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    • 4. 发明申请
    • ELECTRODES FOR FLUORINE GAS DISCHARGE LASERS
    • 氟化物放电激光电极
    • WO2005013440A2
    • 2005-02-10
    • PCT/US2004022809
    • 2004-07-16
    • CYMER INCMORTON RICHARD GMOOSMAN BRYANDYER TIMOTHYCARMICHAEL JAMES AZHANG JIPING
    • MORTON RICHARD GMOOSMAN BRYANDYER TIMOTHYCARMICHAEL JAMES AZHANG JIPING
    • H01S20060101H01S3/036H01S3/038H01S3/097H01S3/0971H01S3/225H01S
    • H01S3/0385H01S3/036H01S3/038H01S3/0381H01S3/0382H01S3/0384H01S3/0388H01S3/097H01S3/09702H01S3/0971H01S3/225H01S3/2251
    • Fluorine gas discharge laser electrodes and electrode systems are disclosed that may comprise a plurality of current return tangs extending for less than the respective length of the second elongated gas discharge electrode. In addition disclosed are electrodes that may comprise a first discharge shaping magnet mounted in a first elongated gas discharge electrode and a second discharge shaping magnet mounted in a second elongated gas discharge electrode. This may also comprise at least one of the first and second gas discharge electrodes has imbedded therein a first and a second auxiliary field creating magnet. Also disclosed is an electrode that may comprise a crown straddling the centerline axis between the pair of side walls and the pair of end walls, comprising a first material, forming at least a portion of the discharge region of the electrode and a pair of elongated high erosion regions on either side of the crown comprising a second material with a relatively higher erosion rate during gas discharge than that of the first material. Also disclosed are electrodes that may comprise a first insert in the electrode body comprising an electrically conductive material having a different coefficient of thermal conductivity than the electrode body. Also disclosed are electrodes that may have a thin film of semi-conductive material coating at least the discharge footprint of the gas discharge electrode, or at least a portion of the discharge region covered with a pre-formed reef having generally uniform pore size and distribution, and methods of making such coatings or reef. Also disclosed is a method of forming an electrode by diffusion bonding a first piece of a first material to a second piece of a second material utilizing a diffusion bonding catalyst between the first piece of material and the second piece of material during the diffusion bonding step and machining the bonded pieces to form an electrode.
    • 公开了氟气放电激光电极和电极系统,其可以包括延伸小于第二细长气体放电电极的相应长度的多个电流返回脚。 另外公开了可以包括安装在第一细长气体放电电极中的第一放电成形磁体和安装在第二细长气体放电电极中的第二放电成形磁体的电极。 这也可以包括第一和第二气体放电电极中的至少一个嵌入其中的第一和第二辅助场产生磁体。 还公开了一种电极,其可以包括跨越一对侧壁和一对端壁之间的中心线轴线的冠,包括形成电极的放电区域的至少一部分的第一材料和一对细长的高度 在冠的任一侧的侵蚀区域包括在气体放电期间具有比第一材料的侵蚀速率相对较高的第二材料。 还公开了可以包括电极体中的第一插入物的电极,其包括具有与电极体不同的导热系数的导电材料。 还公开了电极,其可以具有至少涂覆气体放电电极的放电足迹的半导电材料薄膜,或至少一部分用预先形成的具有大致均匀的孔径和分布的预定形式的礁 ,以及制造这种涂层或珊瑚礁的方法。 还公开了一种通过在扩散接合步骤期间利用第一片材料和第二片材料之间的扩散接合催化剂将第一片材料扩散接合到第二片材的第二片材来形成电极的方法,以及 加工粘合片以形成电极。
    • 5. 发明专利
    • DE60330739D1
    • 2010-02-11
    • DE60330739
    • 2003-07-25
    • SIEMENS ENERGY INC
    • ZHANG JIPINGLIGHT KEVINGARDNER WILLIAM CANNONWHITENER RANDY EDWARD
    • H02K15/00
    • The method involves inspecting a fillet of an outboard end section and a fillet of an inboard end section with a non-destructive testing unit to determine the maximum depth cracks in the fillets. The materials are removed beyond fillets or beyond maximum depth of crack depending upon the depth of cracks in both the inboard fillet and outboard fillet. A 0.06 inches of material is removed beyond the fillet if the depth of cracks in the outboard fillet is less than or equal to 0.03 inches. A 0.03 inches of material is removed beyond the fillet if the depth of cracks in the inboard fillet is less than or equal to 0.03 inches. A 0.03 inches of material beyond maximum depth of crack is removed if crack in the outboard fillet is greater than 0.03 inches and less than 0.07 inches. A 0.03 inches of material beyond maximum depth of crack is removed if crack in the inboard fillet is greater than 0.03 inches and less than 0.06 inches. An independent claim is also included for a generator rotor.