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Structure and mechanical properties of boron-rich boron carbides

机译:富含硼硼碳化物的结构和力学性能

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A series of boron-rich boron carbides are investigated to explore the effect of boron/carbon ratios on the microstructure and mechanical properties of the complex material. It has been found that excess boron substitution gives rise to expanded lattice constants, orientational asymmetry of the chain structure and distortion of the icosahedra of rhombohedra B_4C units in comparison with conventional carbon-rich boron carbides. Microstructure characterization reveals a high density of stacking faults and growth twins in boron-rich boron carbides. Nanoindentation measurements demonstrate that the hardness and modulus of boron-rich boron carbides decrease with the increase of boron content while the B_(10.2)C sample with the highest boron substitution shows relatively high hardness and modulus. This study suggests that the structure of single-phase covalent materials could be tailored by self-alloying for improved mechanical properties.
机译:研究了一系列富硼碳化硼,探讨了硼碳比对复合材料微观结构和力学性能的影响。研究发现,与传统的富碳碳化硼相比,过量硼取代会导致晶格常数膨胀、链结构的取向不对称和菱形B_4C单元的二十面体畸变。微观结构表征显示富硼碳化硼中存在高密度的层错和生长孪晶。纳米压痕测量表明,随着硼含量的增加,富硼碳化硼的硬度和模量降低,而硼取代率最高的B_(10.2)C样品显示出相对较高的硬度和模量。这项研究表明,单相共价材料的结构可以通过自合金化来调整,以提高机械性能。

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