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Effect of void formation during MEVVA tungsten ion implantation on the microstructure and surface properties of H13 die steel

机译:MEVVA钨离子注入过程中空隙的形成对H13模具钢的组织和表面性能的影响

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摘要

H13 die steel was implanted with tungsten using a metal vapour vacuum arc (MEVVA) ion source. When the pulsed beam current density of tungsten ions increased to 6mA (.) cm(-2), some voids appeared in the high voltage electron microscope (HVEM) micrograph, which would disappear at an annealing temperature of 600 degrees C. HVEM and x-ray diffraction were used for observing the phase structure of the annealed and un-annealed H13 steel after the steel was implanted. Results of wear and hardness tests indicated that whether the voids appear significantly influences the hardness and wear of H13 steel. Reasons for the formation of voids and the relation between the surface mechanical property and voids are discussed in terms of collision theory.
机译:使用金属蒸气真空电弧(MEVVA)离子源向H13模具钢注入钨。当钨离子的脉冲束电流密度增加到6mA(。)cm(-2)时,高压电子显微镜(HVEM)显微照片中会出现一些空隙,这些空隙在600摄氏度的退火温度下会消失。HVEM和x射线衍射法用于观察注入后的退火和未退火的H13钢的相结构。磨损和硬度测试结果表明,是否出现空隙会严重影响H13钢的硬度和磨损。根据碰撞理论讨论了形成空隙的原因以及表面力学性能与空隙之间的关系。

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