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作 者:薛博文 崔敏超 汪晨旭 缪子繁 廖萍[1] 赵升吨[2] XUE Bowen;CUI Minchao;WANG Chenxu;MIAO Zifan;LIAO Ping;ZHAO Shengdun(Nantong University,School of Mechanical Engineering,Nantong 226019,China;School of Mechanical Engineering,Xi’an Jiaotong University,Xi’an 710049,China)
机构地区:[1]南通大学机械工程学院,南通226019 [2]西安交通大学机械工程学院,西安710049
出 处:《激光技术》2018年第6期806-810,共5页Laser Technology
基 金:国家自然科学基金资助项目(51335009);江苏省企业创新与成果转化专项资金资助项目(BA2015106;BA2015107)
摘 要:为了研究激光技术应用于区分不同金相组织的可行性,采用不同的热处理方法分别得到珠光体+铁素体和马氏体这两种不同的金相组织的钢样,选择合适的激光脉冲能量,对比分析了激光诱导击穿光谱的谱线强度与金相组织的关系,用主成分分析法对不同金相组织进行了区分。结果表明,不同金相组织的谱线强度不同,其中珠光体+铁素体组织的谱线强度较大,基体元素Fe的谱线强度差异比合金元素Mn的谱线强度差异大;不同金相组织呈现一定分布特性,主成分分析法能对不同金相组织进行区分,其中在波长范围280nm^320nm内区分效果最好。该研究验证了激光技术具有区分不同金相组织的能力。In order to study the feasibility that laser technology was used to distinguish different metallographic structures,two different metallographic structures of pearlite+ferrite and martensite were obtained by different heat treatment methods.The suitable laser pulse energy was chosen,and the relationship between breakdown spectral line strength induced by laser and metallographic group was analyzed and compared.The principal component analysis was used to distinguish the different metallographic structures.The experimental results show that the spectral line intensity of different metallographic structures is different.The spectral line intensity of pearlite+ferrite structure is larger.The difference of spectral line strength with matrix element Fe is larger than that with matrix element alloy Mn.Different metallographic structures show certain distribution characteristics.Principal component analysis method can distinguish the different metallographic structures.The distinguishing result is the best in wavelength range of 280nm^320nm.This study proves that laser technology has the ability to distinguish different metallographic structures.
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