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Powder injection moulding of metallic and ceramic micro parts

机译:金属和陶瓷微零件的粉末注射成型

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Industrial use of micro components is determined by the availability of efficient manufacturing techniques. While micro injection moulding of plastic is common practice, metal and ceramic powder injection moulding (PIM) still is under development. High-pressure and low-pressure injection moulding methods complement each other ideally, covering the entire spectrum from prototype to large-scale production. With high-pressure PIM, micro gear wheels with diameters <300 μm can be fabricated using LIGA mould inserts. Densities between 97 and 99% of the theoretical values are achieved. Apart from oxide ceramics, metal materials like copper or powder metallurgical steels like 17-4PH or 316L are often applied. Multi-component injection moulding requires less mounting steps and, hence, offers decisive advantages for effective production of interesting material combinations like electrically conductive/insulating or hard/ductile. Studies relating to the fabrication of immobile as well as mobile shaft-wheel components were performed. Other activities focussed on in-mould labelling with foils containing ultra-fine particles to improve surface quality and detail accuracy. Low-pressure injection moulding allows for the manufacture of small series within 1–4 weeks at low cost. However, the process has features which are not compatible with high-pressure PIM. Although use of a low-viscous feedstock is associated with various benefits, low-pressure injection moulding has not met with acceptance in micro moulding.
机译:微型组件的工业用途取决于有效制造技术的可用性。尽管塑料的微注射成型是很普遍的做法,但金属和陶瓷粉末注射成型(PIM)仍在开发中。高压和低压注塑方法可以理想地相互补充,涵盖从原型到大规模生产的整个范围。借助高压PIM,可以使用LIGA模具嵌件制造直径小于300μm的微型齿轮。密度达到理论值的97%至99%。除了氧化物陶瓷以外,还经常使用金属材料(例如铜)或粉末冶金钢(例如17-4PH或316L)。多组分注塑成型所需的安装步骤更少,因此,对于有效生产有趣的材料组合(例如导电/绝缘或硬质/延展性)提供了决定性的优势。进行了有关固定和可移动轴齿轮组件制造的研究。其他活动集中在使用包含超细颗粒的箔进行模内贴标,以提高表面质量和细节精度。低压注塑成型可以在1-4周内以低成本制造小批量产品。但是,该过程具有与高压PIM不兼容的功能。尽管使用低粘度原料具有多种好处,但低压注塑成型尚未在微型成型中得到认可。

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