Xianpeng Zhang
Qingdao University
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Featured researches published by Xianpeng Zhang.
Materials and Manufacturing Processes | 2018
Guotao Liu; Changhe Li; Yanbin Zhang; Min Yang; Dongzhou Jia; Xianpeng Zhang; Shuming Guo; Runze Li; Han Zhai
ABSTRACT Nanofluid minimum quantity lubrication is an environmental-friendly, resource-saving, and sustainable process compared with traditional flood lubrication. Especially, it is widely applied in difficult-to-cutting material, such as Ti-6Al-4V. However, optimized process parameters have not been obtained with considering grinding temperature, tangential grinding force, specific grinding energy, and surface roughness (Ra). And it is important for reaching the best surface quality and highest grinding efficiency. Henceforth, grinding parameters were set reasonably through an orthogonal experiment in this study and they were optimized preliminarily through a signal-to-noise analysis, getting four optimal groups of single grinding parameter. Next, a grey relational analysis was implemented based on the optimal signal-to-noise analysis of signal objective, getting two optimal combinations of multiple objectives. Finally, surface qualities in several groups of optimized experiments were characterized and analyzed by the profile supporting length ratio, surface morphology, and energy spectra. Furthermore, the grinding efficiency experiment was evaluated by material removal rate and specific grinding energy based on satisfying workpiece surface quality, and the optimal parameter combinations of surface quality and processing efficiency were gained. Research results provide theoretical basis for industrial production.
Materials and Manufacturing Processes | 2018
Min Yang; Changhe Li; Yanbin Zhang; Dongzhou Jia; Xianpeng Zhang; Yali Hou; Bin Shen; Runze Li
ABSTRACT Nanoparticle jet mist cooling (NJMC) is an effective solution to prevent heat injuries in clinical neurosurgery bone grinding. A simulation study on temperature field of microscale bone grinding was performed to discuss the effect of nanoparticle size on heat convection during this cooling method by the dynamic heat flux density model. Such dynamic heat flux density model was established through real-time acquisition of grinding force signals. Results showed that given the real-time dynamic heat flux, workpiece surface temperature changes with time. Nanofluids using 30 nm nanoparticles show the largest heat convection coefficient (1.8723 W/mm2 · K) and the lowest average surface temperature followed by nanofluids of 50, 70, and 90 nm nanoparticles successively. An experimental verification using fresh bovine femur was conducted with 2% (volume fraction) of different sizes of Al2O3 nanoparticles. The simulated temperature under dynamic heat flux comes close to the actual measured temperature. Under testing conditions, temperature under mist cooling is 33.6°C, temperatures under NJMC using nanofluids (30, 50, 70, and 90 nm) are 21.4, 17.6, 16.1, and 8.3% lower, respectively. This result confirmed the positive correlation between the average workpiece surface temperature and nanoparticle size. Experimental results agreed with theoretical analysis, verifying the validity of theoretical modeling.
Journal of Cleaner Production | 2017
Shuming Guo; Changhe Li; Yanbin Zhang; Yaogang Wang; Benkai Li; Min Yang; Xianpeng Zhang; Guotao Liu
International Journal of Machine Tools & Manufacture | 2017
Min Yang; Changhe Li; Yanbin Zhang; Dongzhou Jia; Xianpeng Zhang; Yali Hou; Runze Li; Jun Wang
International Journal of Machine Tools & Manufacture | 2017
Yanbin Zhang; Changhe Li; Heju Ji; Xiaohui Yang; Min Yang; Dongzhou Jia; Xianpeng Zhang; Runze Li; Jun Wang
Journal of Manufacturing Processes | 2017
Yaogang Wang; Changhe Li; Yanbin Zhang; Benkai Li; Min Yang; Xianpeng Zhang; Shuming Guo; Guotao Liu; Mingge Zhai
Journal of Cleaner Production | 2017
Yaogang Wang; Changhe Li; Yanbin Zhang; Min Yang; Xianpeng Zhang; Naiqing Zhang; Jingjie Dai
Precision Engineering-journal of The International Societies for Precision Engineering and Nanotechnology | 2017
Xianpeng Zhang; Changhe Li; Yanbin Zhang; Yaogang Wang; Benkai Li; Min Yang; Shuming Guo; Guotao Liu; Naiqing Zhang
Industrial Crops and Products | 2018
Shuming Guo; Changhe Li; Yanbin Zhang; Min Yang; Dongzhou Jia; Xianpeng Zhang; Guotao Liu; Runze Li; Zhaorong Bing; Heju Ji
The International Journal of Advanced Manufacturing Technology | 2018
Dongzhou Jia; Changhe Li; Yanbin Zhang; Min Yang; Xianpeng Zhang; Runze Li; Heju Ji