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    • 5. 发明授权
    • Method for controlling the moisture of a web in machine direction on a coating machine
    • 在涂布机上控制幅材在机器方向上的湿度的方法
    • US06863919B1
    • 2005-03-08
    • US09914657
    • 2000-03-02
    • Tapio MäenpääEero SuomiVilho Nissinen
    • Tapio MäenpääEero SuomiVilho Nissinen
    • D21F5/00D21G9/00D21H23/78D21H25/06F26B13/10F26B25/22B05D3/02
    • D21G9/0036D21F5/00D21H23/78D21H25/06F26B13/10F26B25/22
    • The invention relates to a method by means of which the machine-direction moisture of a web being coated can be controlled in an optimal manner that takes into account moisture content changes along the entire path of the coating and drying process. Advantageously, all the dryers the coater section are controlled in an integrated manner in order to obtain a controlledly processed product which is optimized in regard to energy consumption and product quality. Each process section and unit contributing to the drying of the web is identified by means of a mathematical submodel describing the specific evaporation rate in the respective process section/unit and, by chaining these submodels, a composite model is compiled for the entire process, whereby the composite model makes it possible to manage the drying operation in the process so that the individual units are controlled as a portion of the overall process.
    • 本发明涉及一种方法,通过该方法可以以考虑到涂层和干燥过程的整个路径上的水分含量变化的最佳方式来控制所涂布的幅材的机器方向水分。 有利地,所有的干燥器都可以以整体方式控制涂布机部分,以便获得在能量消耗和产品质量方面优化的受控加工的产品。 通过描述相应处理部分/单元中的特定蒸发速率的数学子模型来识别有助于干燥纸幅的每个处理部分和单元,并且通过链接这些子模型,为整个过程编译一个复合模型,由此 复合模型使得可以在该过程中管理干燥操作,使得各个单元被控制为整个过程的一部分。
    • 6. 发明申请
    • Digital Hydraulic Controller
    • 数字液压控制器
    • US20120073431A1
    • 2012-03-29
    • US13322800
    • 2010-04-13
    • Arto IkonenEero SuomiVille Hopponen
    • Arto IkonenEero SuomiVille Hopponen
    • F15B13/04F15D1/00
    • F15B11/0426F15B2211/40507F15B2211/40592F15B2211/411F15B2211/426F15B2211/455F15B2211/46Y10T137/87917
    • A digital hydraulic controller has at least two rows of valve elements: one can connect a supply line to a controller output, the other can connect the controller output to an outlet line. The valve elements of each row are connected in parallel and are switchable individually or simultaneously in different combinations with each other and have different flow cross sections. The valve element with the smallest flow cross section is present twice in the row. A system unit has a differential cylinder and a digital hydraulic controller with four rows of valve elements, two of which are, with their common controller output, connected to the one pressure chamber of the differential cylinder, while the other two rows of valve elements are, with their common controller output, connected to the other pressure chamber of the differential cylinder. The differential cylinder can be used as a precisely adjustable linear actuator.
    • 数字液压控制器具有至少两排阀元件:可以将电源线连接到控制器输出,另一个可以将控制器输出连接到出线。 每行的阀元件并联连接,并且可以彼此不同地组合地单独地或同时地切换,并且具有不同的流动横截面。 具有最小流动截面的阀元件在行中存在两次。 系统单元具有差压缸和具有四排阀元件的数字液压控制器,其中两个阀门元件的共同控制器输出连接到差压缸的一个压力室,另外两排阀元件 ,其公共控制器输出,连接到差压气缸的另一个压力室。 差速缸可用作精确调节的线性执行器。
    • 8. 发明授权
    • Method for detecting contamination and/or damaging of a face that runs through a nip or nips in a calendar for paper
    • 检测污染物和/或破坏通过砑光机中的辊隙或辊隙的纸张的方法
    • US06615709B1
    • 2003-09-09
    • US09554640
    • 2000-05-17
    • Eero SuomiTapio MäenpääArto Karjalainen
    • Eero SuomiTapio MäenpääArto Karjalainen
    • B30B1122
    • D21G1/008G01H1/003
    • The invention concerns a method for detecting a contamination and damaging of a face (10) that runs through a nip or nips (N1 . . . N10) in a calendar for paper. In the method vibrations occurring in connection with the constructions (18, 100) of a calendar are detected and processed. The vibrations are detected by at least one vibration detector (40; 41 . . . 46; 41a. . . 46a, 41b. . . 46b) fitted in connection with the bearing supports of calendar rolls (11 . . . 16) or in connection with constructions (18, 100) related to said bearing supports. By the way of these vibration detectors the calendar roll(s) (11 . . . 16) is/are identified from which the vibration derives. In the method , it is possible to observe the rotation of all of the rolls to be monitored and to measure vibration from any suitable point whatsoever, for example from the frame (100) of the machine, by employing at least one vibration detector (40), the time (Tr) of the cycle of the vibration signal obtained from said detector(s) being compared with the numbers of revolutions of the rolls to be monitored. In this way, the source of the disturbance is determined, and action is taken in order to eliminate the disturbance.
    • 本发明涉及一种用于检测通过纸张日历中的辊隙或压痕(N1 ... N10)的面(10)的污染和损坏的方法。 在该方法中,检测并处理与日历的结构(18,100)有关的振动。 至少一个振动检测器(40; 41 ... 46; 41a ... 46a,41b ... 46b)通过与日历辊(11 ... 16)的轴承支撑件相配合或者在 与与所述轴承支撑件相关的结构(18,100)的连接。 通过这些振动检测器的方式,确定了振动来自的日历辊(11 ... 16)。 在该方法中,可以观察所有要被监视的辊的旋转,并且通过使用至少一个振动检测器(40)来测量来自任何适当点的振动,例如来自机器的框架(100) ),将从所述检测器获得的振动信号的周期的时间(Tr)与待监测的辊的转数进行比较。 以这种方式确定干扰的来源,并采取行动以消除干扰。