A pressing technique has become available that might be useful for compressing granular explosives. If the height diameter ratio of the charge is unfavorable,the high quality charge can not be obtained with the common...A pressing technique has become available that might be useful for compressing granular explosives. If the height diameter ratio of the charge is unfavorable,the high quality charge can not be obtained with the common single action pressing. This paper presents incremental pressing technique, which can obtain the charge with higher overall density and more uniform density.展开更多
With the development of intelligent and flexible manufacturing, the traditional mechanical press can not meet the needs of the future processing industry because it is difficult to achieve variable speed adjustment an...With the development of intelligent and flexible manufacturing, the traditional mechanical press can not meet the needs of the future processing industry because it is difficult to achieve variable speed adjustment and change the motion characteristics. Servo press is directly driven by servo motor to realize the flexible control of pressure movement, which has become the development trend of the industry in the future. The independent research and development of servo press control system has become the research hotspot and difficulty of the domestic press industry. In this paper, the servo press control system used for initiating explosive device pressing is studied and analyzed for reference.展开更多
压环是爆炸成型弹丸(Explosively Formed Projectile,EFP)装药结构中紧固装药和药型罩不可缺少的部件。为研究其在爆炸驱动过程中对药型罩形成EFP特征的影响,选取典型球缺型紫铜药型罩基准装药结构,采用有限元分析软件的拉格朗日、任意...压环是爆炸成型弹丸(Explosively Formed Projectile,EFP)装药结构中紧固装药和药型罩不可缺少的部件。为研究其在爆炸驱动过程中对药型罩形成EFP特征的影响,选取典型球缺型紫铜药型罩基准装药结构,采用有限元分析软件的拉格朗日、任意拉格朗日-欧拉、光滑粒子流法(Smooth Particle Hydrodynamics,SPH)及有限元法(Finite Element Method,FEM)-SPH自适应耦合等算法分别建模和仿真计算,对各算法计算获得的EFP速度和形态特征与脉冲X光摄影拍摄的EFP图像进行对比,采用FEM-SPH算法获得高精度的EFP成型仿真结果。针对该基准装药结构,在压环与药型罩质量比M_(R)/M_(L)≤0.2范围,进行矩形及非矩形压环参数(如轴向、径向厚度及截面形状)和材料对EFP初速、质量转换比、长径比和气动特性(密实度及迎风面积)参数影响的仿真计算。研究结果表明:矩形截面压环的轴向、径向厚度及材料参数对EFP初速影响在3%以内;对EFP质量转换比呈递减趋势(最大可降低12.6%);对EFP长径比呈递减趋势(最大可降低19.2%);密实度呈递增趋势,钢环较无压环,EFP的密实度提高32.6%;迎风面积呈递减趋势。以上结果表明考虑压环有利于EFP翻转成型和形成更密实的杆式EFP,并减小其迎风阻力。所得研究结果可为EFP装药结构的优化设计提供指导。展开更多
文摘A pressing technique has become available that might be useful for compressing granular explosives. If the height diameter ratio of the charge is unfavorable,the high quality charge can not be obtained with the common single action pressing. This paper presents incremental pressing technique, which can obtain the charge with higher overall density and more uniform density.
文摘With the development of intelligent and flexible manufacturing, the traditional mechanical press can not meet the needs of the future processing industry because it is difficult to achieve variable speed adjustment and change the motion characteristics. Servo press is directly driven by servo motor to realize the flexible control of pressure movement, which has become the development trend of the industry in the future. The independent research and development of servo press control system has become the research hotspot and difficulty of the domestic press industry. In this paper, the servo press control system used for initiating explosive device pressing is studied and analyzed for reference.
文摘压环是爆炸成型弹丸(Explosively Formed Projectile,EFP)装药结构中紧固装药和药型罩不可缺少的部件。为研究其在爆炸驱动过程中对药型罩形成EFP特征的影响,选取典型球缺型紫铜药型罩基准装药结构,采用有限元分析软件的拉格朗日、任意拉格朗日-欧拉、光滑粒子流法(Smooth Particle Hydrodynamics,SPH)及有限元法(Finite Element Method,FEM)-SPH自适应耦合等算法分别建模和仿真计算,对各算法计算获得的EFP速度和形态特征与脉冲X光摄影拍摄的EFP图像进行对比,采用FEM-SPH算法获得高精度的EFP成型仿真结果。针对该基准装药结构,在压环与药型罩质量比M_(R)/M_(L)≤0.2范围,进行矩形及非矩形压环参数(如轴向、径向厚度及截面形状)和材料对EFP初速、质量转换比、长径比和气动特性(密实度及迎风面积)参数影响的仿真计算。研究结果表明:矩形截面压环的轴向、径向厚度及材料参数对EFP初速影响在3%以内;对EFP质量转换比呈递减趋势(最大可降低12.6%);对EFP长径比呈递减趋势(最大可降低19.2%);密实度呈递增趋势,钢环较无压环,EFP的密实度提高32.6%;迎风面积呈递减趋势。以上结果表明考虑压环有利于EFP翻转成型和形成更密实的杆式EFP,并减小其迎风阻力。所得研究结果可为EFP装药结构的优化设计提供指导。
基金National Natural Science Foundation of China(51205196,51475231)the Doctoral Foundation of Ministry of Education of China(20123218120029)+2 种基金the Priority Academic Program Development of Jiangsu Higher Education InstitutionsChina Postdoctoral Science Foundation(2013M531347)the Project Innovation of Jiangsu Province of China(BA2012124)