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    • 3. 发明授权
    • Contact material for vacuum circuit breakers
    • 真空断路器的触点材料
    • US5354352A
    • 1994-10-11
    • US868114
    • 1992-04-14
    • Tsuneyo SekiTsutomu OkutomiAtsushi YamamotoMikio OkawaKiyofumi Otobe
    • Tsuneyo SekiTsutomu OkutomiAtsushi YamamotoMikio OkawaKiyofumi Otobe
    • C22C1/04C22C9/00C22C27/06H01H1/02H01H33/66
    • C22C1/04C22C9/00H01H1/0206Y10T428/12028
    • Disclosed is a contact material for vacuum circuit breakers and a manufacturing process thereof. The contact material includes a copper component, a chromium component and a bismuth component, and has a metallographic structure comprising: a first phase including the copper component and the bismuth component; and a second phase including the chromium component and interposed among the first phase. In this structure, the boundary surface between the first phase and the second phase appears in a structural cross section of the alloy composition as a substantially smooth boundary line, such that when a segment of the boundary line is defined by two arbitrary points which lie on the boundary line at a straight distance of 10 .mu.m, the ratio of the length of the segment to the straight distance of 10 .mu.m lies within a range of approximately 1.0 to 1.4. Moreover, the boundary line may be approximate to a circle such that the ratio of the length of the boundary line to the length of the circumference of an ideal circle having the same area as the area defined by the boundary line lies within a range of approximately 1.0 to 1.3.In the above contact material, the chromium component is preferably included at a content of approximately 20 % to 60% by weight, and the ratio of the bismuth component to the sum of the bismuth component and the copper component preferably lies within a range of approximately 0.05% to 1.0% by weight.
    • 公开了一种用于真空断路器的接触材料及其制造方法。 接触材料包括铜组分,铬组分和铋组分,并且具有金相组织,包括:包含铜组分和铋组分的第一相; 和包含铬成分的第二相插入第一相中。 在该结构中,第一相和第二相之间的边界面出现在合金组成的结构横截面中,作为基本平滑的边界线,使得当边界线的一段由位于 直线距离为10μm的边界线,段的长度与直线距离为10μm的比例在约1.0至1.4的范围内。 此外,边界线可以近似于圆,使得边界线的长度与具有与由边界线限定的面积相同的面积的理想圆的圆周的长度的比率在大约的范围内 1.0〜1.3。 在上述接触材料中,铬成分的含量优选为约20重量%〜60重量%,铋成分与铋成分与铜成分的和的比例优选在大约 0.05〜1.0重量%。
    • 8. 发明授权
    • Method of manufacturing a vacuum interrupter
    • 制造真空断路器的方法
    • US5687472A
    • 1997-11-18
    • US433015
    • 1995-05-03
    • Mitsutaka HonmaHiromichi SomeiTadahiro AiharaTsuneyo SekiAtsushi Yamamoto
    • Mitsutaka HonmaHiromichi SomeiTadahiro AiharaTsuneyo SekiAtsushi Yamamoto
    • B23K1/18H01H33/66H01H11/06B23K31/02
    • H01H33/66H01H2033/66215H01H2033/66276H01H33/66207H01H33/66261Y10T29/49105
    • A method for manufacturing a vacuum interrupter including, a vacuum enclosure composed of an insulating tube sealed by metal flanges, a pair of electrodes in the vacuum enclosure which are able to make and break contact, and a pair of conducting shafts. The method includes the steps of preparing a fixed-side assembly composed of a fixed electrode, a fixed-side conducting shaft and a fixed-side flange jointed as one unit, preparing a movable-side subassembly composed of a movable electrode, a movable-side conducting shaft and a movable-side flange jointed as one unit, preparing an insulating tube subassembly composed of the insulating tube, preparing an assembly such that the movable-side, insulating tube, and fixed-side subassemblies are superimposed with first solders for gas-tight sealing being inserted between the movable-side and fixed-side subassemblies and end surfaces of the insulating tube subassembly and with a second solder for contact soldering being inserted between the contact and the electrode, and heating and evacuating the assembly in a vacuum furnace to evacuate inside the vacuum enclosure and to solder by the first solders and the second solder, thereby to obtain the vacuum interrupter. Whereby gas-tight soldering and soldering of the contact and the electrode are carried out simultaneously in the heating and evacuating step.
    • 一种真空断续器的制造方法,其特征在于,包括由金属法兰密封的绝缘管构成的真空封壳,能够断开接触的真空封壳中的一对电极和一对导电轴。 该方法包括以下步骤:制备由固定电极,固定侧导电轴和作为一个单元接合的固定侧凸缘组成的固定侧组件,制备由可动电极,可移动电极组成的可动侧组件, 侧面导电轴和作为一个单元接合的可动侧凸缘,制备由绝缘管构成的绝缘管子组件,制备组合件,使得可动侧绝缘管和固定侧组件与第一气体焊料重叠 密封被插入在可动侧和固定侧子组件和绝缘管子组件的端面之间,并且用于接触焊接的第二焊料插入在接触件和电极之间,并且在真空炉中加热和抽真空组件 在真空外壳内抽真空并通过第一焊料和第二焊料进行焊接,从而获得真空断路器。 在加热和抽空步骤中同时进行触点和电极的气密焊接和焊接。