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Featured researches published by Ronglei Sun.


Ultrasonics | 2017

Microstructural evolution of Ti6Al4V in ultrasonically assisted cutting: Numerical modelling and experimental analysis

Wei Bai; Ronglei Sun; Jürgen Leopold; Vadim V. Silberschmidt

HIGHLIGHTSThe effect of ultrasonically assisted cutting on microstructure is elucidated.Microstructural evolution is compared for new and conventional cutting.Experimental results for ultrasonically assisted cutting of Ti64 are presented. ABSTRACT This paper aims to elucidate the effect of ultrasonically assisted cutting (UAC) on microstructure in a machined surface and a chip of Ti6Al4V alloy. To investigate microstructural evolution, a FE‐based cutting model with an enhanced material formulation and temperature dependent material properties was developed. A Johnson‐Mehl‐Avrami‐Kolmogorov (JMAK) model for the Ti6Al4V alloy was employed to simulate dynamic recrystallization and predict a resultant grain size. Due to a specific thermomechanical load in UAC, the distributions of strains, strain rates and temperatures in a workpiece in the machining process were investigated. In this study, five points under the machined surface and ten points under the unmachined one were tracked to compare the evolution of a grain size and its average magnitude in the alloy subjected to conventional cutting (CC) and UAC. Besides of numerical modelling and experimental studies for the resultant grain size were compared and additional validation using microhardness measurements were conducted. The results showed that the average grain size of the machined surface and the chip in case of UAC was larger and more uniform than that in case of CC. The study also presents discussions about the effect of a vibration amplitude, a feed rate and a cutting speed on the average grain size in machining of Ti6Al4V. The comparison between CC and UAC indicates that the change in average grain size in UAC was smaller than that in CC, thus demonstrating a lower level of damage in UAC.


The International Journal of Advanced Manufacturing Technology | 2016

Analysis and modeling of force in orthogonal elliptical vibration cutting

Wei Bai; Ronglei Sun; Yuan Gao; Jürgen Leopold


The International Journal of Advanced Manufacturing Technology | 2016

Mechanical and thermal modeling of modulation-assisted machining

Yuan Gao; Ronglei Sun; Yongfu Chen; Jürgen Leopold


International Journal of Mechanical Sciences | 2016

Analysis of chip morphology and surface topography in modulation assisted machining

Yuan Gao; Ronglei Sun; Yanni Chen; Jürgen Leopold


Procedia CIRP | 2015

Analysis of Cutting Stability in Vibration Assisted Machining Using Ananalytical Predictive Force Model

Yuan Gao; Ronglei Sun; Jürgen Leopold


Measurement | 2017

A nested-ANN prediction model for surface roughness considering the effects of cutting forces and tool vibrations

Yanni Chen; Ronglei Sun; Yuan Gao; Jürgen Leopold


Procedia CIRP | 2016

Numerical Modelling of Microstructure Evolution in Ti6Al4V Alloy by Ultrasonic Assisted Cutting

Wei Bai; Ronglei Sun; Jürgen Leopold


International Journal of Mechanical Sciences | 2017

Improved analytical prediction of chip formation in orthogonal cutting of titanium alloy Ti6Al4V

Wei Bai; Ronglei Sun; Anish Roy; Vadim V. Silberschmidt


Journal of Manufacturing Processes | 2018

An analytical force model for modulation-assisted turning

Yuan Gao; Ronglei Sun; Jürgen Leopold


Procedia CIRP | 2017

Modelling of Tool Temperature in Modulation-assisted Machining☆

Yuan Gao; James B. Mann; Srinivasan Chandrasekar; Ronglei Sun; Jürgen Leopold

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Yuan Gao

Huazhong University of Science and Technology

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Wei Bai

Huazhong University of Science and Technology

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Yanni Chen

Huazhong University of Science and Technology

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Anish Roy

Loughborough University

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Yongfu Chen

Huazhong University of Science and Technology

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Anuj Bisht

Indian Institute of Science

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