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    • 1. 发明授权
    • Method for analyzing metal material
    • 用于分析金属材料的制造方法
    • US08865471B2
    • 2014-10-21
    • US13131327
    • 2008-12-25
    • Satoshi KinoshiroTomoharu Ishida
    • Satoshi KinoshiroTomoharu Ishida
    • G01N33/20G01N31/02
    • G01N31/02G01N33/20
    • A method for analyzing a metal material includes electrolyzing a metal sample in an electrolytic solution, immersing a remaining portion of the metal sample taken out of the electrolytic solution in a dispersible solution to separate at least one substance selected from the group consisting of precipitates and inclusions attached to the remaining portion of the metal sample, filtering the dispersible solution containing the at least one separated substance through filters having straight pores and a porosity of 4% or more to obtain residues trapped on the filters and filtrates, and analyzing at least one of the residues and the filtrates.
    • 金属材料的分析方法包括电解电解液中的金属试样,将从电解液中取出的金属试样的剩余部分浸渍在分散溶液中,分离出选自沉淀物和夹杂物中的至少一种物质 附着到金属样品的剩余部分,通过具有直孔和孔隙率为4%以上的过滤器过滤含有至少一种分离物质的可分散溶液,以获得捕获在过滤器上的残留物和滤液,并分析至少一种 残留物和滤液。
    • 3. 发明申请
    • METHOD FOR DESULFURIZING HOT METAL
    • 冷却金属的方法
    • US20140083251A1
    • 2014-03-27
    • US14119692
    • 2012-08-08
    • Satoshi KinoshiroKyoko FujimotoMasao InoseToshiyuki Ito
    • Satoshi KinoshiroKyoko FujimotoMasao InoseToshiyuki Ito
    • C21C1/02
    • C21C1/02C21C7/064G01N21/64G01N21/643G01N33/203G01N2021/6432
    • In a method for desulfurizing hot metal by analyzing S concentration of a sample taken out from the hot metal, the S concentration is analyzed rapidly and precisely by a method comprising a high frequency induction heating step of oxidizing the sample under a high frequency induction heating in a pure oxygen atmosphere to convert S in the hot metal to SO2 and an analysis step of analyzing SO2-containing gas generated in the high frequency induction heating step through an ultraviolet fluorescence method to quantify S concentration in the sample, whereby S concentration after the desulfurization is controlled precisely and hence fault of S concentration is prevented but also the increase of the cost due to the excessive addition of a desulfurization agent and step disruption at steel-making step are prevented.
    • 在通过分析从铁水中取出的样品的S浓度来分析硫酸铁的方法中,通过包括在高频感应加热下对样品进行氧化的高频感应加热步骤的方法,迅速且精确地分析S浓度 将氧化铁中的S转化为SO2的纯氧气氛和通过紫外线荧光法分析在高频感应加热工序中产生的含SO 2气体的分析步骤,以量化样品中的S浓度,由此脱硫后的S浓度 被精确地控制,因此防止了S浓度的故障,并且防止了由于过度添加脱硫剂而造成的成本的增加以及在炼钢步骤中的阶段破坏。
    • 5. 发明申请
    • METHOD FOR ANALYZING METAL SPECIMEN
    • 分析金属样品的方法
    • US20100291692A1
    • 2010-11-18
    • US12666652
    • 2008-06-26
    • Satoshi KinoshiroTomoharu Ishida
    • Satoshi KinoshiroTomoharu Ishida
    • G01N27/26G01N33/20
    • G01N33/20G01N2001/4038
    • A method for analyzing a metal specimen includes an electrolysis step of electrolyzing a metal specimen containing a reference element and a target element in an electrolytic solution, a sampling step of sampling a portion of the electrolytic solution, an analysis step of analyzing the sampled electrolytic solution, a concentration ratio-calculating step of calculating the concentration ratio of the target element to the reference element in the electrolytic solution on the basis of the analysis results, and a content-calculating step of calculating the content of the target element present in the form of a solid solution by multiplying the content of the reference element in the metal specimen by the obtained concentration ratio.
    • 一种用于分析金属试样的方法包括:在电解液中电解含有参考元素和目标元素的金属试样的电解步骤,对电解液的一部分取样的取样步骤,分析取样的电解液 ,浓度比计算步骤,基于分析结果计算电解液中的目标元素与参考元素的浓度比;以及内容计算步骤,计算以该形式存在的目标元素的含量 通过将金属样品中的参考元素的含量乘以获得的浓度比来获得固溶体。