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The Biaxial Strength and Ductility of Textured Materials

机译:纹理材料的双轴强度和延展性

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The application of the micromechanical and phenomenological yielding criteria to textured materials has been examined in reference to texture strengthening for HCP alloys and also to the brittleness problem of intermetallics. The usable micromechanical criterion has been proposed for textured industrial HCP alloys. It is based on the identification shear systems, determination of resolved shear stress values in these systems and averaging of strength for all orientations of polycrystalline grains with reference to the texture. Polycrystalline yield loci were calculated for Ti-5Al-2,5Sn and Ti-4A1-2V alloys having of nonbasal and intensive basal textures. The Tsai-Wu tensor-polynomial criterion has been extended to textured HCP polycrystalline. The principal components of strength tensor are determined by uniaxial testings and interaction component F_(12) is calculated by micromechanical criterion. It was revealed the fundamental limitation of TPC in related to textured HCP materials. The F_(12) value to calculate from biaxial tension data gives the incorrect value for biaxial compressive stress states. The brittleness problem of intermetallics is considered on the base of strain incompatibility conception for various crystalline orientations.
机译:已经针对HCP合金的织构强化以及金属间化合物的脆性问题,研究了微机械和现象学屈服准则在织构材料上的应用。已经提出了用于织构工业HCP合金的可用微机械准则。它基于识别剪切系统,确定这些系统中解析的剪切应力值以及相对于织构对多晶粒所有方向的强度求平均。计算具有非基础和密集基础组织的Ti-5Al-2,5Sn和Ti-4A1-2V合金的多晶屈服点。 Tsai-Wu张量多项式准则已扩展到纹理HCP多晶。强度张量的主要成分是通过单轴试验确定的,而相互作用成分F_(12)是通过微机械准则计算的。揭示了TPC在织构化的HCP材料方面的基本局限性。根据双轴拉伸数据计算的F_(12)值给出了双轴压缩应力状态的错误值。考虑到金属间化合物的脆性问题,是基于各种晶体取向的应变不相容性概念。

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