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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Test Temperature and Grain Size on the Charpy Impact Toughness and Dynamic Toughness (K_(ID)) of Polycrystalline Niobium
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Effects of Test Temperature and Grain Size on the Charpy Impact Toughness and Dynamic Toughness (K_(ID)) of Polycrystalline Niobium

机译:试验温度和粒度对多晶铌的夏比冲击韧性和动态韧性(K_(ID))的影响

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摘要

The effects of changes in test temperature (-196 deg C to 25 deg C) and grain size (40 to 165 mum) on the dynamic cleavage fracture toughness (K_(ID)) and Charpy impact toughness of polycrystalline niobium (Nb) have been investigated. The ductile-to-brittle transition was found to be affected by both changes in grain size and the severity of stress concentration (i.e., notch vs fatigue-precrack). In addition to conducting impact tests on notched and fatigue-precracked Charpy specimens, extensive fracture surface analyses have been performed in order to determine the location of apparent cleavage nucleation sites and to rationalize the effects of changes in microstructure and experimental variables on fracture toughness. Existing finite element analyses and the stress field distributions ahead of stress concentrators are used to compare the experimental observations with the predictions of various fracture models. The dynamic cleavage fracture toughness, K_(ID), was shown to be 37+-4 MPa m~(1/2) and relatively independent of grain size (i.e., 40 to 105 mum) and test temperature over the range -196 deg C to 25 deg C.
机译:测试温度(-196摄氏度至25摄氏度)和晶粒尺寸(40至165微米)的变化对多晶铌(Nb)的动态劈裂断裂韧性(K_(ID))和夏比冲击韧性的影响调查。发现韧性到脆性的转变受晶粒尺寸的变化和应力集中的严重性的影响(即,缺口与疲劳前裂纹)。除了在缺口和疲劳裂纹的夏比试样上进行冲击试验外,还进行了广泛的断裂表面分析,以确定表观分裂成核位点的位置,并使微观结构和实验变量的变化对断裂韧性的影响合理化。现有的有限元分析和应力集中器之前的应力场分布用于将实验观察结果与各种裂缝模型的预测结果进行比较。动态断裂断裂韧性K_(ID)被显示为37 + -4 MPa m〜(1/2),并且相对独立于晶粒尺寸(即40至105 mum)和-196度范围内的测试温度到25摄氏度

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