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Mechanical structuring, surface treatment and tribological characterization of steel mould inserts for micro powder injection moulding

机译:用于微粉注射成型的钢制模具嵌件的机械结构,表面处理和摩擦学特性

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Manufacturing of ceramic and metallic micro components in micro powder injection moulding (μPIM) requires mould inserts offering high wear resistance and a sufficient demoulding behaviour. Within the frame of this research μPIM mould inserts made from low and high alloyed tool steel were structured by micro milling and finished by micro peening and ultrasonic wet peening. Influence of surface condition on wear and demoulding behaviour of the steels in μPIM with ceramic feedstock was characterized using a laboratory tribotester simulating powder injection moulding and a specially adapted static friction tester. Results indicate that performance of mould inserts in micro powder injection moulding depends not only on hardness, surface condition and homogeneity of the mould insert materials but also is strongly influenced by the characteristics of the feedstock, like composition of the binder or amount and hardness of the ceramic particles.
机译:在微粉末注射成型(μPIM)中制造陶瓷和金属微组件需要具有高耐磨性和足够脱模性能的模具嵌件。在这项研究的框架内,由低合金和高合金工具钢制成的μPIM模具镶件通过微铣削进行结构化,并通过微喷丸和超声湿喷丸进行精加工。使用实验室三botester模拟粉末注射成型和专门改装的静摩擦测试仪,表征了表面条件对含陶瓷原料的μPIM中钢的磨损和脱模性能的影响。结果表明,微粉注射成型中模具镶块的性能不仅取决于模具镶块材料的硬度,表面状况和均质性,而且还受原料特性(例如粘合剂的组成或粉末的量和硬度)的强烈影响。陶瓷颗粒。

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