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    • 31. 发明申请
    • Wildlife Flashover Preventer for High Voltage Electrical Transmission Structures
    • 高压电气传输结构的野生动物防雷器
    • US20100218988A1
    • 2010-09-02
    • US12395580
    • 2009-02-27
    • Michael Lynch
    • Michael Lynch
    • H02G7/00
    • H02G7/00
    • A conventional grounded steel tower, or other structure, supports multiple wires (e.g., 6) carrying multi-phase high voltage electricity (e.g., >100 kV). Each wire is supported by a ceramic insulator connected to a horizontal arm of the structure, where an angled strut helps support the arm. There are usually three tiers of wires. The closest distance between a wire and ground is typically between the wire and an angled strut below the wire, where the angled strut helps support a lower-tier wire. A guard formed of a dielectric is affixed to and covers the lower portion of the steel strut as well as any steel that outward extends beyond the strut. The guard prevents flashover between a wire and the underlying grounded strut if a large bird perches on the guard, since the bird will not be grounded by the strut.
    • 传统的接地钢塔或其他结构支撑承载多相高压电(例如> 100kV)的多条电线(例如6)。 每个线由连接到结构的水平臂的陶瓷绝缘体支撑,其中倾斜的支柱有助于支撑臂​​。 通常有三层电线。 电线和接地之间最近的距离通常在电线和电线下方的倾斜支柱之间,其中倾斜的支柱有助于支撑下层电线。 由电介质形成的防护件固定在钢支柱的下部并覆盖钢支柱的下部以及向外延伸超过支柱的任何钢。 如果一只大鸟栖息在防护装置上,防护罩可防止电线和底层接地支柱之间的闪络,因为鸟不会被支柱接地。
    • 34. 发明授权
    • Electric power cable fixing apparatus for an insulator
    • 绝缘子用电力电缆固定装置
    • US07671274B2
    • 2010-03-02
    • US12075623
    • 2008-03-13
    • Byung-Jun AnJeom-Dong An
    • Byung-Jun AnJeom-Dong An
    • H02G7/00
    • H01B17/16H02G7/053
    • An apparatus fixing a power cable to an insulator, which clamps the head of the insulator to fix the power cable to an insulator head, easily and firmly. To this end, the apparatus includes a main body formed with a vertical through bolt hole in the center, with a space, formed beneath the bolt hole, with a round open bottom which holds the power cable; a fixed clamp formed on one side of the main body with a latch at the bottom to hook the insulator head; a movable clamp formed on the opposite side of the main body with a latch at the bottom to hook the other side of the insulator head; a movable, elastic holding member formed on the space part of the main body, with a groove on the bottom to hold upper part of the power cable; a fixing bolt engaged in the bolt hole of the main body, pressing the elastic holding member by screwing inward, so that the power cable can be fixed between the holding groove on top of the insulator and the holding groove on the bottom of the elastic holding member; and a movable clamp fixing member to fix the movable clamp engaged with the insulator head.
    • 将电力电缆固定到绝缘体上的装置,该绝缘体夹紧绝缘体的头部,以便将电力电缆固定到绝缘体头部,并且容易且牢固。 为此,该装置包括在中心形成有垂直通孔螺栓孔的主体,形成在螺栓孔下面的具有保持电力电缆的圆形开口底部的空间; 固定夹具,在主体的一侧上形成有一个在底部的闩锁以钩住绝缘子头; 形成在主体的相对侧的可动夹具,底部具有钩子以钩住绝缘体头部的另一侧; 形成在主体的空间部分上的可移动的弹性保持构件,在底部具有用于保持电力电缆的上部的凹槽; 固定螺栓,其与主体的螺栓孔接合,通过向内拧紧来挤压弹性保持构件,使得电力电缆可以固定在绝缘体顶部的保持槽和弹性保持件的底部上的保持槽之间 会员; 以及可动夹具固定构件,用于固定与绝缘体头部接合的可动夹具。
    • 38. 发明授权
    • Anti-cascading suspension clamps for overhead power transmission lines
    • 用于架空输电线路的反级联悬挂夹
    • US07368660B2
    • 2008-05-06
    • US11563051
    • 2006-11-24
    • Claude Hardy
    • Claude Hardy
    • H02G7/00
    • H02G7/053
    • A suspension clamp (10) has a stirrup part (12) with an upper end adapted for pivotal connection to a string of insulators (S) of a transmission tower. A clamping part (14) is accommodated within the stirrup part (12) for clamping onto the overhead conductor (L) supported by the towers. A releasable connection (34) is provided between the stirrup part (12) and the clamping part (14) for releasing the clamping part (14) from the stirrup part (12) whenever a predetermined excessive longitudinal force is exerted by the overhead conductor (L). The stirrup part (12) holds the line together with the clamping part (14) suspended once the clamping part (14) has been released from the stirrup part (12).
    • 悬架夹具(10)具有镫形部分(12),其上端适于枢转地连接到传动塔的绝缘体(S)串。 夹持部分(14)容纳在蹬蹬部分(12)内,用于夹紧在由塔支撑的架空导体(L)上。 每当由架空导体施加预定的过大的纵向力时,在蹬蹬部分(12)和夹持部分(14)之间设置一个可释放的连接件(34),用于将夹持部件(14)从蹬箍部分(12) L)。 一旦夹紧部件(14)已经从马镫部分(12)释放,马镫部分(12)将夹持件与夹紧部件(14)一起保持在一起。
    • 39. 发明申请
    • Method and System for Testing or Measuring Electrical Elements, Using Two Offset Pulses
    • 使用两个偏移脉冲测试或测量电气元件的方法和系统
    • US20080006427A1
    • 2008-01-10
    • US11833392
    • 2007-08-03
    • Christophe VaucherPierre Benech
    • Christophe VaucherPierre Benech
    • H02G7/00
    • G01R31/305G01R31/307G01R31/308G01R31/311
    • A method for testing electric elements includes applying a first beam of particles to a first location of an electric element, to liberate electrons from the first location, and applying a second beam of particles to a second location of an electric element, with a temporal shift (Δt) different from zero in relation to the application of the first beam of particles, to liberate electrons from the second location. The temporal shift is on the order of magnitude of a propagation time of electrons between the first and the second location. Electrons liberated under the effect of the first and second beams of particles are collected, and at least one quantity of electric charges corresponding to the collected electrons liberated under the effect of the second beam of particles is measured and quantitatively or qualitatively deducing therefrom an electric feature of the electric element.
    • 一种用于测试电气元件的方法包括将第一粒子束施加到电气元件的第一位置,以从第一位置释放电子,以及将第二粒子束施加到电子元件的第二位置,具有时间偏移 (Deltat)相对于第一个粒子束的应用不同于零,以从第二位置释放电子。 时间偏移在第一和第二位置之间的电子的传播时间的数量级。 收集在第一和第二粒子束的作用下释放的电子,并且测量与在第二粒子束的作用下释放的所收集的电子相对应的至少一个电荷量,并且定量或定性地从其中推导出电特征 的电气元件。