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Evolution of cobalt-free tungsten heavy alloys for kinetic energy penetrators

机译:动能穿透器用无钴钨重合金的演变

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Previous studies have demonstrated that it is possible to compensate for the absence of Co in a W-Ni-Fe liquid sintered composite alloy under industrial conditions by appropriate control of the process parameters, to achieve mechanical properties close to those of Co containing alloys. The present investigation offers an optimised description of this Co-free system, using phase analysis following long term vacuum heat treatment in a laboratory furnace, with the aim of identifying potentially brittle phases. This optimised system has been evaluated in tests with a small industrial kinetic penetrator (APFSDST CT40) against a semi-infinite target and inclined armour plate. Results show no degradation of the ballistic performance relative to conventional Co containing alloys.
机译:先前的研究表明,通过适当控制工艺参数,可以补偿工业条件下W-Ni-Fe液态烧结复合合金中Co的不存在,以获得接近于含Co合金的机械性能。本研究使用实验室炉中长期真空热处理后的相分析,对这种无钴系统进行了优化描述,目的是识别潜在的脆性相。这个优化的系统已经在小型工业动力穿透器(APFSDST CT40)对半无限目标和倾斜装甲板的测试中进行了评估。结果表明,相对于常规的含钴合金,弹道性能没有降低。

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