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    • 1. 发明申请
    • SLIDING GATE VALVE PLATE
    • 滑动闸板
    • WO2017129563A1
    • 2017-08-03
    • PCT/EP2017/051428
    • 2017-01-24
    • VESUVIUS GROUP , SA
    • COLLURA, MarioSIBIET, Fabrice
    • B22D41/22B22D41/28B22D41/34
    • B22D41/22B22D41/28B22D41/34
    • The present invention concerns a sliding gate valve plate for a molten metal gate valve having: - an upper surface, - a lower surface, said upper and lower surfaces being planar and parallel to one another, - a connecting outer surface connecting the upper surface to the lower surface and - a pouring channel fluidly connecting the upper surface (2) to the lower surface (3), said pouring channel having a pouring axis of symmetry (Xp), wherein the upper and lower surfaces have geometries defined by the following ratios: R1 = LOl1/LOu1, comprised between 50 and 95%, preferably between 57 and 92%, more preferably between 62.5 and 90%, R2 = LOl2/LOu2, comprised between 50 and 95%, preferably between 57 and 92%, more preferably between 62.5 and 90%, R3 = LAl1/LAu1, greater than or equal to 75%, preferably greater of equal to 90%, more preferably greater of equal to 95%, R4 = LAl2/LAu2, greater than or equal to 75%, preferably greater of equal to 90%, more preferably greater of equal to 95% LOu1 and LOu2 are two segments meeting at the pouring axis of symmetry, Xp, and which together form the upper longitudinal extent, LOu, defined as is the longest segment connecting two points of a perimeter of the upper surface and intersecting the pouring axis of symmetry (Xp); LAu1 and LAu2 are two segments meeting at the pouring axis of symmetry, Xp, and which together form the upper latitudinal extent, LAu, defined as the extent normal to and intersecting both the pouring axis of symmetry, Xp, and the upper longitudinal extent, and similarly, LOl1 and LOl2 are two segments meeting at the pouring axis of symmetry, Xp, and which together form the lower longitudinal extent, LOl, defined as is the longest segment connecting two points of a perimeter of the lower surface and intersecting the pouring axis of symmetry (Xp); LAl1 and LAl2 are two segments meeting at the pouring axis of symmetry, Xp, and which together form the upper latitudinal extent, LAl, defined as the extent normal to and intersecting both the pouring axis of symmetry, Xp, and the lower longitudinal extent.
    • 本发明涉及一种用于熔融金属闸阀的滑动闸板阀板,其具有: - 上表面, - 下表面,所述上表面和下表面是平面且彼此平行的; - 连接所述上表面和所述下表面的外表面和 - 将所述上表面(2)流体地连接到所述下表面(3)的倾倒通道,所述倾倒通道具有对称的倾倒轴线(Xp),其中所述上和下 表面具有由以下比率限定的几何形状:R1 = LO11 / LOu1,包括50-95%,优选57-92%,更优选62.5-90%,R2 = LO12 / LOu2, 优选地在57和92%之间,更优选地在62.5和90%之间,R3 = LA11 / LAu1,大于或等于75%,优选地大于等于90%,更优选地大于等于95% LAu2大于或等于75%,优选大于90%,更优选大于75% 等于95%LOu1和LOu2是在对称倾倒轴线Xp处相遇的两个部分,它们一起形成上部纵向范围LOu,定义为连接上表面的周边的两个点并与 浇注对称轴(Xp); LAu1和LAu2是在倾倒对称轴Xp处相遇的两段,它们共同形成上部纬度范围LAu,定义为与对称浇注轴Xp和上部纵向范围垂直并相交的范围, 同样地,LOl1和LOl2是在倾倒对称轴线Xp处相遇的两个部分,并且它们共同形成下部纵向范围LO1,LOl被定义为连接下表面的周边的两个点并且与倾倒相交的最长部分 对称轴(Xp); LAl1和LAl2是在对称倾倒轴线Xp处相遇的两个部分,它们一起形成上部纬度范围LA1,其定义为与对称倾倒轴线Xp和下部纵向范围垂直并相交的范围。
    • 3. 发明申请
    • COUPLING DEVICE FOR REVERSIBLY COUPLING A LADLE SHROUD TO A COLLECTOR NOZZLE, SELF-SUPPORTED LADLE SHROUD, KIT THEREOF AND METHOD FOR COUPLING A LADLE SHROUD TO A COLLECTOR NOZZLE
    • 用于将衣帽架可逆地连接到收集器喷嘴的自动装置,自支撑的鞋帽,其套件及用于将收集器喷嘴连接的方法
    • WO2015055569A1
    • 2015-04-23
    • PCT/EP2014/071865
    • 2014-10-13
    • VESUVIUS GROUP (SA)
    • COLLURA, Mariano
    • B22D41/50B22D41/56
    • B22D41/502B22D41/56F27D3/14
    • Coupling device for reversibly coupling a ladle shroud to a collector nozzle, self-supported ladle shroud, kit thereof and method for coupling a ladle shroud to a collector nozzle. The present invention concerns a coupling device (34) fixed to a ladle shroud (111) for reversibly coupling an inlet orifice (115a) of said ladle shroud to a collector nozzle (112) fixed to the outside of a bottom floor of a ladle (11) in a metal casting installation, by means of at least a first and second elongated latches (32) pivotally mounted on a hinge (36), such that the latch can pivot from a fixing position to an idle position. The idle position of the latches allowing the engagement of the ladle shroud into its casting configuration about the collector nozzle, and the fixing position of the latches engages catching means (33, 33a) provided on said latches into matching fixing means (31, 31a) located on the gate frame holding the collector nozzle.
    • 用于可逆地将浇包护罩耦合到收集器喷嘴的联接装置,自支撑的浇包护罩,其套件以及用于将浇包护罩连接到收集器喷嘴的方法。 本发明涉及一种固定在浇包护罩(111)上的连接装置(34),用于将所述浇包护罩的入口孔(115a)可逆地联接到固定在浇包底部的外部的收集器喷嘴(112) 通过至少一个可枢转地安装在铰链(36)上的第一和第二细长闩锁(32),金属铸造设备中,闩锁可以从固定位置枢转到空闲位置。 闩锁的空闲位置允许浇包护罩与收集器喷嘴接合成其铸造构造,并且闩锁的固定位置将设置在所述闩锁上的捕获装置(33,33a)接合到匹配的固定装置(31,31a)中, 位于保持集电嘴的门框上。
    • 4. 发明申请
    • CASTING NOZZLE COMPRISING FLOW DEFLECTORS
    • 包含流动偏转器的铸造喷嘴
    • WO2017080972A1
    • 2017-05-18
    • PCT/EP2016/076917
    • 2016-11-08
    • VESUVIUS GROUP, SAVESUVIUS CRUCIBLE COMPANY
    • RICHAUD, JohanKREIERHOFF, MartinWARMERS, Christian
    • B22D41/50
    • B22D41/50
    • The present invention concerns a casting nozzle comprising an elongated body defined by an outer wall and comprising a bore (1) defined by a bore wall and extending along a longitudinal axis, X1, from a bore inlet (1u) to a downstream bore end (1d), said bore comprising two opposite side ports (2), each extending transversally to said longitudinal axis, X1, from an opening at the bore wall defining a port inlet (2u) adjacent to the downstream bore end (1d), to an opening at the outer wall defining a port outlet (2d) which fluidly connects the bore with an outer atmosphere, Characterized in that, upstream from, and directly above each port inlet (2u), one or two flow deflectors (3) protrude out of the bore wall and extend from an upstream deflector end remote from the port inlet to a downstream deflector end close to the port inlet, over a deflector height, Hd, measured parallel to the longitudinal axis, X1, and wherein an area of a cross-section normal to the longitudinal axis, X1, of each flow deflector increases continuously over at least 50% of the deflector height, Hd, in the direction extending from the upstream deflector end towards the downstream deflector end.
    • 本发明涉及一种铸造喷嘴,该铸造喷嘴包括由外壁限定的细长主体并且包括由孔壁限定并且沿着纵向轴线X1从孔入口(X1)延伸的孔(1) 所述孔包括两个相对的侧孔(2),每个侧孔从所述孔壁处的开口横向于所述纵向轴线X1延伸,从而限定邻近下游端口(2u)的端口入口(2u) (1d)连接到外壁上的开口处,该开口限定了将孔与外部大气流体连接的出口出口(2d),其特征在于在每个进气口入口(2u)的上游并且直接位于其上方,一个或两个 在平行于纵向轴线X1测量的偏转器高度Hd上,流动偏转器(3)从孔壁突出并且从远离端口入口的上游偏转器端部延伸到靠近端口入口的下游偏转器端部, 并且其中垂直于纵向的横截面的面积 在偏转器高度Hd的至少50%上沿从上游偏转器端部朝向下游偏转器端部延伸的方向连续增加每个导流器的轴线X1。
    • 5. 发明申请
    • REFRACTORY PURGING DEVICES
    • 炼厂设备
    • WO2013064668A1
    • 2013-05-10
    • PCT/EP2012/071765
    • 2012-11-02
    • VESUVIUS CRUCIBLE COMPANYVESUVIUS GROUP SA
    • ROTHFUSS, Hans
    • B22D1/00C21C5/48F23D3/16
    • C21C5/48B22D1/005C04B35/64C21C5/34C21C2250/08
    • The present invention concerns a device (1), for example a gas purging plug, for blowing gas into a metallurgical vessel comprising (a) a body (2) extending along a central axis (X1) comprising, (b) at least one gas flow channel (3) fluidly connecting a gas inlet (3a) located at one end of said body to a gas outlet (3b), located at the opposite end along said axis, said channel (3) being in the shape of a slit defined by a first and second opposed surfaces. The device (1) according to the invention is characterized in that, (c) the at least one gas channel (3) comprises a series of continuous concave bridges (4) connecting the first and second opposing surfaces defining the channel, with their concave side (4a) oriented towards the gas outlet (3b), wherein said concave bridges (4) are disposed in a staggered arrangement, such that any first shortest line running from the gas outlet (3b) to the gas inlet (3a) of the channel necessarily intercepts the concave side (4a) of at least one first bridge (41). The device (1) according to the invention permits to prevent clogging of device by infiltrated molten metal or slag.
    • 本发明涉及用于将气体吹入冶金容器的装置(1),例如气体吹扫塞,其包括(a)沿中心轴线(X1)延伸的主体(2),包括:(b)至少一个气体 流动通道(3)将位于所述主体一端的气体入口(3a)流体连接到沿着所述轴线位于相对端的气体出口(3b),所述通道(3)形成为狭缝的形状 通过第一和第二相对表面。 根据本发明的装置(1)的特征在于,(c)所述至少一个气体通道(3)包括连接限定通道的第一和第二相对表面的一系列连续的凹形桥(4) 侧面(4a)朝向气体出口(3b)定向,其中所述凹形桥(4)以交错布置设置,使得从气体出口(3b)延伸到气体出口(3b)的气体入口(3a)的任何第一最短线 通道必须拦截至少一个第一桥(41)的凹侧(4a)。 根据本发明的装置(1)允许防止渗透的熔融金属或炉渣堵塞装置。
    • 6. 发明申请
    • THERMOCOUPLE ASSEMBLY AND METHOD OF USE
    • 热电偶组件及其使用方法
    • WO2006066862A3
    • 2006-10-26
    • PCT/EP2005013693
    • 2005-12-20
    • VESUVIUS CRUCIBLE COVESUVIUS GROUP SAROBBINS BERNARDFARRELL DAVIDRUSH DAVID LVAN DER MAAT PAUL
    • ROBBINS BERNARDFARRELL DAVIDRUSH DAVID LVAN DER MAAT PAUL
    • G01K7/02H01L35/12
    • G01K7/04
    • The invention relates to a thermocouple assembly for the continuous measurement of the temperature of a molten phase comprising first and second ceramic elements (1,2) contacting each other at a first junction (3) and forming thereby a first thermocouple, a second thermocouple formed of two different conducting elements (4,5) contacting each other at a second junction (6) located on the first ceramic element (1) and a third thermocouple formed of two different conducting elements (7,8) contacting each other at a third junction (9) located on the second ceramic element (2), wherein both positive legs (4,7) or both negative legs (5,8) of the second and third thermocouples are connected to a first measuring device (10), while both legs (4,5;7,8) of the second and third thermocouple are connected respectively to a second and third measuring device (11,12) as well as to a process for the measurement of the temperature of a molten phase.
    • 本发明涉及一种用于连续测量熔融相温度的热电偶组件,该熔融相包括在第一连接处(3)处彼此接触的第一和第二陶瓷元件(1,2),从而形成第一热电偶,形成第二热电偶 在位于第一陶瓷元件(1)上的第二结(6)处彼此接触的两个不同的导电元件(4,5)的第三热电偶和由在第三陶瓷元件(1)上彼此接触的两个不同导电元件(7,8)形成的第三热电偶) 位于第二陶瓷元件(2)上的接合部(9),其中第二和第三热电偶的两个正极腿(4,7)或两个负极腿(5,8)都连接到第一测量装置(10),同时 第二和第三热电偶的两条腿(4,5; 7,8)分别连接到第二和第三测量装置(11,12)以及用于测量熔融相的温度的过程。