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首页> 外文期刊>Bulletin of the American Physical Society >APS -20th Biennial Conference of the APS Topical Group on Shock Compression of Condensed Matter - Event - Investigation of the kinetics and microscopic mechanism of solid-solid phase transitions in HMX
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APS -20th Biennial Conference of the APS Topical Group on Shock Compression of Condensed Matter - Event - Investigation of the kinetics and microscopic mechanism of solid-solid phase transitions in HMX

机译:APS凝聚态物质冲击压缩专题组第20届两年一次会议-事件-HMX固-固相变的动力学和微观机理研究

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Although studied intensely in the 2000's, a number of important questions about solid-solid phase transitions in the energetic organic material octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) remain. The mechanism by which one of the four isomorphs, known as quad $delta $, $gamma $, $alpha $ and $eta $, transforms into another, and the conditions (i.e. temperature and pressure) and rates at which these transitions take place are still not fully known, yet important for predicting and controlling energy release phenomena in HMX such as detonation. The theory of virtual melting, by which a liquid forms at the interface of a nucleation site, is necessary to explain transformations between certain of the four different phases of HMX, such as the quad $eta $to $delta $ transition. However the existence of this disordered intermediate state has never been directly proven due to the need for both spatial (extless extmu m), temporal (the lifetime of the transient melt state is unknown) and structural information. Also, while the $eta $ to $delta $ transition was more thoroughly studied, less is known about the other 10 possible phase transitions. We will report on our study of phase transitions in HMX using X-ray diffraction and confocal Raman and near-field infrared microscopy.
机译:尽管在2000年代进行了深入研究,但关于高能有机物八氢-1,3,5,7-四硝基-1,3,5,7-四唑辛(HMX)中固-固相变的许多重要问题仍然存在。四个同构异构体中的一个被称为quad $ delta $,$ gamma $,$ alpha $和$ eta $的机制转变为另一种机制,以及发生这些过渡的条件(即温度和压力)和速率尚不完全清楚,但对于预测和控制HMX中的能量释放现象(例如爆震)很重要。虚拟熔化的理论是解释HMX四个不同相之间某些相之间的转换(例如,四元从eta到to的过渡)所必需的,虚拟熔化的理论是通过这种方法在成核部位的界面处形成液体。然而,由于对空间(外部极度),时间(瞬时熔体态的寿命未知)和结构信息的需求,这种无序中间态的存在尚未得到直接证实。同样,虽然对$ eta $到$ delta $的过渡进行了更彻底的研究,但对其他10种可能的相变的了解却很少。我们将使用X射线衍射,共焦拉曼光谱和近场红外显微镜报告我们在HMX中的相变研究。

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