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    • 2. 发明授权
    • Water cooling device for wire
    • 电线水冷装置
    • US06474567B2
    • 2002-11-05
    • US09733007
    • 2000-12-08
    • Rüdiger GrimmelKarl KellerKlaus KüppersMeinert MeyerUwe Plociennik
    • Rüdiger GrimmelKarl KellerKlaus KüppersMeinert MeyerUwe Plociennik
    • B05B1500
    • B21B45/0224
    • A water cooling device for a controlled cooling of wire, small sections, and ribbed concrete wire guided along a wire rod guiding line out of the rolling heat has a support frame that is parallel-slidable or rotatable. Parallel, adjacently arranged cooling water pipelines are provided each having a different inner diameter and mounted on the support frame. Each cooling water pipeline has arranged thereat water boxes. The cooling water pipelines have cooling water pipes having an inner pipe diameter matching the inner diameter of the correlated cooling water pipeline. The cooling water pipes are arranged in the water boxes. Each cooling water pipeline has guide grooves positioned between the water boxes for connecting the cooling water pipes of each cooling water pipeline with one another. The cooling water pipelines are configured such that, by parallel-sliding or rotation of the support frame in a direction perpendicular to the wire rod guiding line, each cooling water pipeline is positionable in the wire rod guiding line so that the wire rod is guidable in all of the cooling wire pipes.
    • 用于受到冷却的水冷却装置,其具有可平行滑动或可旋转的支撑框架,所述水冷却装置用于控制冷却电线,小截面以及沿着线材引导线引导的肋状混凝土线。 平行地,相邻布置的冷却水管道被设置为各自具有不同的内径并且安装在支撑框架上。 每个冷却水管道都安置在水箱内。 冷却水管道具有与相关冷却水管道的内径相匹配的内管直径的冷却水管。 冷却水管布置在水箱内。 每个冷却水管道具有位于水箱之间的引导槽,用于将每个冷却水管道的冷却水管道彼此连接。 冷却水管道被构造成使得通过在垂直于线材引导线的方向上平行滑动或旋转支撑框架,每个冷却水管线可定位在线材引导线中,使得线材可导向 所有的冷却丝管。
    • 4. 发明申请
    • System for cooling shape-rolled rails
    • 冷轧导轨系统
    • US20080018027A1
    • 2008-01-24
    • US11880635
    • 2007-07-23
    • Klaus KuppersMeinert MeyerThomas NerzakUwe Plociennik
    • Klaus KuppersMeinert MeyerThomas NerzakUwe Plociennik
    • C21D11/00C21D9/04
    • C21D9/04C21D11/005
    • A system for cooling a hot rail of rail steel to a fine perlitic or ferritic or perlitic/ferritic structure has a plurality of separate cooling modules with independently adjustable cooling parameters. The rail is guided downstream through the modules of the cooling stretch and through intermediate zones between the modules so as to cool the surface of the rail in each of the modules and to subject the rail to destressing or stress relief between the modules. Sensors in each of the intermediate zones detect the actual surface temperature of the rail in the respective zones, and a controller connected to the modules and to the sensors varies the cooling parameters of the cooling modules in dependence on the detected temperatures in the respective upstream zones to ensure a defined temperature in the rail that lies above a critical temperature at which bainitic structure components are formed.
    • 用于将钢轨的钢轨冷却成细微的铁素体或者铁素体/铁素体结构的系统具有多个具有可独立调节的冷却参数的独立冷却模块。 轨道通过冷却延伸的模块被引导到下游并且通过模块之间的中间区域,以便在每个模块中冷却轨道的表面并且使轨道受到模块之间的压力或应力消除。 每个中间区域中的传感器检测各个区域中的轨道的实际表面温度,并且连接到模块和传感器的控制器根据各个上游区域中检测到的温度来改变冷却模块的冷却参数 以确保轨道中定义的温度高于形成贝氏体结构部件的临界温度。
    • 5. 发明授权
    • Method and apparatus for cooling hot-rolled sections
    • 用于冷却热轧段的方法和装置
    • US06689230B1
    • 2004-02-10
    • US09660797
    • 2000-09-13
    • Meinert MeyerKlaus KüppersManfred AlbedyhlBruno Böhmer
    • Meinert MeyerKlaus KüppersManfred AlbedyhlBruno Böhmer
    • C21D154
    • C21D9/04C21D1/02C21D1/667C21D11/00
    • A method of cooling on a cooling bed hot-rolled steel sections from rolling heat, wherein the sections, particularly rails, have section parts of different masses arranged at a distance from each other over the cross-section of the section, and an apparatus for carrying out the method. Initially, the heat quantities to be proportionally removed from the different section parts in dependence on their mass and temperature and the quantity of cooling medium required for this removal are determined and computed by using measuring equipment together with a computing unit by means of a computer program. Subsequently, cooling of the different section parts or their masses is carried out in a controlled manner in such a way that the section parts reach with as little time delay as possible the transformation line Ar3/Ar1 during the decomposition of the gamma-mixed crystal into ferrite and/or pearlite while releasing the transformation heat.
    • 一种在冷却床上从轧制热量冷却热轧钢部分的方法,其特征在于,所述部分,特别是轨道,具有在所述截面的横截面上彼此间隔设置的不同质量的截面部分,以及用于 执行该方法。 最初,根据其质量和温度以及该去除所需的冷却介质的数量,从不同部分部分成比例地移除的热量通过计算机程序与计算单元一起使用测量设备来确定和计算 。 随后,以受控的方式进行不同部分或其质量的冷却,使得部分部分在γ混合晶体分解过程中尽可能短的延迟到达转变线Ar3 / Ar1 铁素体和/或珠光体,同时释放相变热。
    • 8. 发明申请
    • System for cooling shape-rolled rails
    • 冷轧导轨系统
    • US20100207305A9
    • 2010-08-19
    • US11880635
    • 2007-07-23
    • Klaus KuppersMeinert MeyerThomas NerzakUwe Plociennik
    • Klaus KuppersMeinert MeyerThomas NerzakUwe Plociennik
    • C21D11/00C21D9/04
    • C21D9/04C21D11/005
    • A system for cooling a hot rail of rail steel to a fine perlitic or ferritic or perlitic/ferritic structure has a plurality of separate cooling modules with independently adjustable cooling parameters. The rail is guided downstream through the modules of the cooling stretch and through intermediate zones between the modules so as to cool the surface of the rail in each of the modules and to subject the rail to destressing or stress relief between the modules. Sensors in each of the intermediate zones detect the actual surface temperature of the rail in the respective zones, and a controller connected to the modules and to the sensors varies the cooling parameters of the cooling modules in dependence on the detected temperatures in the respective upstream zones to ensure a defined temperature in the rail that lies above a critical temperature at which bainitic structure components are formed.
    • 用于将钢轨的钢轨冷却成细微的铁素体或者铁素体/铁素体结构的系统具有多个具有可独立调节的冷却参数的独立冷却模块。 轨道通过冷却延伸的模块被引导到下游并且通过模块之间的中间区域,以便在每个模块中冷却轨道的表面并且使轨道受到模块之间的压力或应力消除。 每个中间区域中的传感器检测各个区域中的轨道的实际表面温度,并且连接到模块和传感器的控制器根据各个上游区域中检测到的温度来改变冷却模块的冷却参数 以确保轨道中定义的温度高于形成贝氏体结构部件的临界温度。