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    • 2. 发明申请
    • ENERGY RECOVERY IN HOT STRIP MILLS BY CONVERTING THE COOLING HEAT OF THE CONTINUOUS CASTING PLANT AND THE RESIDUAL HEAT OF SLABS AND COILS INTO ELECTRICAL ENERGY OR OTHERWISE UTILIZING THE CAPTURED PROCESS HEAT
    • 能量回收在热轧ROADS转化冷却铸造热和热板坯线圈的休息电力或收集过程热其他用途
    • WO2010099920A2
    • 2010-09-10
    • PCT/EP2010001263
    • 2010-03-02
    • SMS SIEMAG AGSUDAU PETERSEIDEL JUERGENGAERTNER HORSTSTAVENOW AXEL
    • SUDAU PETERSEIDEL JUERGENGAERTNER HORSTSTAVENOW AXEL
    • B22D11/124B22D11/22
    • B22D11/00B22D11/124B22D11/22F01K13/02F01K17/02F01K17/04F01K25/08F28D21/0001Y02E20/14Y02P80/154
    • In hot strip plants the residual heat of a part of the slabs after casting was hitherto utilized by either directly rolling the slabs or inserting the slabs into the furnace in a still warm or hot state. After casting, the remaining slabs usually cool down in an aerated hall and are stacked before being further conveyed. The same applies to the residual heat which is present after coiling in the coils which are often air-cooled in a coil storage. The cooling energy of the continuous casting plant also escapes into the environment without being utilized. According to the invention said unutilized solidification and residual heat is converted into electrical energy by casting the slabs (10) in a continuous casting plant, conveying the slabs (10) or coils to the slab storage (12) or coil storage, removing heat therefrom in heat exchangers (31) during casting and/or during conveying, and/or placing the slabs for a short time or for several hours partially stacked on specifically prepared storage areas (30) which are designed with heat exchangers (31), wherein during the conveying period the heat of the cast strand or the slab (10) and/or during the storage period the residual heat of the slabs (10) or coils is transferred by means of heat conduction and heat radiation and convection via the heat exchangers (31) to a heat carrying medium, such as thermal oil, thereby heating the heat carrying medium which is then removed via heat carrier transport ducts (33) for power generation and/or for direct utilization of the process heat in other heat consumers.
    • 在热轧钢带设施,先前所使用的板坯的一个子集的余热以使得直接轧制或温热或热板坯插入铸造后炉内。 剩余的板坯与空气圆顶一个灌注铸造后正常冷却,被运送之前被堆叠。 这同样适用于在线圈中的现有卷绕余热,其在空气中的线圈存储经常冷却后。 在连铸机的冷却能量还逃逸到环境中使用。 为了转换该未使用的凝固和余热成电能,本发明提出的是,板坯(10)浇铸在连铸机和板坯(10)或线圈在板坯商店(12)或运输线圈存储和在铸造过程中 热交换器(31)和/或热交换器中的传输(31)的热量被除去和/或有部分地叠加形成在特别制备的,具有热交换器(31)的存储位置(30)被存储为一个短的时间或数小时,在运输的哪个时期期间 铸造带材或板坯(10)和/或在储存期间通过热传导和热辐射和对流的板坯(10)或线圈通过在热传递介质的热交换器(31),例如热油的剩余热量被转移,而这种加热,然后 热载流子传输线(33)以产生电力和/或直接使用Prozessw的 斯利在其他热用户消散。
    • 3. 发明申请
    • METHOD AND DEVICE FOR RECOVERING ENERGY DOWNSTREAM OF A CONTINUOUS CASTING INSTALLATION
    • 方法及装置回收能量后面的铸造厂
    • WO2011138171A3
    • 2011-12-29
    • PCT/EP2011056314
    • 2011-04-20
    • SMS SIEMAG AGSEIDEL JUERGENHOVESTAEDT ERICHPETER SUDAU PETER
    • SEIDEL JUERGENHOVESTAEDT ERICHPETER SUDAU PETER
    • F22B1/04B22D11/124H01L35/28
    • F22B1/04B22D11/14
    • The invention relates to a method for recovering energy downstream of a continuous casting installation (1), wherein the continuous casting installation (1) is adjoined by a roller table (2) and at least one flame-cutting machine (5) for cutting to length a cast strand of metal (3). To achieve optimum utilization of the energy of the still hot strand of metal and ensure a high degree of functionality of the continuous casting installation, the invention provides that, in a region (4) downstream of the continuous casting installation (1), a stream of heat (6) from the strand of metal (3) is allowed to flow to at least one heat exchanger and/or thermocouple (7), wherein electrical energy is generated with the thermal energy taken up by the heat exchanger (7) in an energy transformation installation (8), or electrical energy is generated directly with the energy taken up by the thermocouple (7). Furthermore, the invention relates to a device for recovering energy downstream of a continuous casting installation.
    • 本发明的连续铸造设备(1),其特征在于,随后的辊表连续铸造设备(1)之后涉及用于能量回收的方法(2)和至少一个切割机(5),用于切割的铸造金属带材(3)。 为了达到最佳的使用仍然是热的金属带的能量,以确保高度的连续铸造的功能,本发明提供了在一区域(4)从所述金属带材连铸设备(1)的后面(3)的热流量(6)连接到至少 其中,与所述热交换器(7)捕获时,产生电能的热能的能量转换单元(8),或者使用热电偶(7)能直接产生电能记录被允许流动到热交换器和/或热电偶(7)。 本发明还涉及一种装置,用于连续铸造设备的后面中回收能量。
    • 6. 发明申请
    • DEVICE AND METHOD FOR PRODUCING A THIN HOT-ROLLED STRIP
    • 用于制造薄水带的装置和方法
    • WO2011018217A3
    • 2011-04-07
    • PCT/EP2010004913
    • 2010-08-11
    • SMS SIEMAG AGSEIDEL JUERGENWINDHAUS ERNSTREIFFERSCHEID MARKUSMUELLER JUERGEN
    • SEIDEL JUERGENWINDHAUS ERNSTREIFFERSCHEID MARKUSMUELLER JUERGEN
    • B21B1/46B21B27/03
    • B21B1/463B21B27/032B21B2267/24
    • The invention relates to a device for producing a thin hot-rolled strip (1) by casting and rolling in a continuous process, comprising a casting machine (2) in which initially a thin slab (3) is cast, downstream of the casting machine (2) at least one rolling train (4, 5) in which the thin slab (3) is rolled using the primary heat of the casting process, and further comprising a number of finishing roll stands (7) arranged in a rear region (6) in the conveying direction (F) of the strip (1). The strip (1) can be rolled to a final thickness in the finishing roll stands using work rolls (8). In order to improve the production of a thin hot-rolled strip in the continuous process, according to the invention the work rolls (8) of the finishing roll stands (7) have a low-wear roll surface. The invention further relates to a method for producing a thin hot-rolled strip (1) by casting and rolling in a continuous process.
    • 本发明涉及一种设备,用于由所述铸辊在连续过程中制造薄的热轧带材(1),具有铸造机(2),其中第一薄板坯(3)采用铸铸机(2)下游的轧机机组中的至少一个( 布置在薄板坯(3)下的铸造过程的主热,如图4所示,利用滚压5),和(在一后部区域中的带材(1)的输送方向F)的数(6)精轧机架(7),在该 带材(1)可以用工作辊(8)轧制成最终厚度。 为了改善无端工艺中薄热轧带钢的生产,本发明规定精轧机架(7)的工作轧辊(8)具有低磨损轧辊表面。 此外,本发明涉及一种通过以无端过程铸造轧辊来生产薄热轧带材(1)的方法。
    • 7. 发明申请
    • ROLLING TRAIN FOR PRODUCING A METAL STRIP AND METHOD FOR PRODUCING A ROLLING TRAIN
    • 轧机用于生产金属带材及其制备方法的轧机
    • WO2012045585A3
    • 2012-06-07
    • PCT/EP2011066489
    • 2011-09-22
    • SMS SIEMAG AGSEIDEL JUERGENWIED ANDREAS
    • SEIDEL JUERGENWIED ANDREAS
    • B21B39/16B21B39/08B21B45/00C21D1/42
    • B21B39/084B21B37/50B21B45/004
    • The present invention relates to a rolling train for producing a metal strip (40), in particular a hot rolling train, comprising at least one rolling stand (10) for rolling the metal strip (40), at least one unit (10) adjacent to the rolling stand and at least one loop lifter (20), which is arranged between the rolling stand (10) and the adjacent unit and has a loop lifter roller (22) for regulating the strip tension and/or for balancing out mass flow disturbances, wherein the loop lifter roller (22) is arranged within the volume defined by one of the rolling stands. The invention also relates to a rolling train for producing a metal strip (40), in particular a hot rolling train, comprising at least one rolling stand (10) for rolling the metal strip (40), at least one unit (10) adjacent to the rolling stand and at least one lateral run-in guide (30), which is arranged between the rolling stand (10) and the at least one unit and is intended for introducing the metal strip into the downstream rolling stand, wherein the adjusting device (32) of the lateral run-in guide (30) is arranged within the volume defined by the rolling stand (10). In addition, the present invention relates to a rolling train for producing a metal strip (40), in particular a hot rolling train, comprising at least one rolling stand (10) for rolling the metal strip (40), at least one unit (10) adjacent to the rolling stand and at least one induction heater (50), arranged between the rolling stand (10) and the at least one unit, for heating the metal strip (40), wherein the induction heater (50) is formed compactly in the strip running direction.
    • 本发明涉及一种轧机用于生产金属带材(40),特别是热轧生产线,包括至少一个轧制支架(10),用于轧制金属带(40),至少一个相邻的辊架单元(10)和所述辊之间的至少一个支架(10) 并用活套辊(22),用于控制带材的张力和/或以补偿质量流量扰动设置在相邻的单元弯针(20),套口辊(22)被设置为通过滚动的一个限定的区域内代表体积。 本发明还涉及一种轧机用于生产金属带材(40),特别是热轧生产线,包括至少一个轧制支架(10),用于轧制金属带(40),至少一个相邻的辊架单元(10)和所述辊之间的至少一个支架(10) 和所述至少一个单元布置的入口侧引导件(30),用于在随后的轧机的金属带材的插入,其中所述调整装置(32)布置在所述入口侧引导件(30)的卷内支架(10)限定的体积。 此外,本发明涉及一种轧机用于生产金属带材(40),特别是热轧生产线,包括至少一个轧制支架(10),用于滚动的轧机机架之间的金属带材(40),至少一个相邻的辊架单元(10)和至少一个( 10)和感应加热器(50),用于加热所述金属带(40),所述感应加热器(50)由在所述条带的运行方向上紧凑。
    • 8. 发明申请
    • METHOD FOR CALIBRATING TWO INTERACTING WORKING ROLLERS IN A ROLLING STAND
    • 程序用于校准两个共同行动剥线钳在轧机机架
    • WO2010069575A3
    • 2010-08-19
    • PCT/EP2009009078
    • 2009-12-17
    • SMS SIEMAG AGSEIDEL JUERGENJEPSEN OLAF NORMAN
    • SEIDEL JUERGENJEPSEN OLAF NORMAN
    • B21B38/10
    • B21B38/105B21B13/142B21B31/18B21B37/58B21B37/64B21B2269/14
    • The invention relates to a method for calibrating a rolling stand (3), wherein in order to determine the relative pivot position of the roller set for setting a symmetrical roll gap and/or for determining the extension of the rolling stand (3) before the actual rolling process, the roller set is pressed against each other under a radial preset force and the resulting deformation of the rolling stand is preferably measured on the piston-cylinder unit (6, 7). The pivot position of the roller set and/or the frame module (M) determined based thereon are mathematically used during the subsequent rolling of a rolling stock between the working rollers (1, 2) for adjusting the roller set. In order to attain a higher accuracy during rolling, the invention provides for the working rollers (1, 2) to be axially adjustable relative to each other starting from a zero position that is not axially displaced, wherein the determination of the pivot position for setting a symmetrical roll gap and/or the determination of the frame module (M) are carried out in a relative displacement position of the working rollers (1, 2) that is not equal to the zero position (calibration position), wherein the determined pivot position and/or the value for the frame module (M) are stored and mathematically used for further calculating the pivot position and/or the adjustment of the roller set during rolling of the rolling stock.
    • 本发明涉及一种用于校准一个轧机机座(3),其中所述用于确定的对称的辊子间隙的设置中设置的辊的相对枢转位置的径向和/或确定所述辊的伸长机架(3)之前的实际轧制操作中,辊默认设置 力相互压紧,并将所得的研磨机的变形在活塞 - 缸单元优选代表(6,7)被测量,其特征在于,所确定的由此spateren辊枢转的轧辊组和/或支架模量从其(M)确定的位置时之间的轧件 工作辊(1,2)在使用该组辊时以数学方式使用。 为了在轧制以实现更高的精度,本发明提供了工作轧辊(1,2)从非轴向移位零位置开始相对于彼此轴向可调节是,其中所述枢转位置的确定为一个对称的轧辊间隙和/或设定 确定帧模块(M)在所述工作辊的相对位移的位置(1,2)发生时,其零位置不等于(校准)时,枢转位置确定和/或为支架模量(M)的值用于进一步的计算存储和数学 利用在滚动轧件期间的枢轴位置和/或使用该组轧辊。