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叶蜡石块组装方式与合成工艺关系的研究 被引量:1
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作者 丁增杰 薛胜辉 《超硬材料工程》 CAS 2012年第4期14-16,共3页
在六面顶压机上采用粉末工艺技术进行了Φ40腔体组装高度不变和组装块高度提高合成金刚石产品的试验。分析了试验中出现的现象,表明组装块高度提高不仅提高了金刚石产品的产量,并且有效降低了万克拉顶锤的消耗。对试验效果的分析表明,... 在六面顶压机上采用粉末工艺技术进行了Φ40腔体组装高度不变和组装块高度提高合成金刚石产品的试验。分析了试验中出现的现象,表明组装块高度提高不仅提高了金刚石产品的产量,并且有效降低了万克拉顶锤的消耗。对试验效果的分析表明,合成腔体与合成压力一定的情况下,组装高度不变比组装块高度提高合成金刚石的生产效益要差很多,并且顶锤消耗也高。因此,提高组装块的高度是降低顶锤消耗、提高单次合成产量的选择方向。 展开更多
关键词 金刚石 组装高度 合成产量 顶锤消耗
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压力利用率与锤耗的关系研究
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作者 宋少峰 冯青波 《超硬材料工程》 CAS 2009年第4期42-44,共3页
主要从六面顶压机顶锤对合成块施压的过程中合成块所承受压力的受力分析,研究压力变化对锤耗的影响,总结出合成块组装高度设计、试验的理论依据,提出了检验组装高度的技术指标。
关键词 金刚石合成 组装高度 受力分析 压力利用率 顶锤消耗
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Self-assembled energetic coordination polymers based on multidentate pentazole cyclo-N_5^- 被引量:9
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作者 Peng-Cheng Wang Yuan-Gang Xu +3 位作者 Qian Wang Yan-Li Shao Qiu-Han Lin Ming Lu 《Science China Materials》 SCIE EI CSCD 2019年第1期122-129,共8页
Coordination to form polymer is emerging as a new technology for modifying or enhancing the properties of the existed energetic substances in energetic materials area. In this work, guanidine cation CN3 H6+ (Gu) and 3... Coordination to form polymer is emerging as a new technology for modifying or enhancing the properties of the existed energetic substances in energetic materials area. In this work, guanidine cation CN3 H6+ (Gu) and 3-amino-1,2,4-triazole C2H4N4(ATz) were crystallized into NaN5 and two novel energetic coordination polymers(CPs),(NaN5)5[(CH6-N3)N5](N5)3–(1) and(NaN5)2(C2H4N4)(2) were prepared respectively via a self-assembly process. The crystal structure reveals the co-existence of the chelating pentazole anion and organic component in the solid state. In polymer 1, Na+and N5– were coordinated to form a cage structure in which guanidine cation [C(NH2)3]+ was trapped;for polymer 2, a mixedligand system was observed;N5 – and ATz coordinate separately with Na+and form two independent but interweaved nets. In this way, coordination polymer has been successfully utilized to modify specific properties of energetic materials through crystallization. Benefiting from the coordination and weak interactions, the decomposition temperatures of both polymers increase from 111°C(1D structure [Na(H2 O)(N5)]?2 H2 O) to 118.4 and 126.5°C respectively. Moreover, no crystallized H2 O was generated in products to afford the anhydrous compounds of pentazole salts with high heats of formation( >800 kJ mol–1). Compared to traditional energetic materials, the advantage in heats of formation is still obvious for the cyclo-N5– based CPs, which highlights cyclo-N5– as a promising energetic precursor for high energy density materials(HEDMs). 展开更多
关键词 pentazole energetic coordination polymers SELF-ASSEMBLED STABILITY high heats of formation
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