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You searched for +publisher:"Virginia Tech" +contributor:("Chaudhry, Zaffir"). Showing records 1 – 6 of 6 total matches.

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Virginia Tech

1. Dempsey, Craig Thomas. Design, fabrication, and calibration of an instrumented drop weight impact tester.

Degree: MS, Mechanical Engineering, 1994, Virginia Tech

see document Advisors/Committee Members: Rogers, Craig A. (committeechair), Robertshaw, Harry H. (committee member), Chaudhry, Zaffir (committee member).

Subjects/Keywords: Metals; LD5655.V855 1994.D467

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APA (6th Edition):

Dempsey, C. T. (1994). Design, fabrication, and calibration of an instrumented drop weight impact tester. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/45042

Chicago Manual of Style (16th Edition):

Dempsey, Craig Thomas. “Design, fabrication, and calibration of an instrumented drop weight impact tester.” 1994. Masters Thesis, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/45042.

MLA Handbook (7th Edition):

Dempsey, Craig Thomas. “Design, fabrication, and calibration of an instrumented drop weight impact tester.” 1994. Web. 25 Nov 2020.

Vancouver:

Dempsey CT. Design, fabrication, and calibration of an instrumented drop weight impact tester. [Internet] [Masters thesis]. Virginia Tech; 1994. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/45042.

Council of Science Editors:

Dempsey CT. Design, fabrication, and calibration of an instrumented drop weight impact tester. [Masters Thesis]. Virginia Tech; 1994. Available from: http://hdl.handle.net/10919/45042


Virginia Tech

2. Bhargava, Adesh. Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor.

Degree: MS, Mechanical Engineering, 1995, Virginia Tech

 The actuator power factor is defined as the ratio of the total dissipative mechanical power of a PZT actuator to the total supplied electrical power… (more)

Subjects/Keywords: actuator power factor; LD5655.V855 1995.B437

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APA (6th Edition):

Bhargava, A. (1995). Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/44406

Chicago Manual of Style (16th Edition):

Bhargava, Adesh. “Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor.” 1995. Masters Thesis, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/44406.

MLA Handbook (7th Edition):

Bhargava, Adesh. “Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor.” 1995. Web. 25 Nov 2020.

Vancouver:

Bhargava A. Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor. [Internet] [Masters thesis]. Virginia Tech; 1995. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/44406.

Council of Science Editors:

Bhargava A. Experimental/analytical determination of optimal piezoelectric actuator locations on complex structures based on the actuator power factor. [Masters Thesis]. Virginia Tech; 1995. Available from: http://hdl.handle.net/10919/44406


Virginia Tech

3. Kiesling, Thomas C. Impact failure modes of graphite epoxy composites with embedded superelastic nitinol.

Degree: MS, Mechanical Engineering, 1995, Virginia Tech

  Energy absorption during complete penetration of thin graphite composites is experimentally shown to be significantly improved by low volume fractions of embedded superelastic shape… (more)

Subjects/Keywords: graphite composites; alloy fibers; LD5655.V855 1995.K547

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APA (6th Edition):

Kiesling, T. C. (1995). Impact failure modes of graphite epoxy composites with embedded superelastic nitinol. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/44782

Chicago Manual of Style (16th Edition):

Kiesling, Thomas C. “Impact failure modes of graphite epoxy composites with embedded superelastic nitinol.” 1995. Masters Thesis, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/44782.

MLA Handbook (7th Edition):

Kiesling, Thomas C. “Impact failure modes of graphite epoxy composites with embedded superelastic nitinol.” 1995. Web. 25 Nov 2020.

Vancouver:

Kiesling TC. Impact failure modes of graphite epoxy composites with embedded superelastic nitinol. [Internet] [Masters thesis]. Virginia Tech; 1995. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/44782.

Council of Science Editors:

Kiesling TC. Impact failure modes of graphite epoxy composites with embedded superelastic nitinol. [Masters Thesis]. Virginia Tech; 1995. Available from: http://hdl.handle.net/10919/44782


Virginia Tech

4. Koike, Ayako. Torsional and flexural control of sandwich composite beams with piezoelectric actuators.

Degree: MS, Aerospace Engineering, 1994, Virginia Tech

  A mathematically one-dimensional model was developed to predict the static response of composite sandwich beams subjected to loads induced by piezoelectric (PZT) actuators. The… (more)

Subjects/Keywords: Smart materials; LD5655.V855 1994.K655

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APA (6th Edition):

Koike, A. (1994). Torsional and flexural control of sandwich composite beams with piezoelectric actuators. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/43431

Chicago Manual of Style (16th Edition):

Koike, Ayako. “Torsional and flexural control of sandwich composite beams with piezoelectric actuators.” 1994. Masters Thesis, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/43431.

MLA Handbook (7th Edition):

Koike, Ayako. “Torsional and flexural control of sandwich composite beams with piezoelectric actuators.” 1994. Web. 25 Nov 2020.

Vancouver:

Koike A. Torsional and flexural control of sandwich composite beams with piezoelectric actuators. [Internet] [Masters thesis]. Virginia Tech; 1994. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/43431.

Council of Science Editors:

Koike A. Torsional and flexural control of sandwich composite beams with piezoelectric actuators. [Masters Thesis]. Virginia Tech; 1994. Available from: http://hdl.handle.net/10919/43431


Virginia Tech

5. Flint, Eric Michael. Electro-dynamic analysis of stack actuators and active members integrated within truss structures.

Degree: MS, Mechanical Engineering, 1994, Virginia Tech

  In this thesis, a method of predicting the steady state, dynamic, electromechanical behavior of stack actuators (both electrostrictive and piezoelectric) integrated within complex structures… (more)

Subjects/Keywords: Structural frames; LD5655.V855 1994.F586

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APA (6th Edition):

Flint, E. M. (1994). Electro-dynamic analysis of stack actuators and active members integrated within truss structures. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/46116

Chicago Manual of Style (16th Edition):

Flint, Eric Michael. “Electro-dynamic analysis of stack actuators and active members integrated within truss structures.” 1994. Masters Thesis, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/46116.

MLA Handbook (7th Edition):

Flint, Eric Michael. “Electro-dynamic analysis of stack actuators and active members integrated within truss structures.” 1994. Web. 25 Nov 2020.

Vancouver:

Flint EM. Electro-dynamic analysis of stack actuators and active members integrated within truss structures. [Internet] [Masters thesis]. Virginia Tech; 1994. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/46116.

Council of Science Editors:

Flint EM. Electro-dynamic analysis of stack actuators and active members integrated within truss structures. [Masters Thesis]. Virginia Tech; 1994. Available from: http://hdl.handle.net/10919/46116


Virginia Tech

6. Lalande, Frederic. Modeling of the induced strain actuation of shell structures.

Degree: PhD, Mechanical Engineering, 1995, Virginia Tech

 When discrete piezoelectric actuator patches bonded on structures are used for active shape; vibraUon, and acoustic control, the desired deformation field in the structure is… (more)

Subjects/Keywords: stresses - structural; LD5655.V856 1995.L358

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APA (6th Edition):

Lalande, F. (1995). Modeling of the induced strain actuation of shell structures. (Doctoral Dissertation). Virginia Tech. Retrieved from http://hdl.handle.net/10919/37352

Chicago Manual of Style (16th Edition):

Lalande, Frederic. “Modeling of the induced strain actuation of shell structures.” 1995. Doctoral Dissertation, Virginia Tech. Accessed November 25, 2020. http://hdl.handle.net/10919/37352.

MLA Handbook (7th Edition):

Lalande, Frederic. “Modeling of the induced strain actuation of shell structures.” 1995. Web. 25 Nov 2020.

Vancouver:

Lalande F. Modeling of the induced strain actuation of shell structures. [Internet] [Doctoral dissertation]. Virginia Tech; 1995. [cited 2020 Nov 25]. Available from: http://hdl.handle.net/10919/37352.

Council of Science Editors:

Lalande F. Modeling of the induced strain actuation of shell structures. [Doctoral Dissertation]. Virginia Tech; 1995. Available from: http://hdl.handle.net/10919/37352

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