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首页> 外文期刊>International journal of non-linear mechanics >A non-linear viscoelastic model for ceramics at high temperatures
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A non-linear viscoelastic model for ceramics at high temperatures

机译:高温陶瓷非线性粘弹性模型

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摘要

High-temperature mechanical behavior of ceramics is characterized by non-linear rate dependent responses, asymmetric behavior in tension and compression, and nucleation and coalescence of voids leading to rupture. Moreover, rupture experiments show considerable scatter or randomness in fatigue lives of nominally equal specimens. To capture the non-linear, asymmetric time-dependent behavior, a new non-linear viscoelastic model is proposed. Non-linearity and asymmetry are introduced in the volumetric component. To model the random formation and coalescence of voids, each element is assigned a failure strain sampled from a lognormal distribution. An element is deleted when its volumetric strain exceeds its failure strain. Temporal increases in strains produce a sequential loss of elements (a model for void nucleation and growth), which in turn leads to failure. Non-linear viscoelastic model parameters are determined from uniaxial tensile and compressive creep experiments on silicon nitride. The model is then used to predict the deformation of four-point bending and ball-on-ring specimens. Simulation is used to predict statistical moments of rupture lives. Numerical simulation results compare well with results of four-point bending experiments.
机译:陶瓷的高温机械性能的特征在于非线性速率相关的响应,拉伸和压缩过程中的不对称行为以及空洞的成核和聚结导致破裂。此外,断裂实验表明名义上相等的试样在疲劳寿命中存在相当大的分散性或随机性。为了捕获非线性,非对称时间相关行为,提出了一种新的非线性粘弹性模型。非线性和不对称性被引入体积分量中。为了模拟空隙的随机形成和合并,为每个元素分配了从对数正态分布采样的破坏应变。当单元的体积应变超过其破坏应变时,将其删除。应变的时间增加会导致元素的连续损失(空隙成核和生长的模型),从而导致失效。非线性粘弹性模型参数由氮化硅的单轴拉伸和压缩蠕变实验确定。然后将该模型用于预测四点弯曲和圆环试样的变形。模拟用于预测破裂寿命的统计时刻。数值模拟结果与四点弯曲实验的结果很好地比较。

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