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    • 2. 发明公开
    • PARTIAL DISCHARGE MONITORING OF ELECTRICAL MACHINES USING ACOUSTIC EMISSION SENSORS AND ELECTRICAL SENSORS
    • 电气机械及局部放电监测装置,声发射电传感器
    • EP3182114A1
    • 2017-06-21
    • EP16203940.8
    • 2016-12-14
    • General Electric Company
    • DEHGHAN NIRI, EhsanROSE, Curtis WayneWITNEY, Andrew Batton
    • G01N27/92G01N29/14G01N29/24G01N29/44G01R31/12
    • A monitoring system (10) includes an acoustic emission monitoring system (18) including acoustic emission sensors (16), a partial discharge monitoring system (22) including partial discharge sensors (20) and synchronized with the acoustic emission monitoring system (18), and a computer (12) receiving acoustic emission data from the acoustic emission sensors (16) and electrical data from the partial discharge sensors (20). The computer (12) is configured to classify a first statistical event as a fatigue cracking event by pattern recognition of the acoustic emission data and determine a first location and a first damage condition resulting from the fatigue cracking event, classify a second statistical event as a partial discharge event by pattern recognition of the acoustic emission data or the electrical data, and fuse the acoustic emission data and the electrical data for the second statistical event and determine a second location and a second damage condition resulting from the partial discharge event. Methods of monitoring are also disclosed.
    • 的监测系统(10)包括在声发射监视系统(18)包括声发射传感器(16),局部放电监控系统(22)包括局部放电传感器(20)和与所述声发射监视系统(18)同步, 和来自声发射传感器(16)和电气数据从部分放电传感器(20)接收的声发射的数据的计算机(12)。 所述计算机(12)被配置为第一统计事件作为疲劳通过声发射数据的模式识别和确定性矿的第一位置和第一损坏条件从疲劳开裂事件引起裂化事件分类,分类的第二统计事件作为 通过声发射的数据或电数据的模式识别的局部放电事件,并熔合在第二统计事件和确定性矿的第二位置和第二损坏状态从部分放电事件产生的声发射数据和电数据。 因此,监测的方法是游离缺失盘。
    • 7. 发明公开
    • ADDITIVE MANUFACTURING OF JOINING PREFORMS
    • 添加剂FERTIGUNG VON VERBINDUNGSVORFORMEN
    • EP3115132A1
    • 2017-01-11
    • EP16177522.6
    • 2016-07-01
    • General Electric Company
    • WITNEY, Andrew BattonBREZNAK, Jeffrey Michael
    • B22F3/105B22F5/10B22F7/06B23K35/02H02K15/00H02K3/24H02K3/50B22F5/00
    • A method (100) of fabricating a joining preform includes the step of printing a self-fluxing joining alloy (110. Joining includes brazing and soldering. The self-fluxing joining alloy contains at least one of phosphorus, boron, fluorine, chlorine, or potassium. Another printing step (120) prints a non-phosphorous joining alloy. Both printing steps (110, 120) are performed by an additive manufacturing or 3D printing process. The printing a self-fluxing joining alloy step (110) may be repeated (130) until the non-phosphorous joining alloy is substantially encapsulated by the self-fluxingjoining alloy. The self-fluxing joining alloy may be a BCuP alloy, a CuP alloy, a CuSnP alloy, a CuSnNiP alloy or a CuAgP alloy. The non-phosphorous joining alloy may be a BAg alloy, a BNi alloy or a BAu alloy.
    • 制造接合预成型体的方法(100)包括印刷自熔接合合金(110)的步骤。接合包括钎焊和焊接。自熔接合合金含有磷,硼,氟,氯或至少一种 另一印刷步骤(120)印刷非磷接合合金,通过添加剂制造或3D印刷工艺进行两个印刷步骤(110,120),可以重复印刷自熔合金合金步骤(110) (130),直到非磷接合合金基本上被自熔合金包封,自熔合金可以是BCuP合金,CuP合金,CuSnP合金,CuSnNiP合金或CuAgP合金, 磷合金可以是BAg合金,BNi合金或BAu合金。
    • 8. 发明公开
    • Cold spray coating process
    • Kaltspritzen-Beschichtungsverfahren
    • EP2806049A1
    • 2014-11-26
    • EP14168673.3
    • 2014-05-16
    • General Electric Company
    • LAMBERTON, Gary AustinMOREY, Kathleen BlancheWITNEY, Andrew Batton
    • C23C24/04
    • C23C24/00C23C24/04
    • A cold spray coating process is disclosed. The cold spray coating process includes positioning a cold spray nozzle 102 relative to a bearing assembly 101, rotating the bearing assembly 101, and directing a powdered babbitt material 103 through the cold spray nozzle 102, to a surface 104 of the rotating bearing assembly 101. The powdered babbitt material 103 adheres to the surface 104 of the rotating bearing assembly 101, forming a coating 105 on the surface 104. Another cold spray coating process includes positioning the cold spray nozzle 102 relative to a bearing assembly 101, rotating the cold spray nozzle 102, and directing a powdered babbitt material 103 through the cold spray nozzle 102, to a surface 104 of the bearing assembly 101. The powdered babbitt material 103 adheres to the surface 104, the rotating of the cold spray nozzle 102 forming a coating 105 on the surface 104. Another cold spray coating process includes monitoring properties of the coating 105 on the surface 104 of the bearing assembly 101 with a coating monitor 110.
    • 公开了一种冷喷涂方法。 冷喷涂方法包括相对于轴承组件101定位冷喷嘴102,使轴承组件101旋转,并将粉末化的巴氏合金材料103通过冷喷嘴102引导到旋转轴承组件101的表面104。 粉状的巴氏合金材料103粘附到旋转的轴承组件101的表面104上,在表面104上形成涂层105.另一种冷喷涂方法包括将冷喷嘴102相对于轴承组件101定位,使冷喷嘴 将粉末化的巴氏合金材料103通过冷喷嘴102引导到轴承组件101的表面104.粉状的巴氏合金材料103粘附到表面104上,冷喷涂喷嘴102的旋转形成涂层105 表面104.另一种冷喷涂方法包括用涂层mo监测轴承组件101的表面104上的涂层105的性质 nitor 110。