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Microstructural Effects in Face-Centered-Cubic Alloys after Small Charge Explosions

机译:小电荷爆炸后面心立方合金的微观结构效应

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摘要

Effects on metal targets after an explosion include the following: fracture, plastic deformation, surface modifications, and microstructural crystallographic alterations with ensuing mechanical properties changes. In the case of small charge explosions, macroscopic effects are restricted to small charge-to-target distances, whereas crystal alterations can still be observed at moderate distances. Microstructural variations, induced on gold-alloy disk samples, as compared to previous results on AISI 304Cu steel samples, are illustrated. The samples were subjected to blast-wave overpressures in the range of 0.5 to 195 MPa. Minimum distances and peak pressures, which could still yield observable alterations, were especially investigated. Blast-related microstructural features were observed on the explosion-exposed surface and on perpendicular cross sections. Analyses using X-ray diffraction (XRD) were performed to identify modifications of phase, texture, dislocation density, and frequency of mechanical twins, before and after the explosions. Optical metallography (OM) and scanning electron microscopy (SEM) observations evidenced partial surface melting, zones with recrystallization phenomena, and crystal plastic deformation marks. The latter marks are attributed to mechanical twinning in the stainless steel and to cross-slip (prevalent) and mechanical twinning (possibly) in the gold alloy.
机译:爆炸后对金属靶的影响包括:断裂,塑性变形,表面改性以及随之而来的机械性能变化的微观结构晶体学变化。在小炸药爆炸的情况下,宏观影响仅限于小炸药到目标的距离,而在中等距离下仍可以观察到晶体的变化。与AISI 304Cu钢样品先前的结果相比,显示了金合金圆盘样品上引起的微观结构变化。样品承受的爆炸波超压范围为0.5到195 MPa。特别研究了最小距离和峰值压力,这些距离和峰值压力仍可能产生可观察到的变化。在爆炸暴露的表面和垂直截面上观察到了与爆炸相关的微观结构特征。进行了使用X射线衍射(XRD)的分析,以确定爆炸前后的孪晶相,织构,位错密度和机械孪晶的频率变化。光学金相学(OM)和扫描电子显微镜(SEM)观察结果表明部分表面熔化,出现重结晶现象的区域以及晶体塑性变形痕迹。后一种痕迹归因于不锈钢中的机械孪生,以及金合金中的交叉滑动(普遍)和机械孪生(可能)。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第12期|2869-2884|共16页
  • 作者单位

    Materials Science and Chemical Engineering Department Turin Technical University 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Turin Technical University 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Turin Technical University 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Turin Technical University 10129 Torino Italy;

    Materials Science and Chemical Engineering Department Turin Technical University 10129 Torino Italy;

    Chemical and Industrial Chemistry Department Genova University 16146 Genova Italy;

    Chemical and Industrial Chemistry Department Genova University 16146 Genova Italy;

    Chemical and Industrial Chemistry Department Genova University 16146 Genova Italy;

    Mechanical Engineering Department Rome “Tor Vergata” University 00133 Roma Italy;

    Mechanical Engineering Department Rome “Tor Vergata” University 00133 Roma Italy;

    Mechanical Engineering Department Rome “Tor Vergata” University 00133 Roma Italy;

    Explosives Chemistry Institute Italian Military Navy 19138 La Spezia Mariperman Italy;

    Explosives Technology Laboratory Italian Military Navy 19138 La Spezia Mariperman Italy;

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