间,材料老化,损坏和失败,最后,回收或退役。由于当今设备的先进材料技术,材料生命周期中的不同阶段发生的结构问题。我们为特殊应用的合金,复合材料具有新颖性质,复杂的散装和表面处理,以及新的成型和连接技术。我们还涉及材料在结束其服务后对环境的影响。

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