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Influence of Sintering Atmosphere in the Hardness and Corrosion Resistance of 17-4 PH Stainless Steel Shaped From Powder Injection Molding Process

机译:粉末注射成型工艺烧结气氛在17-4 pH不锈钢的硬度和耐腐蚀性的影响

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The powder injection molding process is used to manufacture parts with complex shapes and high production demand. In orthodontic and medical applications, in which high hardness and corrosion resistance are required, 17-4 PH stainless steel is used mainly by this forming technique. The sintering atmosphere is responsible for controlling the chemical reactions that occur during material densification and is critical to the ultimate product quality. This research evaluated the influence of the sintering atmosphere on the hardness and corrosion resistance of this type of steel. The removal of the primary binder was conducted by chemical extraction by using a solvent with less environmental impact which has proved to be suitable for this purpose. The subsequent binder thermal extraction was performed by heating at temperatures of 250 and 450 °C and afterwards to 900 °C to initiate sintering. Nitrogen, vacuum and hydrogen atmospheres were used with sintering temperatures at 1250 and 1330 °C with 30 and 60 minute time step. It was shown that the densities achieved in hydrogen and vacuum atmospheres are similar and suitable by the regulations, whereas the nitrogen atmosphere resulted in lower performance. The hardness and corrosion resistance obtained with the use of hydrogen and vacuum atmospheres were also higher than those obtained for samples sintered in the nitrogen atmosphere.
机译:粉末注塑成型工艺用于制造具有复杂形状和高生产需求的零件。在正畸和医疗应用中,需要高硬度和耐腐蚀性,主要通过这种成形技术使用17-4 pH不锈钢。烧结气氛负责控制材料致密化期间发生的化学反应,对最终产品质量至关重要。该研究评估了烧结气氛对这种钢的硬度和耐腐蚀性的影响。通过使用具有较少环境撞击的溶剂来通过化学提取进行初级粘合剂的去除,这已经证明了适用于此目的。随后的粘合剂热萃取通过在250和450℃的温度下加热和900℃以引发烧结来进行。在1250和1330℃下使用氮气,真空和氢气气体,在1250和1330℃下使用30和60分钟。结果表明,在氢气和真空气氛中实现的密度是相似的,并且通过规定适当,而氮气氛导致性能下降。使用氢气和真空氛围获得的硬度和耐腐蚀性也高于在氮气氛中烧结的样品的硬度和耐腐蚀性。

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