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Ting Y. Tsui

Researcher at University of Waterloo

Publications -  122
Citations -  6307

Ting Y. Tsui is an academic researcher from University of Waterloo. The author has contributed to research in topics: Thin film & Nanoindentation. The author has an hindex of 33, co-authored 120 publications receiving 5951 citations. Previous affiliations of Ting Y. Tsui include Advanced Micro Devices & Texas Instruments.

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Elastic properties of human cortical and trabecular lamellar bone measured by nanoindentation

TL;DR: An experimental investigation was undertaken to measure the intrinsic elastic properties of several of the microstructural components of human vertebral trabecular bone and tibial cortical bone by the nanoindentation method, and differences in the measured moduli are statistically significant.
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The elastic properties of trabecular and cortical bone tissues are similar: results from two microscopic measurement techniques.

TL;DR: The results suggest that elasticity of trabecular tissue is within the range of that of cortical bone tissue and that nanoindentation as a technique for measurement of Young's modulus in anisotropic bone is not limited.
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Influences of stress on the measurement of mechanical properties using nanoindentation: Part I. Experimental studies in an aluminum alloy

TL;DR: In this article, the influence of applied stress on the measurement of hardness and elastic modulus using nanoindentation methods has been experimentally investigated using special specimens of aluminum alloy 8009 to which controlled stresses could be applied by bending.
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Substrate effects on nanoindentation mechanical property measurement of soft films on hard substrates

TL;DR: In this paper, the hardness and elastic modulus of aluminum films with thicknesses of 240, 650, and 1700 nm sputter-deposited on glass were systematically characterized as a function of indenter penetration depth using standard nanoindentation methods.
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Nanoindentation and nanoscratching of hard carbon coatings for magnetic disks

TL;DR: In this paper, the hardness and elastic modulus were measured using nanoindentation methods, and ultra-low load scratch tests were used to assess the scratch resistance of the films and measure friction coefficients.