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火炮炮闩抽筒子结构优化设计
引用本文:张建,唐文献,徐省省,彭松江,张攀.火炮炮闩抽筒子结构优化设计[J].兵工学报,2012,33(6):647-651.
作者姓名:张建  唐文献  徐省省  彭松江  张攀
作者单位:江苏科技大学机电与汽车工程学院,江苏张家港,215600;中国船舶重工集团公司第713研究所,河南郑州,450015;澳汰尔工程软件有限公司,上海,200120
基金项目:高等学校博士学科点基金,江苏省六大人才高峰项目
摘    要:抽筒子的强度直接决定炮闩的可靠性,进而影响着舰炮的战斗力。针对抽筒子在工作过程中出现的屈服问题,以HyperWorks软件为平台,分别进行抽筒子拓扑优化和形状优化设计,为验证优化结果的正确性,运用ABAQUS软件,对炮闩的抽壳过程进行柔体动力学仿真,并分析比较优化前后炮闩的动能和内能、平均抽壳速度以及抽筒子的强度和刚度等参数的变化。计算结果表明,优化后抽筒子质量下降20.9%,工作时所受的最大应力下降13%,低于材料的屈服极限;优化后炮闩内能峰值降低3.44%,内能曲线向后推迟了0.16 ms,动能变化趋势与原始结构一致,但波动较大,平均抽壳速度减少0.442 m/s.

关 键 词:机械设计  抽筒子  拓扑优化  形状优化  柔体动力学  有限元分析

Structural Optimization Design for Breechblock Extractor
ZHANG Jian , TANG Wen-xian , XU Xing-xing , PENG Song-jiang , ZHANG Pan.Structural Optimization Design for Breechblock Extractor[J].Acta Armamentarii,2012,33(6):647-651.
Authors:ZHANG Jian  TANG Wen-xian  XU Xing-xing  PENG Song-jiang  ZHANG Pan
Affiliation:(1.School of Electromechanical and Automobile Engineering, Jiangsu University of Science and Technology,Zhenjiang 212003, Jiangsu, China; 2. China Shipbuilding Industry Corporation, Zhengzhou 100097,Henan, China; 3. Altair Engineering, Inc, Shanghai 200120, China)
Abstract:The reliability of breech mechanism depends on the strength of extractor directly and affects the warship fighting capacity.Aimed at the extractor yield during extracting process,its topology and shape optimizations were carried out respectively by using HyperWorks software.In order to validate the optimization results,a flexible body dynamics of the breech mechanism was simulated by using ABAQUS software.And,its kinetic energy,internal energy,average extraction speed,strength and stiffness before and after optimization were compared.The analysis results show that the mass of optimized extractor decreases by 20.9%,and its maximal stress decreases by 13% and is lower than the yield limit;the peak of internal energy decreases by 3.44%,and the energy curves are delayed 0.16 millisecond;the trend of kinetic energy is similar to the original one except some fluctuation,the average extraction speed decreases by 0.442% only.
Keywords:mechanical design  extractor  topology optimization  shape optimization  flexible dynamics  finite element analysis
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