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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Exposure to nanoscale particles and fibers during machining of hybrid advanced composites containing carbon nanotubes
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Exposure to nanoscale particles and fibers during machining of hybrid advanced composites containing carbon nanotubes

机译:机加工含碳纳米管的混合高级复合材料时暴露于纳米级颗粒和纤维

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This study investigated airborne exposures to nanoscale particles and fibers generated during dry and wet abrasive machining of two three-phase advanced composite systems containing carbon nanotubes (CNTs), micron-diameter continuous fibers (carbon or alumina), and thermoset polymer matrices. Exposures were evaluated with a suite of complementary instruments, including real-time particle number concentration and size distribution (0.005-20 mu m), electron microscopy, and integrated sampling for fibers and respirable particulate at the source and breathing zone of the operator. Wet cutting, the usual procedure for such composites, did not produce exposures significantly different than background whereas dry cutting, without any emissions controls, provided a worst-case exposure and this article focuses here. Overall particle release levels, peaks in the size distribution of the particles, and surface area of released particles (including size distribution) were not significantly different for composites with and without CNTs. The majority of released particle surface area originated from the respirable (1-10 mu m) fraction, whereas the nano fraction contributed 10% of the surface area. CNTs, either individual or in bundles, were not observed in extensive electron microscopy of collected samples. The mean number concentration of peaks for dry cutting was composite dependent and varied over an order of magnitude with highest values for thicker laminates at the source being > 1 x 10(6) particles cm(-3). Concentration of respirable fibers for dry cutting at the source ranged from 2 to 4 fibers cm(-3) depending on the composite type. Further investigation is required and underway to determine the effects of various exposure determinants, such as specimen and tool geometry, on particle release and effectiveness of controls.
机译:这项研究调查了空气中暴露于两种干式和湿式磨削加工过程中产生的纳米级颗粒和纤维的情况,这两种先进的复合体系包含碳纳米管(CNT),微米直径连续纤维(碳或氧化铝)和热固性聚合物基体。使用一套辅助仪器评估暴露,包括实时颗粒数浓度和尺寸分布(0.005-20微米),电子显微镜以及在操作员源头和呼吸区域对纤维和可吸入颗粒物进行综合采样。湿法切割(这种复合材料的常用方法)所产生的暴露与背景没有显着不同,而无任何排放控制的干法切割则提供了最坏的情况,本文重点关注。对于具有和不具有CNT的复合材料,总体颗粒释放水平,颗粒尺寸分布的峰值和释放颗粒的表面积(包括尺寸分布)没有显着差异。释放的颗粒表面积的大部分源自可呼吸的(1-10微米)部分,而纳米部分占表面积的10%。在广泛的电子显微镜下,收集到的样品中未观察到单个或成束的CNT。干切峰的平均峰浓度与复合材料有关,并且在一个数量级上变化,在源处,较厚的层压板的最高值为> 1 x 10(6)颗粒cm(-3)。用于干切的可吸入纤维在源处的浓度范围为2到4纤维cm(-3),具体取决于复合材料的类型。需要进行进一步的研究,以确定各种暴露因素(例如样品和工具的几何形状)对颗粒释放和控制有效性的影响。

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