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Resume - Cronin B. Vining

RESUME

Cronin Beals Vining

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cvining2009@cvining.com [2]

http://cvining.com/ [3]

Born: August 22, 1957,  Baltimore, Maryland USA

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  • About [5]

Professional Experience

Professional Positions

1995-present              President and founder, ZT Services

Information and consulting services to the energy conversion industry.  Clients include Global 500 companies (Honda, Whirlpool), venture capitalists (Carl Berg, Dawson Ventures, Kleiner Perkins Caufield and Byers), thermoelectric manufacturing firms (Marlow, Melcor, Tellurex), federal agencies (Defense Advanced Research Projects Agency, Ames Laboratory USDoE, NASA/Glenn, NASA/JPL, NASA/HQ), and a variety of other clients (BSST, Tecumseh).  ZT Services also maintains an extensive sponsor-supported web site on thermoelectrics (http://www.zts.com/ [3]) and provides web and internet services for the International Thermoelectric Society (http://www.its.org/ [6]), and a number of commercial clients.

1999-2003               Affiliate Professor of Physics, Auburn University, Auburn, Alabama

Collaborations with Prof. Peter Barnes's group on thermionic and thermoelectric projects, resulting in several papers (written primarily by graduate students).  Served on advisory committees for one Masters and two Ph.D. students.

1995                        Guest Lecturer, Various Universities, Companies and National Laboratories in Japan (January).

1994-2004               Research Advisor, Ames Laboratory USDoE, Ames,  Iowa.

Theoretical and experimental development of new thermoelectric materials.  Emphasis on novel materials systems such as heavy fermions and metals, not traditionally associated with high thermoelectric performance.

1994                        Consultant to Dawson Ventures, Inc., San Jose, California

Evaluation of the technical and business potential of novel, high-risk/high-payoff energy conversion technologies.

1990-1991               Consultant to Marlow Industries, Dallas, Texas

Concepts, approaches and program plans for the development of advanced thermoelectric cooling materials capable of achieving cryogenic temperatures with efficiencies comparable to dynamic cooling technologies.

1987-1994               Member of Technical Staff

Jet Propulsion Laboratory/California Institute of Technology (Caltech), Pasadena, California, Thermal Power Conversion Group

Theoretical and experimental development of thermoelectric materials for advanced space power applications, with special emphasis on theoretical aspects of thermoelectric energy conversion and development of advanced thermoelectric materials.  Task Manager for 4-5 tasks related to silicon-germanium, boron carbide and rare-earth chalcogenide thermoelectric materials, ($500K/year) 1988-89.  Task Manager for advanced thermoelectric materials development, with emphasis on transition-metal silicides, ($200K-$250K/year) 1990-93.  Task Manager for a JPL Technology Affiliates Program sponsored by Marlow Industries to transfer JPL developed thermoelectric technology based on skutterudite thermoelectric materials to Marlow Industries, ($350K/year) 1993-94.  Proposal Manager for a three year program on the basic physics and chemistry of skutterudite thermoelectric materials sponsored by the Office of Naval Research, awarded in 1994 ($250K/year).

1984-1987               Senior Physicist

General Electric Company, Valley Forge Space Center, Thermoelectric Technology Group, Philadelphia, Pennsylvania. 

Transport properties of semiconductors for high temperature thermal to electrical energy conversion applications.

Design and implementation of a complete high temperature thermoelectric materials preparation  and characterization facility suitable for research and development of state-of-the-art thermoelectric materials to be used in space nuclear power generation systems.  This facility included induction and resistance melting, vacuum casting, pressure sintering, inert atmosphere handling capabilities as well as thermal diffusivity, thermal conductivity, electrical resistivity, Seebeck coefficient, Hall Effect, Differential Scanning Calorimetry (DSC), Differential Thermal Analysis (DTA), Thermogravimetric Analysis (TGA) and X‑ray diffraction measurement capabilities, most of which could be performed from 300 to 1300 K.  $750,000 value.

Program manager for internal General Electric R&D programs on thermoelectric materials (1984-$100,000; 1985-$160,000; 1986-$40,000).  Program manager for NASA‑JPL rare-earth chalcogenide development programs at General Electric (1984-1985-$130,000). Program manager for subcontract to Thermo Electron Corporation on SiGe/GaP alloy development (1986‑$100,000).  Project leader and principle investigator for DOE sponsored Improved Thermoelectric Materials Development program, $2,700,000 over 3 years.

Responsible for the daily direction of one Ph.D., two engineers and three technicians.

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Education

Education

1983:                       Postdoctoral Fellow, Ames Laboratory‑US Department of Energy, Ames, Iowa.

                                Acting group leader for a group of five graduate students and one technician. 

1983:                       Ph.D. (Solid State Physics), Iowa State University, Ames, Iowa.

“Superconductivity and Long Range Magnetic Order in Ternary Rare‑Earth Iron Silicides.” Major professor: Dr. R. N. Shelton

1980‑1983:              Research Assistant, Ames Laboratory‑US Department of Energy, Ames, Iowa.

Superconductivity and magnetism in novel materials.  Preparation of novel superconducting, semiconducting and magnetically ordered materials including ternary rare‑earth borides and silicides.  X‑ray diffraction and metallographic characterization. Superconducting and magnetic transition temperature determinations using magnetic susceptibility, electrical resistivity and heat capacity measurements.  High pressure measurements using piston (25 kbar) and diamond  anvil cells.  Construction of calorimeter for 0.3 K to 25 K.

1978‑1980:              Teaching Assistant, Department of Physics, Iowa State University, Ames, Iowa.

1974‑1978:              B. S. (Physics), Virginia Polytechnic Institute and State University, Blacksburg, Virginia.

Undergraduate research on microwave spectroscopy and construction of a simple mass spectrometer.

1971‑1974:              W. T. Woodson High School, Fairfax County, Virginia.

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Honors, Awards and Society Activities

Honors, Awards and Society Activities

2007                        Doctor Honoris Causa, Odessa State Academy of Refrigeration, Odessa, Ukraine

1997                        Elected Full Member of the International Academy of Refrigeration, Section of Thermoelectric Cooling and Materials, St. Petersburg, Russia (the first US member)

1995                        Elected Academician in the International Thermoelectric Academy, Chernovtsy, Ukraine

1994-1995               President of the International Thermoelectric Society

1991-1994               Editor of the International Thermoelectric Society Newsletter

1990                        Elected to the Board of Directors of the International Thermoelectric Society

1990                        Best Technical Paper Award at the IX International Conference on Thermoelectrics, March 19-21, 1990, Pasadena, California

1986                        General Manager's Honors Award, General Electric Space Division

1983                        G. W. Fox Memorial Award (Outstanding Research Assistant) Physics Department, Iowa State University, Ames Iowa

1981                        Member of the American Physical Society   (membership lapsed)

1980                        Richard G. Patrick Award (Outstanding Teaching Assistant), Physics Department, Iowa State University, Ames, Iowa 

1979                        Member of Mensa (membership lapsed)

1977                        Member of Sigma Pi Sigma  (membership lapsed)

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Conference Organizing and Advisory Committees

Conference Organizing and Advisory Committees

  1. IX International Conference on Thermoelectrics (USA), Pasadena, California, March 19-21, 1990.
  2. Modern Perspectives on Thermoelectrics and Related Materials, Materials Research Society Symposium, Anaheim, California, May 1-2, 1991.
  3. XI International Conference on Thermoelectrics, Arlington, Texas, October 7-9, 1992.
  4. XII International Conference on Thermoelectrics, Yokohama, Japan, November 9-11, 1993.
  5. XIII International Conference on Thermoelectrics, Kansas City, Missouri, August 30-September 1, 1994.
  6. XIV International Conference on Thermoelectrics, St. Petersburg, Russia, June 27-29, 1995.
  7. XVI International Conference on Thermoelectrics, Dresden, Germany, August 26-29, 1997.
  8. XVII International Conference on Thermoelectrics, Nagoya, Japan, May 25-28, 1998.
  9. XVIII International Conference on Thermoelectrics, Baltimore, Maryland, USA, August 29-September 2, 1999.
  10. 5th European Workshop on Thermoelectrics, Pardubice, Czech Republic, September 20-21, 1999
  11. XX International Conference on Thermoelectrics, Beijing, P. R. China, June 8-11, 2001.
  12. Next Generation Thermal Management Materials and Systems, Dallas, Texas, October 28-30, 2002.  Conference Co-chair.
  13. XXIII International Conference on Thermoelectrics, Adelaide, Australia, July 25-29, 2004.

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Websites

  • Website design and hosting since 1996
  • Designing Drupal [7] powered websites since 2006 (Drupal version 4.6)
  • Websites Designed, Hosted & Maintained
    • International Thermoelectric Society [8], http://www.its.org [8]
    • Marvel Thermoelectrics [9], large-scale thermoelectric refrigeration, http://www.marvelte.com [9]
    • Thermoelectric News, http://www.zts.com [10]
    • Poetry of Larry Whitlow, The poetry of Larry Whitlow, http://www.sandmarks.org [11] and http://www.forgiverance.com [12]

 

  • Websites Hosted Only (content maintained by owner)
    • Thermion Company [13], http://www.thermion-company.com [13]

 

  • Conference Websites Designed & Hosted (site content authored by organizing committees)

    • Annual International Conference on Thermoelectrics
      • ICT2012 Website [14]
      • ICT2011 Website [15]
      • ICT2010 Website [16]
      • ICT2009 Website [17]
      • ICT2005 Website [18]
      • ICT2003 Website [19]
      • ICT98 Website [20]
      • ICT97 Website [21]
    • Past European Conference on Thermoelectrics (ECT) Websites:
      • ECT2007 Website [22]
      • ETS2002 Website [23]
      • ETS99 Website [24]

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Vining Publications

Book Chapter

[vining2005-1] Vining CB [25], Rowe DM [26], Stockholm JG [27], Rao KR [28]. History of The International Thermoelectric Society [29]. In: Rowe DM [26], editor. Thermoelectrics Handbook: Macro to Nano. Boca Raton, FL USA: CRC Press; 2005. A. Ap. 1:7.
[davis2001-1] Davis PS [30], Barnes PA [31], Vining CB [25], Pope AL [32], Schneidmiller B [33], Tritt TM [34], et al. High temperature thermal conductivity measurements of quasicrystalline Al70.8Pd20.9Mn8.3 [35]. In: Tritt T.M.; Nolas M M KGS; GD [36], editor. Thermoelectric Materials 2000 - The Next Generation Materials for Small-Scale Refrigeration and Power Generation Applications. Symposium: Materials Research Society Symposium Proceedings. Vol 626. Warrendale, PA, USA: Mater. Res. Soc; 2001. Z. Z5.4.p. 1-7p. (Thermoelectric Materials 2000 - The Next Generation Materials for Small-Scale Refrigeration and Power Generation Applications Symposium; vol 626).
[vining1995-3] Vining CB [25]. Thermoelectric Properties of Silicides [37]. In: Rowe DM [26], editor. CRC Handbook of Thermoelectrics. London: CRC Press; 1995. 2. p. 277-286p.
[vining1995-2] Vining CB [25]. Silicon Germanium [38]. In: Rowe DM [26], editor. CRC Handbook of Thermoelectrics. London: CRC Press; 1995. 3. p. 329-338p.
[vining1994-3] Vining CB [25]. Structure of Insulators [39]. In: Trigg GL [40], editor. Encyclopedia of Applied Physics. Vol 8. New York: VHS Publishers; 1994. 8. p. 85-102p.
[vining1993-5] Vining CB [25]. Lecture 2: Thermoelectric Fundamentals and Physical Phenomena [41]. In: Uemura K [42], editor. SCT-93 Short Course on Thermoelectrics. Yokohama-shi, Japan: International Thermoelectric Society; 1993.
[vandersande1993-1] Vandersande JW [43], Fleurial J- [44], Vining CB [25], Beaty J [45], Rolfe J [46], Klemens PG [47]. Phonon Scattering by Ultrafine Particulates in SiGe Alloys at High Temperatures [48]. In: Meisner M [49], Pohl RO [50], editors. Phonon Scattering in Condensed Matter VII. Vol 112. Berlin, Heidelberg: Springer-Verlag; 1993. 4. p. 44-45p. (Springer Series in Solid-State Sciences, Volume 112; vol 112).
[vining1992-2] Vining CB [25]. The thermoelectric limit ZT~1: Fact or Artifact [51]. In: Horn SB [52], editor. Proceedings of the 1992 1st National Thermogenic Cooler Conference. Fort Belvoir, VA: Center for Night Vision and Electro-Optics (unpublished); 1992. 2. p. 26-29p.
[vandersande1992-1] Vandersande JW [43], Vining CB [25], Fleurial J- [44]. Novel measurement techniques [53]. In: Horn SB [52], editor. Proceedings of the 1992 1st National Thermogenic Cooler Conference. Fort Belvoir, VA: Center for Night Vision and Electro-Optics (unpublished); 1992. 7. p. 73-86p.
[vining1992-9] Vining CB [25], Williams RM [54], Underwood ML [55], Ryan AM [56], Suitor JW [57]. Reversible thermodynamic cycle for AMTEC power conversion [58]. In: Proceedings of the 27th Intersociety Energy Conversion Engineering Conference. Vol 3. San Diego, CA, USA: IEEE, Piscataway, NJ, USA; 1992. 3. 3.12p. 3.127. (Proceedings of the 27th Intersociety Energy Conversion Engineering Conference; vol 3).

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Vining Invited Publications

Book Chapter

[vining2005-1] Vining CB [25], Rowe DM [26], Stockholm JG [27], Rao KR [28]. History of The International Thermoelectric Society [29]. In: Rowe DM [26], editor. Thermoelectrics Handbook: Macro to Nano. Boca Raton, FL USA: CRC Press; 2005. A. Ap. 1:7.
[vining1995-3] Vining CB [25]. Thermoelectric Properties of Silicides [37]. In: Rowe DM [26], editor. CRC Handbook of Thermoelectrics. London: CRC Press; 1995. 2. p. 277-286p.
[vining1995-2] Vining CB [25]. Silicon Germanium [38]. In: Rowe DM [26], editor. CRC Handbook of Thermoelectrics. London: CRC Press; 1995. 3. p. 329-338p.
[vining1994-3] Vining CB [25]. Structure of Insulators [39]. In: Trigg GL [40], editor. Encyclopedia of Applied Physics. Vol 8. New York: VHS Publishers; 1994. 8. p. 85-102p.
[vining1993-5] Vining CB [25]. Lecture 2: Thermoelectric Fundamentals and Physical Phenomena [41]. In: Uemura K [42], editor. SCT-93 Short Course on Thermoelectrics. Yokohama-shi, Japan: International Thermoelectric Society; 1993.

Conference Paper

[vining2007-1] Vining CB [25]. ZT ~ 3.5: Fifteen Years of Progress and Things to Come [68]. In: Semenyuk V [69], editor. European Conference on Thermoelectrics, ECT2007, available at http://ect2007.its.org/system/files/u1/pdf/02.pdf. Odessa, Ukraine; 2007.
[vining2002-1] Vining CB [25]. Highlights from the 2002 International Conference on Thermoelectrics [70]. In: 7th European Workshop on Thermoelectris. Pamplona, Spain: Unpublished; 2002. 2. 21.
[vining1999-3] Vining CB [25]. Summarry Report on ICT'99 - The 18th International Conference on Thermoelectrics [71]. In: Fifth European Workshop on Thermoelectrics. University of Pardubice, Pardubice, Czech Republic; 1999. 7. 7. Vining-ETS99-Pardubice-1999.pdf [72] (7.93 MB)
[vining1998-2] Vining CB [25]. Present Status and Future Prospects for Thermoelectric Conversion [73]. In: International Symposium on Environment-Conscious Advanced Energy and Informative Materials Processing. Kyoto, Japan; 1998.
[vining1997-2] Vining CB [25]. The thermoelectric process [74]. In: Tritt TM [34], Kanatzidis MG [75], Lyon H. B. J. [76], Mahan GD [77], editors. Materials Research Society Symposium Proceedings: Thermoelectric Materials - New Directions and Approaches. Vol 278. Pittsburgh, PA, USA: Mater. Res. Soc.; 1997. 3. p. 3-13p.

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Vining Citations in the Press

[gorman2003-1] Gorman J [79]. A New Cool [80]. Science News. 2003;163:213.
[voss2002-1] Voss D [81]. Thermoelectric Materials [82]. Technology Review. 2002;105.
[mason2002-1] Mason J [83]. Power Chips: Flipside of cooling device could turn heat into juice [84]. Small Times. 2002;Oct. 24, 2002:http://www.smalltimes.com/document_display.cfm?document_id=4885.
[harris2001-1] Small Fridge [85]. USA; 2001.
[weiss2001-1] Weiss P [86]. Cooling film tempers tiny hot spots [87]. Science News. 2001;160:280.
[wasowicz2001-1] Wasowicz L [88]. Tiny Materials Have Big Possibilities [89]. United Press International, UPI. 2001.
[wu1997-1] Wu C [90]. A silent cool [91]. Science News. 1997;152:152-153.
[tv1995-] Evening Television Broadcast News [92]. Ube City, Yamaguchi, Japan; 1995.

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[4] http://cvining.com/system/files/CBV20110113.pdf
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[6] http://www.its.org/
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[10] http://www.zts.com
[11] http://www.sandmarks.org
[12] http://www.forgiverance.com
[13] http://www.thermion-company.com
[14] http://ict2012.its.org
[15] http://ict2011.its.org
[16] http://ict2010.its.org
[17] http://ict2009.its.org/
[18] http://www.its.org/ict2005
[19] http://archives.its.org/ICT2003/www.its.its.org/index.html
[20] http://archives.its.org/ICT98/www.its.its.org/ict98/index.html
[21] http://archives.its.org/ICT97/www.its.its.org/ict97/index.html
[22] http://ect2007.its.org/
[23] http://archives.its.org/ETS2002/www.its.its.org/ets/index.html
[24] http://archives.its.org/ETS99/www.its.its.org/ets/etsw1999/etsw99.html
[25] http://cvining.com/biblio?f[author]=9
[26] http://cvining.com/biblio?f[author]=115
[27] http://cvining.com/biblio?f[author]=125
[28] http://cvining.com/biblio?f[author]=42
[29] http://cvining.com/content/history-international-thermoelectric-society
[30] http://cvining.com/biblio?f[author]=43
[31] http://cvining.com/biblio?f[author]=44
[32] http://cvining.com/biblio?f[author]=45
[33] http://cvining.com/biblio?f[author]=46
[34] http://cvining.com/biblio?f[author]=47
[35] http://cvining.com/content/high-temperature-thermal-conductivity-measurements-quasicrystalline-alsub708subpdsub209submn
[36] http://cvining.com/biblio?f[author]=49
[37] http://cvining.com/content/thermoelectric-properties-silicides
[38] http://cvining.com/content/silicon-germanium
[39] http://cvining.com/content/structure-insulators
[40] http://cvining.com/biblio?f[author]=114
[41] http://cvining.com/content/lecture-2-thermoelectric-fundamentals-and-physical-phenomena
[42] http://cvining.com/biblio?f[author]=112
[43] http://cvining.com/biblio?f[author]=96
[44] http://cvining.com/biblio?f[author]=97
[45] http://cvining.com/biblio?f[author]=98
[46] http://cvining.com/biblio?f[author]=99
[47] http://cvining.com/biblio?f[author]=100
[48] http://cvining.com/content/phonon-scattering-ultrafine-particulates-sige-alloys-high-temperatures
[49] http://cvining.com/biblio?f[author]=101
[50] http://cvining.com/biblio?f[author]=102
[51] http://cvining.com/content/thermoelectric-limit-zt1-fact-or-artifact-0
[52] http://cvining.com/biblio?f[author]=103
[53] http://cvining.com/content/novel-measurement-techniques
[54] http://cvining.com/biblio?f[author]=134
[55] http://cvining.com/biblio?f[author]=135
[56] http://cvining.com/biblio?f[author]=136
[57] http://cvining.com/biblio?f[author]=137
[58] http://cvining.com/content/reversible-thermodynamic-cycle-amtec-power-conversion
[59] http://cvining.com/print/book/export/html/504?page=1
[60] http://cvining.com/print/book/export/html/504?page=2
[61] http://cvining.com/print/book/export/html/504?page=3
[62] http://cvining.com/print/book/export/html/504?page=4
[63] http://cvining.com/print/book/export/html/504?page=5
[64] http://cvining.com/print/book/export/html/504?page=6
[65] http://cvining.com/print/book/export/html/504?page=7
[66] http://cvining.com/print/book/export/html/504?page=8
[67] http://cvining.com/print/book/export/html/504?page=14
[68] http://cvining.com/content/zt-35-fifteen-years-progress-and-things-come
[69] http://cvining.com/biblio?f[author]=117
[70] http://cvining.com/content/highlights-2002-international-conference-thermoelectrics
[71] http://cvining.com/content/summarry-report-ict99-18th-international-conference-thermoelectrics
[72] http://cvining.com/system/files/Vining-ETS99-Pardubice-1999.pdf
[73] http://cvining.com/content/present-status-and-future-prospects-thermoelectric-conversion
[74] http://cvining.com/content/thermoelectric-process
[75] http://cvining.com/biblio?f[author]=95
[76] http://cvining.com/biblio?f[author]=116
[77] http://cvining.com/biblio?f[author]=93
[78] http://cvining.com/user/login?destination=node/511%23comment-form
[79] http://cvining.com/biblio?f[author]=145
[80] http://cvining.com/content/new-cool
[81] http://cvining.com/biblio?f[author]=147
[82] http://cvining.com/content/thermoelectric-materials
[83] http://cvining.com/biblio?f[author]=146
[84] http://cvining.com/content/power-chips-flipside-cooling-device-could-turn-heat-juice
[85] http://cvining.com/content/small-fridge
[86] http://cvining.com/biblio?f[author]=149
[87] http://cvining.com/content/cooling-film-tempers-tiny-hot-spots
[88] http://cvining.com/biblio?f[author]=148
[89] http://cvining.com/content/tiny-materials-have-big-possibilities
[90] http://cvining.com/biblio?f[author]=150
[91] http://cvining.com/content/silent-cool
[92] http://cvining.com/content/evening-television-broadcast-news