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    • 7. 发明申请
    • Magnesium alloy sheet processing method and magnesium alloy sheet
    • 镁合金板材加工方法和镁合金板材
    • US20080075624A1
    • 2008-03-27
    • US11979048
    • 2007-10-30
    • Tetsuo SakaiHiroshi UtsunomiyaNorihiro Yoshida
    • Tetsuo SakaiHiroshi UtsunomiyaNorihiro Yoshida
    • C22C23/02C22C23/04C22F1/06
    • C22C23/02B21B3/00C22C23/04C22F1/06
    • A magnesium alloy sheet processing method wherein a magnesium alloy sheet is rolled at a speed of 180 m/min or more. Particularly, a magnesium alloy sheet processing method, wherein the magnesium alloy sheet is rolled at a speed of 450 m/min or more. A magnesium alloy sheet processing method, wherein a rolling tool which is not heated is used. A magnesium alloy sheet processing method, wherein the temperature of the magnesium alloy sheet immediately before the rolling is in the range of 0° C. to 400° C. A magnesium alloy sheet, wherein the sheet has an average crystal grain of 4 μm or less, and does not internally include any unbonded interface in parallel with a direction of rolling. A magnesium alloy sheet, wherein the sheet has an average grain size of 4 μm or less, and has an internal grain boundary formed by a clean grain boundary.
    • 镁合金板的加工方法,其中以180m / min以上的速度轧制镁合金板。 特别是镁合金板的加工方法,其特征在于,以450m /分钟以上的速度轧制镁合金板。 一种镁合金板材加工方法,其中使用未加热的轧制工具。 一种镁合金板材加工方法,其中紧接在轧制之前的镁合金板的温度在0℃至400℃的范围内。镁合金板材,其中该板材具有4μm的平均晶粒度或 较少,并且在内部并不包括与滚动方向平行的任何未粘合界面。 一种镁合金板,其中所述片的平均粒径为4μm以下,并且具有由清洁的晶界形成的内部晶界。
    • 10. 发明申请
    • REFERENCE ELECTRODE, ITS MANUFACTURING METHOD, AND AN ELECTROCHEMICAL CELL
    • 参考电极,其制造方法和电化学细胞
    • US20120027926A1
    • 2012-02-02
    • US13193439
    • 2011-07-28
    • Takuhiro MiyukiTakashi MukaiTetsuo SakaiYukio YamakawaYoshiyuki HonjoHironori Yamasaki
    • Takuhiro MiyukiTakashi MukaiTetsuo SakaiYukio YamakawaYoshiyuki HonjoHironori Yamasaki
    • B05D5/12C25D3/42C25D7/06C25D3/56
    • H01M4/134H01M4/0426H01M4/0438H01M4/1395H01M4/36H01M4/366H01M4/661H01M4/667
    • [PROBLEM] The purpose of the present invention is to provide a reference electrode which is easy to manufacture and handle, its manufacturing method, and an electrochemical cell using this.[METHOD FOR SOLVING THE PROBLEM] The reference electrode 10 comprises a core material 11 extending parallel to the anode 14 or the cathode 16 from a terminal, a lithium membrane 12 coating from a tip of the core material 11 to a field with predetermined length, and an insulator 13 partially coating a field uncoated with the lithium membrane 12 on the core material 11. The material consisting of at least a surface of the core material 11 is a conductive material which is substantially unresponsive to lithium or lithium alloy. The maximum width in a cross section of the core material 11 is preferably in the range of not less than 5 micrometers but not more than 50 micrometers, and thickness of the lithium membrane is preferably in the range of not less than 0.1 micrometers but not more than 20 micrometers. By using the core material 11 with higher rigidity than lithium or lithium alloy, handling and manufacturing the reference material 10 is easy, for example, the material can be processed easily and its shape can be stabilized.[SELECTED FIGURE] FIG. 2
    • 本发明的目的是提供一种容易制造和处理的参比电极,其制造方法和使用该电极的电化学电池。 [解决问题的方法]参考电极10包括从端子平行于阳极14或阴极16延伸的芯材11,从芯材11的尖端涂覆到具有预定长度的磁场的锂膜12, 以及将芯膜材料11上的锂膜12未涂覆的场部分地覆盖的绝缘体13.由芯材11的至少一个表面构成的材料是对锂或锂合金基本上无响应的导电材料。 芯材11的截面的最大宽度优选为5μm以上且50μm以下的范围,锂膜的厚度优选为0.1μm以上,更优选为0.1μm以上 超过20微米。 通过使用具有比锂或锂合金更高的刚性的芯材11,容易进行参考材料10的处理和制造,例如可以容易地处理材料并且可以使其形状稳定。 [选择的图] 2