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首页> 外文期刊>Journal of micro and nano manufacturing >Manufacturing of 316L Stainless Steel Die Mold by Hot Embossing Process for Microfluidic Applications
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Manufacturing of 316L Stainless Steel Die Mold by Hot Embossing Process for Microfluidic Applications

机译:微流控应用热压印工艺制造316L不锈钢模具

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摘要

Hot embossing process has emerged as a viable method for producing small, complex, precision parts in low volumes. It provides several advantages such as low-cost for molds, high replication accuracy for microfeatures and simple operation. The adaptation of this process for producing high fidelity hot embossed feedstock based metallic powders without the need for machining of the die mold is outlined. This was achieved through a combination of powder metallurgy and plastic hot embossing technologies to produce net-shape metal or hard materials components. In this paper, the manufacturing of molds that are suitable for the production of microfluidic systems using the replication technique is discussed. Variations of parameters in the replication process were investigated. An experimental rheological study was performed to evaluate the influence of the mixing parameters on the rheological behavior and thermal stability of 316L stainless steel feedstock. The effects of the solid loading on the feedstock rheological properties and tolerance control as well as mechanical properties and microstructures were investigated.
机译:热压印工艺已经成为一种可行的方法,用于以小批量生产小型,复杂,精密的零件。它具有多种优势,例如模具成本低,微观特征的复制精度高以及操作简单。概述了该方法的适应性,该方法用于生产高保真度的热压花原料金属粉末,而无需对模具进行机加工。这是通过将粉末冶金和塑料热压纹技术相结合来生产网状金属或硬质材料组件而实现的。在本文中,讨论了使用复制技术制造适用于生产微流体系统的模具。研究了复制过程中参数的变化。进行了实验流变学研究,以评估混合参数对316L不锈钢原料的流变行为和热稳定性的影响。研究了固含量对原料流变性能和耐受性控制以及机械性能和微观结构的影响。

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