Tác giả :

 

NAME

Tuan, Pham-Huy

PhD.

LAB

 

TEL

 

EMAIL

phtuan@hcmute.edu.vn

OFFICE

E1-301

+ BACKGROUND

Education

2005: Bachelor Degree of Manufacturing Engineering - Ho Chi Minh University of Technology, Vietnam.

2008: Master Degree in Precision Engineering – National Chung Hsing University (Taiwan).

2009: PhD. in Mechanical Engineering – National Chung Hsing University (Taiwan).

Career

2011-present: Lecturer Faculty of Mechanical Engineering - Ho Chi Minh University of Education and Technology, Vietnam.

+ FIELDS OF INTEREST

Compliant mechanisms

Ultrasonics

Super Plastic Deformation (SPD)

+ PAPERS OR BOOKS

[1]. Pham, H.T., Nguyen V.K., Mai V.T., 2014, “Shape optimization and fabrication of a parametric curved-segment prosthetic foot for amputee,” J. Science & Technology Technical Universities, Vol. 102, pp. 89-95.

[2]. D.A. Wang, J.H. Chen, Pham, H.T., 2014, “A tristable compliant micromechanism with two serially connected bistable mechanisms,” Mechanism and Machine Theory, Vol. 71, pp. 27-39, (SCI).

[3]. Pham, H.T., Q.C. Tran, D.A. Wang, 2013 “Numerical Analysis of the Through-Width Vibration Rolling Process,” International Journal of Advanced Transport Phenomena, Vol. 02, No. 01, pp. 21-24.

[4]. H.D. Nguyen, Pham, H.T., D.A. Wang, 2013, “A miniature pneumatic energy generator using Kármán vortex street,” J. Wind Engineering & Industrial Aerodynamics, May 2013, v. 116, pp. 40-48. (SCI)

[5]. Pham, H.T., Nguyen V.K., 2013 “A Monolithic Flexural-Based Prosthetic Foot For Amputee” Journal of Engineering Technology and Education, National Kaohsiung University of Applied Sciences, Vol. 9, pp. 461-467.

[6]. D.A. Wang, J.H. Chen, and Pham, H.T., 2013, “A Constant-Force Bistable Micromechanism,” Sensors and Actuators A: Physical, Vol. 189, pp. 481-487, (SCI).

[7]. D.A. Wang, C.Y. Chiu, Pham, H.T., 2012, “Electromagnetic Energy Harvesting from Vibrations Induced by Kármán Vortex Street,” Mechatronics, Vol. 22, pp. 746-756 (SCI).

[8]. Pham, H.T. and Wang, D.A., 2011, “A Quadristable Compliant Mechanism with a Bistable Structure Embedded in a Surrounding Beam Structure,” Sensors and Actuators A – Physical, Vol. 167, pp. 438-448 (SCI).

[9]. Pham, H.T. and Wang, D.A., 2011, “A Constant-Force Bistable Mechanism for Force Regulation and Overload Protection,” Mechanism and Machine Theory, Vol. 46, pp. 899-909 (SCI).

[10]. Wang, D.A., Chuang, W.Y., Hsu, K., and Pham, H.T., 2011, “Design of a Bézier-Profile Horn for High Displacement Amplification”, Ultrasonics, Vol. 51, pp. 148-156 (SCI).

[11]. Wang, D.A., Chuang, W.Y., Hsu, K., and Pham, H.T., 2009, “Design and Analysis of a Bezier-Profile Horn,” Journal of Engineering, National Chung Hsing University, Vol. 20, pp. 161-169.

[12]. Wang, D.A., Pham, H.T., and Hsieh, Y.H., 2009, “Dynamical Switching of an Electromagnetically Driven Compliant Bistable Mechanism,” Sensors and Actuators A: Physical, Vol. 149, pp. 143-151 (SCI).

 

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