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    • 5. 发明授权
    • Method for determining multiturn modulo master axis data
    • 用于确定多圈模数主轴数据的方法
    • US07949009B2
    • 2011-05-24
    • US12339170
    • 2008-12-19
    • Stephan Schultze
    • Stephan Schultze
    • H04J3/22
    • G05B19/414G05B2219/31137G05B2219/50229H04L12/403
    • The present invention relates to a method for transmitting multiturn modulo control axis data which includes at least one control axis position value (600°-604°; 245°-248°) and an associated control axis modulo value (720°; 360°) in one communication system which includes at least two participants, at least one real-time data transmission channel (CH1) being provided for the cyclic transmission of data between the participants; the at least one control axis position value (600°-604°; 245°-248°) is transmitted together with the associated control axis modulo value (720°; 360°) in one data telegram (22; 33).
    • 本发明涉及一种用于发送多圈模数控制轴数据的方法,包括至少一个控制轴位置值(600°-604°; 245°-248°)和相关控制轴模值(720°; 360°) 在包括至少两个参与者的一个通信系统中,提供至少一个实时数据传输信道(CH1),用于在参与者之间循环传输数据; 在一个数据报文(22; 33)中,将至少一个控制轴位置值(600°-604°; 245°-248°)与关联的控制轴模数值(720°; 360°)一起发送。
    • 6. 发明授权
    • Method for axial correction in a processing machine, as well as a processing machine
    • 在加工机器中进行轴向校正的方法以及加工机器
    • US07891530B2
    • 2011-02-22
    • US12182427
    • 2008-07-30
    • Stephan SchultzeHolger Schnabel
    • Stephan SchultzeHolger Schnabel
    • B65H43/08B65H23/04
    • B65H23/1888B41F13/02B65H2513/30B65H2515/10B65H2220/03B65H2220/01
    • In a method for axial correction in a processing machine (100), which has at least two driven transport axles (110, 115) for transporting and processing a product web (101), at least one non-driven or driven processing axle (111, 112, 113, 114), and at least one additional non-driven axle (102, 121, 122, 123, 124), wherein the product web (101) is divisible into at least one web-tensioning segment, a web-tensioning segment is delimited by two clamping points (110-115). The clamping points are embodied in the form of driven transport or processing axles. During a rotation speed change of a clamping point (110-115) a web-tensioning segment is delimited, a pilot control of this clamping point (110-115) delimiting the web-tensioning segment and/or of a processing axle (111-114) situated in this web-tensioning segment is carried out, taking into account a moment of inertia of a non-driven axle (102, 121-124) situated in this web-tensioning section, and a corresponding processing machine (100).
    • 在一种用于在具有至少两个用于输送和加工产品卷筒纸(101)的驱动运输轴(110,115)的加工机器(100)中进行轴向校正的方法中,至少一个非驱动或驱动的加工轴 ,112,113,114)和至少一个附加的非从动轴(102,121,122,123,124),其中所述产品腹板(101)可分成至少一个腹板张紧部分, 张紧段由两个夹紧点(110-115)界定。 夹持点以驱动的运输或加工轴的形式实现。 在夹紧点(110-115)的转速改变期间,卷筒纸张紧部分被限定,该夹紧点(110-115)的引导控制限定卷筒纸张紧部分和/或处理轴(111- 考虑到位于该幅材张紧部分中的非从动轴(102,121-124)的惯性矩和相应的加工机器(100),位于该卷筒纸张紧部分中。
    • 9. 发明申请
    • METHOD FOR OPERATING A SHAFTLESS PRINTING PRESS AND SHAFTLESS PRINTING PRESS
    • 无纺布印刷和无纺布印刷的操作方法
    • US20090064879A1
    • 2009-03-12
    • US12173155
    • 2008-07-15
    • Stephan SchultzeChristoph Mueller
    • Stephan SchultzeChristoph Mueller
    • B41F31/00
    • B41F13/0045
    • The present invention relates to a method for operating a shaftless printing press (1), in which a product (5) is processed during a processing operation by at least one processing device (4a, 4b, 4c), wherein the processing device has at least one driven processing axle (6) as well as at least one further driven axle (11); a processing length (13) of the product (5) is capable of being predetermined by means of the rotary speed (1a, 1b) of the at least one processing axle (6); and the rotary speed (1a, 1b) of the at least one further driven axle (11) is predetermined as a function of the set-point rotary speed (1a, 1b) of the at least one processing axle (6). The present invention further relates to a corresponding printing press, a corresponding computer program, and a corresponding computer program product.
    • 本发明涉及一种用于操作无轴印刷机(1)的方法,其中通过至少一个处理装置(4a,4b,4c)在处理操作期间处理产品(5),其中处理装置具有 至少一个驱动处理轴(6)以及至少一个另外的从动轴(11); 产品(5)的处理长度(13)能够通过至少一个处理轴(6)的转速(1a,1b)预定; 并且所述至少一个另外的从动轴(11)的转速(1a,1b)是所述至少一个处理轴(6)的设定点转速(1a,1b)的函数。 本发明还涉及相应的印刷机,相应的计算机程序和相应的计算机程序产品。