TECHNICAL PAPERS

Predictive Molding of Precision Glass Optics

Date Published: 2009-04-20
Paper Number: 2009-01-1199
DOI: 10.4271/2009-01-1199

Citation:

Madapusi, S., Kim, N., and Tomhe, Y., "Predictive Molding of Precision Glass Optics," SAE Int. J. Mater. Manuf. 2(1):494-501, 2009, doi:10.4271/2009-01-1199.

Author(s):


Shriram Madapusi - Univ. of Florida
Nam-Ho Kim - Univ. of Florida
Yazid Tomhe - Moore Nanotechnology Systems

Abstract:

Precision glass molding process is an attractive approach to manufacture small precision optical lenses in large volume over traditional manufacturing techniques because of its advantages such as low cost, fast time to market and being environment friendly. In this paper, we present a physics-based computational tool that predicts the final geometry of the glass element after molding process using the finite element method. Deformations of both glass and molds are considered at three different stages: heating, molding, and cooling. A 2D axisymmetric finite element model is developed to model the glass molding process. The proposed modeling technique is more efficient than the all-in-one modeling technique. The molds are assumed to be rigid, except for thermal expansion, at all time and glass treated as a flexible body during the compression. Details on identifying material parameters, modeling assumptions, and simplifications are discussed. The tool can be used to predict the final shape of the molded optic. This tool eventually can be used to design proper mold geometry that yields the correct shape of the final optical element, thereby eliminating the iterative procedure for designing the molds.

File Size: 801K

Product Status: In Stock

Included in: V118-5

See papers presented at SAE World Congress & Exhibition, April 2009, Detroit, MI, USA, Session: Glass Applications

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