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Composite solid armature consolidation by pulse power processing: a novel homopolar generator application in EML technology

机译:通过脉冲功率处理的复合固体电枢固结:EML技术中的新型同极发电机应用

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Graded electrical resistance and assured sliding contact are among the desirable characteristics for the solid armatures used in railguns attainable through the use of composite materials. Metal-metal, metal-ceramic, and metal-polymer composites are generic types of potential solid armature materials. The authors describe the production of these composites by a novel experimental approach that uses a homopolar generator in a pulse-powered materials consolidation system. The processing of copper-tungsten and aluminium-alumina composites is used to demonstrate versatility of the homopolar generator as a materials processing tool. Powder metallurgy and laminate bonding approaches have been utilized. Composite solid armature materials have been consolidated with subsecond high-temperature exposure. Densification in the solid state proceeds by a warm/hot forging mechanism, and fully dense composites are obtained by a combined application of pressure and a controlled energy input.
机译:分级的电阻和确保的滑动接触是通过使用复合材料可获得的用于轨道枪的实心电枢的理想特性。金属金属,金属陶瓷和金属聚合物复合材料是潜在的固体电枢材料的通用类型。作者描述了通过一种新颖的实验方法生产这些复合材料的方法,该方法在脉冲供电的材料固结系统中使用了同极性发生器。铜钨和铝铝复合材料的加工用于证明作为材料加工工具的同极性发生器的多功能性。粉末冶金和层压粘结方法已经被利用。复合固体电枢材料已通过亚秒级高温暴露得以巩固。固态致密化是通过热/热锻造机理进行的,并且通过组合施加压力和控制能量输入可获得完全致密的复合材料。

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