首页> 外文期刊>Journal of Materials Science >MICROSTRUCTURE AND MECHANICAL PROPERTIES OF YTTRIA-STABILIZED TETRAGONAL ZIRCONIA POLYCRYSTALS CONTAINING DISPERSED TIC PARTICLES
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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF YTTRIA-STABILIZED TETRAGONAL ZIRCONIA POLYCRYSTALS CONTAINING DISPERSED TIC PARTICLES

机译:含分散微粒的稳定的四方氧化锆多晶体的微观结构和力学性能

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The microstructure and mechanical properties of hot-pressed yttria-stabilized tetragonal zirconia polycrystals (Y-TZP) ceramics containing up to 30 vol % TiC particles were studied. Adding TIC particles to Y-TZP improved the bending strength and fracture toughness. With 20 vol % TiC particles the maximum bending strength and fracture toughness reached 1073 +/- 30.4 MPa and 14.56 +/- 0.25 MPa m(1/2), respectively. The residual tensile stress induced by the thermal expansion difference between ZrO2, and TiC must have inhibited the tetragonal-monoclinic transformation. The stress-induced phase transformation was therefore not the dominant toughening mechanism. High-densities of dislocations within TiC particles and microcracking were detected by TEM. The improved toughness of the materials is considered to be the result of crack deflection, crack bowing of TIC particles and microcracking toughening of ZrO2. [References: 15]
机译:研究了热压钇稳定的四方氧化锆多晶(Y-TZP)陶瓷的微观结构和力学性能,该陶瓷包含多达30%(体积)的TiC颗粒。在Y-TZP中添加TIC颗粒可改善弯曲强度和断裂韧性。使用20%(体积)的TiC颗粒时,最大弯曲强度和断裂韧性分别达到1073 +/- 30.4 MPa和14.56 +/- 0.25 MPa m(1/2)。由ZrO2和TiC之间的热膨胀差异引起的残余拉伸应力必须抑制了四方单斜相转变。因此,应力诱导的相变不是主要的增韧机理。通过TEM检测到TiC颗粒内的高位错和微裂纹。材料韧性的提高被认为是裂纹变形,TIC颗粒裂纹弯曲和ZrO2微裂纹增韧的结果。 [参考:15]

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