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Development of Metal Powder Hot Embossing: A New Method for Micromanufacturing

机译:金属粉末热压印的开发:微单制造的一种新方法

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摘要

Hot embossing is a small-scale, low-cost processing technology that can deliver products to the market in a short time. This microreplication technology is well established to produce polymeric components and has applications in several industrial sectors. The use of micropowder hot embossing in the production of metal components is an emerging and challenging process that, when compared to other typical technologies, brings some economic advantages in a volatile market with an increasing tendency to manufacture customized products. The main objective of this review is to analyze the potential of powder hot embossing and its developments in the production of metallic microparts/components. This technology requires four distinct steps: (1) production feedstock (preparation of mixtures), (2) hot embossing (shape forming), (3) debinding and (4) sintering. These steps are interrelated and influence the characteristics of the final metallic microparts. This study summarizes the approaches implemented for the use of different metallic powders and polymeric binder systems for the preparation of the feedstock, the mold materials and the critical conditions tested in the embossing step to produce green parts, and the production of the final parts through the application of debinding and sintering. Powder hot embossing is a viable replication technology that allows the production of new metallic microcomponents, contributing to the global scientific effort of miniaturizing manufacturing process, equipment and products. The merit of powder hot embossing for industrialization needs further development to assert itself in the market and compete with other micromanufacturing techniques.
机译:热压花是一种小型,低成本的加工技术,可以在短时间内向市场提供产品。该微塑料技术得到了很好的成立,生产聚合物组分,并在若干工业部门具有应用。 Micropowder热压印在金属部件的生产中是一种新兴和挑战性的过程,与其他典型技术相比,在挥发性市场中带来了一些经济优势,随着制造定制产品的越来越倾向。本综述的主要目标是分析粉末热压花的潜力及其在生产金属微粒/组件中的发展。该技术需要四个不同的步骤:(1)生产原料(混合物的制备),(2)热压花(形状成型),(3)逐步和(4)烧结。这些步骤是相互关联的并且影响最终金属微珠的特性。本研究总结了用于使用不同金属粉末和聚合物粘合剂系统的方法,用于制备原料,模具材料和在压花步骤中测试的临界条件以产生绿色零件,并通过中的最终部件的生产欺骗和烧结的应用。粉末热压花是一种可行的复制技术,可以生产新的金属微型组件,为小型化制造过程,设备和产品的全球科学努力提供贡献。粉末热压花的工业化的优点需要进一步发展,在市场上断言,并与其他微单制造技术竞争。

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