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Featured researches published by Peizhen Li.


Scientific Reports | 2016

Self-Similar Random Process and Chaotic Behavior In Serrated Flow of High Entropy Alloys.

Shuying Chen; Liping Yu; Jingli Ren; Xie Xie; Xueping Li; Ying Xu; Guangfeng Zhao; Peizhen Li; Fuqian Yang; Yang Ren; Peter K. Liaw

The statistical and dynamic analyses of the serrated-flow behavior in the nanoindentation of a high-entropy alloy, Al0.5CoCrCuFeNi, at various holding times and temperatures, are performed to reveal the hidden order associated with the seemingly-irregular intermittent flow. Two distinct types of dynamics are identified in the high-entropy alloy, which are based on the chaotic time-series, approximate entropy, fractal dimension, and Hurst exponent. The dynamic plastic behavior at both room temperature and 200 °C exhibits a positive Lyapunov exponent, suggesting that the underlying dynamics is chaotic. The fractal dimension of the indentation depth increases with the increase of temperature, and there is an inflection at the holding time of 10 s at the same temperature. A large fractal dimension suggests the concurrent nucleation of a large number of slip bands. In particular, for the indentation with the holding time of 10 s at room temperature, the slip process evolves as a self-similar random process with a weak negative correlation similar to a random walk.


Proceedings of SPIE | 2017

Laser shock wave assisted patterning on NiTi shape memory alloy surfaces

Dovletgeldi Seyitliyev; Peizhen Li; Khomidkhodza Kholikov; Byron Grant; H.E. Karaca; Ali O. Er

An advanced direct imprinting method with low cost, quick, and less environmental impact to create thermally controllable surface pattern using the laser pulses is reported. Patterned micro indents were generated on Ni50Ti50 shape memory alloys (SMA) using an Nd:YAG laser operating at 1064 nm combined with suitable transparent overlay, a sacrificial layer of graphite, and copper grid. Laser pulses at different energy densities which generates pressure pulses up to 10 GPa on the surface was focused through the confinement medium, ablating the copper grid to create plasma and transferring the grid pattern onto the NiTi surface. Scanning electron microscope (SEM) and optical microscope images of square pattern with different sizes were studied. One dimensional profile analysis shows that the depth of the patterned sample initially increase linearly with the laser energy until 125 mJ/pulse where the plasma further absorbs and reflects the laser beam. In addition, light the microscope image show that the surface of NiTi alloy was damaged due to the high power laser energy which removes the graphite layer.


Laser-based Micro- and Nanoprocessing XII | 2018

Formation of two-way shape memory effect in NiTi alloy using pulsed laser irradiation

Saidjafarzoda Ilhom; Khomidkhodzha Kholikov; Ali O. Er; Peizhen Li; H.E. Karaca; Omer San; Dovletgeldi Seyitliyev; Zachary Thomas; Duvall Roberts

Shape memory alloys (SMAs) are a unique class of smart materials and they were employed in various applications in engineering, biomedical, and aerospace technologies. Here, we report an advanced, efficient, and low-cost direct imprinting method with low environmental impact to create thermally controllable surface patterns. Patterned microindents were generated on Ni50Ti50 (at. %) SMAs using an Nd:YAG laser with 1064 nm wavelength at 10 Hz. Laser pulses at selected fluences were focused on the NiTi surface and generated pressure pulses of up to a few GPa. Optical microscope images showed that surface patterns with tailorable sizes can be obtained. The depth of the patterns increases with laser power and irradiation time. Upon heating, the depth profile of SMA surfaces changed where the maximum depth recovery ratio of 30 % was observed. Recovery ratio decreased and saturated at about 15 % when the amount of time and thus the indent depth was increased. Laser-induced shock wave propagation inside the material was simulated and showed a good agreement with the experimental results. The stress wave closely followed the rise time of the laser pulse to its peak value and initial decay. Rapid attenuation and dispersion of the stress wave were observed.


Scientific Reports | 2017

Rapid Characterization of Local Shape Memory Properties Through Indentation

Peizhen Li; H.E. Karaca; Yang-Tse Cheng


Journal of Alloys and Compounds | 2017

Orientation dependent compression behavior of Co35Ni35Al30 single crystals

Peizhen Li; H.E. Karaca; Y.I. Chumlyakov


Journal of Alloys and Compounds | 2015

Spherical indentation of NiTi-based shape memory alloys

Peizhen Li; H.E. Karaca; Yang-Tse Cheng


Journal of Alloys and Compounds | 2018

Nanoscale serration and creep characteristics of Al0.5CoCrCuFeNi high-entropy alloys

Shuying Chen; Weidong Li; Xie Xie; Jamieson Brechtl; Bilin Chen; Peizhen Li; Guangfeng Zhao; Fuqian Yang; Junwei Qiao; Peter K. Liaw


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2018

Anisotropic tensile and actuation properties of NiTi fabricated with selective laser melting

Narges Shayesteh Moghaddam; Sayed Ehsan Saghaian; Amirhesam Amerinatanzi; Hamdy Ibrahim; Peizhen Li; Guher P. Toker; H.E. Karaca; Mohammad Elahinia


Bulletin of the American Physical Society | 2018

Laser Shock Wave Assisted Patterning on NiTi Shape Memory Alloy Surfaces

Saidjafarzoda Ilhom; Dovletgeldi Seyitliyev; Khomidkohodza Kholikov; Zachary Thomas; Ali O. Er; Peizhen Li; H.E. Karaca; Omer San


Optical Engineering | 2018

Scalable patterning using laser-induced shock waves

Saidjafarzoda Ilhom; Khomidkhodza Kholikov; Peizhen Li; Claire Ottman; Dylan Sanford; Zachary Thomas

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H.E. Karaca

University of Kentucky

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Zachary Thomas

Western Kentucky University

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Ali O. Er

Western Kentucky University

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Byron Grant

Western Kentucky University

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Fuqian Yang

University of Kentucky

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