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铅、铜盐催化剂对DNTF炸药热分解及烤燃响应特性的影响
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西安近代化学研究所,陕西 西安 710065

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Influence of Lead and Copper Salt Catalysts on the Thermal Decomposition and Cook-off Responses of DNTF
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Xi''an Modern Chemistry Research Institute, Xi''an 710065, China

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    摘要:

    为提高3,4-二硝基呋咱基氧化呋咱(DNTF)炸药热安全性,采用高压差示扫描量热仪(PDSC)、小型烤燃实验考察了水杨酸铅(PbSa)、水杨酸铜(CuSa)、2,4-二羟基苯甲酸铜(β-Cu)、邻苯二甲酸铜(Cu(PA)2)、氧化铜(CuO)等催化剂对DNTF烤燃响应特性以及1 MPa下热分解性能的影响。结果表明,CuSa、β-Cu、Cu(PA)2等有机铜盐催化剂可提高DNTF热分解速率,使其在1 MPa下分解峰温降低13.6 ℃以上, PbSa使DNTF分解峰温升高了3.1 ℃,同时二次分解剧烈程度更明显,CuO对DNTF热分解无影响;CuSa可使无约束条件的DNTF在1 ℃·min-1下的烤燃响应温度由236.6 ℃降低为182.3 ℃,响应剧烈程度由爆炸改善为燃烧;少量CuSa可使强约束条件下的DNTF基混合炸药装药在1 ℃·min-1下的烤燃响应温度降低2.4 ℃,响应剧烈程度由爆炸降低为燃烧,说明选择合适的有机铜盐催化剂可有效改善DNTF基炸药装药烤燃响应特性。

    Abstract:

    To improve its thermal safety, the effects of lead and copper salt catalysts, including CuSa, PbSa,β-Cu, Cu(PA)2, and CuO , on thermal decomposition and cook-off responses of DNTF were studied through PDSC and small scale cook-off experiments. Experiment results show that the thermal decomposition and cook-off reaction level can be adjusted by different analysts. To be specific, the organic copper salts, i.e., CuSa, β-Cu and Cu(PA)2, increase the rate of thermal decomposition of DNTF while reduce the decomposition temperature of DNTF. PbSa increases the decomposition temperature of DNTF by 3.1 ℃ and promotes its second decomposition; CuO has no effect on the thermal decomposition of DNTF. CuSa decreases the response temperature of cook-off test at heating rate of 1 ℃·min-1 for unrestrained DNTF from 236.6 ℃ to 182.3 ℃ while for high constraint by 2.4 ℃, and changes the reaction levels of both unrestrained and high constrained from explosion to burning. This implies that the cook-off responses of DNTF-based explosive could be decreased by organic copper salts, such as CuSa.

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蒋秋黎,罗一鸣,杨斐,等.铅、铜盐催化剂对DNTF炸药热分解及烤燃响应特性的影响[J].含能材料, 2020, 28(5):470-474. DOI:10.11943/CJEM2019262.
JIANG Qiu-li, LUO Yi-ming, YANG Fei, et al. Influence of Lead and Copper Salt Catalysts on the Thermal Decomposition and Cook-off Responses of DNTF[J]. Chinese Journal of Energetic Materials, 2020, 28(5):470-474. DOI:10.11943/CJEM2019262.

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  • 收稿日期: 2019-10-10
  • 最后修改日期: 2020-03-10
  • 录用日期: 2020-02-17
  • 在线发布日期: 2020-03-03
  • 出版日期: 2020-05-25