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首页> 外文期刊>Journal of superhard materials: Sverkhtverdye materialy >The Role of Plastic Deformation in Compaction and Decompaction Processes in Sintering Materials Based on Wurtzitic Boron Nitride
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The Role of Plastic Deformation in Compaction and Decompaction Processes in Sintering Materials Based on Wurtzitic Boron Nitride

机译:伍兹奇氮化硼在烧结材料中塑性变形在压实和分解过程中的作用

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摘要

The evolution of the microstructure of wurtzitic boron nitride-based polycrystals with sintering time (τ) increasing from 15 to 240 s at p = 7.7 GPa and T = 1800℃ has been TEM examined. It has been concluded that the decisive role in compaction below 90 s has been played by the plastic deformation of initial particles caused by the basal slip and irregular, i.e. non-crystallographic, rotation. A dispersion of particles into disoriented fragments without distortion of their continuity, which defines their further deformation due to slipping along the fragment boundaries, is promoted by the deformation via the irregular rotation. The strengthening of the orientation factor for the development of basal slip and, hence, the activation of the wBN transition into the cubic phase is facilitated by the fragment disorientation. A decompaction of polycrystals in sintering for τ > 90 s is caused by the evolution of plastic deformation via the creep initiated by the formation of areas of the microstructure of a material based on the perfect single-phased (cBN) grains of sizes below 1 μm with well-developed (with no relief) boundaries between them. The creep process is assumed to proceed owing to intergranular slipping combined with diffusion atom-by-atom mass transfer in grain boundaries.
机译:用TEM观察了烧结时间(τ)从15 s增加到240 s(p = 7.7 GPa,T = 1800℃)时,方铁矿型氮化硼基多晶的微观结构演变。已经得出结论,在90 s以下的压实中,决定性的作用是由基础滑移和不规则(即非晶体学)旋转引起的初始颗粒的塑性变形引起的。经由不规则旋转的变形促进了颗粒分散成不定向的碎片而没有其连续性的变形,这定义了由于沿着碎片边界滑动而导致的进一步变形。片段失配促进了基底滑移发展的取向因子的增强,因此,wBN转变为立方相的活化。在τ> 90 s的烧结过程中,多晶的失压缩是由塑性变形引起的,这种塑性变形是由蠕变引起的,蠕变是由基于尺寸小于1μm的理想单相(cBN)晶粒的材料微观结构区域的形成引发的它们之间的边界很发达(没有缓解)。假定蠕变过程是由于晶间滑移和晶粒边界中原子与原子之间的扩散传质相结合而进行的。

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