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Determination of mechanical properties of parallelepiped materials embedded in solid medium and deformed under confining pressure

机译:埋在固体介质中并在限制压力下变形的平行六面体材料的力学性能的测定

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Most hydrostatic pressure deformation techniques necessitate the use of a confining medium to apply the pressure. In the case of solid confinement, the embedding medium may modify the specimen stress tensor hydrostaticity. In this study, parallelepiped specimens deformed under gaseous confining pressure with the Paterson press, are embedded in cylindrical jackets. Finite element modelling shows that the pressurization of the 'sample + jacket' assembly generates a pre-compression stress of the sample before any deformation test. The evolution of the pre-compression stresses with the sample and jacket Young's moduli ratio, the sample and jacket yield stresses ratio and the spacing between sample and jacket, are characterized. This modelling is applied to 4H-SiC deformed in the brittle regime with the Paterson press as an example.
机译:大多数静水压力变形技术都需要使用密闭介质来施加压力。在固体限制的情况下,包埋介质可能会改变试样的应力张量静水压力。在这项研究中,平行六面体试样在帕特森压力机的气体围压作用下变形,被埋入圆柱形外套中。有限元建模表明,“样品+护套”组件的加压会在任何变形测试之前产生样品的预压缩应力。用样品和外套的杨氏模量比,样品和外套的屈服应力比以及样品和外套之间的间距来表征预压缩应力的变化。以帕特森压力机为例,将这种模型应用于脆性变形的4H-SiC。

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