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A New Method for the Detection and Quantification of Residual Volatiles in XLPE Electrical Cable Using Large-Spot Raman Spectroscopy

机译:大斑点拉曼光谱法检测和量化交联聚乙烯电缆中残留挥发物的新方法

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摘要

The residual products of the cross-linking process for high-voltage (HV) and medium-voltage (MV) cable materials are manifold but the two most important byproducts are cumyl alcohol (CA) and acetophenone (AC). Due in part to the presence of these byproducts, cables must be degassed for several days at elevated temperature before the product can be shipped, possibly limiting production throughput. There are few analytical means available to conveniently monitor the quantities of these byproducts during degassing. In this paper, we describe the use of a recently developed technology and enhanced measurement technique that employs large-spot Raman spectroscopy for the quantification of CA and AC. The sampling involves the use of an incident laser spot which can range from 1 to 6 mm in diameter to facilitate the achievement of accurate quantitative results. This approach would allow monitoring of degassing so that an accurate, results-oriented specification could be set for the shipment of HV and MV cable products following production. As such, this methodology has the potential to facilitate better product consistency among manufacturers.
机译:高压(HV)和中压(MV)电缆材料的交联过程的残留产物是多种多样的,但是两个最重要的副产物是枯基醇(CA)和苯乙酮(AC)。部分由于这些副产物的存在,在运输产品之前,必须在高温下对电缆脱气几天,这可能会限制生产量。几乎没有分析方法可以方便地监测脱气过程中这些副产物的量。在本文中,我们描述了使用最新开发的技术和增强的测量技术,该技术采用大范围拉曼光谱对CA和AC进行定量。采样涉及使用入射激光点,其直径范围可以从1到6 mm,以促进获得准确的定量结果。这种方法可以监控脱气,从而可以为生产后的HV和MV电缆产品的运输设定准确的,注重结果的规范。因此,这种方法有可能促进制造商之间更好的产品一致性。

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