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Effect of Binder Composition on Properties of 316L Stainless Steel Bimodal Powder Feedstock

机译:粘合剂组合物对316L不锈钢双峰粉原料性能的影响

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Metal powder composites for powder injection molding (PIM) technology have been studied. Stainless steel 316L bimodal powders consisting of both nano and microparticles and multicomponent binders based on PLA/PMMA (feedstock I), paraffin wax/PE-LD/PMMA (feedstock II) and polyethylene wax (feedstock III) were used to obtain feedstock. The effect of the binder composition on the characteristics of feedstocks and sintered compacts was investigated. The use of PMMA in a binder allows maintaining the strength of the compacts to high temperatures when sintering. The debinding of "green compacts" from feedstock III leads to an almost complete removal of paraffin wax, and the "brown" parts retain their shape only due to the low-temperature sintering of nanoparticles. The use of the paraffin wax as a binder requires an increase in the content of the bimodal metal powder in the feedstock to 95 wt% to increase the strength of the compacts. Feedstocks and molded compacts were characterized by TEM, SEM, DSC-TG methods.
机译:研究了用于粉末注射成型(PIM)技术的金属粉末复合材料。使用基于PLA / PMMA(原料I),石蜡/ PE-LD / PMMA(原料II)和聚乙烯蜡(原料III)组成的不锈钢316L双峰粉末和基于PLA / PMMA(原料I),石蜡/ PE-LD / PMMA(原料III)。研究了粘合剂组合物对原料和烧结块特性的影响。在粘合剂中使用PMMA允许在烧结时将压块的强度保持在高温下。来自FeipStock III的“绿色块”的逐步逐渐消除石蜡蜡,“棕”部件仅通过纳米颗粒的低温烧结来保持其形状。作为粘合剂的使用石蜡蜡需要增加原料中的双峰金属粉末的含量至95wt%以增加压块的强度。通过TEM,SEM,DSC-TG方法表征原料和模塑压块。

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