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首页> 外文期刊>Applied clay science >Electro-active control of the viscous flow and tribological performance of ecolubricants based on phyllosilicate clay minerals and castor oil
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Electro-active control of the viscous flow and tribological performance of ecolubricants based on phyllosilicate clay minerals and castor oil

机译:基于字母硅酸盐矿物和蓖麻油的Ecolurcricant的粘性流动和摩擦学性能的电动控制

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摘要

Lubricating fluids with highly improved tribological performance very often entail the use of environmentally disrespectful formulations. Based on organoclay dispersions in castor oil, the present research explores the development of simple and sustainable lubricants that enable an "active control" of the tribological behavior under the action of electric fields. Storage stable formulations with high electro-rheological (ER) performance were obtained with 2 wt% organo-modified montmorillonites (OMt) dispersions in castor oil. Their strong ER potential was assessed through the dynamic yield stress values obtained from steady flow curves at 25 degrees C under electric fields up to 4 kV/mm. Broadband dielectric spectroscopy measurements demonstrated a local maximum (or shoulder) in the dielectric loss, epsilon '', in the frequency range 5-10 kHz which is related to interfacial polarization. It was found that the OMt clays had a much greater ER potential than other types of clay mineral (e.g. halloysite nanotubes) that did not exhibit any polarization relaxation in epsilon ''. Moreover, in general, a fairly good correlation of the yield stress values with the drop in the permittivity, Delta epsilon ' = epsilon(0)' - epsilon(infinity)', was found for the OMt clays. Preliminary electro-tribological tests were carried out using a ball-on-three plates setup, with an optimal formulation prototype consisting of 2 wt% Cloisite 15A dispersion in castor oil. The results demonstrated a reduction of up to 9% of the friction coefficient in the mixed lubrication regime. This outcome, based on organomodified layered nanosilicates dispersions in castor oil, revealed the feasibility of producing a "new generation" of lubricants which, with no need for hazardous chemicals, may assist in the development of a novel concept of lubrication through electric potentials.
机译:润滑液具有高度改善的摩擦学性能,通常需要使用环境不尊重的制剂。基于蓖麻油的有机粘土分散体,本研究探讨了简单可持续润滑剂的开发,可在电场的作用下实现摩擦学行为的“积极控制”。用蓖麻油中的2wt%有机改性的蒙脱石(OMT)分散体获得高电流变(ER)性能的储存稳定的制剂。通过在高达4kV / mm的电场下的25摄氏度下从稳定流动曲线获得的动态屈服应力值来评估它们强的ER电位。宽带介电光谱测量测量在介电损耗,ε'中展示了局部最大(或肩部),其频率范围为5-10kHz,其与界面极化有关。发现OMT粘土比其他类型的粘土矿物(例如Halloysite Nanotubes)具有更大的ER潜力,其在epsilon''中没有表现出任何偏振弛豫。此外,通常,发现OMT粘土的渗透度下降的产量应力值与渗透度下降的相当良好的相关性。使用球形上的电磁体设置进行初步电摩擦性测试,其具有由蓖麻油中的2wt%Cloisite 15a分散体组成的最佳配方原型。结果证明,混合润滑制度中的摩擦系数的高达9%的降低。这一结果基于蓖麻油中的有机型分层纳米硅分散体,揭示了生产“新一代”的润滑剂的可行性,这些润滑剂不需要有害化学品,可以帮助开发通过电势的新颖润滑概念。

著录项

  • 来源
    《Applied clay science》 |2020年第11期|105830.1-105830.9|共9页
  • 作者单位

    Univ Huelva Ctr Invest Tecnol Prod & Proc Quim Pro2TecS Dept Ingn Quim Campus El Carmen Huelva 21071 Spain;

    Univ Huelva Ctr Invest Tecnol Prod & Proc Quim Pro2TecS Dept Ingn Quim Campus El Carmen Huelva 21071 Spain;

    Univ Huelva Ctr Invest Tecnol Prod & Proc Quim Pro2TecS Dept Ingn Quim Campus El Carmen Huelva 21071 Spain;

    Univ Huelva Ctr Invest Tecnol Prod & Proc Quim Pro2TecS Dept Ingn Quim Campus El Carmen Huelva 21071 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Smart fluids; Lubrication; Electro-rheology; Electro-tribology; Clay minerals; Sustainability;

    机译:智能液体;润滑;电流流变;电司;粘土矿物质;可持续性;

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