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    • 3. 发明公开
    • Improvements in mill housings for cluster mills
    • WalzwerkständerfürVielwalzengerüste
    • EP0693328A1
    • 1996-01-24
    • EP95300868.7
    • 1995-02-13
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.
    • B21B13/14B21B31/02
    • B21B31/02B21B13/147B21B31/028B21B31/04B21B31/24B21B2203/187
    • In order to provide a two-part housing assembly for a cluster mill which has substantially the same size, form and structure as a monobloc housing, but which is divided into two parts for ease of use and maintenance, the housing assembly is divided along a horizontal plane located at or close to the centre line into upper and lower mill housings (11 and 12) each provided with a roll cavity (110, 111) and roll cluster therein. The gap between the work rolls of the roll clusters is adjusted by symmetrical, equal and opposite movement of the upper and lower mill housings (11 and 12) achieved by four identical screws (15) one located in each corner of the mill housing assembly. Each screw (13) has two threaded portions (14 and 15) of opposite hand, one threaded portion engaging a threaded nut (17) of opposite hand non-rotatably mounted in a recess (46) in the upper mill housing (11) and the other threaded screw portion (14) engaging a threaded nut (16) of appropriate hand non-rotatably mounted in a recess (47) in the lower mill housing (12). Each screw (13) supports the upper and lower mill housings (11 and 12). A jack (31) is provided in the mill base to support and rotate the screw (13). The upper and lower mill housings (11 and 12) are adjustably prestressed together, at a spacing determined by the screws, by a pair of tie rods (23) affixed to the piston (25) by a hydraulic cylinder located at each corner of the upper mill housing.
    • 为了提供一种用于集团研磨机的两部分壳体组件,其具有与整体式壳体基本相同的尺寸,形式和结构,但是为了易于使用和维护而被分成两部分,壳体组件沿着 位于中心线处或靠近中心线的水平面线分别设置在其中设置有辊腔(110,111)和辊子簇的上下铣床壳体(11和12)中。 通过由位于磨机壳体组件的每个角落中的四个相同的螺钉(15)实现的上下铣床壳体(11和12)的对称,相等和相对的运动来调节辊组的工作辊之间的间隙。 每个螺钉(13)具有相对的手的两个螺纹部分(14和15),一个螺纹部分接合相对的手的螺母(17),其不可旋转地安装在上部铣床壳体(11)中的凹部(46)中, 另一个螺纹螺纹部分(14)接合适当手的螺母(16),其不可旋转地安装在下铣床壳体(12)中的凹部(47)中。 每个螺钉(13)支撑上下铣床壳体(11和12)。 在铣床基座上设置一个千斤顶(31)以支撑和旋转螺钉(13)。 上部和下部轧机壳体(11和12)通过一对通过位于活塞(25)的每个角落处的液压缸固定到活塞(25)的一对拉杆(23),以由螺钉确定的间隔可调节地预应力在一起 上磨房。
    • 4. 发明公开
    • Strip flatness measuring device
    • Flachheitsmessvorrichtungfürein Band
    • EP0710816A2
    • 1996-05-08
    • EP95302550.9
    • 1995-04-18
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.Rocki, Zbigniew
    • G01B7/34B21B37/00
    • G01B7/345B21B38/02
    • An improved shapemeter is provided to measure the flatness of metal strip under tension as the strip passes over a shapemeter roll (10), the shapemeter including a stationary shaft (11) with a set of bearings (40) that allow the strip to easily pass over the shapemeter roll (10). The stationary shaft (11) does not touch the inner ring (13) of each bearing, but the inner ring (13) is urged against a block (12) having horizontal and vertical flexural members (20,21) that deflect giving only a single degree of freedom. This single degree of freedom allows each block (12) to rotate about a pivot point (O), which is defined by the locations of the flexural members (20,21), in the transverse vertical plane only. The shaft (11) has a slot (33), which provides an open area in which a single box (28) that contains all the force transducers (22) is mounted. Each force transducer (22) (e.g., a load cell) is attached to a thrust button (23) that contacts the corresponding block (12), and thereby absorbs some of the vertical load on the block (12). The horizontal component of the force on the block (12) is entirely supported by the pivot flexural members (20,21). The vertical component of this force is partly supported by the pivot flexural members (20,21) and partly by the corresponding force transducer (22) (through the thrust button 23). In this manner, the range of force being detected by each force transducer (22) is reduced, thereby allowing for greater low-end sensitivity and accuracy, and the variation in force sensed by the force transducer (22) is minimized if the wrap angle of the strip varies.
    • 提供了一种改进的形状计数器,用于当带通过形状计量辊(10)时测量金属带在张力下的平坦度,该形状计包括具有允许条带容易通过的一组轴承(40)的固定轴(11) 在形状计卷上(10)。 固定轴(11)不接触每个轴承的内圈(13),但是内环(13)被推靠在具有水平和垂直的弯曲构件(20,21)的块体(12)上,该弯曲构件 单一自由度。 这种单一自由度允许每个块(12)围绕仅由弯曲构件(20,21)的位置限定的枢轴点(O)旋转。 轴(11)具有槽(33),其提供开放区域,在该区域中安装有包含所有力换能器(22)的单个箱体(28)。 每个力传感器(22)(例如称重传感器)附接到与对应的块(12)接触的推力按钮(23),从而吸收块(12)上的一些垂直载荷。 块(12)上的力的水平分量完全由枢转弯曲构件(20,21)支撑。 该力的垂直分量由枢转弯曲构件(20,21)部分地支撑,部分地由相应的力传感器(22)(通过推力按钮23)支撑。 以这种方式,减小了由每个力传感器(22)检测的力的范围,从而允许更大的低端灵敏度和精度,并且如果包角(angle angle),则力传感器(22)感测到的力的变化被最小化 的条带变化。
    • 6. 发明公开
    • Profile adjustment for cluster mills
    • ProfilanpassungfürVielwalzengerüste。
    • EP0580291A1
    • 1994-01-26
    • EP93304825.8
    • 1993-06-21
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.
    • B21B13/14B21B29/00
    • B21B13/147B21B27/03
    • Improved B and C packing bearing assemblies and second intermediate idler rolls, characterized by greatly reduced transverse rigidity, for use in 20-high cluster mills having a 1-2-3-4 roll arrangement. On each of the B and C backing assemblies, spacers are used to provide narrow gaps between the roller bearings and the shaft eccentrics so that they do not form a rigid tube about the shafts of the B and C backing bearing assemblies. Segmented bridge elements are provided to transfer the load from the middle to each side of each roller bearing. Tie means, tying all the parts together axially (including the roller bearings the eccentrics, the bridge means and the spacing means), are provided in a form which is flexible in transverse bending. The idler roll of the second intermediate rolls constitutes a solid, rod-like, transversely flexible core, mounting a series of slightly spaced rings to form the roll body. Each ring is provided with counterbores from each of its ends so that only a short central portion of each ring contacts the core.
    • 改进的B和C填料轴承组件和第二中间惰辊,其特征在于大大降低的横向刚度,用于具有1-2-3-4辊布置的20-高级组合轧机。 在B和C背衬组件的每一个上,使用间隔件来提供滚子轴承和轴偏心之间的窄间隙,使得它们不围绕B和C背衬轴承组件的轴形成刚性管。 提供分段桥元件以将载荷从每个滚子轴承的中间传递到每侧。 领带意味着将所有部件轴向(包括滚子轴承偏心轴,桥接装置和间隔装置)相结合,以横向弯曲的方式设置。 第二中间辊的惰辊构成固体棒状横向柔性芯,安装一系列稍微间隔的环以形成辊体。 每个环从其每个端部设置有沉孔,使得每个环的只有一个中心部分与芯接触。
    • 7. 发明公开
    • Improved profile adjustment for cluster mills
    • ProfilanpassungfürVielwalzengerüste
    • EP0693327A1
    • 1996-01-24
    • EP95300680.6
    • 1995-02-03
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.
    • B21B13/14B21B27/03F16C13/00
    • B21B13/147B21B27/03Y10T29/49865
    • Improved B and C packing bearing assemblies and second intermediate idler rolls, characterized by greatly reduced transverse rigidity, for use in 20-high cluster mills having a 1-2-3-4 roll arrangement. On each of the B and C backing assemblies, spacers are used to provide narrow gaps between the roller bearings and the shaft eccentrics so that they do not form a rigid tube about the shafts of the B and C backing bearing assemblies. Segmented bridge elements are provided to transfer the load from the middle to each side of each roller bearing. Tie means, tying all the parts together axially (including the roller bearings the eccentrics, the bridge means and the spacing means), are provided in a form which is flexible in transverse bending. The idler roll of the second intermediate rolls constitutes a solid, rod-like, transversely flexible core, mounting a series of slightly spaced rings to form the roll body. Each ring is provided with counterbores from each of its ends so that only a short central portion of each ring contacts the core.
    • 改进的B和C填料轴承组件和第二中间惰辊,其特征在于大大降低的横向刚度,用于具有1-2-3-4辊布置的20-高级组合轧机。 在B和C背衬组件的每一个上,使用间隔件来提供滚子轴承和轴偏心之间的窄间隙,使得它们不围绕B和C背衬轴承组件的轴形成刚性管。 提供分段桥元件以将载荷从每个滚子轴承的中间传递到每侧。 领带意味着将所有部件轴向(包括滚子轴承偏心轴,桥接装置和间隔装置)相结合,以横向弯曲的方式设置。 第二中间辊的惰辊构成固体棒状横向柔性芯,安装一系列稍微间隔的环以形成辊体。 每个环从其每个端部设置有沉孔,使得每个环的只有一个中心部分与芯接触。
    • 9. 发明公开
    • Cluster mill with crown adjustment system
    • 带冠部调整系统的簇磨机
    • EP0529771A1
    • 1993-03-03
    • EP92305247.6
    • 1992-06-08
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.
    • B21B13/14
    • B21B13/147
    • A crown adjustment system for a 20-high (1-2-3-4) cluster mill of the type having upper and lower clusters each comprising a work roll (12), two first intermediate rolls (13), three second intermediate rolls (14,15), and four backing bearing assemblies (A,B,C,D). Each of the backing bearing assemblies of the upper cluster comprises a shaft (18) supported along its length by saddles (29). Each of the saddles (29) has a projecting ring (31) through which the shaft passes. A Plurality of bearing roll segments are journaled on the shaft between its respective saddle rings. A plurality of eccentrics (23) are keyed to the shaft, each being located within one of the saddle rings (31) supporting the shaft. Within the saddle ring of each saddle (29) supporting the shaft there is an eccentric ring (34) mounted on bearing rollers between its respective saddle ring and the adjacent keyed eccentric. The saddles (29) of each of the shafts of the backing bearing assemblies of the upper cluster are equal in number and occupy the same saddle locations so that the saddles at corresponding saddle locations on adjacent shafts lie opposite each other. Those eccentric rings (34) on the shafts of all four backing bearing assemblies of the upper cluster, which occupy the same saddle location, are interconnected by gears and are rotatable by a drive assembly (41) at that saddle location. As a result, a single drive means for each saddle location can be used to effect the crown adjustment on all four backing bearing assemblies of the upper cluster.
    • 一种用于具有上部和下部簇的类型的20-高(1-2-3-4)簇式磨机的顶部调节系统,每个都包括工作辊(12),两个第一中间辊(13),三个第二中间辊( 14,15)和四个支承轴承组件(A,B,C,D)。 上组的每个支承轴承组件包括一个由马鞍(29)沿其长度支承的轴(18)。 每个鞍座(29)具有轴穿过的突出环(31)。 多个轴承辊段在其相应的鞍形环之间轴上支撑。 多个偏心轮(23)键接到轴上,每个偏心轮位于支承轴的鞍形环(31)之一内。 在支撑轴的每个鞍座(29)的鞍形环内,有一个偏心环(34)安装在其相应的鞍形环与相邻的键控偏心轮之间的支承辊上。 上组的支承轴承组件的每个轴的鞍座(29)在数量上相等并且占据相同的鞍座位置,使得相邻轴上的相应鞍座位置处的鞍座彼此相对放置。 占据相同鞍座位置的上部组的所有四个支承轴承组件的轴上的那些偏心环(34)通过齿轮互连,并且可由该鞍座位置处的驱动组件(41)旋转。 结果,可以使用用于每个鞍座位置的单个驱动装置来实现上部组的所有四个支承轴承组件上的冠部调节。
    • 10. 发明公开
    • Strip flatness measuring device
    • 平直度测量装置的频带
    • EP0710816A3
    • 1997-04-23
    • EP95302550.9
    • 1995-04-18
    • T. SENDZIMIR, INC.
    • Sendzimir, Michael G.Turley, John W.Rocki, Zbigniew
    • G01B7/34B21B37/00
    • G01B7/345B21B38/02
    • An improved shapemeter is provided to measure the flatness of metal strip under tension as the strip passes over a shapemeter roll (10), the shapemeter including a stationary shaft (11) with a set of bearings (40) that allow the strip to easily pass over the shapemeter roll (10). The stationary shaft (11) does not touch the inner ring (13) of each bearing, but the inner ring (13) is urged against a block (12) having horizontal and vertical flexural members (20,21) that deflect giving only a single degree of freedom. This single degree of freedom allows each block (12) to rotate about a pivot point (O), which is defined by the locations of the flexural members (20,21), in the transverse vertical plane only. The shaft (11) has a slot (33), which provides an open area in which a single box (28) that contains all the force transducers (22) is mounted. Each force transducer (22) (e.g., a load cell) is attached to a thrust button (23) that contacts the corresponding block (12), and thereby absorbs some of the vertical load on the block (12). The horizontal component of the force on the block (12) is entirely supported by the pivot flexural members (20,21). The vertical component of this force is partly supported by the pivot flexural members (20,21) and partly by the corresponding force transducer (22) (through the thrust button 23). In this manner, the range of force being detected by each force transducer (22) is reduced, thereby allowing for greater low-end sensitivity and accuracy, and the variation in force sensed by the force transducer (22) is minimized if the wrap angle of the strip varies.