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    • 8. 发明授权
    • Sealing and strain relief device for data cables
    • 数据线的密封和应变消除装置
    • US09022814B2
    • 2015-05-05
    • US13649417
    • 2012-10-11
    • Grzegorz FabrykowskiMichael MüllerSven Strunck
    • Grzegorz FabrykowskiMichael MüllerSven Strunck
    • H01R9/22H01R13/58G02B6/44H02G15/007
    • H01R13/58G02B6/4471H02G15/007
    • A sealing and strain relief device having at least one sealing element is disclosed. The device is arranged in the manner of a sandwich between outer, plate-like bearing elements made from a relatively hard or rigid material and which is made from a relatively soft or elastic material. Slots are introduced both into the outer bearing elements and into the or each central sealing element in such a way that the slots run respectively next to one another and respectively one behind the other, in relation to the sandwich-like arrangement thereof, within the respective bearing element and within the respective sealing element. The strain relief elements are associated with at least one plate-like bearing element such that each data cable, which is sealed and is guided in the region of slots arranged one behind the other of the sandwich-like arrangement, can be restrained using a strain relief element.
    • 公开了一种具有至少一个密封元件的密封和应变消除装置。 该装置以由相对硬或刚性材料制成并由相对柔软或弹性材料制成的外部板状支承元件之间的夹层方式布置。 槽被引入外部轴承元件并进入或每个中央密封元件,使得狭槽相对于其夹心状布置分别彼此相邻并且分别彼此相对地延伸在相应的夹层状结构内 并且在相应的密封元件内。 应变消除元件与至少一个板状轴承元件相关联,使得可以使用应变来约束每个数据电缆,该数据电缆被密封并在布置在夹层状布置中的另一个之后的槽的区域中被引导 浮雕元素
    • 9. 发明授权
    • Squirrel-cage rotor
    • 鼠笼式转子
    • US08836193B2
    • 2014-09-16
    • US13148805
    • 2010-02-05
    • Klaus BüttnerJens KurthMichael MüllerNorbert Wöhner
    • Klaus BüttnerJens KurthMichael MüllerNorbert Wöhner
    • H02K17/16H02K17/18H02K17/20
    • H02K17/165H02K17/205Y10T29/49012
    • The invention relates to a squirrel-cage rotor for an asynchronous machine. In order to increase the electrical efficiency for a cage rotor composed of two materials, the cage rotor comprises a rotor core (1) having grooves (3), end rings (5) of a first material that are cast onto the rotor core on the end face, and conductors (4) that are arranged in the grooves and that are made of a second material that has an electric conductivity that is higher than the electric conductivity of the first material, wherein the conductors (4) comprise a coating (8) made of a coating material on the surface of the conductors, wherein the coating adjoins the second material of the conductors (4) by means of a first alloy layer (2) made of the second material and the coating material and adjoins the cast first material by means of a second alloy layer (9); made of the first material and the coating material.
    • 本发明涉及用于异步电机的鼠笼式转子。 为了提高由两种材料构成的笼式转子的电效率,保持架转子包括具有槽(3)的转子铁芯(1),在第一材料上的第一材料的端环(5) 端面和导体(4),其布置在凹槽中并且由具有高于第一材料的导电性的导电率的第二材料制成,其中导体(4)包括涂层(8) ),其中所述涂层通过由所述第二材料和所述涂层材料制成的第一合金层(2)与所述导体(4)的第二材料邻接,并​​且与所述铸件的第一表面相邻 材料通过第二合金层(9); 由第一种材料和涂层材料制成。
    • 10. 发明申请
    • POLYALKYL (METH)ACRYLATE COPOLYMERS HAVING OUTSTANDING PROPERTIES
    • US20120046207A1
    • 2012-02-23
    • US13213547
    • 2011-08-19
    • Michael MüllerTorsten StöhrBoris Eisenberg
    • Michael MüllerTorsten StöhrBoris Eisenberg
    • C10M145/14C08F220/26C08F220/36
    • C08F220/36C10M145/10C10M2209/08C10N2230/06
    • The present invention relates to copolymers obtainable by polymerizing a monomer composition composed of a) 0% to 40% by weight of one or more ethylenically unsaturated ester compounds of the formula (I) in which R is hydrogen or methyl, R1 is a linear or branched alkyl radical having 1 to 5 carbon atoms, R2 and R3 independently are hydrogen or a group of the formula —COOR′, in which R1 is hydrogen or an alkyl group having 1 to 5 carbon atoms, b) 10% to 99.9% by weight of one or more ethylenically unsaturated ester compounds of the formula (II) in which R is hydrogen or methyl, R4 is a linear or branched alkyl radical having 6 to 15 carbon atoms, R5 and R6 independently are hydrogen or a group of the formula —COOR′, in which R′ is hydrogen or an alkyl group having 6 to 15 carbon atoms, c) 0% to 80% by weight of one or more ethylenically unsaturated ester compounds of the formula (III) in which R is hydrogen or methyl, R7 is a linear or branched alkyl radical having 16 to 30 carbon atoms, R8 and R9 independently are hydrogen or a group of the formula —COOR″, in which R″ is hydrogen or an alkyl group having 16 to 30 carbon atoms, d) 0.1% to 30% by weight of one or more ethylenically unsaturated, polar ester compounds of the formula (IV) in which R is hydrogen or methyl, X is oxygen, sulphur or an amino group of the formula —NH— or —NRa— in which Ra is an alkyl radical having 1 to 40 carbon atoms, R10 is a radical which encompasses 2 to 1000 carbon atoms and has at least 2 heteroatoms, R11 and R12 independently are hydrogen or a group of the formula —COX′R10′, in which X′ is oxygen or an amino group of the formula —NH— or —NRa—, in which Ra′ is an alkyl radical having 1 to 40 carbon atoms, and R10′ is a radical which encompasses 1 to 100 carbon atoms, and e) 0% to 50% by weight of comonomer, based in each case on the total weight of the ethylenically unsaturated monomers.