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    • 5. 发明授权
    • 금속 빌렛의 용융 도금 코팅 장치
    • 热镀锌金属焊条的设备
    • KR100941623B1
    • 2010-02-11
    • KR1020047011615
    • 2003-02-20
    • 에스엠에스 그룹 게엠베하
    • 베르크만프랑크찔렌바흐미하엘트라코브스키발터옙젠올라프노르만베렌스홀거
    • C23C2/24
    • C23C2/24
    • 본 발명은 금속 빌렛(1)을 용융 코팅 금속(2)이 담긴 용기(3)를 통해, 그리고 상기 용기(3)의 하부에 설치된 가이드 채널(4)을 통해 수직으로 안내할 수 있되, 전자 이동 자계에 의해 코팅 금속(2)을 용기(3) 중에 체류시키기 위해 전자 이동 자계와 상호 작용하여 전자기력을 가하는 유도 전류를 코팅 금속(2)에 유도하는 전자 유도자(5a, 5b)가 가이드 채널(4)의 구역에 배치되고, 그 유도자(5a, 5b)가 금속 빌렛(1)의 이동 방향(X)으로 서로 연달아 배치되는 2개 이상의 주 코일(6) 및 역시 금속 빌렛(1)의 이동 방향(X)으로 연달아 배치되어 가이드 채널(4) 내에서 금속 빌렛(1)의 표면에 수직한 방향(N)으로 금속 빌렛(1)의 위치를 제어하는 2개 이상의 교정 코일(7)을 구비하는 금속 빌렛(1), 특히 강 스트립의 용융 도금 코팅 장치에 관한 것이다. 가이드 채널 내에서의 금속 스트립의 제어 효율성을 제고하기 위해, 본 발명에 따라 교정 코일(7) 중의 적어도 일부가 금속 빌렛(1)의 이동 방향(X)으로 보았을 때에 이동 방향(X)에 수직하게, 그리고 금속 빌렛(1)의 표면에 대한 법선 방향(N)에 수직하게 서로에 대해 오프셋 배치되도록 하는 조치가 취해진다.
      용융 도금 코팅 장치, 금속 빌렛, 가이드 채널, 유도자, 주 코일, 교정 코일
    • 6. 发明公开
    • 금속 스트립, 특히 강 스트립의 용융 도금 코팅 방법 및장치
    • 用于熔融DIP涂层金属条,特殊钢条的方法和装置
    • KR1020050107456A
    • 2005-11-11
    • KR1020057015743
    • 2004-02-13
    • 에스엠에스 그룹 게엠베하
    • 베런스홀게르브리스베르게르롤프팔켄한보도하르퉁한스게오르그텐크호프베른하르트트라코프스키발터질렌바흐미카엘
    • C23C2/24
    • C23C2/24
    • The invention relates to a method for melt dip coating a metal strip (1), especially a steel strip (1a), which is guided through a coating station (4). The metal strip (1) is coated with a coating metal (3), the metal strip (1) is centrally maintained in a guide channel (8) in an electromagnetic sealing field (13) which seals the guide channel (8) from below and guides the metal strip (1) laterally, counter to ferromagnetic attraction, through a corrector field (14). The sealing field (13) is embodied as an electromagnetic guiding field (10), as a blocking field (11) or as a pump field (12) in order to select adequate lateral sealing when any particular sealing field (13) is used. Several corrector fields (14) are arranged in a distributed manner in a selected configuration, whereby the position and number thereof are determined individually at least according to the various widths of the metal strip (1).
    • 本发明涉及一种用于熔融浸涂金属条(1)的方法,特别是钢带(1a),其被引导穿过涂布台(4)。 金属带(1)涂覆有涂层金属(3),金属带(1)在电磁密封场(13)中心地保持在引导通道(8)中,该导电通道(8)将引导通道(8)从下方密封 并且通过校正器区域(14)横向地引导金属带(1)与铁磁吸引力相反。 密封场(13)被实施为电磁引导场(10),作为阻挡场(11)或泵场(12),以便当使用任何特定密封场(13)时选择足够的横向密封。 几个校正器区域(14)以选定的配置分布式布置,由此至少根据金属带(1)的各种宽度分别确定其位置和数量。
    • 8. 发明授权
    • 스트립형재료를코팅하는설비에서스트립을안정시키는방법및장치
    • KR100415069B1
    • 2004-03-26
    • KR1019980701619
    • 1996-09-04
    • 에스엠에스 그룹 게엠베하
    • 슝크엑카르트
    • C23C2/24
    • C23C2/24
    • A process for stabilizing strip in a plant for coating strip material, in which a metal strip is taken through a container holding molten coating material that has, below the melt surface, a through channel, in which induction currents are induced by an electromagnetic travelling field in the coating material and, in interaction with the electromagnetic travelling field, generate an electromagnetic force to retain the coating material. In the region of the through channel, a controllable magnetic field superimposed on the modulation of the electromagnetic travelling field is applied, whose field strength and/or frequency are adjustable as a function of sensor-detected position of the strip in the coating channel.
    • 本发明涉及一种用于在用于涂覆带材的设备中稳定带的方法,其中金属带通过容纳熔融涂层材料的容器被取出,所述熔融涂层材料在熔体表面下方具有通道,其中通过电磁行进场 在涂层材料中并且与电磁行进场相互作用产生电磁力以保持涂层材料。 在贯通通道的区域中,施加叠加在电磁传播场的调制上的可控磁场,其场强度和/或频率可根据传感器在涂层通道中检测到的带的位置来调节。
    • 9. 发明公开
    • 연속용융도금 공정의 전자기 와이핑시 강판의 안정화 방법및 장치
    • 连续热浸镀膜工艺电磁擦拭时钢板稳定性的方法与装置
    • KR1020010056910A
    • 2001-07-04
    • KR1019990058584
    • 1999-12-17
    • 주식회사 포스코
    • 유봉환박정렬
    • C23C2/14
    • C23C2/24B05C11/023
    • PURPOSE: A method and an apparatus for stabilizing a steel sheet during electromagnetic wiping in the continuous hot dip coating process are provided to simply relieve instability of steel sheet generated by alternating current magnetism by baffling a sheltering pipe in which a cooling line is penetrated adjacent to the edge parts of both sides of a hot dip coating steel sheet transferred in an electromagnetic wiper. CONSTITUTION: In a method for stabilizing a steel sheet during electromagnetic wiping using a linear inductor for controlling an adhered amount of the plating layer in continuous hot dip coating process of a steel sheet, the method comprises the process of installing a non-contact type sheltering pipe for absorbing and dispersing magnetic force adjacent to the edge parts of both sides of the steel sheet, thereby alleviating the magnetic force affecting the edge parts of the steel sheet so that distortion, adherence and vibration of the steel sheet are reduced. In an apparatus for stabilizing a steel sheet during electromagnetic wiping using a linear inductor for controlling an adhered amount of the plating layer in continuous hot dip coating process of a steel sheet, the apparatus comprises a sheltering pipe (10) installed as a non-contact type adjacent to the edge parts of both sides of the steel sheet (1) between both sides of a linear inductor (6) located at the front and back of the steel sheet (1); and a cooling line (11) installed by penetrating the inside of the sheltering pipe (10).
    • 目的:提供一种用于在连续热浸涂覆过程中电磁擦拭期间稳定钢板的方法和装置,以简单地缓解由交流磁力产生的钢板的不稳定性,通过挡住冷却管线相邻的遮蔽管 将热浸涂层钢板两边的边缘部分转移到电磁刮水器中。 构成:在钢板的连续热浸镀工序中,使用线性电感器进行电磁擦拭的钢板稳定化控制方法,其特征在于,包括:将非接触型防护罩 用于吸收和分散与钢板两侧边缘部分相邻的磁力的管道,从而减轻影响钢板边缘部分的磁力,从而减小钢板的变形,粘附和振动。 在使用线性电感器进行电磁擦拭的钢板的稳定化装置中,在钢板的连续热浸镀工序中控制镀层的附着量,该装置包括作为非接触安装的遮蔽管(10) 在位于钢板(1)的前后的线性电感器(6)的两侧与钢板(1)的两侧的边缘部分相邻; 以及通过穿过遮蔽管(10)的内部而安装的冷却管线(11)。
    • 10. 发明公开
    • 연속용융도금공정용전자기나이프
    • 用于连续熔融/镀层工艺的电子刀
    • KR1020000043796A
    • 2000-07-15
    • KR1019980060217
    • 1998-12-29
    • 주식회사 포스코
    • 박정렬유봉환
    • C23C2/24
    • C23C2/24B05C11/04G05D5/02
    • PURPOSE: An electronic knife is provided to minimize the heating of steel plate by inducing a strong magnetic field and a cutting force with a low frequency and low current. CONSTITUTION: Plating layer(3A,3B) are formed on both faces in a process that a strip(1) passes through a melting/plating tub(2). An electric knife(10) for regulating the attachment amount of a plating material is installed on an upper part of a plating tub(2). The electric knife is arranged to face two identical linear inducers(11,12) by using three-phase alternation and is prepared with a first, a second and third input terminal(61,62,63) on an upper part of a left inducer and a first, a second and a third output terminal(64,65,66) on a lower part. In addition, the input terminals(611,621,631) of each phase are prepared on the upper part of the right inducer while the output terminals(641,651,661) on the lower part. Herein, each input and output direction of the left inducer(11) is opposite to one of the right inducer.
    • 目的:提供电子刀,通过在低频和低电流下产生强磁场和切割力来最小化钢板的加热。 构成:在条带(1)通过熔化/电镀槽(2)的过程中,在两面上形成电镀层(3A,3B)。 在电镀槽(2)的上部安装用于调节电镀材料的附着量的电动刀(10)。 电刀被设置为通过使用三相交替面对两个相同的线性诱导器(11,12),并且在左诱导器的上部用第一,第二和第三输入端(61,62,63) 以及下部的第一,第二和第三输出端子(64,66,66)。 另外,在下部的输出端子(641,651,661)上准备各相的输入端子(611,621,631),位于右侧导线器的上部。 这里,左侧的感应器(11)的各输入输出方向与右侧的感应器中的一个相反。