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Additive manufacturing of mould inserts with mirror-like surfaces

机译:模具插件的添加剂制造具有镜像表面

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Selective laser melting (SLM) is often applied in the production of steel moulds with high wear resistance and conformal cooling channels for advanced thermal management. The surface finishing of such moulds is crucial, especially if it is intended for the moulding of plastic parts with aesthetic functionality. The surface quality of such metal 3D printed moulds is typically refined by means of subsequent material removal processes, but this is often hindered by residual porosity and inhomogeneity in the metal structure of the 3D-printed part. In this paper an indirect tooling process chain for production of mould inserts is proposed. The process chain aims at exploiting the good replication capability of electroformed nickel, to copy mirror-like substrates. The bulky part of the insert is produced by means of SLM that shows a considerably higher material deposition rate. The thermal input is controlled throughout the process chain to prevent deleterious grains growth in the nickel layer. The roughness of the nickel surface is measured after the selective etching of the substrate and compared with the substrate roughness before the nickel deposition, showing good replication of the master surface. The proposed process chain overcomes the problems related to the deposition of thick electroformed coatings by coupling electroforming with higher output additive processes such as SLM - that furthermore allows the introduction of cooling channels in close contact with the mould surface.
机译:选择性激光熔化(SLM)通常应用于具有高耐磨性和保形热管理的保形冷却通道的钢模生产。这种模具的表面精加工是至关重要的,特别是如果它旨在用于用美学功能的塑料部件的成型。这种金属3D印刷模具的表面质量通常通过随后的材料去除方法改进,但这通常通过3D印刷部分的金属结构中的残余孔隙率和不均匀性阻碍。本文提出了一种用于生产模具插入件的间接工具过程链。过程链旨在利用电铸镍的良好复制能力,复制镜像衬底。插入件的庞大部分是通过SLM制造的,其显示出相当高的材料沉积速率。在整个过程链中控制热输入以防止镍层的有害谷物生长。在选择性蚀刻基板之后测量镍表面的粗糙度并与镍沉积前的衬底粗糙度进行比较,显示出良好的主表面复制。所提出的工艺链克服了通过耦合具有较高输出添加剂工艺的电铸沉积厚电铸涂层的问题,如SLM,还允许引入与模具表面紧密接触的冷却通道。

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