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The influence of nitrogen ion implantation on microhardness of the Stellite 6 alloy

机译:氮离子植入对粗毛6合金微硬度的影响

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Cobalt alloys known as Stellite used to produce or surfacing machine elements subjected to combustion gases and heat. They are used a currently in the manufacture of valves and valve seats in internal combustion engines. Because of the small thermal conductivity, stellite may not be subjected heat treatment. In order to improve the mechanical properties of cobalt alloys, samples were implanted with nitrogen ions with 65 keV energy and ion dose of 1·10~(16), 5·10~(16), 1·10~(17) N~+/cm~2. The influence of ion implantation on properties of strength was determined by measuring microhardness using a Vickers hardness test. The measurement results allowed to determine the increase in the microhardness of 20% with dose 5·10~(16) N~+/cm~2 compared to the sample not implanted. Implantation of nitrogen ions can increase the strength of the valves and the valve seats having Stellite without changing the external dimensions of the final element, and without interfering with its inner structure by low-temperature of modification the surface layer.
机译:称为钨铬钴合金钴合金用于产生或堆焊经受燃烧气体和热机的元件。他们在内燃机气门和气门座制造中使用的当前。因为小的热导率,钨铬钴合金也可以不进行热处理。为了提高钴合金的机械特性,将样品注入与氮离子与1·10〜(16),5·10〜(16),1·10〜(17)N〜65千电子伏的能量和离子剂量+ /厘米〜2。离子注入对强度的性能的影响通过使用维氏硬度试验测量显微硬度测定。允许确定与剂量5·10〜(16)中的20%的显微硬度的增加的测量结果N〜+ /厘米相比未注入样品〜2。氮离子注入能提高阀和具有钨铬钴合金阀座而不改变最终元件的外部尺寸的强度,并且在不通过修改的低温表面层,其内部结构发生干涉。

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