Lubrication Mechanisms of a Nanocutting Fluid with Carbon Nanotubes and Sulfurized Isobutylene (CNTs@T321) Composites as Additives

Author:

Guan Jiju,Gao Chao,Xu Zhengya,Yang Lanyu,Huang ShuiquanORCID

Abstract

Developing high-efficiency lubricant additives and high-performance green cutting fluids has universal significance for maximizing processing efficiency, lowering manufacturing cost, and more importantly reducing environmental concerns caused by the use of conventional mineral oil-based cutting fluids. In this study, a nanocomposite is synthesized by filling sulfurized isobutylene (T321) into acid-treated carbon nanotubes (CNTs) with a liquid-phase wet chemical method. The milling performance of a nanocutting fluid containing CNTs@T321 composites is assessed using a micro-lubrication technology in terms of cutting temperature, cutting force, tool wear, and surface roughness. The composite nanofluid performs better than an individual CNT nanofluid regarding milling performance, with 12%, 20%, and 15% reductions in the cutting force, machining temperature, and surface roughness, respectively. The addition of CNTs@T321 nanocomposites improves the thermal conductivity and wetting performance of the nanofluid, as well as produces a complex lubricating film by releasing T321 during machining. The synergistic effect improves the cutting state at the tool–chip interface, thereby resulting in improved machining performance.

Funder

Youth Science Foundation Program of Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Publisher

MDPI AG

Subject

Surfaces, Coatings and Films,Mechanical Engineering

Reference43 articles.

1. Handbook of Lubrication and Tribology: Theory and Design;Bruce,2012

2. Dry Cutting

3. New evidence on the health hazards and control of metalworking fluids since completion of the OSHA advisory committee report

4. Enhancing Thermal Conductivity of Fluids with Nanoparticles;Choi;Proceedings of the 1995 ASME International Mechanical Engineering Congress & Exposition,1995

5. Improvement of the milling process performance by using cutting fluids prepared with nano-silver and boric acid

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