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Recent Advances in Handheld X-Ray Fluorescence Based Alloy PMI/Material Testing

机译:手持式X射线荧光基合金PMI /材料测试的最新进展

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Recently, a number of improvements related to accuracy, ease of use, speed and durability have been instituted in handheld (HH) X-ray fluorescence (XRF) instruments. These advances are explained in practical terms, and the impact that each advance will have on the end user. This presentation is intended for those responsible for plant piping system maintenance and safety, and it reinforces the practical usage and value of nondestructive HHXRF analysis in Positive Material Identification (PMI) of alloys. Applications of useful low-compositional level elemental results (parts per million in magnitude) in conjunction with API corrosion guidelines will be covered (i.e., API RP 578 and RP 939-C). Additional compositionally-derived preventative maintenance techniques will also be included. Supplementary to the API corrosion guidelines application, an outline of HHXRF technology, its traditional alloy analysis uses, and distinct relevance to metallurgical and maintenance engineers will further illustrate the significance of recent innovations. A systematic and targeted approach in applying improvements to software, firmware and hardware functionalities of a HH XRF instrument have all blended into a new era for the technique. Throughput and duty-cycle achievements have allowed a greater user impact when utilizing HH XRF during both uptime and downtime maintenance activities. Connectivity improvements to the technology allow remotely generated data to have an immediate impact for users. Most notably, this recent set of computational improvements positions HHXRF into an analytical range rivaling aspects of laboratory grade XRF analysis while maintaining portability.
机译:最近,在手持式(HH)X射线荧光(XRF)仪器中已经制定了许多与准确性,易用性,速度和耐用性相关的改进。这些进步是以实际解释的,以及每次提前对最终用户的影响。本演示文稿适用于负责植物管道系统维护和安全的人,并且它强化了非破坏性HHXRF分析在合金的正面材料鉴定(PMI)中的实际使用和价值。将覆盖有用的低组合水平元素结果(百万次百万级)的应用(即,API RP 578和RP 939-C)。还将包括额外的合成衍生的预防性维护技术。 API腐蚀指南申请的补充,HHXRF技术的概要,传统的合金分析用途以及与冶金和维护工程师的不同相关性将进一步说明最近的创新的重要性。在HH XRF仪器的软件,固件和硬件功能应用改进方面的系统和有针对性的方法都将全部混合成技术的新时代。吞吐量和占空比成就允许在运行时间和停机时间维护活动期间利用HH XRF时更大的用户影响。技术对技术的连接允许远程生成数据对用户进行立即影响。最值得注意的是,这一最近的计算改进的分析范围位于实验室级XRF分析的分析范围竞争方面,同时保持便携性。

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