首页> 外文会议>ASME biennial conference on engineering systems design and analysis >EXPERIMENTAL ANALYSIS OF NC FIBERS SEDIMENTATION AFTER DEHYDRATION PROCESS IN PROPELLANT PRODUCTION
【24h】

EXPERIMENTAL ANALYSIS OF NC FIBERS SEDIMENTATION AFTER DEHYDRATION PROCESS IN PROPELLANT PRODUCTION

机译:脱水过程中NC纤维沉降在推进剂生产中的实验分析

获取原文

摘要

During the manufacture of energetic materials, the dehydration process of nitrocellulose doughs provides a residual liquid mixture consisting of water, alcohol and nitrocellulose (NC) fibers. The separation of such fibers is required for distillation of alcohol, in order to make possible its reutilization in subsequent processes. In this work, an experimental analysis of sedimentation mechanisms of NC fibers contained in the fluid mixtures from nitrocellulose plants, is presented. The goal of the work is to obtain the time periods needed for complete sedimentation of these solid fractions (NC fibers). Cylindrical tanks with vertical or horizontal orientation are considered in this study, and the results obtained for both tank configurations are compared. From the experimental observations about sedimentation mechanisms of solid fraction in these fluid mixtures, recommendations about optimum times for NC fibers removal are proposed. These optimum times should be assumed as basic guidelines for scheduling and execution of the distillation process, due to its high influence on minimization of the overall operational costs for this process. Great discrepancies were registered between sedimentation times of NC fibers in vertical or horizontal tanks, with reductions in sedimentation rate of until 40% for recipients located in vertical orientation.
机译:在生产能量材料的制造过程中,硝酸纤维素面团的脱水过程提供了由水,醇和硝化纤维素(NC)纤维组成的残余液体混合物。蒸馏醇需要这种纤维的分离,以便在随后的方法中进行再利用。在这项工作中,提出了硝酸纤维素植物流体混合物中包含的NC纤维的沉降机制的实验分析。该工作的目标是获得这些固体级分(NC纤维)的完全沉降所需的时间段。在该研究中考虑了具有垂直或水平取向的圆柱形罐,比较了对两个罐配置的结果进行了比较。从这些流体混合物中固体级分的沉积机制的实验观察,提出了关于NC纤维去除的最佳时间的建议。应假定这些最佳时间作为调度和执行蒸馏过程的基本准则,因为它对这一过程的总体运营成本的最小化影响很高。在垂直或水平罐中NC纤维的沉降时间之间注册了巨大的差异,减少沉降率直至位于垂直取向的接收者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号