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机加工和增材制造的CuSn10衬套产生的聚能射流性能比较

Comparison of Shaped Charge Jet Performance Generated by Machined and Additively Manufactured CuSn10 Liners.

作者信息

Sun Shengjie, Jiang Jianwei, Wang Shuyou, Men Jianbing, Li Mei, Wang Yawei

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Materials (Basel). 2021 Nov 24;14(23):7149. doi: 10.3390/ma14237149.

Abstract

The Selective Laser Melting (SLM) technique has attracted attention in a wide range of manufacturing research areas, including the defense industry because of its high efficiency and good consistency of manufactured material properties. Shaped charge liner is the crucial unit in the shaped charge warhead. However, jet performance formed by SLM-produced liner remains to be studied systematically. In the present research work, the SLM technique was applied to manufacture CuSn10 shaped charge liners. Casted CuSn10 liners were also fabricated using the classical turning method for comparison. The grain size of the SLM-produced liner was found to be much smaller than the machined liner due to the rapid heating and cooling rate during the SLM manufacturing process. This contributed to improved jet performance. A flash X-ray photography system was applied to capture jet stretching appearances. Necking appears at the jet tip formed by the machined liner, while the jet formed by the SLM-produced liner remains continuous. Penetration test results show that the penetration depth of the jet formed by the SLM-produced liner is around 27% larger than that formed by the machined liner. Segments along the sidewall of the penetration tunnels were selected for in-depth micro analysis. Energy dispersed spectrum (EDS) surface scanning results indicate the composition at the side wall of the penetrated tunnel. Metallurgical microscope was applied to distinguish four different phase zones of the target. The width of these different zones indicates the severity of the lateral interaction between the jet and target, which can be adopted to evaluate jet penetration capability. The present study analyzes the factors that influence jet performances and proves that SLM technology is well-adapted in the manufacturing of shaped charge liners.

摘要

选择性激光熔化(SLM)技术因其制造材料性能的高效率和良好一致性,在包括国防工业在内的广泛制造研究领域引起了关注。聚能装药药型罩是聚能装药战斗部的关键部件。然而,SLM制造的药型罩形成的射流性能仍有待系统研究。在本研究工作中,采用SLM技术制造CuSn10聚能装药药型罩。还采用传统车削方法制造了铸造CuSn10药型罩用于比较。由于SLM制造过程中的快速加热和冷却速率,发现SLM制造的药型罩的晶粒尺寸比加工后的药型罩小得多。这有助于提高射流性能。应用闪光X射线摄影系统捕捉射流拉伸外观。由加工后的药型罩形成的射流尖端出现缩颈,而由SLM制造的药型罩形成的射流保持连续。侵彻试验结果表明,由SLM制造的药型罩形成的射流的侵彻深度比由加工后的药型罩形成的射流的侵彻深度大约27%。选择侵彻孔道侧壁的切片进行深入微观分析。能谱(EDS)表面扫描结果表明了侵彻孔道侧壁的成分。应用金相显微镜区分靶材的四个不同相区。这些不同区域的宽度表明了射流与靶材之间横向相互作用的严重程度,可用于评估射流侵彻能力。本研究分析了影响射流性能的因素,并证明SLM技术非常适合聚能装药药型罩的制造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c926/8658340/0844eb226677/materials-14-07149-g001.jpg

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