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Microstructural Analysis on Ballistic Tested Armour Steel Joints Fabricated Using Low Hydrogen Ferritic Consumables for Capping Pass

机译:使用低氢铁耗材制造的弹道测试铠装钢接头进行封端通道的微观结构分析

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Post impact microstructural characteristics of 7.62 armour pearcing incendiary bullet was studied on AISI 4340 multilayerd welded joints. The potential application of AISI 4340 steel is found in the construction of combat vehicles using welding process. The welded joints are expected to offer better ballistic resistance like unwelded parent metals in combat vehicles. The traditionally used austenitic stainless steel welding consumables and the transformation effects of the welding process result in inferior ballistic performance of AISI 4340 steel welded joints. Published information revealed that a few attempts were made to successfully resist the bullets at multi layered weld metals by depositing a hard-facing interlayer between traditionally used austenitic stainless steel filler metals and a austenitic stainless steel buttering layer in between the parent metal and the hard - facing interlayer. This paper reports the pre-impact and post-impact microstructural characteristics of multi layered sandwiched joints made of a austenitic stainless steel root, a chromium carbide hard - facing middle layer and a low hydrogen ferritic capping front layer. The effect of the low hydrogen ferritic front layer on the ballistic performance after impact is studied in detail.
机译:在AISI 4340多层焊接接头上研究了7.62盔甲珠宝灭虫子弹的震动微观结构特征。使用焊接过程建造AISI 4340钢的潜在应用。焊接接头预计将提供更好的防弹性抵抗,如在战斗车辆中被未能母金属金属。传统上使用的奥氏体不锈钢焊接耗材和焊接工艺的变换效果导致AISI 4340钢焊接接头的较差的弹道性能。发布的信息表明,一些尝试是通过在母金属和硬之间沉积传统使用的奥氏体不锈钢填充金属和奥氏体不锈钢隔离层之间的硬面层间成功地抵抗在多层焊接金属子弹制成 - 面对层间。本文报道了由奥氏体不锈钢根,碳化铬晶体中层和低氢铁素覆盖前部制成的多层夹层接头的预冲击和后碰撞微观结构特性。低氢铁素体前层对冲击后的弹道性能的影响。

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