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Two process chains for creating functional surfaces on mold for 3D geometry

机译:两个工艺链,用于在3D几何模具上创建功能表面

摘要

Polymer products with functional surfaces are applied in many fields such as medical and bio technology [1][2]. It is believed that certain types of micro- or nano- structured surfaces can enhance tissue anchoring [3]. However, most technologies for the fabrication of micro-structured functional surfaces are still limited to flat geometries or geometries with constant curvature [4] . Typically products that need micro structuring on the surface have a three dimensional and complex geometry. There are huge demand for investigation in establishing the micro structures on the surface of a 3D mold. This paper describes and compares 2 approaches for fabricating micro- structured surfaces suitable for patterning of 3D shape cavity for injection moulding. The application investigated for the research is a part of a fixture for electrodes to be implanted inside human body. It is a ring with four wings as illustrated by Figure 1.
机译:具有功能表面的聚合物产品已应用于许多领域,例如医学和生物技术[1] [2]。据信某些类型的微结构或纳米结构的表面可以增强组织锚固[3]。然而,大多数用于制造微结构化功能表面的技术仍然限于平面几何形状或具有恒定曲率的几何形状[4]。通常,需要在表面进行微结构化的产品具有三维复杂的几何形状。在3D模具表面上建立微观结构时,对调查的需求很大。本文介绍并比较了两种制造微结构化表面的方法,这些表面适用于3D形腔的成型,以用于注塑成型。用于研究的应用是植入人体中的电极固定装置的一部分。它是一个带有四个翼的环,如图1所示。

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