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Creep of a Silicon Nitride Under Various Specimen/Loading Configurations

机译:各种样品/负载配置下的氮化硅蠕变

摘要

Extensive creep testing of a hot-pressed silicon nitride (NC132) was performed at 1300 C in air using five different specimen/loading configurations, including pure tension, pure compression, four-point uniaxial flexure, ball-on-ring biaxial flexure, and ring-on-ring biaxial flexure. Nominal creep strain and its rate for a given nominal applied stress were greatest in tension, least in compression, and intermediate in uniaxial and biaxial flexure. Except for the case of compressive loading, nominal creep strain generally decreased with time, resulting in less-defined steady-state condition. Of the four different creep formulations - power-law, hyperbolic sine, step, redistribution models - the conventional power-law model still provides the most convenient and reasonable means to estimate simple, quantitative creep parameters of the material. Predictions of creep deformation for the case of multiaxial stress state (biaxial flexure) were made based on pure tension and compression creep data by using the design code CARES/Creep.
机译:使用五个不同的样本/加载配置在1300°C的空气中对热压氮化硅(NC132)进行了广泛的蠕变测试,包括纯拉伸,纯压缩,四点单轴挠曲,环球双轴挠曲和环对环双轴弯曲。在给定的名义施加应力下,名义蠕变应变及其速率在拉伸时最大,压缩时最小,在单轴和双轴挠曲中处于中间。除压缩载荷外,名义蠕变通常会随着时间的推移而降低,从而导致稳态条件的定义不明确。在四种不同的蠕变公式中-幂律,双曲正弦,阶跃,再分布模型-传统的幂律模型仍然提供了最方便,最合理的方法来估算材料的简单定量蠕变参数。使用设计代码CARES / Creep,基于纯拉伸和压缩蠕变数据,对多轴应力状态(双轴挠曲)情况下的蠕变变形进行了预测。

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