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    • 45. 发明授权
    • Line circuit breaker and magnet yoke for a line circuit breaker
    • 线路断路器和线圈断路器的磁轭
    • US07893797B2
    • 2011-02-22
    • US12304798
    • 2007-05-21
    • Gunther EckertWinfried VierlingChristoph Weber
    • Gunther EckertWinfried VierlingChristoph Weber
    • H01H71/40
    • H01H71/40H01H71/2472
    • In line circuit breakers with a combined overcurrent/short-circuit current tripping device, tripping should take place in a well defined manner in the case of an overcurrent and in the case of a short-circuit current. For this purpose, gaps (A, B) need to be set precisely. If the housing is made from a cost-effective housing material such as thermosetting plastic it is subject to shrinkage. As a result, the mentioned gaps may change. An armature (24) is mounted in such a way that it changes its rest rotary position in the event of shrinkage of the housing. A magnet yoke (28) as part of the overcurrent/short-circuit current tripping device is mounted and shaped in such a way that the rotation is compensated for precisely, so that the mentioned gaps do not change despite the shrinkage.
    • 在具有组合的过电流/短路电流跳闸装置的在线断路器中,在过电流情况下以及短路电流的情况下,应以明确的方式进行跳闸。 为此,需要精确设定间隙(A,B)。 如果外壳由诸如热固性塑料等高性价比的外壳材料制成,则会受到收缩。 结果,上述差距可能会改变。 电枢(24)以这样的方式安装,使得在壳体收缩的情况下,电枢(24)改变其静止旋转位置。 作为过电流/短路电流跳闸装置的一部分的磁轭(28)被安装和成形为使得旋转被精确地补偿,使得尽管收缩,所述间隙也不改变。
    • 46. 发明申请
    • LINE CIRCUIT BREAKER AND MAGNET YOKE FOR A LINE CIRCUIT BREAKER
    • 线路断路器和线路断路器的磁铁
    • US20100052828A1
    • 2010-03-04
    • US12304798
    • 2007-05-21
    • Gunther EckertWinfried VierlingChristoph Weber
    • Gunther EckertWinfried VierlingChristoph Weber
    • H01H71/24
    • H01H71/40H01H71/2472
    • In line circuit breakers with a combined overcurrent/short-circuit current tripping device, tripping should take place in a well defined manner in the case of an overcurrent and in the case of a short-circuit current. For this purpose, gaps (A, B) need to be set precisely. If the housing is made from a cost-effective housing material such as thermosetting plastic it is subject to shrinkage. As a result, the mentioned gaps may change. An armature (24) is mounted in such a way that it changes its rest rotary position in the event of shrinkage of the housing. A magnet yoke (28) as part of the overcurrent/short-circuit current tripping device is mounted and shaped in such a way that the rotation is compensated for precisely, so that the mentioned gaps do not change despite the shrinkage.
    • 在具有组合的过电流/短路电流跳闸装置的在线断路器中,在过电流情况下以及短路电流的情况下,应以明确的方式进行跳闸。 为此,需要精确设定间隙(A,B)。 如果外壳由诸如热固性塑料等高性价比的外壳材料制成,则会受到收缩。 结果,上述差距可能会改变。 电枢(24)以这样的方式安装,使得在壳体收缩的情况下,电枢(24)改变其静止旋转位置。 作为过电流/短路电流跳闸装置的一部分的磁轭(28)被安装和成形为使得旋转被精确地补偿,使得尽管收缩而提及的间隙也不改变。
    • 47. 发明申请
    • Dental cement composition containing composite particles with grafted polyacidic polymer chains
    • 含有接枝多酸聚合物链的复合颗粒的牙科水泥组合物
    • US20090030110A1
    • 2009-01-29
    • US12284275
    • 2008-09-19
    • Joachim E. KleeStefan BruggerChristoph WeberAxel H. E. MullerHideharu Mori
    • Joachim E. KleeStefan BruggerChristoph WeberAxel H. E. MullerHideharu Mori
    • A61K6/08
    • A61K6/0835C08L33/00C08L25/04
    • A dental cement composition comprising (i) a particulate reactive inorganic filler capable of leaching metal ions in the presence of an acid, and (ii) composite particles with grafted polyacidic polymer chains, which are obtainable by a process comprising the following steps: (a) polymerizing one or more free radically polymerizable monomers containing optionally protected acidic groups in the presence of (a1) an initiatior system comprising initiator particles displaying a moiety comprising a radically transferable atom or group as a polymerization initiation site; and (a2) a catalyst facilitating controlledliving polymerisation, and (a3) optionally further polymerizable monomers, for forming a composite particle with grafted optionally protected polyacidic polymer chains; and (b) optionally deprotecting protected acidic groups, for forming composite particles with grafted polyacidic polymer chains.
    • 一种牙科水泥组合物,其包含(i)能够在酸存在下浸出金属离子的颗粒状反应性无机填料,和(ii)具有接枝多酸聚合物链的复合颗粒,其可通过包括以下步骤的方法获得:(a )在(a1)包含引发颗粒的引发剂体系的存在下聚合含有任选保护的酸性基团的一种或多种可自由基聚合的单体,所述引发剂颗粒显示包含可自由基转移的原子或基团的部分作为聚合引发位点; 和(a2)促进受控聚合的催化剂,和(a3)任选的其它可聚合单体,用于形成具有接枝的任选保护的多酸聚合物链的复合颗粒; 和(b)任选地去保护受保护的酸性基团,以形成具有接枝的多酸聚合物链的复合颗粒。
    • 48. 发明申请
    • Tool holder for a disc-shaped working tool
    • 用于盘形工作工具的工具架
    • US20080017007A1
    • 2008-01-24
    • US11879844
    • 2007-07-18
    • Christoph WeberMatthaeus Hoop
    • Christoph WeberMatthaeus Hoop
    • B26D1/12
    • B23B31/4073B24B45/006B27B5/32Y10T83/9403
    • A tool holder or a disc-shaped working tool (18) has a working tool holding member (14) and a working tool holding counter-member (16) rotatable, together with the working tool holding member, (14) about an operational axis (A) and cooperating with the working tool holding member (14) for receiving therebetween the working tool (18) for joint rotation therewith; central securing element (26) for securing the working tool (18) between the working tool holding member (14) and the working tool holding counter-member (16); and at least one coupling element (44) associated with the working tool holding member (14), radially spaceable from the central securing element (26) and having a rotary stop for forming a releaseable plug-in connection with at least one through-bore (24) formed in the working tool (18).
    • 工具架或盘形加工工具(18)具有加工工具保持构件(14)和与加工工具保持构件(14)一起围绕操作轴线可旋转的加工工具夹持件(16) (A),与加工工具保持构件(14)配合,用于在其间容纳用于与其一起旋转的加工工具(18); 用于将加工工具(18)固定在加工工具夹持件(14)和加工工具夹持件(16)之间的中心固定元件(26); 以及与所述加工工具保持构件(14)相关联的至少一个联接元件(44),所述至少一个联接元件(44)可从所述中心固定元件(26)径向地放置并且具有用于形成与至少一个通孔的可释放插入连接的旋转止动件 (24)形成在工作工具(18)中。
    • 49. 发明申请
    • Correction method for chip removal machines
    • 切屑机修正方法
    • US20070124013A1
    • 2007-05-31
    • US10582623
    • 2005-04-20
    • Christoph WeberGunter Schneider
    • Christoph WeberGunter Schneider
    • G06F19/00
    • G05B19/182G05B19/19G05B2219/41192G05B2219/41195
    • The invention concerns a method for determining a deviation of at least one regulating variable on chip removal machines with a mechanical drive for a tool and/or a workpiece, regulated by a control system, wherein the regulation comprises a plurality of values C, X, Z of at least three spatial axes c, x, z for the control system and for the drive, and the values C, X, Z have a functional relation such as Z=fbi (C, X) with the axes c, x, z. A protocol is prepared from a plurality of control system actual values (Cp,s, Xp,s, Zp,s) detected by measuring means and/or selected drive actual values (Cp,a, Xp,a, Zp,a) and a control system nominal value according to Zbi,s=fbi (Cp,s, Xp,s) and/or a drive nominal value according to Zbi,a=fbi (Cp,a, Xp,a) is calculated at least in relation to the z-axis, and a control system differential value according to Dz,s=Zp,s−Zbi,s and/or a drive differential value according to Dz,a=Zp,a−Zbi,a is calculated at least in relation to the z-axis. The invention also pertains to a chip removal machine which implements such a method.
    • 本发明涉及一种用于通过由控制系统调节的用于工具和/或工件的机械驱动来确定芯片移除机器上的至少一个调节变量的偏差的方法,其中所述调节包括多个值C,X, 控制系统和驱动器的至少三个空间轴c,x,z的Z,并且值C,X,Z具有诸如Z = f Bi(C,X )与轴c,x,z。 根据检测到的多个控制系统的实际值(C p,s,X,p,s,Z,p,s N)准备协议 通过测量装置和/或所选择的驱动实际值(C p p,a X,P p,a N,Z P p,a N)和控制 系统标称值,根据Z> bi,s bi bi bi bi>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> )和/或根据Z Bi的驱动器标称值,一个/或多个(P< p>,< 至少相对于z轴计算一个控制系统微分值,根据D z,s N,Z N, 和/或根据D z的驱动差分值,和/或Z 2,Z 3,Z 2,Z 3, 至少相对于z轴计算出。 本发明还涉及一种实现这种方法的切屑机。