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Investigations on process parameters influencing the quality of optical lenses formed by non-isothermal embossing of inorganic glasses

机译:对影响无机玻璃非等温凹凸形成的光学镜片质量的研究

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In this paper an advanced replication method for the production of optical components in inorganic glasses is introduced. The replication process features a non-isothermal molding procedure with short cycle time and thus reduced costs. Due to the complex thermo-mechanical behavior of the glass under non-isothermal forming conditions a detailed understanding of the process is essential for the replication of highly accurate optical components with tight tolerances. Thus the pressing process was investigated considering a certain demonstrator component to identify different stages when the gross geometry and the optical surface were formed. Then the most relevant process parameters were studied and their effects on the quality of the molded glass were quantified. It was found out that the geometrical properties, e.g. the thickness of the component is adjusted during a very short time interval after the glass contacts the mold, whereas contour and warping can be influenced for a longer time in the process. The parameters with the most significant influence on the thickness were the temperature of the glass blank and the target position of the pressing unit, whereas the duration of the glass-to-mold contact is a parameter which affects the contour of the molded component.
机译:本文介绍了一种用于生产无机眼镜中的光学组分的先进复制方法。复制过程具有短循环时间的非等温成型过程,从而降低成本。由于非等温成形条件下玻璃的复杂热电机械行为,对该过程的详细了解对于具有紧密公差的高精度光学部件来说是必不可少的。因此,考虑到一定的演示组件,研究了按压过程以在形成总重量和光学表面时识别不同阶段。然后研究了最相关的过程参数,量化了对模塑玻璃质量的影响。它发现了几何特性,例如几何特性。在玻璃接触模具之后在非常短的时间间隔期间调节部件的厚度,而轮廓和翘曲可以影响该过程的较长时间。对厚度最显着影响的参数是玻璃坯料的温度和按压单元的目标位置,而玻璃板到模触的持续时间是影响模塑部件的轮廓的参数。

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