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Spatial partitioning of solids for solid freeform fabrication
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Source ACM Symposium on Solid and Physical Modeling archive
Proceedings of the fourth ACM symposium on Solid modeling and applications table of contents
Atlanta, Georgia, United States
Pages: 346 - 353  
Year of Publication: 1997
ISBN:0-89791-946-7
Authors
Krishnan Ramaswami  Department of Mechanical Engineering, Stanford University, Stanford, CA
Yasushi Yamaguchi  Department of Graphics and Computer Science, University of Tokyo, Tokyo 153, Japan and Department of Mechanical Engineering, Stanford University, Stanford, CA
Fritz B. Prinz  Department of Mechanical Engineering, Stanford University, Stanford, CA
Sponsor
SIGGRAPH: ACM Special Interest Group on Computer Graphics and Interactive Techniques
Publisher
ACM  New York, NY, USA
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Downloads (6 Weeks): 5,   Downloads (12 Months): 19,   Citation Count: 1
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REFERENCES

Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.

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C. Hornung. An approach to a calculation-minimized hidden line algorithm, in EUROGRAPHICS '81, pages 31-42. North- Holland, 1981.
 
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Harris L. Marcus and David L. Bourell. Solid freeform fabrication. Advanced Materials and Processes, 144(3):28-35, 1993.
 
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R. Merz, E B. Prinz, K. Ramaswami, M. Terk, and L.E. Weiss. Shape deposition manufacturing. In Proceedings of the Solid Freeform Fabrication Symposium, pages 1-8. University of Texas at Austin, 1994.
 
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Robert Merz. Shape Deposition Manufacturing. PhD thesis, Institut for Allgemeine Elektrotechnik und Elektronik,Technische Universit~t Wien, May 1994.
 
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Krishnan Ramaswami. Process Planning for Shape Deposition Manufacturing. PhD thesis, Stanford University, January 1997.
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Collaborative Colleagues:
Krishnan Ramaswami: colleagues
Yasushi Yamaguchi: colleagues
Fritz B. Prinz: colleagues