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Residual stresses in alumina matrix composites reinforced with Ti(C,N)

机译:Ti(C,N)增强氧化铝基复合材料的残余应力

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摘要

? 2022 Elsevier Ltd and Techna Group S.r.l.Ti(C0.5,N0.5)-reinforced alumina matrix composites with an addition of 2 wt ZrO2 were tested to determine residual stresses of Al2O3 and Ti(C0.5,N0.5) phases. The advanced sintering technique (spark plasma sintering ―SPS) at various temperatures of 1600°C and 1700°C was used. Vickers hardness HV1, Young's modulus E, apparent density ρ and indentation fracture toughness KIC(HV) were evaluated. An indirectly residual stress measurement by the XRD method using the sin2 ψ technique was applied. Compressive residual stresses in both phases: α-Al2O3 and Ti(C0.5,N0.5) were observed. Residual stresses of α-Al2O3(226) are in the range between ?204 ± 20 MPa and ?120 ± 20 MPa (for 1600 °C and 1700 °C respectively) are lower compared to Ti(C0.5,N0.5)(420), for which the stresses are in the range of between ?292 ± 20 MPa and ?256 ± 20 MPa (for 1600 °C and 1700 °C respectively). The results exhibit the influence of the sintering temperature on the residual stresses of the tested phases. The residual stresses revealed at 1700°C are lower by about 40 for α-Al2O3(226) and much less for Ti(C0.5,N0.5)(420), by only about 15. Microstructure studies using scanning electron microscopy, X-ray and electron diffraction phase analysis were used.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.Ti(C0.5,N0.5) 添加量为 2 wt% ZrO2 的增强氧化铝基复合材料,以确定 Al2O3 和 Ti(C0.5,N0.5) 相的残余应力。采用先进的烧结技术(火花等离子烧结―SPS),温度为1600°C和1700°C。评价了维氏硬度HV1、杨氏模量E、表观密度ρ和压痕断裂韧性KIC(HV)。采用sin2 ψ技术,通过XRD方法间接测量残余应力。观察到α-Al2O3和Ti(C0.5,N0.5)两相的压余应力。α-Al2O3(226)的残余应力在-204±20 MPa和-120 ± 20 MPa(分别为1600 °C和1700 °C)之间,而Ti(C0.5,N0.5)(420)的残余应力在-292 ± 20 MPa和-256 ± 20 MPa(分别为1600 °C和1700 °C)之间。结果表明了烧结温度对被测相残余应力的影响。在1700°C下,α-Al2O3(226)的残余应力降低了约40%,而Ti(C0.5,N0.5)(420)的残余应力则低了约15%。采用扫描电子显微镜、X射线和电子衍射相分析进行微观结构研究。

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