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用于微结构聚合物菲涅耳透镜生产的注塑成型和注射压缩成型的制造特征

Manufacturing Signatures of Injection Molding and Injection Compression Molding for Micro-Structured Polymer Fresnel Lens Production.

作者信息

Loaldi Dario, Quagliotti Danilo, Calaon Matteo, Parenti Paolo, Annoni Massimiliano, Tosello Guido

机构信息

Department of Mechanical Engineering, Technical University of Denmark (DTU), 2800 Kgs. Lyngby, Denmark.

Politecnico di Milano, Department of Mechanical Engineering, 20156 Milan, Italy.

出版信息

Micromachines (Basel). 2018 Dec 10;9(12):653. doi: 10.3390/mi9120653.

Abstract

Injection compression molding (ICM) provides enhanced optical performances of molded polymer optics in terms of birefringence and transmission of light compared to Injection molding (IM). Nevertheless, ICM requires case-dedicated process optimization to ensure that the required high accuracy geometrical replication is achieved, particularly especially in the case of surface micro-features. In this study, two factorial designs of experiments (DOE) were carried out to investigate the replication capability of IM and ICM on a micro structured Fresnel lens. A laser scanning confocal microscope was employed for the quality control of the optical components. Thus, a detailed uncertainty budget was established for the dimensional measurements of the replicated Fresnel lenses, considering specifically peak-to-valley (PV) step height and the pitch of the grooves. Additional monitoring of injection pressure allowed for the definition of a manufacturing signature, namely, the process fingerprint for the evaluation of the replication fidelity under different process conditions. Moreover, considerations on the warpage of parts were related to a manufacturing signature of the molding processes. At last, the global part mass average and standard deviation were measured to correlate local geometrical replication performances with global part quality trends.

摘要

与注塑成型(IM)相比,注射压缩成型(ICM)在模塑聚合物光学元件的双折射和光传输方面提供了更高的光学性能。然而,ICM需要针对具体情况进行工艺优化,以确保实现所需的高精度几何复制,特别是在表面微特征的情况下。在本研究中,进行了两个析因实验设计(DOE),以研究IM和ICM在微结构菲涅尔透镜上的复制能力。使用激光扫描共聚焦显微镜对光学元件进行质量控制。因此,针对复制的菲涅尔透镜的尺寸测量建立了详细的不确定度预算,特别考虑了峰谷(PV)台阶高度和凹槽间距。对注射压力的额外监测允许定义一种制造特征,即用于评估不同工艺条件下复制保真度的工艺指纹。此外,对零件翘曲的考虑与成型工艺的制造特征相关。最后,测量了整体零件质量平均值和标准偏差,以将局部几何复制性能与整体零件质量趋势相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22a0/6316790/2e9da5b0c4da/micromachines-09-00653-g0A1a.jpg

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