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Structural materialization of stainless steel molds and dies by the low temperature high density plasma nitriding

机译:低温高密度等离子渗氮处理不锈钢模具的结构化

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Various kinds of stainless steels have been widely utilized as a mold substrate material for injection molding and as a die for mold-stamping and direct stamping processes. Since they suffered from high temperature transients and thermal cycles in practice, they must be surface-treated by dry and wet coatings, or, by plasma nitriding. Martensitic stainless steel mold was first wet plated by the nickel phosphate (NiP), which was unstable at the high temperature stamping condition; and, was easy to crystalize or to fracture by itself. This issue of nuisance significantly lowered the productivity in fabrication of optical elements at present. In the present paper, the stainless steel mold was surface-treated by the low-temperature plasma nitriding. The nitrided layer by this surface modification had higher nitrogen solute content than 4 mass%; the maximum solid-solubility of nitrogen is usually 0.1 mass% in the equilibrium phase diagram. Owing to this solid-solution with high nitrogen concentration, the nitrided layer had high hardness of 1400 Hv within its thickness of 40 μm without any formation of nitrides after 14.4 ks plasma nitriding at 693 K. This nitrogen solid-solution treated stainless steel had thermal resistivity even at the mold-stamping conditions up to 900 K.
机译:各种不锈钢已被广泛用作用于注模的模具基材以及作为模压和直接冲压工艺的模具。由于它们在实践中会遭受高温瞬变和热循环的影响,因此必须通过干,湿涂层或等离子渗氮对其进行表面处理。首先用磷酸镍(NiP)湿法电镀马氏体不锈钢模具,该模具在高温冲压条件下不稳定。并且,其本身容易结晶或破裂。目前,这种令人讨厌的问题大大降低了光学元件制造中的生产率。在本文中,通过低温等离子体氮化对不锈钢模具进行了表面处理。通过该表面改性的氮化层具有高于4质量%的氮溶质​​含量。在平衡相图中,氮的最大固溶度通常为0.1质量%。由于该固溶体具有较高的氮浓度,氮化层在693 14.K下进行14.4ks等离子体氮化后,在40mμm的厚度内具有1400 Hv的高硬度,而没有形成氮化物。即使在高达900 K的铸模条件下也具有很高的电阻率。

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