1. 军械工程学院车辆与电气工程系
2. 军械工程学院基础部
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于金凤, 刘协权, 倪新华, 等. 共晶基复相陶瓷中缺陷的稳定性分析[J]. 机械强度, 2017,39(6):1366-1370.
YU JinFeng, LIU XieQuan, NI XinHua, et al. STABILITY ANALYSIS OF DEFECT AROUND PARTICLES IN EUTECTIC COMPOSITE CERAMIC[J]. 2017,39(6):1366-1370.
于金凤, 刘协权, 倪新华, 等. 共晶基复相陶瓷中缺陷的稳定性分析[J]. 机械强度, 2017,39(6):1366-1370. DOI: 10.16579/j.issn.1001.9669.2017.06.019.
YU JinFeng, LIU XieQuan, NI XinHua, et al. STABILITY ANALYSIS OF DEFECT AROUND PARTICLES IN EUTECTIC COMPOSITE CERAMIC[J]. 2017,39(6):1366-1370. DOI: 10.16579/j.issn.1001.9669.2017.06.019.
共晶基复相陶瓷材料中,不同相间的热膨胀系数的差异产生的缺陷是降低材料强度的重要因素。基于等效夹杂理论和相互作用直推估计法,计算得到颗粒周围缺陷在热残余应力和外载应力作用下的应力强度因子,研究了缺陷的扩展稳定性,并分析了颗粒刚度、形状、含量等参数对扩展稳定性的影响规律。结果显示:扁平形的颗粒环向最容易产生热裂纹;刚性颗粒能够在一定程度上降低外载应力在基体中平均作用效果,且长椭球状刚性颗粒的降低程度要大于扁椭球颗粒,因此有利于缺陷的稳定,柔性颗粒作用相反;当缺陷扩展量很小,应力强度因子主要受残余应力控制,缺陷扩展量较大时,应力强度因子主要受基体平均应力控制,长椭球形柔性颗粒有利于提高材料强度。
The defect arising from the thermal coefficient mismatch of different phases was an important factor of reducing strength in eutectic composite ceramic. Based on the equivalent inclusion method and the interaction direct derivative( IDD)estimate,stress intensity factor of annular defect under residual stress field and applied loading was calculated,and annular defect stability was analyzed. And the influence of particle stiffness,shape and volume fraction was investigated. Results indicated that,the crack nucleation was most easily produced in the oblate particle; stiff particles caused average applied stress reduced in matrix,and it reduced greater when the stiff particle was prolate elliptic,while the soft particle had the contrary effect. Stress intensity factor of defect was controlled by residual stress as the defect extension was small while it was controlled by applied stress for large defect extension. Prolate elliptic particle was beneficial to improve strength.
夹杂缺陷缺陷稳定性等效夹杂理论
InclusionDefectDefect stabilityThe equivalent inclusion method
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