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    • 3. 发明授权
    • Current transformer
    • 电流互感器
    • US4225839A
    • 1980-09-30
    • US873032
    • 1978-01-27
    • Paul W. Martincic
    • Paul W. Martincic
    • H01F27/04H01F27/40
    • H01F27/40H01F27/04
    • A current transformer is encapsulated in an injection molded layer of insulating material. The current transformer includes a secondary terminal assembly having individual terminals mounted on a terminal board. The terminal board is formed of a material that softens within the normal processing temperature range of the encapsulating material and forms an amalgamation therewith without a distinct interface between the terminal board and the encapsulating material which thereby provides a fluid-tight seal around the terminal assembly. The individual terminals have an intermediate shoulder disposed adjacent the top surface of the terminal board to prevent the molding material from covering the terminal assembly during the injection molding operation and, further, to provide a sealing surface for the molding material around the terminal assembly. A shorting bar is rotatably mounted between the terminals and rotates between a closed position shorting the terminals and an open non-shorting position. A terminal cover interlocks with the shorting bar to prevent improper positioning of the shorting bar.
    • 电流互感器被封装在绝缘材料的注塑层中。 电流互感器包括具有安装在端子板上的各个端子的次级端子组件。 端子板由在封装材料的正常加工温度范围内软化的材料形成,并且与端子板和封装材料之间形成不同的界面,从而在端子组件周围提供流体密封的密封。 单个端子具有邻近端子板的顶表面设置的中间肩部,以防止模制材料在注射成型操作期间覆盖端子组件,并且还提供用于端子组件周围的模制材料的密封表面。 短路杆可旋转地安装在端子之间并在短路端子和开放非短路位置的关闭位置之间旋转。 端子盖与短路棒互锁,以防止短路棒的定位不正确。
    • 4. 发明授权
    • Method of fabricating a laminated strip of amorphous metal
    • 制造非晶态金属层压条的方法
    • US5240541A
    • 1993-08-31
    • US739710
    • 1991-08-02
    • Kou C. LinFrank R. ZickarEugene E. ZookPaul W. Martincic
    • Kou C. LinFrank R. ZickarEugene E. ZookPaul W. Martincic
    • B32B3/10H01F3/04H01F27/25H01F41/02
    • B32B3/10H01F27/25H01F3/04H01F41/0226Y10T156/1085Y10T156/1098Y10T29/49078Y10T428/1234Y10T428/24132Y10T428/24752Y10T428/24942
    • A laminated amorphous metal strip has a first layer having at least two side-by-side strips of amorphous metal of unequal widths. A second layer has at least two side-by-side strips of amorphous metal of unequal widths, the layers being in reverse order with respect to the widths of the strips such that the wider strips overlap and form a brickwork cross-section pattern. A flexible polymeric bonding material is disposed between the layers. The polymeric bonding material is an adhesive and has excellent electrical properties. A device for forming the laminated strip of amorphous metal has a plurality of rolls of amorphous metal. Strips from a roll are positioned side-by-side with strips from a wider roll. A bonding material is applied from spray guns to the surface of the strips. Strips from a roll of metal and a wide roll of metal are positioned on the bonding material in a reverse order of the wider strips. Pressure is applied to the laminate. The laminate is advanced by a continuous belt to which the laminate is magnetically coupled. The device includes a means for cutting the laminate to a desired length. A method for fabricating a laminated strip of amorphous metal includes providing the rolls of metal, positioning the strips having differing widths, applying the bonding material, applying pressure advancing the laminate and cutting the laminate.
    • 层压非晶态金属条带具有至少两个具有不等宽度的非晶态金属的并排条带的第一层。 第二层具有不等宽度的非晶态金属的至少两个并排的条带,这些层相对于条的宽度以相反的顺序使得较宽的带重叠并形成砖砌横截面图案。 柔性聚合物粘合材料设置在层之间。 聚合物粘合材料是粘合剂并且具有优异的电性能。 用于形成非晶态金属的层叠带的装置具有多个非晶金属卷。 从卷轴上的条带与来自较宽卷筒的条带并排放置。 将粘合材料从喷枪施加到条的表面。 从一卷金属和宽的金属卷的条带以更宽的条带的相反顺序定位在接合材料上。 对层压板施加压力。 层压板通过连续的带进行,层压体与该粘合剂磁耦合。 该装置包括用于将层压板切割成所需长度的装置。 一种用于制造非晶态金属层压带的方法包括提供金属辊,定位具有不同宽度的条,施加粘合材料,施加压力推进层压板并切割层压板。
    • 6. 发明授权
    • Encapsulated current transformer
    • 封装电流互感器
    • US4199743A
    • 1980-04-22
    • US875670
    • 1978-02-06
    • Paul W. Martincic
    • Paul W. Martincic
    • H01F5/06H01F27/02H01F27/32H01F27/40H01F38/28H01F41/00H01F15/02
    • H01F27/022H01F27/40H01F41/005Y10T29/49071
    • A current transformer encapsulated in an injection molded layer of insulating material. The current transformer includes a secondary winding which is disposed around a winding spool having side flanges thereon. Permanent spacers extend across the length of the winding spool and rest on the side flanges such that the permanent spacers are spaced from the secondary winding. A primary winding is wound around the spacers so as to be spaced from the secondary winding before the encapsulating material is injection molded around the magnetic core and windings and into the space between the primary and secondary windings. The winding spool and permanent spacers are formed of a material which softens within the processing temperature range of the encapsulating material to form an amalgamation without a distinct interface between the encapsulating material and the winding spool and spacers. In another embodiment, a "through-type" current transformer has a toroidal-shaped magnetic core enclosed in a rigid sheath of solid material. A tubular member is disposed within the central opening of the magnetic core and secondary winding and is formed of a material which softens in the processing temperature range of the encapsulating material to form an amalgamation without a distinct interface therebetween such that a fluid-type seal is formed between the tubular member and the encapsulating material.
    • 封装在绝缘材料的注塑层中的电流互感器。 电流互感器包括二次绕组,该次级绕组设置在其上具有侧凸缘的绕线卷轴周围。 永久间隔件延伸穿过卷绕卷轴的长度并且搁置在侧凸缘上,使得永久间隔件与次级绕组间隔开。 在封装材料围绕磁芯和绕组注入模制并进入初级和次级绕组之间的空间中时,初级绕组缠绕在间隔件周围以便与次级绕组间隔开。 卷绕卷轴和永久间隔物由在封装材料的加工温度范围内软化的材料形成,以在封装材料和卷绕卷轴和间隔物之间​​没有明显的界面形成合并。 在另一个实施例中,“通过型”电流互感器具有封闭在固体材料的刚性护套中的环形磁芯。 管状构件设置在磁芯和次级绕组的中心开口内,并且由在封装材料的加工温度范围内软化以形成合并而没有彼此不同界面的材料形成,使得流体型密封件 形成在管状构件和封装材料之间。
    • 8. 发明授权
    • Method of continuously processing amorphous metal punchings
    • 连续处理非晶金属冲孔的方法
    • US4744838A
    • 1988-05-17
    • US884215
    • 1986-07-10
    • Kou C. LinCharles E. BurkhardtPaul W. Martincic
    • Kou C. LinCharles E. BurkhardtPaul W. Martincic
    • C21D1/04C21D9/46H01F1/153H01F41/02H01F1/00C21D1/26
    • C21D1/04C21D9/46H01F1/15341H01F41/0226Y10S72/70
    • A plurality of separate blanks or punchings can be continually processed by first cutting the strips into the dimensions needed for core punchings prior to thermal and magnetic annealing. Thereafter the cut punchings can be fed into the annealing line a conveyor in the sequence of one after another in series, alternatively side-by-side in parallel. The punchings will be flattened with rollers or a press during the stage of heating from room temperature to approximately 300.degree. C. The molten metals adhering to the laser-cut edges or burrs from the mechanical shear can be mechanically removed at this point by brushing. The strips may then be thermally and magnetically annealed in the soaking area. In one embodiment, the temperature may be 400.degree. C. .+-.20.degree. C. for 2605-S2 Metglas material and 360.degree. C. .+-.10.degree. C. for 2605S-C Metglas material with a field of 10 Oe in a non-oxidizing environment. The time required for annealing will depend upon strip gauge and width and also, the need of the end results. In an alternative embodiment, the strips may be annealed at a higher temperature of up to 450.degree. C. for a sequence of one minute periods. In either event, annealing takes place while passing the material through a solenoid in the conveyor furnace to expose the material to magnetic annealing. Thereafter, the annealed strips will be cooled to room temperature as the exist from the furnace. The processed punchings will then be ready for core stacking without further strip winding and unwinding.
    • 可以通过在热和磁退火之前首先将条切割成芯穿孔所需的尺寸,来连续地处理多个单独的坯料或冲孔。 此后,切割冲孔可以按顺序依次排列到退火线中的输送机中,或者并排地并排。 在从室温到约300℃的加热阶段期间,冲压将被辊或压机压扁。通过刷涂可以在这一点机械地去除附着在激光切割边缘上的熔融金属或毛刺。 然后可以在均热区域中对带条进行热和磁性退火。 在一个实施方案中,对于2605-S2 Metglas材料,温度可为400℃+/- 20℃,对于2605S-C Metglas材料,具有10Oe的场,温度为360℃+/- 10℃ 非氧化环境。 退火所需的时间将取决于带材规格和宽度,还需要最终结果。 在替代实施例中,条可以在高达450℃的较高温度下退火一段时间的序列。 在任何一种情况下,退火都是在材料通过传送炉中的螺线管的同时进行的,以将材料暴露于磁性退火。 此后,退火的钢带将随着炉子的存在而冷却至室温。 然后处理的冲孔将准备好进行芯堆叠,而无需进一步的条带缠绕和退绕。
    • 9. 发明授权
    • Current transformer
    • 电流互感器
    • US4307365A
    • 1981-12-22
    • US149871
    • 1980-05-14
    • Paul W. Martincic
    • Paul W. Martincic
    • H01F27/04H01F27/40
    • H01F27/04H01F27/40
    • A current transformer is encapsulated in an injection molded layer of insulating material. The current transformer includes a secondary terminal assembly having individual terminals mounted on a terminal board. The terminal board is formed of a material that softens within the normal processing temperature range of the encapsulating material and forms an amalgamation therewith without a distinct interface between the terminal board and the encapsulating material which thereby provides a fluid-tight seal around the terminal assembly. The individual terminals have an intermediate shoulder disposed adjacent the top surface of the terminal board to prevent the molding material from covering the terminal assembly during the injection molding operation and, further, to provide a sealing surface for the molding material around the terminal assembly. A shorting bar is rotatably mounted between the terminals and rotates between a closed position shorting the terminals and an open non-shorting position. A terminal cover interlocks with the shorting bar to prevent improper positioning of the shorting bar.
    • 电流互感器被封装在绝缘材料的注塑层中。 电流互感器包括具有安装在端子板上的各个端子的次级端子组件。 端子板由在封装材料的正常加工温度范围内软化的材料形成,并且与端子板和封装材料之间形成不同的界面,从而在端子组件周围提供流体密封的密封。 单个端子具有邻近端子板的顶表面设置的中间肩部,以防止模制材料在注射成型操作期间覆盖端子组件,并且还提供用于端子组件周围的模制材料的密封表面。 短路杆可旋转地安装在端子之间并在短路端子和开放非短路位置的关闭位置之间旋转。 端子盖与短路棒互锁,以防止短路棒的定位不正确。
    • 10. 发明授权
    • Cast resin capacitor bushing having spacer members between the capacitor
sections and method of making same
    • 在电容器部分之间具有间隔件的浇铸树脂电容器衬套及其制造方法
    • US3967051A
    • 1976-06-29
    • US579757
    • 1975-05-22
    • Curtis L. MoorePaul W. Martincic
    • Curtis L. MoorePaul W. Martincic
    • H01B17/28H01B19/00
    • H01B17/28Y10T29/435Y10T29/49227
    • A cast bushing having a capacitor structure which includes concentrically positioned capacitor sections. Each capacitor section includes a spacing member which helps to maintain the distance between the conducting portions of the capacitor sections during the casting process. The spacing members consist of a tapered cylindrical non-conductive mesh around which another mesh member and a conductive foil are positioned. The diameter of the smaller opening of the tapered mesh permits the insertion of a similarly constructed but smaller diameter capacitor section inside the tapered mesh to form concentric capacitor sections. The rigidity of the tapered portion of the mesh maintains the desired distance between the conducting foils of the two concentric capacitor sections. Two-piece mandrel assemblies are used to construct each capacitor section.
    • 具有电容器结构的铸造套管,其包括同心放置的电容器部分。 每个电容器部分包括间隔构件,其有助于在铸造过程期间保持电容器部分的导电部分之间的距离。 间隔构件由锥形圆柱形非导电网组成,另一个网状构件和导电箔定位在其周围。 锥形网格的较小开口的直径允许在锥形网格内部插入类似构造的较小直径的电容器部分,以形成同心电容器部分。 网格的锥形部分的刚度保持了两个同心电容器部分的导电箔之间所需的距离。 两片心轴组件用于构造每个电容器部分。