首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >TOXICITY OF NANOPARTICLES USED IN MINIMUM QUANTITY LUBRICATION (MQL) MACHINING: A SUSTAINABILITY ANALYSIS
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TOXICITY OF NANOPARTICLES USED IN MINIMUM QUANTITY LUBRICATION (MQL) MACHINING: A SUSTAINABILITY ANALYSIS

机译:最小量润滑(MQL)加工中使用的纳米颗粒的毒性:可持续性分析

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Minimum quantity lubrication (MQL) with nanocomposite particles is among the new areas of study and has proven to provide very good cooling and lubrication in the machining of difficult to cut materials, such as titanium, lnconel and ADI. It is therefore imperative to understand their effects on the environment in the early stages of investigation, prior to their wide scale usage in industry. This study focuses on the different nanocomposite particles used in previous research, which is available in the literature, and evaluates their sustainability characteristics by investigating the toxicity of these nanocomposite particles on humans. The cooling capabilities of each of the nanoparticles considered is first established from the existing literature and summarized. Human cell viability measured from in vitro toxicity studies of nanoparticles is used cts a variable to easily capture the toxicity of nanoparticles. Six different human cell lines were chosen to represent the effects of possible exposure through inhalation [human lung epithelial cells (A549), and bronchial epithelial cells (NL-20)]. ingestion (AGS, and HepG2) and dermal contact (THP-1, and human peripheral blood cells). A comparison table was developed (Table 2.0), which provides easy interpretation of the toxicity levels of the five nanoparticles that were considered using all three human cell lines. The drawback of this comparison is the lack of sufficient data to assign conclusive toxicity levels to the nanoparticles. The toxicity studies of nanoparticles on humans is still in its infancy and contradictory results exist for some of the nanoparticles. This is the first attempt to combine the results of the experimental investigations of nano-MOL cooling and the toxicity studies of nanoparticles, allowing researchers to make informed decisions in the selection of the most sustainable nanoparticles in the nano-MOL machining process.
机译:具有纳米复合粒子的最小数量润滑(MQL)是新的研究领域,并且已经证明在难以切割材料,例如钛,Lnconel和Adi的加工中提供非常好的冷却和润滑。因此,在其在行业广泛使用之前,必须了解他们对早期调查阶段的环境的影响。该研究侧重于先前研究中使用的不同纳米复合材料颗粒,其在文献中可用,并通过研究这些纳米复合粒子对人体的毒性来评估其可持续性特征。首先从现有的文献和总结所考虑的每种纳米颗粒的冷却能力。从纳米颗粒的体外毒性研究中测量的人体细胞活力被CTS可变,以容易地捕获纳米颗粒的毒性。选择六种不同的人细胞系来代表通过吸入[人肺上皮细胞(A549)和支气管上皮细胞(NL-20)的曝光的影响。摄入(AGS和HepG2)和皮肤接触(THP-1和人外周血细胞)。开发了一个比较表(表2.0),可容易地解释使用所有三种人细胞含量考虑的五个纳米颗粒的毒性水平。这种比较的缺点是缺乏足够的数据来为纳米颗粒分配确凿的毒性水平。对于一些纳米颗粒,存在对人类纳米颗粒的毒性研究仍存在婴儿期和矛盾的结果。这是第一次尝试结合纳米摩尔冷却的实验研究结果和纳米颗粒的毒性研究的结果,允许研究人员在纳米MOL加工过程中选择最可持续的纳米颗粒中的明智的决定。

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