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Measurement of High-Strain-Rate Adiabatic Strength of Conductors

机译:导体高应变率绝热强度的测量

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The current-carrying conductors in electromagnetic launchers and rotating machines are exposed to high stress and thermal loads that last for a few milliseconds, with temperatures ranging up to the melting point of the materials. Even though equilibrium behavior of materials at high temperature is well characterized, nonequilibrium, short-duration behavior is not well understood. Properties for short-duration exposure to high temperatures (a quasi-adiabatic process) are crucial to understanding the transient physics of railgun components, since use of equilibrium (isothermal) properties would entail compromise in evaluation of stress and strain fields. These errors can grow when considering multiple applied pulses, as in cycle life evaluation . In this paper, we describe an experiment that will help characterize such properties near railgun operating conditions. We present preliminary data obtained for copper
机译:电磁发射器和旋转机器中的载流导体承受持续数毫秒的高应力和热负荷,温度范围高达材料的熔点。即使已经很好地表征了材料在高温下的平衡行为,但对非平衡,短时行为却没有很好的了解。短期暴露于高温下的特性(准绝热过程)对于理解轨道炮部件的瞬态物理特性至关重要,因为使用平衡(等温)特性会影响应力和应变场的评估。当考虑多个施加的脉冲时,如在循环寿命评估中,这些误差会增大。在本文中,我们描述了一个实验,该实验将有助于表征在轨道炮工作条件附近的此类特性。我们介绍了从铜获得的初步数据

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