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Selection of an Optimal Abrasion Wheel Type for Nano-Coating Wear Studies under Wet or Dry Abrasion Conditions

机译:湿润或干磨损条件下纳米涂层磨损研究的最佳磨损轮式选择

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摘要

Nanocoatings have numerous potential applications in the indoor environment, such as flooring finishes with increased scratch- and wear-resistance. However, given concerns about the potential environmental and human health effects of nanomaterials, it is necessary to develop standardized methods to quantify nanomaterial release during use of these products. One key choice for mechanical wear studies is the abrasion wheel. Potential limitations of different wheels include the release of fragments from the wheel during abrasion, wearing of the wheel from the abrasion process, or not releasing a sufficient number of particles for accurate quantitative analysis. In this study, we evaluated five different wheels, including a typically used silicon oxide-based commercial wheel and four wheels fabricated at the National Institute of Standards and Technology (NIST), for their application in nanocoating abrasion studies. A rapid, nondestructive laser scanning confocal microscopy method was developed and used to identify released particles on the abraded surfaces. NIST fabricated a high performing wheel: a noncorrosive, stainless-steel abrasion wheel containing a deep cross-patch. This wheel worked well under both wet and dry conditions, did not corrode in aqueous media, did not release particles from itself, and yielded higher numbers of released particles. These results can be used to help develop a standardized protocol for surface release of particles from nanoenabled products using a commercial rotary Taber abraser.
机译:纳米织物在室内环境中具有许多潜在的应用,例如地板饰面,耐刮擦和耐磨性。然而,鉴于纳米材料的潜在环境和人体健康影响的担忧,有必要在使用这些产品期间进行标准化方法来定量纳米材料释放。机械磨损研究的一个关键选择是磨损轮。不同轮子的潜在限制包括在磨损过程中释放轮子,从磨损过程中佩戴车轮,或者不释放足够数量的颗粒以进行准确定量分析。在这项研究中,我们评估了五个不同的轮子,包括通常使用的基于氧化硅的商用轮和在国家标准和技术研究所(NIST)中制造的四个轮子,以其在纳米陶瓷磨损研究中的应用。开发了快速的非破坏性激光扫描共焦微观方法,并用于识别磨损表面上的释放颗粒。 NIST制造了一个高性能的轮子:一种含有深度交叉贴片的非腐蚀性,不锈钢磨管。该车轮在潮湿和干燥条件下工作良好,没有腐蚀水介质,没有释放颗粒本身,并产生较高数量的释放颗粒。这些结果可用于帮助开发使用商业旋转Taber Arumaser从纳米能产品的表面释放的标准化方案。

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