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February 18, 2022Precision Engineering87 citationsOpen Access

Injection molding of high-precision optical lenses: A review

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CPC.A.O. PeixotoPVP. T. ValentimPSPatrícia C. Sousa

Key Points

  • To review recent technological progress in injection molding for the manufacturing of high-precision optical polymer lenses.
  • Reviewed literature on the influence of injection molding process parameters on residual stress, replication accuracy, and lens surface contours.
  • Assessed fabrication technologies for high-precision optical mold inserts and emerging molding techniques.
  • Examined methods for the application and characterization of anti-reflective optical coatings.
  • Precise control of processing parameters and ultra-accurate mold insert fabrication are essential to minimize residual stress and preserve surface contours.
  • Emerging injection molding technologies significantly enhance replication fidelity and optical quality across complex geometries.
  • Anti-reflective coatings and advanced characterization methods further optimize light transmission and optical performance.

Abstract

Injection molding (IM) is the most efficient mass production technology for manufacturing polymers in complex and detailed geometries with high precision. Although, with the demanding requirements for the optical components, the manufacturing process continues to be a challenge. The majority of optical components require high optical quality with low residual stress, high replication degree, and precisely controlled surface contours, which require a high control of the processing parameters and high-precision optical mold inserts. The main scope of this review is to describe recent progress in the IM, in particular, in the production of high-precision optical lenses. Thereby, an overview of the influence of process parameters, the emerging technologies able to improve the quality of molded components, and the fabrication technologies to produce optical inserts are provided. Furthermore, this review also reports the enhancement of optical performance by using optical coatings. Anti-reflective (AR) coatings, their fabrication techniques, as well as the methodologies typically employed for characterization are also addressed.

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Cite This Study

Peixoto et al. (2022) studied this question.

synapsesocial.com/papers/69d962a55e5bcb4e3b83604chttps://doi.org/10.1016/j.precisioneng.2022.02.002
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