会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Water-cooling apparatus for wire/rod rolling mill
    • 线/棒轧机水冷装置
    • US20070138334A1
    • 2007-06-21
    • US11640013
    • 2006-12-15
    • Klaus KuppersUwe Plociennik
    • Klaus KuppersUwe Plociennik
    • B65H23/24G03B1/52
    • B21B45/0224
    • A water box for a wire-rolling mill has a lower support and a lower plate carried on the lower support, extending horizontally below a path of a wire moving in a travel direction, and formed with an upwardly open groove extending parallel to and open toward the path. An upper support carries an upper plate formed with a straight groove. Respective upper and lower guide bars seated in the grooves of the upper and lower plates are formed with respective straight channels open away from the respective plates. A hinge connected between the supports permits movement of the upper plate between a closed position closely juxtaposed with the lower plate and with the channels confronting each other and forming a passage surrounding the path and an open position spaced upward away from the lower plate. In the closed position the wire is transversely enclosed by the channels.
    • 用于轧钢机的水箱具有下支撑件和承载在下支撑件上的下板,水平地沿着沿行进方向移动的钢丝的路径延伸,并且形成有向上开口的槽,该槽向上延伸并且平行于并向着 路径。 上支撑件承载形成有直槽的上板。 安置在上板和下板的槽中的各个上和下导杆形成有相对于相应的板打开的相应的直通道。 连接在支撑件之间的铰链允许上板在与下板紧密并排的关闭位置与彼此面对的通道之间移动,并且形成围绕该路径的通道以及向下远离下板间隔开的打开位置。 在关闭位置,导线被通道横向封闭。
    • 2. 发明授权
    • Laying tube for windings
    • 绕线管
    • US6098909A
    • 2000-08-08
    • US315684
    • 1999-05-20
    • Meinert MeyerKlaus Kuppers
    • Meinert MeyerKlaus Kuppers
    • B21F3/06B21C47/14B65H57/10B21C47/10
    • B21C47/143
    • A laying tube for producing wire windings from continuously introduced essentially straight wire material includes a first portion of an outer casing which is driven so as to rotate and receives a feeding tube for the wire material. Connected to the first portion is an outwardly expanding portion of the outer casing which includes a curved wire guide channel, wherein this guide channel is provided in the form of a groove in the outer surface of a hollow insert which is placed with fit in the expanding portion of the outer casing, and wherein the centrifugal forces of the wire are absorbed by the inner surface of the outer casing. The feeding tube and the insert form a structural unit which is releasably connected to the outer casing. This structural unit and, thus, the impact surfaces of the centrifugal forces of the wire can be moved in dependence on the localized wear of the inner surface of the outwardly expanding portion of the outer casing and relative thereto by a rotary movement about the longitudinal axis to an area which has not yet been worn out.
    • 用于从连续引入的基本上直线材料生产线绕组的敷设管包括外壳的第一部分,其被驱动以旋转并接收用于线材的进料管。 连接到第一部分的是外壳的向外扩张的部分,其包括弯曲的线引导通道,其中该引导通道以凹槽的形式设置在中空插入件的外表面中,该中空插入件的外表面配合在膨胀 并且其中所述线的离心力被所述外壳的内表面吸收。 进料管和插入件形成可释放地连接到外壳的结构单元。 该结构单元以及因此的线的离心力的冲击表面可以根据外壳的向外扩张部分的内表面的局部磨损而相对于其通过围绕纵向轴线的旋转运动而相对移动 到尚未磨损的地区。
    • 3. 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。
    • 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。