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Full deflection profile calculation and Young’s modulus optimisation for engineered high performance materials

机译:工程高性能材料的完全偏转轮廓计算和杨氏模量优化

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摘要

New engineered materials have critical applications in different fields in medicine, engineering and technology but their enhanced mechanical performances are significantly affected by the microstructural design and the sintering process used in their manufacture. This work introduces (i) a methodology for the calculation of the full deflection profile from video recordings of bending tests, (ii) an optimisation algorithm for the characterisation of Young’s modulus, (iii) a quantification of the effects of optical distortions and (iv) a comparison with other standard tests. The results presented in this paper show the capabilities of this procedure to evaluate the Young’s modulus of highly stiff materials with greater accuracy than previously possible with bending tests, by employing all the available information from the video recording of the tests. This methodology extends to this class of materials the possibility to evaluate both the elastic modulus and the tensile strength with a single mechanical test, without the need for other experimental tools.
机译:新的工程材料在医学,工程和技术的不同领域具有关键的应用,但是其增强的机械性能受到其制造中使用的微观结构设计和烧结工艺的显着影响。这项工作介绍了(i)从弯曲测试的视频记录中计算出全偏转轮廓的方法,(ii)表征杨氏模量的优化算法,(iii)量化了光学畸变的影响,以及(iv )与其他标准测试的比较。本文介绍的结果表明,该程序能够利用测试视频记录中的所有可用信息,以比以前的弯曲测试更高的精度来评估高硬度材料的杨氏模量。这种方法将这类材料扩展到通过一次机械测试即可评估弹性模量和拉伸强度的可能性,而无需其他实验工具。

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