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Molding of Meso Carbon Micro Beads by Powder Injection Molding Technology

机译:粉末注射成型技术成型中观碳微珠

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The applicability of powder injection molding technology to the molding of meso carbon micro beads was studied. The green bodies produced by injection molding of meso carbon micro beads were sintered after thermal debinding in oxidizing (air) and nonoxidizing (N_2) atmospheres. For the sintered body debound thermally in a nonoxidizing atmosphere, the density and bending strength were 1.433Mg/m~3 and 20.25MPa, respectively. For the sintered body debound thermally in an oxidizing atmosphere, they were 1.304Mg/m~3 and 2.39MPa, respectively. When the green bodies produced by injection molding of meso carbon micro beads were debound thermally in air, carbon powder contained in the green bodies was oxidized. Because of this, the sintered body which debound thermally in an oxidizing atmosphere exhibited low density and bending strength as compared to those of the sintered body which debound thermally in a nonoxidizing atmosphere. When a polyamide was used in the fabrication of meso carbon micro beads, the sintered density and bending strength were 1.770Mg/m~3 and 42.62MPa, respectively.
机译:研究了粉末注射成型技术在中观碳微球成型中的适用性。在氧化(空气)和非氧化(N_2)气氛中进行热脱脂后,烧结通过介孔碳微珠的注塑成型生产的生坯。对于在非氧化气氛下热解的烧结体,其密度和抗弯强度分别为1.433Mg / m〜3和20.25MPa。对于在氧化气氛下热解的烧结体,其分别为1.304Mg / m〜3和2.39MPa。当通过中观碳微珠的注射成型生产的生坯在空气中热解粘时,生坯中包含的碳粉被氧化。因此,与在非氧化性气氛中热解离的烧结体相比,在氧化性气氛中热解离的烧结体的密度和弯曲强度低。当使用聚酰胺制造介孔碳微珠时,其烧结密度和弯曲强度分别为1.770Mg / m〜3和42.62MPa。

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