会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明授权
    • Gas-insulated circuit breaker
    • 气体绝缘断路器
    • US08115133B2
    • 2012-02-14
    • US12717444
    • 2010-03-04
    • Toshiyuki UchiiTadashi MoriTakeshi Shinkai
    • Toshiyuki UchiiTadashi MoriTakeshi Shinkai
    • H01H33/88
    • H01H33/7076H01H2033/566H01H2033/888
    • A gas-insulated circuit breaker has a sealed container filled with gas; a pair of contacts so constructed as to be connected and separated each other in the sealed container; gas flow generation means for blasting the gas on an arc generated when the contacts are separated, the gas flow generation means including: an accumulation space, pressure increasing means for increasing the pressure of the pressure accumulation space, a gas passage connecting the pressure accumulation space to the arc, and an insulating nozzle that controls the flow of the gas from the pressure accumulation space to the arc; an inside-nozzle insulating member disposed co-axially with the insulating nozzle. The arc is generated in a space between an inner wall section of the insulating nozzle and an outer wall section of the inside-nozzle insulating member, and the gas flows in the space.
    • 气体绝缘断路器具有充满气体的密封容器; 一对触点,其被构造成在密封容器中彼此连接和分离; 气体产生装置,用于在接触分离时产生的电弧上喷射气体,气体流产生装置包括:累积空间,用于增加压力积聚空间的压力的增压装置,连接压力积聚空间的气体通道 以及控制从压力积聚空间到电弧的气体流动的绝缘喷嘴; 与绝缘喷嘴同轴设置的内部喷嘴绝缘构件。 在绝缘喷嘴的内壁部和内侧喷嘴绝缘部的外壁部之间的空间内产生电弧,并且气体在空间中流动。
    • 32. 发明申请
    • GAS-INSULATED CIRCUIT BREAKER
    • 气体绝缘断路器
    • US20100224594A1
    • 2010-09-09
    • US12717444
    • 2010-03-04
    • Toshiyuki UCHIITadashi MoriTakeshi Shinkai
    • Toshiyuki UCHIITadashi MoriTakeshi Shinkai
    • H01H33/72H01H33/04
    • H01H33/7076H01H2033/566H01H2033/888
    • A gas-insulated circuit breaker has a sealed container filled with gas; a pair of contacts so constructed as to be connected and separated each other in the sealed container; gas flow generation means for blasting the gas on an arc generated when the contacts are separated, the gas flow generation means including: an accumulation space, pressure increasing means for increasing the pressure of the pressure accumulation space, a gas passage connecting the pressure accumulation space to the arc, and an insulating nozzle that controls the flow of the gas from the pressure accumulation space to the arc; an inside-nozzle insulating member disposed co-axially with the insulating nozzle. The arc is generated in a space between an inner wall section of the insulating nozzle and an outer wall section of the inside-nozzle insulating member, and the gas flows in the space.
    • 气体绝缘断路器具有充满气体的密封容器; 一对触点,其被构造成在密封容器中彼此连接和分离; 气体产生装置,用于在接触分离时产生的电弧上喷射气体,气体流产生装置包括:累积空间,用于增加压力积聚空间的压力的增压装置,连接压力积聚空间的气体通道 以及控制从压力积聚空间到电弧的气体流动的绝缘喷嘴; 与绝缘喷嘴同轴设置的内部喷嘴绝缘构件。 在绝缘喷嘴的内壁部和内侧喷嘴绝缘部的外壁部之间的空间内产生电弧,并且气体在空间中流动。
    • 36. 发明授权
    • Heavy-duty circuit breaker with erosion-resistant short-circuit current routing
    • 具有耐腐蚀短路电流路由的重型断路器
    • US07595461B2
    • 2009-09-29
    • US11812315
    • 2007-06-18
    • David SaxlMarkus VestnerThomas NordstromTomas BorgTomas Strom
    • David SaxlMarkus VestnerThomas NordstromTomas BorgTomas Strom
    • H01H33/88
    • H01H33/7023H01H33/7015H01H33/7061H01H33/7076
    • The heavy-duty circuit-breaker having an axis (A), and having an arcing contact piece, a current-carrying element and an erosion protection element, with the arcing contact piece having an opening in order to carry an essentially axial flow of a gas which has been heated by an arc, and together with the current-carrying element forms a flat contact (F) in order to carry a short-circuit current (I) which flows through the arcing contact piece and the current-carrying element, and with the erosion protection element essentially shielding the current-carrying element from the flow close to the flat contact (F), is characterized in that the current-carrying element has an axial area in which a radial internal dimension (d2) of the current-carrying element increases in steps or continuously as the distance from the flat contact (F), measured parallel to the axis (A), increases.
    • 具有轴线(A)并且具有电弧接触片,载流元件和侵蚀保护元件的重型断路器,其中电弧接触件具有开口,以便承载基本上轴向的流动 已经被电弧加热的气体与载流元件一起形成平坦的触点(F),以便承载流过电弧接触片和载流元件的短路电流(I) 并且所述侵蚀保护元件基本上将电流承载元件从接近平触点(F)的流动屏蔽起来,其特征在于,载流元件具有轴向区域,其中电流的径向内部尺寸(d2) 随着与平行接触(F)的距离(平行于轴线(A)测量)的距离增加,步进元件或连续地增加。
    • 37. 发明申请
    • Heavy-duty circuit breaker with erosion-resistant short-circuit current routing
    • 具有耐腐蚀短路电流路由的重型断路器
    • US20080006608A1
    • 2008-01-10
    • US11812315
    • 2007-06-18
    • David SaxlMarkus VestnerThomas NordstromTomas BorgTomas Strom
    • David SaxlMarkus VestnerThomas NordstromTomas BorgTomas Strom
    • H01H33/02
    • H01H33/7023H01H33/7015H01H33/7061H01H33/7076
    • The heavy-duty circuit-breaker having an axis (A) which defines an axial coordinate (z) parallel to the axis and a radial coordinate (r) at right angles to the axis, and having an arcing contact piece, a current-carrying element and an erosion protection element, with the arcing contact piece having an opening in order to carry an essentially axial flow of a gas which has been heated by an arc which may be based on the arcing contact piece, and together with the current-carrying element forms a flat contact (F) in order to carry a short-circuit current (I) which flows through the arcing contact piece and the current-carrying element for the time during which the arc burns, and with the erosion protection element essentially shielding the current-carrying element from the flow close to the flat contact (F), is characterized in that the current-carrying element has an axial area in which a radial internal dimension (d2) of the current-carrying element increases in steps or continuously as the distance from the flat contact (F), measured parallel to the axis (A), increases. The axial area is advantageously intended, to hold the erosion protection element.
    • 重型断路器具有限定与该轴平行的轴向坐标(z)的轴线(A)和与该轴线成直角的径向坐标(r),并且具有电弧接触片,载流 元件和侵蚀保护元件,其中电弧接触件具有开口,以便承载基本上轴向流动的气体,该气体已被基于电弧接触件的电弧加热,并且与载流 元件形成平坦接触(F),以便承载在电弧燃烧期间流过电弧接触片和载流元件的短路电流(I),并且与侵蚀保护元件基本上屏蔽 来自靠近平触点(F)的流动的载流元件的特征在于,载流元件具有轴向区域,载流元件的径向内部尺寸(d 2)在该轴向区域中逐步增加或 不断地 随着与平行接触(F)的距离(A)的平行度的增加。 轴向区域有利地旨在保持侵蚀保护元件。