BIBLIOGRAPHY

Anonymous, 1964, "Ultrasonic Drilling with a Diamond Impregnated Probe," Ultrasonics, January-March, Vol.2, pp.1-4.

Anonymous, 1966, "An Improved Ultrasonic Machine Tool for Glass and Ceramics," Industrial Diamond Review, Vol.26, No.308, pp.274-278.

Anonymous, 1973, "Drilling Deep Holes in Glass," Ultrasonics, May, p.103.

Barks, R. E., Subramanian, K., and Ball, K. E., 1987, Intersociety Symposium on Machining of Advanced Ceramic Materials and Components, The American Ceramic Society, Inc., Westerville, Ohio.

Bifano, T. G., 1988, '1Ductile-Regime Grinding of Brittle Materials," Ph.D. thesis, North Carolina State University.

Bifano, T. G., Blake, P., Dow, T. A., and Scattergood, R. 0., 1987, t1Precision

Machining of Ceramic Materials," Intersociety Symposium on Machining of

Advanced Ceramic Materials and Components, ed. R. E. Barks, K.

Subramanian, and K. E. Ball, The American Ceramic Society, Inc.,

Westerville, Ohio, pp.99-120.

Bifano, T. G., Dow, T. A., and Scattergood, R. O., 1991, "Ductile-Regime Grinding: A New Technology for Machining Brittle Materials," Transactions of the ASME, Journal of Engineering for Industry, Vol. 113, pp. 184-189.

Blake, P. N., and Scattergood, R. 0., 1990, "Ductile-Regime Machining of Germanium and Silicon," Journal ofAmerican Ceramic Society, Vol.73, pp.949-957.

Boettger, J. M., Ker, M. K., Shore, P., and Stephenson, D. J., 1993, "Influence of Ductile Mode Grinding on the Strength of Silicon Based Ceramics," Machining of Advanced Materials, ed. S. Jahanmir, NIST Special Publication 847, pp.

353-358.

153

Cass, R., and Rothman, C., 1995, "A New Concept to Promote Ceramics, "American Ceramic Society Bulletin, Vol.. 74, No.1, pp.64-65.

Chandrasekar, S., and Sathyanarayanan, G, 1987, "An Investigation into the Mechanics of Diamond Grinding of Brittle Materials," 15th North American Manufacturing Research Conference Proceedings, Vol.2, Manufacturing Technology Review, pp. 499-505.

Chechins, L. G. and Tikhonov, G. N., 1968, "Ultrasonic Machining with a Tool Charged with Diamond Power," Coll. Electrophysical and Electrochemical Methods of Machining, MDNTP. (Quoted in Petrukha et al., 1970.)

Cleave, D. V., 1976, "Ultrasonics Gets Bigger Jobs in Machining and Welding," Iron Age, September 13, pp.69-72.

Collins, J. A., 1981, Failure of Materials in Mechanical Design, John Wiley & Sons, New York.

Dam, H., Jensen, J., and Quist, P., 1993, "Surface Characterization of Ultrasonic Machined Ceramics with Diamond Impregnated sonotrode," Machining of Advanced Materials, ed. S. Jahanmir, NIST Special Publication 847, pp.125-133.

Dawe Instruments Ltd., 1967, "Dawe Type 1 138A Ultrasonic Machine Tool," Metalworking Production, Vol.111, No.17, p.77.

DeVor, R. E., Chang, T. H., and Sutherland, J. W., 1992, Statistical Quality Design and Control, Contemporary Concepts and Methods, Macmillan Publishing Company, New York.

Eckert, C., and Weatherall, J., 1990, "Advanced Ceramics: 90's Global Business Outlook," Ceramics Industry, April, pp.53-57.

Farris, T. N., and Chandrasekar, S., 1994, "Wear Mechanisms in Ceramic Machining," Applied Mechanics Review, Vol.47, No.6, pp. S204-208.

Faulk, N., 1992, "Electrical Discharge Machining," Engineered Materials Handbook, Volume 4: Ceramics and Glasses, ASM International.

154

Fawcett, S. C., and Dow, T. A., 1991, "Development of a Model for Precision Contour Grinding of Brittle Materials," Precision Engineering, Vol.13, No.4, pp.

270-276.

Graff, K. F., 1975, "Ultrasonic Machining," Ultrasonics, May, pp.103-109.

Hards, K. W., 1966, "Ultrasonic Speed Diamond Machining," Ceramic Age, Vol.82, No.12, pp.34-36.

Hashimoto, H., Takeda, J., Imai, K., and Blaedel, K., 1993, "Shear-mode Grinding of Brittle Materials and Surfaces Characteristics," International Journal of Japan Society of Precision Engineering, Vol.27, No.2, pp.95-100.

Hockey, B. J., 1970, "Observations on Mechanically Abraded Aluminum Oxide Crystals

by Transmission Electron Microscope," The Science of Ceramic Machining and

Surface Finishing, ed. S. J. Schneider and R. W. Rice, NBS Special

Publication 348, U.S. Government Printing Office, Washington, D.C., pp.

333-339.

Hockey, B. J., and Rice, R. W., 1979, The Science of Ceramic Machining and Surface Finishing II, National Bureau of Standards Special Publication 562.

Huerta, M., and Malkin, S., 1976, "Grinding of Glass: The Mechanics of the Process," Transactions of the ASME, Journal of Engineering for Industry, pp. 459-467.

Ives, L. K., Evans, C. J., Jahanmir, S., Polvani, R. S., Strakna, T. J., and McGlauflin, M. L., 1993, "Effect of Ductile-Regime Grinding on the Strength of Hot-Isostatically-Pressed Silicon Nitride," Machining of Advanced Materials, ed. S. Jahanmir, NIST Special Publication 847, pp.341-352.

Jahanmir, S., Ives, L. K., Ruff, A. W., and Peterson, M. B., 1992, "Ceramic Machining: Assessment of Current Practice and Research Needs in the United States," NIST Special Publication 834.

Jahanmir, S., 1993, Machining of Advanced Materials, NIST Special Publication 847.

Kainth, G. S., Nandy, A., and Singh, K., 1979, 1'On the Mechanics of Material Removal in Ultrasonic Machining," International Journal of Machine Tool Design and Research, Vol.19, pp.33-41.

Kingery, W. D., Bowen, H. K., and Uhlmann, D. R., 1976, Introduction to Ceramics, John Wiley & Sons, New York.

Koepke, B. G., and Stokes, R. J., 1969, "A Study of Grinding Damage in Magnesium Oxide Single Crystals," Office of Naval Research Technical Report HR-69-283, pp.5-26.

Koepke, B. G., 1970, "An Assessment of Surface and Subsurface Damage Introduced in Ceramics by Semifinish Grinding Operations," The Science of Ceramic Machining and Surface Finishing, ed. S. J. Schneider and R. W. Rice, NBS Special Publication 348, U.S. Government Printing Office, Washington, D.C., pp.317-332.

Kohls, J. B., 1984, "Ultrasonic Manufacturing Process: Ultrasonic Machining (USM) and Ultrasonic Impact Grinding (USIG)," The Carbide and Tool Journal, September-October, pp.12-15.

Komaraiah, M., and Reddy, P. N., 1991, "Rotary Ultrasonic Machining -- A New Cutting Process and Its Performance," International Journal of Production Research, Vol.29, No.11, pp.2177-2187.

Komaraiah, M., and Reddy, P. N., 1993, "A Study on the Influence of workpiece Properties in Ultrasonic Machining," International Journal of Machine Tools and Manufacture, Vol.33, pp.495-505.

Konig, W., and Wemhoner, J., 1989, "Optimizing Grinding of SiSiC," Ceramic Bulletin, Vol.68, pp.545-548.

Kubota, M., Tamura, Y., and Shimamura, N., 1977, "Ultrasonic Machining with a Diamond Impregnated Tool," Bulletin of Japan Society of Precision Engineering, Vol.11, No.3, pp.127-132.

156

Kumabe, J., Fuchizawa, K., Soutome, T., and Nishimoto, Y., 1989, "Ultrasonic Supemosition Vibration Cutting of Ceramics," Precision Engineering, Vol.11, No.2, pp.71-77.

Legge, P., 1964, "Ultrasonic Drilling of Ceramics," Industrial Diamond Review, Vol.24, No.278, pp.20-24.

Legge, P., 1966, "Machining Without Abrasive Slurry," Ultrasonics, July, pp.157-162.

Lenard, J., 1994, Cocombustion Could Lower U.S. Oil Use," ASME News, February,

p.4.

Markov, A. I., 1966, Ultrasonic Machining of Intractable Materials (translated from Russian), Illife Books, London.

Markov, A. I. et al., 1969, "Ultrasonic Drilling of Deep Holes in Quartz, with a Bonded Abrasive-Diamond Tool," Electrophysical and Electrochemical Methods of Machining, NIIMASh, No.5-6. (Quoted in Petrukha et al., 1970.)

Markov, A. I., and Ustinov, I. D., 1972, "A Study of the Ultrasonic Diamond Drilling of Non-metallic Materials," Industrial Diamond Review, March, pp.97-99.

Markov, A. I., et al., 1977, "Ultrasonic Drilling and Milling of Hard Non-metallic Materials with Diamond Tools," Machine & Tooling, Volume 48, No.9, pp.

45-47.

McGeough, J. A., 1988, Advanced Methods of Machining, Chapman and Hall Ltd., London.

Miller, G.E., 1957, "Special Theory of Ultrasonic Machining," Journal of Applied Physics, Vol.28, No.2, pp.149-156.

Molloy, P., Schinker, M. G., and Doll, W., 1987, "Brittle Fracture Mechanisms in Single-Point Glass Abrasion," International Technical Symposium on Optical and Electro-Optical applications and Science and Engineering, The Hague, NL, SPIE Vol.802. (Quoted in Bifano et al., 1991)

Moore, D., 1986, "Ultrasonic Impact Grinding," Carbide and Tool Journal, November/December, pp.21-23.

157

Nakasuji, T., Uno, Y., and Fujiwara, T., 1989, "Cutting Mechanism of Fine Ceramics with a Single Point Diamond," Precision Engineering, Vol.11, No.1, pp.19-

25.

Nakasuji, T., Kodera, S., Hara, S., Matsunaga, H., Ikawa, N., and Shimada, S., 1990, "Diamond Turning of Brittle Materials for Optical Components," Annals of CIRP , Vol.39, No.1, pp.89-92.

Neter, J., Wasserman, W., and Kutner, M., 1990, Applied Linear Statistical Models:

Regression, Analysis of Variance, and Experimental Designs, Irwin, Boston.

New England Affiliated Technologies, 1992, Precision Positioning Components and Systems, Lawrence, MA.

Oh, H. L., Oh, K. P. L., Vaidyanathan, S., and Finnie, I., 1972, "On the Shaping of

Brittle Solids by Erosion and Ultrasonic Cutting," The Science of Ceramic

Machining and Surface Finishing I, NBS Special Publication 348, pp.119-

131.

Office of Technology Assessment, 1988, "Advanced Materials by Design," U.S. Congress, OTA-E35 1, U.S. Government Printing Office, Washington, DC.

Petrukha, P. G. et al., 1970, "Ultrasonic Diamond Drilling of Deep Holes in Brittle Materials," Russian Engineering Journal, Vol.50, No.10, pp.70-74.

Prabhakar, D., 1992, "Machining Advanced Ceramic Materials Using Rotary Ultrasonic Machining Process," M.S. Thesis, University of Illinois at Urbana-Champaign.

Prabhakar, D., Ferreira, P. M., and Haselkorn, M., 1992, "An Experimental Investigation of Material Removal Rates in Rotary Ultrasonic Machining," Transactions of the North American Manufacturing Research Institution of SME, Vol. XX, pp.211-218.

Prabhakar, D., Pei, Z. J., Ferreira, P. M., and Haselkorn, M., 1993, "A Theoretical Model for Predicting Material Removal Rates in Rotary Ultrasonic Machining of Ceramics," Transactions of the North American Manufacturing Research Institution of SME, Vol. XXI, pp.167-172.

Rice, R. W., Bersch, C. F., and Diness, A. M., 1970, "Science and the Machining and Surface Finishing of Ceramics," The Science of Ceramic Machining and Surface Finishing, ed. S. J. Schneider and R. W. Rice, NBS Special Publication 348, U.S. Government Printing Office, Washington, D.C., pp.1-3.

Rozenberg, L. D., Kazantsev, V. F., Makarov, L. 0., and Yakhimovich, D. F., 1964, Ultrasonic Cutting (translated from Russian), Consultants Bureau, New York.

Schinker, M. G., and Doll, W., 1987, "Turning of Optical Glasses at Room Temperature," International Technical Symposium on Optical and Electro-Optical applications and Science and Engineering, The Hague, NL, SPIE Vol.802. (Quoted in Bifano et al., 1991)

Schneider, S. J., and Rice, R. W., 1972, The Science of Ceramic Machining and Surface Finishing, National Bureau of Standards Special Publication 348.

Schwartz, M., 1992, Handbook of Structural Ceramics, McGraw-Hill, Inc., New York.

Shaw, M. C., 1956, "Ultrasonic Grinding," Microtechnic, Vol.10, No.6, pp.257-265.

Sheldon, G. L., and Finnie, I., 1966, "The Mechanism of Material Removal in the Erosive Cutting Of Brittle Materials," Transactions of the ASME, Journal of Engineering for Industry, pp.393-399.

Sheppard, L. M., 1992, "The Challenges of Ceramic Machining Continue," American Ceramic Society Bulletin, Vol.71, No.11, pp.1590-1610.

Shore, P., 1990, "State of the Art in 'Damage-Free' Grinding of Advanced Engineering Ceramics," British Ceramic Proceedings, No.46, pp.189-200.

Smith, V., Deckman, B., Brueck, D., 1994, "Advanced Ceramics: Where Do We Go From Here?" American Ceramic Society Bulletin, Vol.73, No.12, pp.49-

52.

Solomon, H., 1978, Geometric Probability, Society for Industrial and Applied Mathematics, Pennsylvania.

159

Somiya, S., 1989, "Ceramics: Definitions," Advanced Technical Ceramics, ed. S. Somiya, Academic Press, Inc., pp.3-9.

Spriggs, 1987, "Advanced Ceramic Materials: Applications and Opportunities,"

Intersociety Symposium on Machining of Advanced Ceramic Materials and

Components, ed. R. E. Barks, K. Subramanian and K. E. Ball, The American

Ceramic Society, Inc., Westerville, Ohio, pp.1-9.

Stinton, D. P., 1988, "Assessment of the State of the Art in Machining and Surface Preparation of Ceramics," ORNLITM- Report 10791, Oak Ridge National Laboratory, Tennessee, November.

Stoyan, D., Kendall, W. S., and Mecke, J., 1987, Stochastic Geometry and Its Applications, John Wiley & Sons, New York.

Strenkowski, J. S., and Hiatt, G. D., 1990, "A Technique for Predicting the Ductile Regime in Single Point Diamond Turning of Brittle Materials," PED-Vol. 43, Fundamental Issues in Machining, ed. B. E. Klamecki and K. J. Weinmann, ASME, pp.67-80.

Subramanian, K., and Komanduri, R., 1985, Machining of Ceramic Materials and Components, ed. K. Subramanian, M. Jouaneh and S. S. Rangwala, The American Society of Mechanical Engineers, New York.

Subramanian, K., and Ramanath, S., 1992, "Mechanism of Material Removal in the Precision Grinding of Ceramics," PED-Vol. 58, Precision Machining: Technology and Machine Development and Improvement, ASME, pp. 1-19.

Sugaike, 5., 1989, "Chronology of the Development of Advanced Ceramics," Advanced Technical Ceramics, ed. S. Somiya, Academic Press, Inc., pp.315-344.

Sugita, T., Ueda, K., and Endoh, K., 1986, "Possibility of Plastic Deformation Type Material Removal in Microcutting of Brittle Materials," Journal of Japan Society of Precision Engineering, Vol.52, No.12, pp.144-147.

Suzuki, K, Uematsu, T., Asano, S., Yanase, T., and Nakagawa, T., 1988, "Recent Advances in the Grinding of Ceramics and Hard Metals," Hard Material Production 88, London.

160

Timoshenko, S. P., and Godier, J. N., 1970, Theory of Elasticity, 3rd Edition, McGraw-Hill Book Company, New York.

Tyrrell, W. R., 1970a, "Rotary Ultrasonic Machining," SME Technical Paper

MR. 70-516.

Tyrrell, W. R., 1970b, "A New Method for Machining Hard and Brittle Materials," SAMPE Quart. 1(2), pp.55-59.

Unno, K, and Imai, T., 1987, "Performance of Diamond Wheel in Grinding Ceramics," Proceedings of the 6th International Conference on Production Engineering, Osaka, pp.26-32.

Wang, H. M. S., and Lin, L. Y., 1993, "Improvement of Rotary Ultrasonic Deep Hole drilling of Glass Ceramics - Zerodur," Seminar of The 7th International Precision Engineering, May, Kobe, Japan.

Wood, R. W. and Loomis, A. L., 1927, "The Physical and Biological Effects of High-frequency Sound-waves of Great Intensity," Philosophical Magazine, S.7, Vol.4, No.22, pp.417-436.

Yoshida, S., and Ito, H., 1990, "The Present and Future of Ductile-Regime Grinding of Optical Parts," Bulletin of Japan Society of Precision Engineering, Vol.24, No.4, pp.239-243.

Yoshioka, J., Koizumi, K., Shimizu, M., Yoshikawa, H., Miyashita, M., and Kanai, A., 1982, "Surface Grinding with a Newly Developed Ultra Precision Grinding Machine," SME Technical Paper; MR82-930.

Yoshioka, J., Hashimoto, F., Miyashita, M., Kanai, A., Abo, T, and Daito, M., 1985,

"Ultraprecision Grinding Technology for Brittle Materials: Application to

Surface Centerless Grinding Processes," Milton. C. Shaw Grinding

Symposium, ed. R. Komanduri and D. Maas, ASME Production Engineering

Division, Vol.16, pp.209-227.

161

155