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激光诱导击穿光谱技术对钢中缺陷的快速表征 被引量:13
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作者 KONDO Hiroyuki AIMOTO Michihiro +1 位作者 YAMAMURA Hideaki toh takehiko 《冶金分析》 CAS CSCD 北大核心 2009年第1期13-16,共4页
激光诱导击穿光谱技术(LIBS)作为一种快速而简单地检查钢表面缺陷的技术,可直接观测到激光脉冲被聚焦于样品之上而感生的等离子体发射物。一个平凸透镜把斑直径大约为1 mm的光量开关Nd:YAG激光器(脉宽:12 ns;重复频率:10 Hz)辐照聚焦于... 激光诱导击穿光谱技术(LIBS)作为一种快速而简单地检查钢表面缺陷的技术,可直接观测到激光脉冲被聚焦于样品之上而感生的等离子体发射物。一个平凸透镜把斑直径大约为1 mm的光量开关Nd:YAG激光器(脉宽:12 ns;重复频率:10 Hz)辐照聚焦于样品表面,用来烧蚀样品的一部分,形成一个微等离子体。等离子体的发射由光纤传送至帕邢-龙校格装置多色仪(焦距:500 mm)。在已被流入和流出的氩气排空的空间里,样品被安装在一个二维移动台上进行两点分析——常规分析和缺陷分析。通过比较两个分析结果,可检测到缺陷部分有显著信号强度的元素。由不同类型的夹杂物可以检测出典型的元素,由氧化铝可检测出铝,由保护渣可检测出铝、钙、镁、硅和钠,由矿渣可检测出铝、钙和镁。经证实,由LIBS分析得到的结果与EPMA(电子探针)研究得到的结果一致。因此,导致缺陷的夹杂物的类型都能通过LIBS技术确定属性。当涂层被激光烧蚀去掉后,镀锌钢也可以被直接分析出来。包括制样,该项技术评定时间不到半小时,因此在炼钢过程中,可以迅速采取合适措施。 展开更多
关键词 钢缺陷 激光诱导击穿光谱 夹杂物
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Analyses of Various MHD Phenomena in EPM Application to Steelmaking Processes by Finite Volume Method
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作者 toh takehiko TAKEUCHI Sunao +1 位作者 YAMAMOTO Kenichi HAMATANI Hideki 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S2期834-838,共5页
Applied technologies of magnetohydrodynamics(MHD)have been widely used in steelmaking based on their characteristics of clean and remote control of liquid metal.Generally,phenomena are quite complex and coupled among ... Applied technologies of magnetohydrodynamics(MHD)have been widely used in steelmaking based on their characteristics of clean and remote control of liquid metal.Generally,phenomena are quite complex and coupled among hydrodynamics,electromagnetism and thermodynamics,so numerical simulations play important roles in various applications of MHD for equipments design and control parameters decision.In the simulation,it is preferable to use one package calculation rather than coupled analyses such as the one between finite element method(FEM)and finite difference method(FDM)with the data conversion caused by different schemes.For the resolution,a three-dimensional finite volume approach for MHD is established based on scalar and vector potential and magnetic induction equation treated as transport equations.In this paper,results of the analyses of various MHD phenomena in EPM application to steelmaking process are described with some examples such as plasma heating and electromagnetic flow control tools. 展开更多
关键词 MAGNETOHYDRODYNAMICS STEELMAKING thermal plasma
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