首页> 外文会议>International Conference of the Polymer Processing Society >ON-LINE VS OFF-LINE ELECTRICAL CONDUCTIVITY CHARACTERIZATION. POLYCARBONATE COMPOSITES DEVELOPED WITH MULTIWALLED CARBON NANOTUBES BY COMPOUNDING TECHNOLOGY
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ON-LINE VS OFF-LINE ELECTRICAL CONDUCTIVITY CHARACTERIZATION. POLYCARBONATE COMPOSITES DEVELOPED WITH MULTIWALLED CARBON NANOTUBES BY COMPOUNDING TECHNOLOGY

机译:在线VS离线电导率表征。聚碳酸酯复合材料通过复合技术用多壁碳纳米管开发

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Material characterization is one of the key steps when conductive polymers are developed. The dispersion of carbon nanotubes (CNTs) in a polymeric matrix using melt mixing influence final composite properties. The compounding becomes trial and error using a huge amount of materials, spending time and money to obtain competitive composites. Traditional methods to carry out electrical conductivity characterization include compression and injection molding. Both methods need extra equipments and moulds to obtain standard bars. This study aims to investigate the accuracy of the data obtained from absolute resistance recorded during the melt compounding, using an on-line setup developed by our group, and to correlate these values with off-line characterization and processing parameters (screw/barrel configuration, throughput, screw speed, temperature profile and CNTs percentage). Compounds developed with different percentages of multi walled carbon nanotubes (MWCNTs) and polycarbonate has been characterized during and after extrusion. Measurements, on-line resistance and off-line resistivity, showed parallel response and reproducibility, confirming method validity. The significance of the results obtained stems from the fact that we are able to measure on-line resistance and to change compounding parameters during production to achieve reference values reducing production/testing cost and ensuring material quality. Also, this method removes errors which can be found in test bars development, showing better correlation with compounding parameters.
机译:材料表征是开发导电聚合物时的关键步骤之一。碳纳米管(CNTS)在聚合物基质中的分散在聚合物基质中使用熔融混合影响最终复合性能。使用大量材料,花费时间和金钱来获得竞争复合材料,复合变为试验和误差。进行导电性表征的传统方法包括压缩和注塑。两种方法都需要额外的设备和模具来获得标准条。本研究旨在使用我们组开发的在线设置,研究在熔体配合过程中记录的绝对电阻所获得的数据的准确性,并将这些值与离线表征和处理参数相关联(螺钉/桶形配置,吞吐量,螺杆速度,温度曲线和CNT百分比)。以不同百分比的多壁碳纳米管(MWCNT)和聚碳酸酯开发的化合物已经表征在挤出期间和挤出后。测量,在线电阻和离线电阻率,显示出并行响应和再现性,确认方法有效性。结果的重要性源于我们能够测量在线电阻并在生产过程中改变复合参数以实现参考值降低生产/测试成本并确保材料质量的事实。此外,该方法消除了在测试条形发育中可以找到的错误,显示与复合参数更好的相关性。

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