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Fabrication of Gas-Permeable Die Materials Having Orthogonally Arrayed Pore Channels

机译:具有正交排列的孔通道的透气模具材料的制造

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Defects of components as a result of entrapped gases during an injection process could be minimized with the utilization of a gas-permeable metal die material in the mold, due to its excellent permeability of air. Conventional gas-permeable die materials employ low temperature sintering of loosely packed steel powders with or without the addition of pore-forming polymers, whose microstructures are usually weak and their gas permeability values are also low. In this study, gas-permeable metal die materials are developed using tool steel powder, packed in a mold having the insertion of orthogonally arrayed polymer wires. Linear gas-permeable channels in orthogonal array are thus developed by the burning out of the polymer wires, which yield a large value of air permeability. The value of air permeability can be adjusted by changing the diameter and number density of the polymer wires. The tool steel powder can be made fully dense by supersolidus liquid phase sintering, yielding a microstructure with a wear resistance value much larger than that of the conventional gas-permeable die material.
机译:在注射过程中的部件截留气体的混合物的结果的缺陷可以用可透气的金属模具材料在模具中的利用率最小化,由于其空气透过性优异。常规的气体可渗透的模具材料采用低温用添加或不添加造孔聚合物,其微观结构通常是弱和它们的气体渗透率值也低的松散填充的钢粉末的烧结。在这项研究中,气体可渗透的金属模具材料使用的是工具钢粉末,装在具有正交排列聚合物导线的插入模具中显影。在正交线性气体可渗透通道从而由聚合物电线,其产生透气性的大的值的烧出显影。透气度的值可通过改变聚合物线的直径和个数密度进行调整。工具钢粉末可以通过supersolidus液相烧结完全致密制成,产生具有比常规气体可渗透模材料的大得多的磨损电阻值的微结构。

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