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首页> 外文期刊>Journal of Micromechanics and Microengineering >Development of a modularized and sectioned micromold system for microinjection molding of plastic microstructured surfaces with complex features
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Development of a modularized and sectioned micromold system for microinjection molding of plastic microstructured surfaces with complex features

机译:开发用于微注射成型具有复杂特征的塑料微结构表面的模块化,分段微模具系统

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摘要

In this study, a novel modularized and sectioned micromold system (MSMS) is proposed and developed for the replication of various plastic microstructured surfaces with complex features. The developed MSMS consists of sectioned micromold modules (SIMMs), each of which has unique cross-sectional microfeatures on one surface. Together, these form the entire micromold surface. After multiple SMMs are precisely prepared, the final MSMS for a micromolding application can be efficiently constructed in various combinations by assembling several SMMs. In order to exemplify the developed MSMS, three prototypes of microstructured surfaces with complex microscale features were realized. These include (i) a complex microstructured surface, (ii) multi-level microstructured surface and (iii) oblique microstructured surface. The SMMs for each case were precisely manufactured using deep X-ray lithography and nickel electroforming. The MSMS for the replication of the microstructured surfaces was then obtained by assembling the fabricated SMMs. Finally, three kinds of prototypes were replicated with a microinjection molding process utilizing the constructed MSMS, verifying the usefulness of the present micromold system in various applications such as the fabrication of functional surfaces for optical, microfluidic and biomedical microsystems.
机译:在这项研究中,提出并开发了一种新颖的模块化和分段微模具系统(MSMS),用于复制具有复杂功能的各种塑料微结构表面。所开发的MSMS由分段的微模具模块(SIMM)组成,每个模块在一个表面上都具有独特的截面微特征。这些一起形成了整个微模具表面。精确地准备好多个SMM之后,通过组装几个SMM,可以以各种组合有效地构造用于微成型应用的最终MSMS。为了举例说明已开发的MSMS,实现了三个具有复杂微尺度特征的微结构表面的原型。这些包括(i)复杂的微结构化表面,(ii)多层微结构化表面和(iii)倾斜微结构化表面。每种情况下的SMM均使用深X射线光刻和镍电铸工艺精确制造。然后通过组装制造的SMM获得用于微结构表面复制的MSMS。最后,利用所构建的MSMS,通过微注射成型工艺复制了三种原型,证明了本微模具系统在各种应用中的有用性,例如光学,微流体和生物医学微系统功能表面的制造。

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