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    • 68. 发明公开
    • BUSH BEARING
    • 布什轴承
    • EP2202428A1
    • 2010-06-30
    • EP08839561.1
    • 2008-10-16
    • Oiles Corporation
    • NAKAGAWA, Noboru
    • F16H57/02B62D5/04F16C27/06F16H1/16
    • F16C17/02B62D5/0409F16C27/063F16C33/02F16H1/16F16H55/24F16H57/021F16H2057/0213F16H2057/0222F16H2057/126
    • A bush bearing 7 includes a bearing body 8 having an inner peripheral surface 7 which is brought into contact with a cylindrical outer peripheral surface 6 of a rotating shaft portion 5 so as to be rotatable in an R direction, groove means 10 provided on an outer peripheral surface 9 of said bearing body 8 so as to extend in the R direction, and elastic ring means 16 fitted on said groove means 10 and having a pair of projecting portions 12 and 13 and portion 14, the pair of projecting portions 12 and 13 partially projecting radially outward from the outer peripheral surface 9 of said bearing body 8 in an A direction, the portion 14 being provided at positions in the R direction between the pair of projecting portions 12 and 13, and not projecting radially outward from the outer peripheral surface 9 of said bearing body 8.
    • 衬套轴承7包括:轴承体8,该轴承体8具有与旋转轴部5的圆筒状的外周面6接触而能够向R方向旋转的内周面7; 所述轴承体8的周面9沿R方向延伸;以及弹性环装置16,该弹性环装置16安装在所述槽装置10上并具有一对突出部分12和13以及部分14,一对突出部分12和13 部分14沿着A方向从所述轴承体8的外周面9径向向外径向地向外突出,所述部分14设置在一对突出部分12和13之间的R方向上的位置处,并且不从外周边径向向外突出 所述轴承体8的表面9。
    • 69. 发明授权
    • APPARATUS COMPRISING A ROTATING CONTAMINANT TRAP
    • 包含旋转污染物陷阱的装置
    • EP2076818B1
    • 2009-12-23
    • EP07808582.6
    • 2007-09-17
    • ASML Netherlands B.V.
    • FRANKEN, Johannes, Christiaan, LeonardusBANINE, Vadim, YevgenyevichWASSINK, Arnoud, Cornelis
    • G03F7/20F16C32/06
    • G03F7/70916B82Y10/00F16C32/0603F16C32/0685F16C33/02F16C33/72F16C2300/62G03F7/70033G03F7/70941
    • A contaminant trap apparatus (10) arranged in a path (R) of a radiation beam to trap contaminants emanating from a radiation source (50) configured to produce the radiation beam is disclosed. The contaminant trap (10) apparatus includes a rotor (10) having a plurality of channel forming elements (11) defining channels (ch) which are arranged substantially parallel to the direction of propagation of the radiation beam, the rotor (10) including electrically chargeable material and arranged to be electrically charged as a result of the operation of the radiation source (50); and a bearing (20) configured to rotatably hold the rotor (10) with respect to a rotor carrying structure (30), wherein the apparatus is configured to (i) control or redirect an electrical discharge (10) of the rotor (ED), or (ii) suppress an electrical discharge (ED) of the rotor (10), or (iii) both,(i) and (ii).
    • 公开了一种布置在辐射束的路径(R)中的污染物收集装置(10),以捕获从配置成产生辐射束的辐射源(50)发出的污染物。 污染物捕集器(10)装置包括具有多个通道形成元件(11)的转子(10),该通道形成元件限定基本平行于辐射束传播方向布置的通道(ch),转子(10)包括电气 由于所述辐射源(50)的操作,所述可充电材料被布置为被充电; 和配置成相对于转子承载结构(30)可旋转地保持转子(10)的轴承(20),其中所述设备构造成(i)控制或重定向转子(ED)的放电(10) ,或者(ii)抑制转子(10)的放电(ED),或者(iii)(i)和(ii)两者。
    • 70. 发明公开
    • AUSGLEICHSWELLE
    • EP2010799A1
    • 2009-01-07
    • EP07724168.5
    • 2007-04-11
    • Herzog Intertec GmbH
    • HERZOG, EwaldHERZOG, Raphael
    • F16F15/26
    • F16F15/267F16C17/02F16C33/02F16C2361/53Y10T74/2157Y10T74/2183
    • The invention relates to a balancing shaft for a multi-cylinder engine having at least one unbalanced weight section (21, 22; 23, 24) and at least one bearing point (16, 17), wherein the at least one unbalanced weight section (21, 22; 23, 24) is assigned a bearing point (16, 17), wherein the bearing point (16, 17) has a radial running face (18) which extends only partially over a periphery of the bearing point (16, 17), and wherein a centrifugal force which results during rotation of the balancing shaft (11) is situated within a region of the bearing point (16, 17) which is formed by the running face (18) which extends partially over the periphery of the bearing point (16, 17).
    • 本发明涉及一种用于多缸发动机的平衡轴,该多缸发动机具有至少一个不平衡配重部分(21,22; 23,24)和至少一个支承点(16,17),其中该至少一个不平衡配重部分 (16,17)具有径向工作面(18),该径向工作面(18)仅在所述支承点(16,17)的外周上部分地延伸, 并且其中在所述平衡轴(11)旋转期间产生的离心力位于由所述工作面(18)形成的所述支承点(16,17)的区域内,所述工作面(18)部分地在所述支承点 轴承点(16,17)。