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Full-Text Articles in Engineering

Material Properties And Microstructural Characterization Of Specimens, T.J. Silverman, Allison Kinney, B. South, W. Yong, J.H. Koo Dec 2015

Material Properties And Microstructural Characterization Of Specimens, T.J. Silverman, Allison Kinney, B. South, W. Yong, J.H. Koo

Allison Kinney

The HiQ upgrade to the 3D Systems Vanguard selective laser sintering (SLS) machine incorporates a revised thermal calibration system and new software. This paper quantifies differences in mechanical and morphological properties of specimens built first using a Vanguard HS (high-speed) system and again using the same system with the HiQ upgrade applied. Standard specimens are built from DuraForm PA material and tested for tensile modulus, tensile strength, elongation at break, flexural modulus and Izod impact strength. The design of the specimen battery, the conduction of the tests and the significance of the results are discussed. The upgrade is found to …


The Influence Of Optimality Criteria On Optimization Predictions Of Muscle And Knee Contact Forces During Walking, Allison Kinney Apr 2015

The Influence Of Optimality Criteria On Optimization Predictions Of Muscle And Knee Contact Forces During Walking, Allison Kinney

Allison Kinney

Funded research sponsored by the University of Dayton Research Council Seed Award. Awarded $6,500.


Support For New Course Development For Introduction To Biomechanics, Allison Kinney Apr 2015

Support For New Course Development For Introduction To Biomechanics, Allison Kinney

Allison Kinney

Funded research sponsored by the University of Dayton KEEN Fellows Cohort. Awarded $13,000.


Three-Dimensional Vibrometry Of The Human Eardrum With Stroboscopic Lensless Digital Holography, Morteza Khaleghi, Cosme Furlong, Mike Ravicz, Jeffrey T. Cheng, John J. Rosowski Apr 2015

Three-Dimensional Vibrometry Of The Human Eardrum With Stroboscopic Lensless Digital Holography, Morteza Khaleghi, Cosme Furlong, Mike Ravicz, Jeffrey T. Cheng, John J. Rosowski

Morteza Khaleghi

The eardrum or tympanic membrane (TM) transforms acoustic energy at the ear canal into mechanical motions of the ossicles. The acousto-mechanical transformer behavior of the TM is determined by its shape, three-dimensional (3-D) motion, and mechanical properties. We have developed an optoelectronic holographic system to measure the shape and 3-D sound-induced displacements of the TM. The shape of the TM is measured with dual-wavelength holographic contouring using a tunable near IR laser source with a central wavelength of 780 nm. 3-D components of sound-induced displacements of the TM are measured with the method of multiple sensitivity vectors using stroboscopic holographic …