Abstract
In recent years, a large number of patents have been devoted to developing minimum quantity lubrication (MQL) grinding techniques that can significantly improve both environmentally conscious and energy saving and costeffective sustainable grinding fluid alternatives. Among them, one patent is about a controllable nano-fluids jet MQL grinding system based on electrostatic atomization. Using the principle of electrostatics, it can achieve the control of droplet transfer by charging the sprayed droplets. This system can improve the uniformity of the droplet spectrum, liquid deposition efficiency and effective utilization of liquid. It can also effectively control the movement patterns of the droplets, thereby reducing the pollution of the environment and providing better health protection for workers. Although researchers accomplished profound and systematic studies on MQL, especially on nano-particles jet MQL. It can solve the shortage of MQL in cooling performance, greatly improve the working environment, save energy and reduce costs to achieve a low-carbon manufacturing. The unique lubricating performance and tribological property of solid nano-particles form nano-particle shearing films at the grinding wheel/workpiece interface, which can enhance the lubricating performance of MQL grinding. Existing studies on MQL grinding equipments, however, cannot meet the needs of the technological development. Therefore, our research provided a general introduction of the latest patients and research progress of nanoparticles jet MQL grinding equipments presented by the research team from Qingdao Technological University.
Keywords: Cooling performance, Grinding equipments, Grinding zone temperature, Jet flow, Lubricating oil film, Lubricating properties, Minimum quantity lubrication (MQL), Nano-particles, Tribological features.
Recent Patents on Nanotechnology
Title:Advances and Patents about Grinding Equipments with Nano-Particle Jet Minimum Quantity Lubrication
Volume: 8 Issue: 3
Author(s): Dongzhou Jia, Changhe Li, Sheng Wang, Qiang Zhang and Yali Hou
Affiliation:
Keywords: Cooling performance, Grinding equipments, Grinding zone temperature, Jet flow, Lubricating oil film, Lubricating properties, Minimum quantity lubrication (MQL), Nano-particles, Tribological features.
Abstract: In recent years, a large number of patents have been devoted to developing minimum quantity lubrication (MQL) grinding techniques that can significantly improve both environmentally conscious and energy saving and costeffective sustainable grinding fluid alternatives. Among them, one patent is about a controllable nano-fluids jet MQL grinding system based on electrostatic atomization. Using the principle of electrostatics, it can achieve the control of droplet transfer by charging the sprayed droplets. This system can improve the uniformity of the droplet spectrum, liquid deposition efficiency and effective utilization of liquid. It can also effectively control the movement patterns of the droplets, thereby reducing the pollution of the environment and providing better health protection for workers. Although researchers accomplished profound and systematic studies on MQL, especially on nano-particles jet MQL. It can solve the shortage of MQL in cooling performance, greatly improve the working environment, save energy and reduce costs to achieve a low-carbon manufacturing. The unique lubricating performance and tribological property of solid nano-particles form nano-particle shearing films at the grinding wheel/workpiece interface, which can enhance the lubricating performance of MQL grinding. Existing studies on MQL grinding equipments, however, cannot meet the needs of the technological development. Therefore, our research provided a general introduction of the latest patients and research progress of nanoparticles jet MQL grinding equipments presented by the research team from Qingdao Technological University.
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Cite this article as:
Jia Dongzhou, Li Changhe, Wang Sheng, Zhang Qiang and Hou Yali, Advances and Patents about Grinding Equipments with Nano-Particle Jet Minimum Quantity Lubrication, Recent Patents on Nanotechnology 2014; 8 (3) . https://dx.doi.org/10.2174/1872210508666141022113257
DOI https://dx.doi.org/10.2174/1872210508666141022113257 |
Print ISSN 1872-2105 |
Publisher Name Bentham Science Publisher |
Online ISSN 2212-4020 |

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