A Digital Evaluation System for Inclusions in Steel

Chia-Sui Wang, Wesley Huang, M. Yeh, Jou-Wei Lin
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Abstract

Inclusions in steel materials are generally composed of oxide, silicate from silica, sulfide, and other chemical compounds. These inclusions in steel cause stress concentration on the contact surface between inclusions and steel base, which result in a quenching crack and a decrease of fatigue strength. The inspection of inclusions in steel is high in demand, and is typically carried out manually. This study used a rule-based methodology to develop a division-making architecture for a digital evaluation system. The results from comparison experiments showed that the difference of evaluation grade between digital and manual evaluations was 0.5. Moreover, the time spent on digital evaluation was 30-50 times faster than manual evaluation. In summary, the digital evaluation developed by this study for inclusions is suitable for metallographic inspection.
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钢中夹杂物的数字化评价系统
钢材料中的夹杂物通常由氧化物、二氧化硅中的硅酸盐、硫化物和其他化合物组成。钢中的夹杂物使夹杂物与钢基体接触表面应力集中,产生淬火裂纹,使钢的疲劳强度降低。钢材中夹杂物的检测需求量很大,通常是手工进行的。本研究使用基于规则的方法为数字评估系统开发了一个划分架构。对比实验结果表明,数字化评价与人工评价的评价等级差为0.5。此外,数字化评估的时间比人工评估快30-50倍。综上所述,本研究开发的夹杂物数字化评价方法适用于金相检验。
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