石墨和基体形状对石墨铸铁中超声波传播速率和衰减值变化的影响

IF 1.9 Q3 ENGINEERING, INDUSTRIAL Production Engineering Archives Pub Date : 2023-02-15 DOI:10.30657/pea.2023.29.4
J. Belan, E. Tillová, M. Uhríčik, L. Pastierovičová
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引用次数: 0

摘要

摘要尽管当前工业,特别是汽车工业的趋势是使用基于Al或HSLA钢的现代、轻质和超强材料,但铸铁等经典材料的应用仍然是有意义的,尤其是在价格和优异的可铸性方面。本文介绍了在质量控制中使用超声波无损检测方法的一种可能方法,并简化了与材料中超声波传播参数的变化有关的铸铁类型的识别。评估质量和确定石墨铸铁类型的主要标准被认为是超声波传播速率-cL和衰减值-α,它们根据石墨和基体的形状而变化。使用具有不同石墨形状(片状、蛭石和球状)的石墨铸铁和具有不同铁素体/珍珠岩比例的基体作为实验材料。除了超声波测试外,还进行了金相分析,以量化铸铁的微观结构。
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Influence of Structural Parameters - the Shape of Graphite and Matrix on Change of Ultrasonic Wave Propagation Rate and Value of Attenuation in Graphitic Cast Irons
Abstract Despite the tendency of the current industry, especially the automotive industry, it is to use modern, light and super-strong materials based on Al or HSLA steels, the application of classic materials such as cast iron still makes sense, especially concerning price and excellent castability. The article presents one of the possible ways of using the ultrasonic non-destructive method in quality control and simplification of the identification of the type of cast iron concerning the change of parameters of ultrasound propagation in materials. The main criteria for assessing the quality and determining the type of graphite cast iron were considered to be the rate of propagation of ultrasound - cL and the value of attenuation - α, which vary depending on the shape of the graphite and matrix. Graphitic cast irons with different graphite shapes (lamellar, vermicular, and globular shapes) and a matrix with different ferrite/perlite ratios were used as experimental material. Along with the ultrasonic tests, a metallographic analysis was also performed to quantify the microstructure of cast irons.
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来源期刊
Production Engineering Archives
Production Engineering Archives Engineering-Industrial and Manufacturing Engineering
CiteScore
6.10
自引率
13.00%
发文量
50
审稿时长
6 weeks
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