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    • 2. 发明授权
    • Variable-crown roll loaded by means of shoes
    • 可变冠辊通过鞋子装载
    • US5897476A
    • 1999-04-27
    • US511486
    • 1995-08-04
    • Juha EhrolaKari HolopainenPekka Kivioja
    • Juha EhrolaKari HolopainenPekka Kivioja
    • D21G1/02F16C13/00B29C43/46
    • F16C13/028D21G1/022
    • A variable-crown roll including a stationary roll axle, a tubular roll mantle rotatably mounted by its ends on the roll axle by end bearings and hydraulic loading shoes arranged between the roll mantle and the roll axle. The loading shoes act upon an inner face of the roll mantle in a direction toward a nip defined in part by the roll, are supported on the roll axle and are loaded by a hydraulic pressure medium. The nip pressure is profiled in the axial direction of the roll by regulating the pressure of the pressure medium passed into the loading shoes. The roll mantle is made of a fiber-reinforced composite material so that the stability of shape of the roll mantle in the direction of the circumference is good, i.e., it maintains its shape, and the rigidity in the axial direction is low, i.e., it is profitable.
    • 一种可变冠辊,包括固定辊轴,管状辊罩,其端部通过端轴承可旋转地安装在辊轴上,并且布置在辊罩和辊轴之间的液压加载靴。 加载鞋在朝向由辊部分定义的辊隙的方向上作用在辊套的内表面上,被支撑在辊轴上并且由液压介质加载。 通过调节进入装载鞋的压力介质的压力,辊隙压力在辊的轴向上成型。 辊罩由纤维增强复合材料制成,使得辊罩形状在圆周方向上的稳定性良好,即保持其形状,并且轴向刚度低,即, 它是有利可图的。
    • 4. 发明授权
    • Arrangement for rapid movement of a roll with hydrostatic bearings
    • 用静液压轴承快速移动辊子的布置
    • US06595691B1
    • 2003-07-22
    • US09719943
    • 2001-03-26
    • Kari HolopainenJuha LahtinenPekka KiviojaJuha Ehrola
    • Kari HolopainenJuha LahtinenPekka KiviojaJuha Ehrola
    • F16C3206
    • F16C13/028D21G1/002D21G1/0226F16C13/04
    • The invention relates to an arrangement for displacing a roll, which is hydrostatically journalled by its axle (1) on support structures and positionable in its working position by means of a bearing, through a rapid movement of the bearing out of its said working position. The journalling comprises at each end of the roll at least one loading element (2-4) pressurizable with a hydraulic medium and at least one support element (5). The arrangement of the invention comprises a valve control piston (9), delivering a hydraulic medium required for the pressurization of said at least one loading element (2) and positioned in a valve cylinder (8), said control piston (9) being provided with a positioning valve (10) on the face of the control piston (9) pointing towards the loading element (2), the face of the control piston (9) opposite relative to the positioning valve (10) being coupled with a pressure line (LP) of the hydraulic system for focusing a holding pressure on the control piston (9).
    • 本发明涉及一种用于移动辊的装置,其通过其轴(1)在支撑结构上被水力轴承安装,并且可通过轴承通过轴承快速移动而脱离其工作位置而通过轴承定位在其工作位置。 支架包括在辊的两端处的至少一个加载元件(2-4),其可加压液压介质和至少一个支撑元件(5)。 本发明的装置包括阀控制活塞(9),输送所述至少一个装载元件(2)的加压所需的液压介质并且定位在阀缸(8)中,所述控制活塞(9)被设置 在所述控制活塞(9)的面向所述加载元件(2)的表面上具有定位阀(10),所述控制活塞(9)相对于所述定位阀(10)相对的面与压力线 (LP),用于将保持压力聚焦在控制活塞(9)上。
    • 5. 发明授权
    • Method for stabilizing a glide shoe of a roll adjustable in zones, a
roll making use of this method, and a hydrodynamic or hydrostatic glide
shoe for the roll
    • 用于稳定区域中可调节的辊的滑动鞋的方法,使用该方法的辊,以及用于辊的流体动力学或静水滑动鞋
    • US4825520A
    • 1989-05-02
    • US13448
    • 1987-02-11
    • Juhani AlajoutsijarviJuha EhrolaAntti IlmarinenMatti Verkasalo
    • Juhani AlajoutsijarviJuha EhrolaAntti IlmarinenMatti Verkasalo
    • D21F3/00D21F3/08D21G1/02F16C13/00B21B13/02
    • F16C13/028D21G1/022
    • Method for stabilizing a glide shoe loaded against an inner face of a revolving mantle of a roll adjustable in zones. The glide shoe is supported by an articulated joint on a piston which loads the glide shoe with adjustable pressure. In order to ensure lubrication of the glide face between the glide shoe and the inner face of the roll mantle, within an area of a front edge of the glide face as seen in a direction of rotation of the roll mantle, a shifting and/or steepening of compression pressure applied by the glide shoe through lubricant onto the inner face of the roll mantle is produced by means of a wedge space within the front edge of the glide face, said shifting and/or steepening in turn generating a moment having a direction opposite to a direction of a moment produced by frictional force of the glide face of the shoe. The thickness of the lubricant film is increased by this moment in the area of the front side of the glide face. Moreover, a glide shoe and a press roll or calender roll adjustable in zones for a paper machine make use of the method described.
    • 用于稳定滑动鞋的方法,所述滑动靴装载在可调节区域中的辊的旋转罩的内表面上。 滑动鞋由活塞上的铰接接头支撑,该滑动接头以可调节的压力加载滑动鞋。 为了确保滑板与滑套的内表面之间的滑动面的润滑,在沿着滚筒地壳的旋转方向的滑动面的前边缘的区域内,移动和/或 通过滑动鞋通过润滑剂施加到辊罩的内表面上的压缩压力的增加是通过在滑行面的前边缘内的楔形空间产生的,所述移动和/或陡峭化反过来产生具有方向 与由鞋的滑动面的摩擦力产生的时刻的方向相反。 润滑剂膜的厚度在滑动面的前侧的面积上增加了这个时刻。 此外,可以在纸机的区域中调节的滑动鞋和压辊或压延辊使用所述的方法。
    • 7. 发明授权
    • Suction roll of a paper machine
    • 造纸机吸辊
    • US06986831B2
    • 2006-01-17
    • US10242808
    • 2002-09-13
    • Juha Ehrola
    • Juha Ehrola
    • D21F3/10
    • D21F3/105D21F3/10
    • A paper machine suction roll has a perforated shell (10) and a static suction box (11) sealed against the inner surface of the shell (10) to create a suction zone (11a) on the roll surface as it rotates. Holes (14) extending through the shell (10) are placed at distances (b1) of varying magnitude from one another such that the hole pattern formed on the inner surface of the shell (10) is irregular. Each hole (14) has a surrounding countersink situated at regular intervals (a) from one another forming a regular countersink pattern on the outer surface of the shell (10). A conventionally drilled suction roll produces very powerful noise peaks at certain multiples of rotation frequency. When the position of the holes is changed at random in particular in the circumferential direction, regular periodicity disappears and the sound produced is a less disturbing humming-type sound.
    • 造纸机抽吸辊具有穿孔壳体(10)和与壳体(10)的内表面密封的静态抽吸箱(11),以在辊子旋转时在辊表面上产生吸入区域(11a)。 延伸穿过壳体(10)的孔(14)以彼此不同大小的距离(b <1> 1)放置,使得形成在壳体(10)的内表面上的孔图案是不规则的 。 每个孔(14)具有以规则的间隔(a)彼此间隔开的周边沉孔,在壳体(10)的外表面上形成规则的埋头孔图案。 常规钻取的抽吸辊在旋转频率的某些倍数下产生非常强大的噪声峰值。 当孔的位置特别是在圆周方向上随机地改变时,规则的周期性消失,并且产生的声音是较不令人不安的蜂鸣型声音。