Design and Manufacture of Intelligent Filter Processing System of Modular Cutting Fluid

Authors

  • Shuo Jiang
  • Hongchang Sun
  • Yinuo Zhang
  • Haonan Hu

DOI:

https://doi.org/10.54691/250bp103

Keywords:

Modularization, Online detection, Intelligent filtering.

Abstract

For the needs of ecological protection and high-quality development in the Yellow River Basin, the project plans to design and produce the intelligent filtration treatment system of modular cutting fluid, which is caused by the massive application of cutting wastewater and the improper treatment will cause serious damage to the environment. Through the study of the action mechanism of semiconductor inorganic film on cutting liquid, the development and application verification of cutting liquid filtration system and the development of cutting liquid online monitoring system, a complete set of semiconductor inorganic film high strength toughness steel cutting liquid filtration technology and equipment is formed, providing technical support for green, high efficiency, energy saving and environmental protection cutting fluid treatment. To solve the problem of improper treatment of cutting waste liquid after the processing process of deep hole parts of high strength and toughness steel. Keywords: modularization, online detection, semiconductor inorganic film.

Downloads

Download data is not yet available.

References

[1] de Paiva Raphael Lima,de Souza Ruzzi Rodrigo,da Silva Rosemar Batista. An Approach to Reduce Thermal Damages on Grinding of Bearing Steel by Controlling Cutting Fluid Temperature[J]. Metals,2021,11(10).

[2] Zhao Yaning, Wang Xiaoqiang. Analysis and exploration of the functional module of the centralized filtration system of cutting fluid [J]. New type of industrialization, 2021, 11 (09): 155-157.DOI:10.19335/j.cnki.2095-6649.2021.9.069.

[3] Tzyy Jeng Yong,Yamuna Munusamy,Shi Jie Ding,Hanafi Ismail. Fabrication of a novel latex-based membrane for oily wastewater filtration: effect of degassing on the properties of membrane[J]. Iranian Polymer Journal,2021,30(10).

[4] He Chuan, Shi Guanglin. Simulation analysis of cutting fluid temperature during drilling process [J]. Mechanical design and research,2021,37(02):92-97+108.DOI:10.13952/j.cnki.jofmdr.2021.0062.

[5] Liu Kun. Study on the design and optimization of the cutting fluid wastewater treatment device [D]. Qingdao University of Science and Technology,2021.DOI:10.27264/d.cnki.gqdhc.2021.000012.

[6] Abuhasel Khaled,Jeng Yong Tzyy,Munusamy Yamuna,Kchaou Mohamed,Alquraish Mohammed. Latex-Based Membrane for Oily Wastewater Filtration: Study on the Sulfur Concentration Effect[J]. Applied Sciences,2021,11(4).

[7] Yi Gang. Preparation of separation membrane based on carbon nanotubes and MXene and electrical assistance [D]. Dalian University of Technology,2020.DOI:10.26991/d.cnki.gdllu.2020.004078.

[8] Xu Shaowei, Lu Ying, Song Tao, Liu Guicai, Zhang Shoubin, Xie Kang. Application of membrane technology in produced water from oil field [J]. Water purification technology,2020,39(11):101-105+151.DOI:10.15890/j.cnki.jsjs.2020.11.018.

[9] Wang Yunping, Liu Yongcai, Zhao Jinpeng. Based on the automatic dust removal and filtration system of CNC machine tool [J]. Manufacturing technology and machine tools,2020(05):136-139.DOI:10.19287/j.cnki.1005-2402.2020.05.026.

[10] Jianlin Liu,Xiaofei Zhu,Hongwei Zhang,Fuping Wu,Bigui Wei,Qing Chang. Superhydrophobic coating on quartz sand filter media for oily wastewater filtration[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,553.

[11] Dai Xiaoyuan. Application of silicon carbide ceramic film in oil-water separation [D]. Wuhan University of Engineering, 2018.

[12] Liu Yingkui, Huang Xiaobin. On-line monitoring and control of cutting fluid temperature in deep hole processing [J]. Tool technology, 2017 ,51 (12): 137-139.DOI:10.16567/j.cnki.1000-7008.2017.12.037.

[13] Liu Weifeng. Research on the electrocondensation and purification process and device of cutting liquid in online circulation [D]. Dalian Jiaotong University,2017.

[14] Lu Shun. Study on cutting liquid wastewater flocculation-UV / Fenton-adsorption combined treatment process and all-in-one machine design [D]. Shandong University of Science and Technology,2017.

[15] Zhang Jiming. On-line monitoring of the deep hole processing cutting fluid system [D]. Beijing University Studies,2016.

[16] Cheng Liang. Design of workshop chip / liquid centralized treatment system for green manufacturing [D]. Dalian University of Technology,2015.

[17] Frederic Güth,Pal Arki,Yvonne Joseph. Field-effect Based pH Sensors for Cutting Fluid Condition Monitoring[J]. Procedia Engineering,2015,120.

[18] Fanuc Corporation; Researchers Submit Patent Application, "Machine Tool with Cutting Fluid Filtering Apparatus", for Approval[J]. Journal of Engineering,2014.

[19] Li Hongrui. Study on the treatment of machining cutting liquid wastewater [D]. Harbin Institute of Technology,2013.

[20] Zhao Xiaoqiang. Design of the cutting fluid PH monitor [J]. colliery engineering,2010,29(07):141-142.

[21] Xiang Li. Research on the on-line circulation and purification equipment of metal cutting fluid [D]. Dalian Jiaotong University,2008.

[22] Grigo Gunther. Cutting fluids filtration tasks and adjustable systems[J]. VDI Berichte,2008.

Downloads

Published

2024-12-23

Issue

Section

Articles

How to Cite

Jiang, S., Sun, H., Zhang, Y., & Hu, H. (2024). Design and Manufacture of Intelligent Filter Processing System of Modular Cutting Fluid. Frontiers in Science and Engineering, 4(12), 1-8. https://doi.org/10.54691/250bp103