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Multifrequency Eddy Current Clad Thickness Measurement of Thin Aluminum Alloy Combinations Having Similar Conductivities

机译:具有相似电导率的薄铝合金组合的多频涡流熔覆厚度测量

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摘要

Clad materials can offer several performance advantages over unclad materials including better corrosion resistance, increased mechanical wear, improved joining qualities, and enhanced metallurgical properties. Clad materials are used extensively in automotive and building products, aerospace applications, and air conditioning equipment. Clad products pose special production problems due to their unique composition. These products might require clad on one or both sides and, depending on the product, the clad and core alloys come in several combinations. For proper process and quality control, products are required to be sampled to ensure that the clad layer is within a certain tolerance band for maximum and minimum thickness. The eddy current method described here can be employed to make a rapid, nondestructive determination of the clad thickness.
机译:包层材料可以提供比未包层材料更多的性能优势,包括更好的耐腐蚀性,增加的机械磨损,改进的连接质量和增强的冶金性能。包层材料广泛用于汽车和建筑产品,航空航天应用和空调设备。复合产品由于其独特的成分而引起特殊的生产问题。这些产品可能需要在一侧或两侧进行包层,根据产品的不同,包层和芯部合金有几种组合。为了进行适当的过程和质量控制,需要对产品进行抽样,以确保包层在最大和最小厚度的一定公差范围内。此处描述的涡流方法可用于快速,无损地确定包层厚度。

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