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动态热机械分析法研究螺压改性双基推进剂的压延温度 被引量:7
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作者 王江宁 尚帆 +2 位作者 郑伟 宋秀铎 张超 《火炸药学报》 EI CAS CSCD 北大核心 2015年第6期87-90,共4页
为获得塑化高固体含量螺压改性双基推进剂的工艺温度,采用动态热机械分析(DMA)法研究了不同RDX含量时螺压改性双基推进剂DMA 曲线α 转变峰的温度(Tα)(即玻璃化温度Tg)、松弛活化能(Eαa)和α 转变之后DMA 曲线出现的“波谷”... 为获得塑化高固体含量螺压改性双基推进剂的工艺温度,采用动态热机械分析(DMA)法研究了不同RDX含量时螺压改性双基推进剂DMA 曲线α 转变峰的温度(Tα)(即玻璃化温度Tg)、松弛活化能(Eαa)和α 转变之后DMA 曲线出现的“波谷”等特征物理量.结果表明,RDX 含量的增加减小了NC 分子间的缠绕作用,导致Tg 和Eαa值下降,这有利于高固体含量螺压推进剂的塑化;随着RDX 含量的增加,α 转变力学损耗峰tanδ 值增大,表明体系的摩擦发热量增大,而α 转变之后在55~120℃下DMA 曲线出现了“波谷”,此时体系的摩擦发热量最小,是压延塑化的最佳工艺温度. 展开更多
关键词 螺压推进剂 压延温度 动态热机械分析 DMA 塑化 力学损耗
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Enhancing ductility of the Al-Si coating on hot stamping steel by controlling the Fe-Al phase transformation during austenitization 被引量:7
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作者 GUI ZhongXiang LIANG WeiKang ZHANG YiSheng 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第9期1785-1793,共9页
In this study, austenitizing heat treatment before hot stamping of Al-10% Si coated boron steel is first investigated through en- vironment scanning electron microscopy (ESEM) equipped with energy dispersive x-ray a... In this study, austenitizing heat treatment before hot stamping of Al-10% Si coated boron steel is first investigated through en- vironment scanning electron microscopy (ESEM) equipped with energy dispersive x-ray analysis (EDAX). The cracking be- havior of the coating was evaluated using Gleeble 3500, a thermo-mechanical simulator under uniaxial plastic deformation at elevated temperatures. The extent and number of cracks developed in the coating were carefully assessed through an optical microscope. The coating layer under hot-dipped condition consists of an Al-Si eutectic matrix, Fe2Al7Si, Fe3Al2Si3 and Fe2Al5, from the coating surface to the steel substrate. The coating layer remains dense, continuous and smooth. During austenitization, the Al-rich Fe-Al intermetallics in the coating transform to more Fe-rich intermetallics, promoted by the Fe diffusion process. The coating finally shows the coexistence of two types of Fe-Al intermetallics, namely, FeAl2 and FeAl. Microcracks and Kirkendall voids occur in the coating layer and diffusion zone, respectively. The coating is heavily cracked and broken into segments during the hot tensile tests. Bare steel exposed between the separate segments of the coating is oxidized and covered with a thin FeOx layer. The appearance of the oxide decreases the adhesion of the Al-Si coating. It is found that the ductile FeAl is preferred as a coating microstructure instead of the brittle FeAl2. Therefore, the ductility of the Al-Si coating on hot stamping boron steer could be enhanced by controlling the ductile Fe-rich intermetallic phase transformations within it during austenitization. Experiments indicate that a higher austenitizing temperature or longer dwell time facilitate the Fe-rich inter- metallics transformation, increasing the volume fraction of FeAl. This phase transformation also contributes to reducing the crack density and depth. 展开更多
关键词 hot stamping Al-Si coating coating crack phase transformation DUCTILITY
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