Tianyu Yu
Iowa State University
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Featured researches published by Tianyu Yu.
ASME 2015 International Manufacturing Science and Engineering Conference | 2015
Tianyu Yu; Ashraf F. Bastawros; Abhijit Chandra
The wear of Cubic Boron Nitride (CBN) grinding wheel directly affects the workpiece surface integrity and tolerances. This paper summarizes a combined experimental-modeling framework for CBN grinding wheel life expectancy utilized in both cylindrical and surface grinding. The presented fatigue type model is based on grit pullout mechanism and the associated state of damage percolation. The unique grit-workpiece interaction process leads to a non-uniform spatial distribution of the grit wear. The life expectancy model can be described as a function of the process parameters, grinding wheel geometry and topology, workpiece material properties, etc. The developed modeling framework will greatly enhance the understanding of electroplated CBN grinding wheel wear mechanism.Copyright
ASME 2014 International Manufacturing Science and Engineering Conference collocated with the JSME 2014 International Conference on Materials and Processing and the 42nd North American Manufacturing Research Conference | 2014
Tianyu Yu; Ashraf F. Bastawros; Abhijit Chandra
The wear rate of a grinding wheel directly affects the workpiece surface integrity and tolerances. This paper summarizes a combined experimental-modeling framework for life cycle prediction of an electroplated Cubic Boron Nitride (CBN) grinding wheel, typically utilized in nickel-based superalloy grinding. The paper presents an experimental framework to facilitate the formulation of a micro-mechanics based modeling framework. The presented work investigates the topological evolution of the grinding wheel surface and mechanisms of grit failure via depth profiling, digital microscopy and scanning electron microscopy. The results are used to elucidate the statistical evolution of the grinding wheel surface. Different modes of grit failure, including grit attritious wear, fracture and pull out haven been identified. The analysis of the surface topological features indicates a unique grit activation process, leading to a non-uniform spatial distribution of the grit wear. Additionally, single grit pull out experiment has been conducted to assess the residual strength of the grit-wheel interface and the associated state of damage percolation. The experimental results can be utilized in developing a life expectancy model for the CBN grinding wheel to assess the grit mean time to failure as well as grit surface topological evolution as a function of the process parameters.Copyright
International Journal of Machine Tools & Manufacture | 2017
Chenwei Dai; Wenfeng Ding; Jiuhua Xu; Yucan Fu; Tianyu Yu
International Journal of Machine Tools & Manufacture | 2017
Wenfeng Ding; Chenwei Dai; Tianyu Yu; Jiuhua Xu; Yucan Fu
International Journal of Machine Tools & Manufacture | 2016
Tianyu Yu; David Thomas Asplund; Ashraf F. Bastawros; Abhijit Chandra
Precision Engineering-journal of The International Societies for Precision Engineering and Nanotechnology | 2018
Chaojie Liu; Wenfeng Ding; Tianyu Yu; Changyong Yang
International Journal of Machine Tools & Manufacture | 2017
Tianyu Yu; Ashraf F. Bastawros; Abhijit Chandra
Wear | 2017
Yejun Zhu; Wenfeng Ding; Tianyu Yu; Jiuhua Xu; Yucan Fu; Honghua Su
The International Journal of Advanced Manufacturing Technology | 2017
Abhijit Chandra; Ashraf F. Bastawros; Tianyu Yu; David Thomas Asplund
Precision Engineering-journal of The International Societies for Precision Engineering and Nanotechnology | 2018
Xinxin Xi; Tianyu Yu; Wenfeng Ding; Jiuhua Xu