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首页> 外文期刊>International journal of impact engineering >Tensile strength of five metals and alloys in the nanosecond load duration range at normal and elevated temperatures
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Tensile strength of five metals and alloys in the nanosecond load duration range at normal and elevated temperatures

机译:在常温和高温下,五种金属和合金在纳秒负荷持续时间内的拉伸强度

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The paper presents results of measurements of the resistance to tensile fracture at spallation in nickel, cobalt, stainless steel, AlMg6/100 alloy, and Inconel IN 738 LC alloy. In the experiments carried out with a high-power ion beam as a shock-wave generator the load pulse duration was in the range of 50 ns. The measurements were performed at peak stresses varying by a factor up to 2 which had no influence on the dynamic tensile strength of the materials tested. For cobalt and Inconel measurements were also done at elevated temperatures. Whereas the response of cobalt was practically insensitive to temperature, IN 738 LC demonstrated a transition from viscous to relatively brittle fracture accompanied by a significant increase of the spall strength at higher temperatures.
机译:本文介绍了镍,钴,不锈钢,AlMg6 / 100合金和Inconel IN 738 LC合金在剥落时抗拉伸断裂性能的测量结果。在使用大功率离子束作为冲击波发生器进行的实验中,负载脉冲持续时间在50 ns的范围内。在最大应力变化不超过2的峰值应力下进行测量,这对测试材料的动态拉伸强度没有影响。对于钴和铬镍铁合金,也要在高温下进行测量。钴的响应实际上对温度不敏感,而IN 738 LC则显示出从粘性断裂到相对脆性断裂的转变,并伴随着较高温度下的剥落强度显着增加。

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