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231.
Mami Tanabe Junichi Tatami Motoyuki Iijima Tsukaho Yahagi Takuma Takahashi Hiromi Nakano Tatsuki Ohji 《Journal of the American Ceramic Society》2023,106(9):5431-5439
In this study, the yield stress and fracture strength of -Si3N4 single crystals were directly measured by bending tests of microcantilever beam specimens that were prepared by a focused ion beam method. The -Si3N4 single crystals were plastically deformed at room temperature under high bending stress, and the yield stress depended on the crystal orientation. Transmission electron microscopy observation of the specimens after bending tests indicates that the plastic deformation resulted from dislocations in the primary slip system <0001>, and the critical resolved shear stress of this slip system determined from the yield stress was 1.34 GPa. The fracture strength of -Si3N4 single crystals ranged approximately up to 20 GPa, depending on the crystal orientation as with the yield stress. The fracture behavior of -Si3N4 single crystals was discussed in terms of the accumulation of dislocations. 相似文献
232.
Hiroyuki Hamada Zen-Ichiro Maekawa Naoto Ikegawa Tatsuki Matsuo Masachika Yamane 《Polymer Composites》1993,14(4):308-313
Three types of glass/nylon 6 intermediate material forms-film stacking, uncommingled yarn, and commingled yarm-were selected study the correlations between the impregnating property and mechanical properties. The size of the glass fiber block to be filled with matrix and the porosity in glass fiber bundles by spearing out the fiber bundle was different in these materials. Unidirectional glass fiber reinforced thermoplastic composites were fabricated by compression molding. The being test was performed by using the three-point loading system, and the fracture behavior and the degree of impregnation were observed to examine the influence of processing conditions on the bending properties, relative to the form of the intermediate material. Bending strength increased, in accordance with the impregnating property, least in the film stacking form, second most in uncommingled yarn, and most in commingled yarn. The impregnating property was affected by the size of fiber blocks and the porosity in fiber bundles, because bending strength was improved by spreading out the fiber bundles. Commingled yarn is an excellent intermediate materials, which has both the fineness of matrix/fiber mixing and large porosity in fiber bundles. 相似文献