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    • 25. 发明授权
    • Method of preparing silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles
    • 用增强纳米粒子的纤维状布置制备银基电接触材料的方法
    • US09287018B2
    • 2016-03-15
    • US13577893
    • 2011-04-11
    • Lesheng ChenXiao ChenGengxin QiChengfa Mu
    • Lesheng ChenXiao ChenGengxin QiChengfa Mu
    • H01B1/02C23C30/00
    • H01B1/02C23C30/00
    • A method for preparing silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles includes (1) uniformly mixing reinforcement powders and silver matrix powders for ball milling; (2) pouring the obtained composite powders and silver matrix powders into a powder mixing machine for powder mixing; (3) cold isostatic pressing; (4) sintering; (5) hot pressing; and (6) hot extruding to obtain silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles. The method of the present invention can obtain silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles with no specific requirement on processing deformation, and the plasticity and ductility of the reinforcing phase. Furthermore, it has simple processes, low cost and no particular requirements on the equipment. Contact materials prepared by the present method have good resistance to welding and arc erosion, conductivity and a greatly enhanced processing performance.
    • 用于制备具有纤维状排列的增强纳米颗粒的银基电接触材料的方法包括(1)均匀混合增强粉末和用于球磨的银基粉末; (2)将得到的复合粉末和银基粉末倒入用于粉末混合的粉末混合机中; (3)冷等静压; (4)烧结; (5)热压; 和(6)热挤压以获得具有纤维状排列的增强纳米颗粒的银基电接触材料。 本发明的方法可以获得具有增强纳米颗粒的纤维状布置的银基电接触材料,对加工变形没有特别要求,并且增强相的可塑性和延展性。 此外,它具有工艺简单,成本低,对设备没有特殊要求。 通过本方法制备的接触材料具有良好的耐焊接性和电弧腐蚀性,导电性和极大增强的加工性能。
    • 26. 发明授权
    • Magnetic recording medium, manufacturing method thereof, and magnetic recording/reproducing device
    • 磁记录介质及其制造方法以及磁记录/再现装置
    • US08628866B2
    • 2014-01-14
    • US13132039
    • 2009-12-01
    • Amarendra K SinghDaizo EndoVoon Siang KhoangXiao Chen
    • Amarendra K SinghDaizo EndoVoon Siang KhoangXiao Chen
    • G11B5/667C23C14/00
    • G11B5/667G11B5/8404G11B5/851
    • A magnetic recording medium that is capable of realizing both high magnetic permeability and antiferromagnetic coupling for a soft magnetic underlayer. Namely, a magnetic recording medium including at least a non-magnetic substrate on which is laminated a soft magnetic underlayer formed by antiferromagnetic coupling of a plurality of soft magnetic layers, and a perpendicular magnetic layer for which the axis of easy magnetization is oriented mainly perpendicularly to the non-magnetic substrate, wherein the soft magnetic layers contain Fe as a first main component, Co as a second main component, and also contain Ta, the soft magnetic underlayer is antiferromagnetically coupled using the second peak or a subsequently appearing peak of the antiferromagnetic coupling force, which changes according to the thickness of a spacer layer sandwiched between the plurality of soft magnetic layers, and the magnetic permeability of the soft magnetic underlayer is not less than 1,000 H/m.
    • 一种能够实现软磁性底层的高磁导率和反铁磁耦合的磁记录介质。 也就是说,至少包括非磁性基板的磁记录介质层叠有由多个软磁层的反铁磁耦合形成的软磁性底层和容易磁化轴主要垂直取向的垂直磁性层 其中软磁性层包含Fe作为第一主要成分,Co作为第二主要成分,并且还含有Ta,软磁性底层使用第二峰或随后出现的峰值进行反铁磁耦合 根据夹在多个软磁性层之间的间隔层的厚度而变化的反铁磁耦合力与软磁性底层的导磁率不小于1000H / m。
    • 27. 发明申请
    • Method of Preparing Silver-Based Electrical Contact Materials with Fiber-Like Arrangement of Reinforcing Nanoparticles
    • 用增强纳米粒子的纤维状布置制备银基电接触材料的方法
    • US20130313488A1
    • 2013-11-28
    • US13577893
    • 2011-04-11
    • Lesheng ChenXiao ChenGengxin QiChengfa Mu
    • Lesheng ChenXiao ChenGengxin QiChengfa Mu
    • H01B1/02C23C30/00
    • H01B1/02C23C30/00
    • A method for preparing silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles includes (1) uniformly mixing reinforcement powders and silver matrix powders for ball milling; (2) pouring the obtained composite powders and silver matrix powders into a powder mixing machine for powder mixing; (3) cold isostatic pressing; (4) sintering; (5) hot pressing; and (6) hot extruding to obtain silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles. The method of the present invention can obtain silver-based electrical contact materials with fiber-like arrangement of reinforcing nanoparticles with no specific requirement on processing deformation, and the plasticity and ductility of the reinforcing phase. Furthermore, it has simple processes, low cost and no particular requirements on the equipment. Contact materials prepared by the present method have good resistance to welding and arc erosion, conductivity and a greatly enhanced processing performance.
    • 用于制备具有纤维状排列的增强纳米颗粒的银基电接触材料的方法包括(1)均匀混合增强粉末和用于球磨的银基粉末; (2)将得到的复合粉末和银基粉末倒入用于粉末混合的粉末混合机中; (3)冷等静压; (4)烧结; (5)热压; 和(6)热挤压以获得具有纤维状排列的增强纳米颗粒的银基电接触材料。 本发明的方法可以获得具有增强纳米颗粒的纤维状布置的银基电接触材料,对加工变形没有特别要求,并且增强相的可塑性和延展性。 此外,它具有工艺简单,成本低,对设备没有特殊要求。 通过本方法制备的接触材料具有良好的耐焊接性和电弧腐蚀性,导电性和极大增强的加工性能。
    • 28. 发明申请
    • NON-ORIENTED ELECTRICAL STEEL PLATE WITHOUT CORRUGATED FAULT AND PRODUCTION METHOD THEREOF
    • 不具有纠正故障的非电导型钢板及其制造方法
    • US20130224064A1
    • 2013-08-29
    • US13823311
    • 2011-04-14
    • Feng ZhangXiao ChenWei CaoYezhong SunChangsong MaJianru ZhuZhuolei ChenXiandong Liu
    • Feng ZhangXiao ChenWei CaoYezhong SunChangsong MaJianru ZhuZhuolei ChenXiandong Liu
    • B22D25/00C22C38/00C22C38/02C22C38/06C22C38/04
    • B22D25/00B22D11/182B22D11/225C21D6/008C21D8/12C21D8/1205C21D8/1222C21D8/1233C21D8/1272C21D8/1277C21D2201/05C22C38/001C22C38/002C22C38/004C22C38/02C22C38/04C22C38/06H01F1/16
    • A non-oriented electrical steel sheet without corrugated defect and a manufacturing method thereof is provided, the weight percentage of the chemical composition of the non-oriented electrical steel sheet is that C is no more than 0.005%, Si is 1.2-2.2%, Mn is 0.2-0.4%, P is no more than 0.2%, S is no more than 0.005%, Al is 0.2-0.6%, N is no more than 0.005%, O is no more than 0.005%, and a balance substantially being Fe, a slab can be obtained by hot metal preprocessing, smelting with converter, RH refining, and continuous casting and pouring, wherein a secondary cooling water amount is controlled, the water flowrate of cooling water is controlled to 100-190 l/min, the average superheat of liquid steel in the continuous casting process is controlled to 10-45° C., the slab is heated and hot rolled; wherein the furnace tap temperature of the slab is 1050-1150 ° C., the temperature difference between random two points in the length direction when the slab is heated, is lower than 25° C., the hot rolling process includes a rough rolling process and a planishing process, the entry temperature in the planishing process is no lower than 970° C.; the finished non-oriented electrical steel sheet is obtained by acid pickling, cold rolling, annealing and coating. No corrugated defect can be accomplished by controlling the cooling speed of the slab in continuous casting and pouring process, the temperature difference in the length direction of the slab in the heating furnace, and by controlling the temperature drop before planishing the slab.
    • 本发明提供一种无波纹状缺陷的无取向电工钢板及其制造方法,其中,所述无方向性电工钢板的化学成分的重量百分比为C为0.005%以下,Si为1.2〜2.2% Mn为0.2〜0.4%,P为0.2%以下,S为0.005%以下,Al为0.2〜0.6%,N为0.005%以下,O为0.005以下,余量基本上为 是Fe,可以通过热金属预处理,转炉熔炼,RH精炼以及连续铸造和浇注获得板坯,其中控制二次冷却水量,将冷却水的水流量控制在100-190l / min ,连铸过程中液态钢的平均过热度控制在10-45℃,将板坯加热和热轧; 其特征在于,板坯的炉膛温度为1050〜1150℃,板坯加热时长度方向随机两点之间的温差低于25℃,热轧工序包括粗轧工序 和平整过程中,平整过程中的入口温度不低于970℃; 通过酸洗,冷轧,退火和涂布获得成品的无取向电工钢板。 通过在连续铸造和浇注过程中控制板坯的冷却速度,加热炉中板坯的长度方向的温差,以及通过控制板坯平整之前的温度下降来控制温度下降,可以不产生瓦楞缺陷。
    • 29. 发明申请
    • METHOD FOR CONTROLLING EXTREMELY LOW TI IN EXTRA LOW CARBON ALSI-KILLED STEEL
    • 用于控制超低碳低碳钢的极低温的方法
    • US20130056167A1
    • 2013-03-07
    • US13697777
    • 2011-04-12
    • Feng ZhangXiao ChenJianru Zhu
    • Feng ZhangXiao ChenJianru Zhu
    • B22D27/00
    • C22C38/04C21B13/02C21C7/06C21C7/0645C21C7/076C22C33/04C22C38/001C22C38/002C22C38/004C22C38/02C22C38/06C22C38/12C22C38/14Y02P10/242
    • The present invention provides a method for controlling extremely low Ti in extra low carbon AlSi-killed steel, the weight percentage of the chemical composition of the extra low carbon AlSi-killed steel comprising: C≦0.005%, Si: 0.1-3.4%, Mn: 0.1-0.5%, P≦0.2%, S≦0.002%, Al: 0-1.2%, N≦0.005%, Ti≦0.0015 and a balance substantially being Fe and inevitable impurities; the liquid steel having said chemical composition is obtained by hot metal preprocessing, smelting, retained RH smelting and ingoting, wherein the top ladle slag is modified, and calcium-aluminum based modifier of 0.6-1.7 kg/t steel are added, so as to ensure a controlling demand that when refined RH decarburization is over, the content of T.Fe in top ladle slag composition ≧5%, the content of Al2O3≦23%; when refined RH decarburization is over, ferrosilicium, ferroaluminum or ferromanganese is employed to perform deoxide and alloying, then perform a deep desulfurization, and desulfurizing efficiency is 50% to 70%.
    • 本发明提供了一种用于控制超低碳AlSi-镇静钢中极低Ti值的方法,该超低碳AlSi-镇静钢的化学组成的重量百分比包括:C< I; 0.005%,Si:0.1-3.4% Mn:0.1-0.5%,P&NlE; 0.2%,S&NlE; 0.002%,Al:0-1.2%,N< lE; 0.005%,Ti&NlE; 0.0015,余量基本上为Fe和不可避免的杂质; 具有所述化学组成的液态钢通过热金属预处理,熔炼,保留的RH熔炼和铸造得到,其中顶部钢包渣被改性,并且加入0.6-1.7kg / t钢的钙 - 铝基改性剂,以便 确保控制需求,当精炼RH脱碳结束时,顶部钢包渣组成中的T.Fe含量≥5%,Al2O3和NlE含量23%; 当精炼RH脱碳结束时,采用硅铁,铁铝或锰铁进行脱氧和合金化,进行深度脱硫,脱硫效率为50%〜70%。
    • 30. 发明授权
    • Knowledge portal for accessing, analyzing and standardizing data
    • 访问,分析和标准化数据的知识门户
    • US08250084B2
    • 2012-08-21
    • US13029867
    • 2011-02-17
    • Xiao ChenErh-an HuangScott MilkovichEugene Rider
    • Xiao ChenErh-an HuangScott MilkovichEugene Rider
    • G06F7/00G06F17/30
    • G06F17/30554G06F17/30398G06F17/30569G06F19/00G06Q10/02G06Q40/00G06Q40/025G06Q50/22G06Q50/24G16H10/60G16H50/70Y10S128/92Y10S707/99933Y10S707/99934
    • A method and system is provided to access one or more historical incident databases, for example, CDC, CPSC, DTI, AAPCC and the like, for standardizing the potentially differing categories and coding among the databases. The standardizing includes recoding of the categories by providing a unified set of categories reflective of similar categories found among the one or more databases, if any. Submission of search queries allows users to obtain unified data across the databases so that incident history statistics for one or more products tracked by commonly available databases may be easily acquired. The resulting reports and statistics may be used by various entities to understand historical incidents from multiple perspectives including, for example, injury and fatality statistics as a function of age group, type of injury, time periods, diagnosis, injury outcome, severity, and the like. Data may be presented in standardized formats or in any of the native database formats.
    • 提供了一种用于访问一个或多个历史事件数据库(例如CDC,CPSC,DTI,AAPCC等)的方法和系统,用于标准化数据库中潜在的不同类别和编码。 标准化包括通过提供反映在一个或多个数据库(如果有的话)中找到的类似类别的统一的一组类别来重新编码类别。 提交搜索查询允许用户跨数据库获取统一的数据,以便可以轻松获取通常可用数据库跟踪的一个或多个产品的事件历史统计信息。 所得到的报告和统计数据可能被各实体用于从多个角度了解历史事件,包括例如作为年龄组,伤害类型,时间段,诊断,伤害结果,严重程度的损伤和死亡统计数据,以及 喜欢。 数据可以以标准格式或任何本地数据库格式呈现。