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Title: Mechanisms influencing and prediction of tool influence function spots during hemispherical sub-aperture tool polishing on fused silica

Journal Article · · Applied Optics
DOI:https://doi.org/10.1364/AO.410903· OSTI ID:1737866

Sub-aperture tool polishing of precision optics requires a detailed understanding of the local material removal [tool influence function (TIF)] at the contact spot between the workpiece and tool to achieve high removal determinism and hence precision of the optic relative to the desired/design surface figure. In this study, the mechanisms influencing and the quantitative prediction of the removal rate and shape of TIF spots during polishing of fused silica glass with cerium oxide slurry using a rotating hemispherical pad-foam tool for a wide variety of process conditions (including tool properties, kinematics, and applied displacements) are investigated. The TIF volumetric removal rate can be estimated utilizing the average relative velocity and contact area using a simple analytical model. In addition, stability of the volumetric removal rate for fixed process conditions is shown to be greatly dependent on the pad preparation and amount of tool use (affecting both pad topography and slurry buildup), whose general behavior shows an increase in removal rate followed by stabilization with polishing time. The determination of the TIF removal shape is more complex. An extended version of the Preston removal model is developed to explain a comprehensive set of measured TIF removal shapes to within ∼ <#comment/> 22 % <#comment/> . This model incorporates a number of phenomena impacting the TIF removal shape including: (a) temporal and spatial dependent relative velocity between the workpiece and tool; (b) an elastic mechanics based, as well as hydrodynamic, pressure distribution; (c) a spatially dependent friction coefficient possibly caused by both reduced slurry replenishment in low velocity regions and pad slurry islands (100 µm scale) and porosity (millimeter scale); and (d) a shear-based removal mechanism on the periphery of the contact spot.

Sponsoring Organization:
USDOE
Grant/Contract Number:
AC52-07NA27344; LLNL-JRNL-814609
OSTI ID:
1737866
Journal Information:
Applied Optics, Journal Name: Applied Optics Vol. 60 Journal Issue: 1; ISSN 1559-128X
Publisher:
Optical Society of AmericaCopyright Statement
Country of Publication:
United States
Language:
English

References (42)

Modeling and analysis of sub-aperture tool influence functions for polishing curved surfaces journal January 2018
Measurements of Slurry Film Thickness and Wafer Drag during CMP journal January 2004
New results extending the Precessions process to smoothing ground aspheres and producing freeform parts conference September 2005
Deterministic polishing process for aspheric lenses in a production environment conference October 2013
Buckling of spherical capsules journal October 2011
Multi-scale modeling and simulation of material removal characteristics in computer-controlled bonnet polishing journal February 2016
Polishing tool and the resulting TIF for three variable machine parameters as input for the removal simulation conference June 2017
Modification of tool influence function of bonnet polishing based on interfacial friction coefficient journal January 2018
Improved semirigid bonnet tool for high-efficiency polishing on large aspheric optics journal May 2016
Investigation of contact pressure and influence function model for soft wheel polishing journal January 2015
An Integrated Manufacturing System for the Design, Fabrication, and Measurement of Ultra-Precision Freeform Optics journal October 2010
Parametric modeling of edge effects for polishing tool influence functions journal January 2009
Fabrication of freeform optics conference August 2015
Time-varying tool influence function model of bonnet polishing for aspheric surfaces journal January 2019
Characterization of the tool influence function in a dual-axis wheel polishing process to achieve high material removal rates journal April 2018
Static tool influence function for fabrication simulation of hexagonal mirror segments for extremely large telescopes journal January 2005
Tool removal function modeling and processing parameters optimization for bonnet polishing journal August 2016
Modeling and validation of polishing tool influence functions for manufacturing segments for an extremely large telescope journal January 2013
The no-slip condition of fluid dynamics journal November 1990
Mechanism and Simulation of Removal Rate and Surface Roughness During Optical Polishing of Glasses journal March 2016
Removal rate model for magnetorheological finishing of glass journal January 2007
Mid-spatial frequency errors in feed direction occurring in ADAPT polishing conference July 2019
Freeform optics manufacturing conference November 2017
A theoretical and experimental investigation of material removal characteristics and surface generation in bonnet polishing journal August 2016
Fundamentals of Magnetorheological Fluid Utilization in High Precision Finishing journal September 1999
A Mixed-Lubrication Approach to Predicting CMP Fluid Pressure Modeling and Experiments journal January 2005
Design and fabrication of a dual-element off-axis near-eye optical magnifier journal January 2007
Modeling of tool influence function for high-efficiency polishing journal October 2015
Materials Science and Technology of Optical Fabrication book January 2018
Toward Deterministic Material Removal and Surface Figure During Fused Silica Pad Polishing journal February 2010
Modelling and simulation of structure surface generation using computer controlled ultra-precision polishing journal October 2011
Fracture of Brittle Solids book January 2010
Mechanisms of Chemical-Mechanical Polishing of SiO 2 Dielectric on Integrated Circuits journal January 1998
Simulation and experimental study on the concave influence function in high efficiency bonnet polishing for large aperture optics journal May 2018
Hydrodynamics of Slurry Flow in Chemical Mechanical Polishing journal January 2006
Buckling of spherical shells adhering onto a rigid substrate journal November 2005
Fluid pressure and its effects on chemical mechanical polishing journal August 2002
Experiments and observations regarding the mechanisms of glass removal in magnetorheological finishing journal January 2001
In Situ Technique for Dynamic Fluid Film Pressure Measurement during Chemical Mechanical Polishing journal January 2000
Modeling of the static tool influence function of bonnet polishing based on FEA journal June 2014
The Buckling of Spherical Shells by External Pressure journal December 1939
Influence of Temperature and Material Deposit on Material Removal Uniformity during Optical Pad Polishing journal May 2014

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