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首页> 外文期刊>Applied optics >Precision compression molding of glass microlenses and microlens arrays-an experimental study
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Precision compression molding of glass microlenses and microlens arrays-an experimental study

机译:玻璃微透镜和微透镜阵列的精密压缩成型-实验研究

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摘要

An innovative manufacturing process utilizing high-temperature compression molding to fabricate aspherical microlenses by using optical glasses, such as BK7, K-PG325, and soda-lime glass, is investigated. In a departure from conventional approaches, a unique hollow contactless mold design is adopted. Polished glass substrates and the mold assembly are heated above the glass transition temperature first, followed by initial forming, then annealing. The forming rate is controlled in real time to ensure mold position accuracy. Mold materials used include tungsten carbides, 316 stainless steel, 715 copper nickel, and aluminum alloys. The geometric control of the microlenses or microlens arrays can be precisely controlled by the forming temperature, forming speed, mold design, and annealing time.
机译:研究了一种创新的制造工艺,该工艺利用高温压缩成型通过使用光学玻璃(例如BK7,K-PG325和钠钙玻璃)制造非球面微透镜。与常规方法不同,采用了独特的中空非接触式模具设计。首先将抛光的玻璃基板和模具组件加热到玻璃化转变温度以上,然后进行初始成型,然后进行退火。成型速度是实时控制的,以确保模具位置精度。所使用的模具材料包括碳化钨,316不锈钢,715铜镍和铝合金。微透镜或微透镜阵列的几何控制可以通过成型温度,成型速度,模具设计和退火时间来精确控制。

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