Show simple item record

Microfabrication of Ceramics by Co-extrusion

dc.contributor.authorHoy, Charles Vanen_US
dc.contributor.authorBarda, Andrewen_US
dc.contributor.authorGriffith, Michelle L.en_US
dc.contributor.authorHalloran, John W.en_US
dc.date.accessioned2010-04-01T15:18:16Z
dc.date.available2010-04-01T15:18:16Z
dc.date.issued1998-01en_US
dc.identifier.citationHoy, Charles Van; Barda, Andrew; Griffith, Michelle; Halloran, John W. (1998). "Microfabrication of Ceramics by Co-extrusion." Journal of the American Ceramic Society 81(1): 152-158. <http://hdl.handle.net/2027.42/65777>en_US
dc.identifier.issn0002-7820en_US
dc.identifier.issn1551-2916en_US
dc.identifier.urihttps://hdl.handle.net/2027.42/65777
dc.format.extent938444 bytes
dc.format.extent3110 bytes
dc.format.mimetypeapplication/pdf
dc.format.mimetypetext/plain
dc.publisherAmerican Ceramics Societyen_US
dc.publisherBlackwell Publishing Ltden_US
dc.rights2004 The American Ceramics Societyen_US
dc.titleMicrofabrication of Ceramics by Co-extrusionen_US
dc.typeArticleen_US
dc.rights.robotsIndexNoFollowen_US
dc.subject.hlbsecondlevelMaterials Science and Engineeringen_US
dc.subject.hlbtoplevelEngineeringen_US
dc.description.peerreviewedPeer Revieweden_US
dc.contributor.affiliationumDepartment of Materials Science and Engineering, University of Michigan, Ann Arbor, Michigan 48109-2136en_US
dc.description.bitstreamurlhttp://deepblue.lib.umich.edu/bitstream/2027.42/65777/1/j.1151-2916.1998.tb02307.x.pdf
dc.identifier.doi10.1111/j.1151-2916.1998.tb02307.xen_US
dc.identifier.sourceJournal of the American Ceramic Societyen_US
dc.identifier.citedreferenceV. F. Janas and A. Safari, “ Overview of Fine-Scale Piezoelectric Ceramic/Polymer Composite Processing,” J. Am. Ceram. Soc., 78 [ 11 ] 2945 – 55 ( 1995 ).en_US
dc.identifier.citedreferenceJ. D. Ervin, D. Brei, C. A. van Hoy, J. R. Mawdsley, and J. W. Halloran, “ New Fabrication Process for Active Micro-Sized Metal—Ceramic Devices ”; pp. 695 – 702 in Proceedings of the ASME Aerospace Division, AD-Vol. 52. Edited by C. I. Chang, J. Coulter, D. Brei, D. Martinez, W. Ng, and P. P. Friedman. American Society of Mechanical Engineers, New York, 1996.en_US
dc.identifier.citedreferenceM. Kahn and M. Chase, “ Effects of Heat Treatments on Multilayer Piezoelectric Ceramic—Air Composites,” J. Am. Ceram. Soc., 75 [ 3 ] 649 – 56 ( 1992 ).en_US
dc.identifier.citedreferenceA. Brady, G. Hilmas, and J. W. Halloran, “ Forming Textured Ceramics by Multiple Coextrusion ”; pp. 321–25 in Ceramic Transactions, Vol. 51, Ceramic Processing Science and Technology. Edited by H. Hausner and G. Messing. American Ceramic Society, Westerville, OH, 1995.en_US
dc.identifier.citedreferenceL. L. Blyler, Jr., and J. H. Daane, “ An Analysis of Brabender Torque Rheometer Data,” Polym. Sci. Eng. [ July ] 178 – 81 ( 1967 ).en_US
dc.identifier.citedreferenceS. Levy and J. F. Carley, ( Eds. ), “ Coextrusion and Dual-Extrusion Technology ”; Ch. 7 in Plastics Extrusion Technology Handbook, 2nd ed. Industrial Press, New York, 1989.en_US
dc.identifier.citedreferenceN. Minagawa and J. C. White, “ Co-extrusion of Unfilled and Titania-Filled Polyethylene: Influence of Viscosity and Die Cross Section on Interfacial Stability,” Polym. Eng. Sci., 15 [ Dec. ] 825 ( 1975 ).en_US
dc.identifier.citedreferenceA. C. Revi, Nineteenth Century Glass ; pp. 94 – 100. Schiffler Publishing, Exton, PA, 1967.en_US
dc.identifier.citedreferenceE. W. Collings, Applied Superconductivity, Metallurgy, and Physics of Titanium Alloys, Vol. 2. Plenum Press, New York, 1986.en_US
dc.identifier.citedreferenceD. Rucker; Ph.D. Thesis in progress. University of Michigan, Ann Arbor, MI.en_US
dc.identifier.citedreferenceU. Bast, H. Kaarmann, K. Lubitz, M. Vogt, W. Wersing, and D. Cramer, “ Composite Ultrasonic Transducer and Method for Manufacturing a Structured Composite Therefrom of Piezoelectric Ceramics,” U.S. Pat. No. 5 164 920, 1992.en_US
dc.identifier.citedreferenceE. W. Becker, W. Erhfeld, P. Hagmann, A. Maner, and D. Muchmeyer, “ Fabrication of Microstructures with High Aspect Ratios and Great Structural Heights by Synchrotron Radiation Lithography, Gavanoforming, and Plastic Molding (LIGA Process),” Microelectron. Eng., 4, 35 – 56 ( 1986 ).en_US
dc.identifier.citedreferenceJ. A. Bride, S. Baskaran, N. Taylor, J. W. Halloran, W. H. Juan, S. W. Pang, and M. O'Donnell, “ Photolithographic Micromolding of Ceramics Using Plasma Etched Polyimide Patterns,” Appl. Phys. Lett., 63 [ 24 ] 3379 – 81 ( 1993 ).en_US
dc.identifier.citedreferenceM. L. Griffith, A. Barda, N. Taylor, J. W. Halloran, W. H. Juan, and S. W. Pang, “ Micromolding of Ceramics using Photolithographic Polyimide Patterns ”; pp. 321–25 in Ceramic Transactions, Vol. 51, Ceramic Processing Science and Technology. Edited by H. Hausner and G. Messing. American Ceramic Society, Westerville, OH, 1995.en_US
dc.identifier.citedreferenceJ. W. Stevenson, M. R. Reidmeyer, and W. Huebner, “ Fabrication and Characterization of PZT/Thermoplastic Polymer Composites for High Frequency Phased Linear Arrays,” J. Am. Ceram. Soc., 77 [ 9 ] 2481 – 84 ( 1994 ).en_US
dc.identifier.citedreferenceP. G. Pazol, L. J. Bowen, R. L. Gentilman, H. T. Phan, W. J. Serwatk, C. G. Oakley, and D. R. Dietz, “ Ultrafine Piezoelectric Composite Materials for High Frequency Ultrasonic Transducers ”; presented at the 1995 IEEE Ultrasonics Symposium, Seattle, WA, November 1995.en_US
dc.owningcollnameInterdisciplinary and Peer-Reviewed


Files in this item

Show simple item record

Remediation of Harmful Language

The University of Michigan Library aims to describe library materials in a way that respects the people and communities who create, use, and are represented in our collections. Report harmful or offensive language in catalog records, finding aids, or elsewhere in our collections anonymously through our metadata feedback form. More information at Remediation of Harmful Language.

Accessibility

If you are unable to use this file in its current format, please select the Contact Us link and we can modify it to make it more accessible to you.