용강 응고 장치
    2.
    发明公开
    용강 응고 장치 有权
    钢铁固化装置

    公开(公告)号:KR1020160040849A

    公开(公告)日:2016-04-15

    申请号:KR1020140134278

    申请日:2014-10-06

    Inventor: 이경

    Abstract: 본발명은용강응고장치에관한것으로서, 몰드에주입된용강이더미바헤드에효율적으로응고될수 있도록하는용강응고장치이다. 본발명의실시형태는몰드내의용강을인발하는더미바헤드에용강을응고시키는용강응고장치에있어서, 개방된상부와일부가개방된하부를가지는외측응고틀; 상하부가개방된기둥체로서, 상기외측응고틀의상부에걸쳐져서외측응고틀내부에위치하는중간응고틀; 및상하부가개방된기둥체로서, 상기중간응고틀의상부에걸쳐져서중간응고틀의내부에위치하는내측응고틀;을포함할수 있다.

    Abstract translation: 本发明涉及一种凝固钢水的装置,更具体地说,涉及一种使钢水凝固的装置,该钢水能够有效地凝固在虚拟棒头中的模具中的钢水。 根据本发明的一个实施例,在模具中的钢水中固化钢水的钢水凝固装置包括:具有敞开的上部和部分开放的下部的外部凝固模具; 中间固化模具作为柱,其上部和下部开口悬挂在外部固化模具的上部,并位于外部固化模具内部; 内固化模具作为柱,其中上部和下部具有敞开的中部凝固模具的上部,并位于中间凝固模具的内部。

    강의 연속 주조용 장치
    4.
    发明公开
    강의 연속 주조용 장치 有权
    连续铸钢装置

    公开(公告)号:KR1020110066971A

    公开(公告)日:2011-06-17

    申请号:KR1020117010359

    申请日:2009-11-04

    CPC classification number: B22D11/115 B22D11/043

    Abstract: A continuous casting device for steel of the present invention includes a casting mold for casting a molten steel, a submerged entry nozzle, an electromagnetic stirring device, and an electromagnetic brake device. Further, a curved portion which is curved toward the electromagnetic stirring device is formed at least at a position where the curved portion faces the submerged entry nozzle, on each of the long side walls. Moreover, the horizontal distance between a top of the curved portion and the submerged entry nozzle in plan view is equal to or more than 35 mm and less than 50 mm.

    연주압연장치 및 방법
    5.
    发明公开
    연주압연장치 및 방법 有权
    连续铸造和滚压装置和方法

    公开(公告)号:KR1020160105424A

    公开(公告)日:2016-09-06

    申请号:KR1020167018983

    申请日:2014-12-02

    Abstract: 본발명의일 실시예에따른연주압연장치는강판을생산하는연주기, 상기연주기와연계되는제1압연부와, 상기제1압연부출측에이격배치되는제2압연부를제공하여, 상기강판을압하하는압연기및 상기강판의일부를절단하는절단기를포함하며, 상기절단기는적어도불연속압연모드에서배출되는강판의길이에대응되는길이만큼, 상기제2압연부와이격되어, 상기제1압연부와상기제2압연부사이에제공되는절단인출유닛을포함할수 있다. 또한, 본발명의다른실시예에따른연주압연방법은연속압연모드와불연속압연모드가상호전환되는연주압연방법이며, 강판을생산하는연속주조단계, 상기연속주조단계이후에, 압연기로상기강판을압하하는압연단계및 불연속압연모드에서는상기연속주조단계와상기압연단계사이에서상기강판을절단하며, 적어도불연속압연모드에서는절단되어배출되는상기강판의길이에대응되는간격으로상기압연기와이격되어제공된절단기로상기강판을절단하는절단단계를포함할수 있다.

    Abstract translation: 根据本发明的一个实施方案的连续铸造和轧制设备提供:一种用于生产钢板的连续铸造机; 与连铸机相关联的第一轧制单元; 以及第二轧制单元,其在第一轧制单元的出口处间隔开,并且包括:用于压下钢板的轧机; 以及用于切割所述钢板的一部分的切割器,其中所述切割器与所述第二滚动单元间隔开与以至少不连续滚动模式排出的钢板的长度相对应的长度,并且可以包括提供的切割提取单元 在第一轧制单元和第二轧制单元之间。 此外,根据本发明的另一实施例的连续铸造和轧制方法是连续轧制和连续轧制方法,其中连续轧制模式和不连续轧制模式彼此切换并且可以包括:连续铸造 生产钢板的步骤; 在连续铸造步骤之后将钢板压到轧机的轧制步骤; 以及切割步骤,用于在连续铸造步骤和轧制步骤之间以不连续的轧制模式切割钢板,并且用与由轧机间隔开的刀具设置的切割钢板以对应于 钢板以至少不连续的轧制模式被切割和排出。

    연주로 롤의 온도 측정과 연주로 상태 감시용 롤 체커
    6.
    发明公开

    公开(公告)号:KR1020160051414A

    公开(公告)日:2016-05-11

    申请号:KR1020140151368

    申请日:2014-11-03

    Inventor: 박규철

    Abstract: 본발명은연주로롤의온도측정과연주로상태감시용롤 체커에관한것으로서, 롤체커몸체와, 롤갭, 롤밴딩, 롤정렬상태및 롤회전상태를측정하도록상기롤 체커몸체에설치되는센서부와, 롤의표면온도를센싱하도록상기롤 체커몸체에설치되는온도센서부와, 4기의카메라가상기롤 체커몸체의양측상하부에각각설치된카메라부와, 상기센서부, 온도센서부및 카메라부를통해서수신되는신호를동기화하여처리하도록상기롤 체커몸체내부에설치되는중앙처리부와, 상기중앙처리부부터동기화된신호를외부의제어부로송신하도록상기롤 체커몸체에설치되는송신부와, 상기중앙처리부에전원을공급하는배터리부를포함하는것을특징으로한다.

    Abstract translation: 卷筒检查机技术领域本发明涉及一种用于测量连铸机的辊的温度并监视连铸机的状态的辊检查器,其使得用户能够在不用肉眼检查辊的情况下快速检查和检查卷筒。 辊检查器包括:辊检体; 传感器单元,其安装在辊检查体中以测量辊间隙,辊带,辊布置状态和辊旋转状态; 温度传感器单元,其安装在辊检查体中以感测辊的表面的温度; 相机单元,其中四个照相机分别安装在卷筒检验器主体两侧的上部和下部; 中央处理单元安装在滚动检查器主体中,以通过使通过传感器单元,温度传感器单元和相机单元接收的信号同步来处理信号; 传送单元,安装在滚动检查体中,以将由中央处理单元同步的信号发送到外部的控制单元; 以及向中央处理单元供电的电池单元。

    금속을 연속으로 주조하기 위한 캐스팅 다이
    8.
    发明公开
    금속을 연속으로 주조하기 위한 캐스팅 다이 无效
    铸造金属铸造连铸

    公开(公告)号:KR1020070056923A

    公开(公告)日:2007-06-04

    申请号:KR1020060077154

    申请日:2006-08-16

    CPC classification number: B22D11/04 B22D11/0406 B22D11/041 B22D11/043

    Abstract: A casting die for casting metal continuously, which can obtain fast casting rate and desired casting quality at the same time even in the case that the contraction ratio of the metal is changed in a casting die after metal is deviated from a working point, is provided. A casting die(1) for casting metal continuously, which has a mold cavity part(2) comprising an inflow opening(3), a discharge opening(4), and a casting cone(6), is provided with at least one concave embossing(7) extending in a casting direction(G) such that the concave embossing extends in a distance(A) from a predetermined meniscus position(5) to the discharge opening. At least one concave embossing starts in a starting region, and the starting region extends as long as 30 to 70% of the length(L) of the mold cavity part measured from the inflow opening.

    Abstract translation: 即使在金属偏离工作点后的铸模中金属的收缩率发生变化的情况下,也能够同时获得快速铸造速度和期望的铸造品质的铸模, 。 一种用于连续铸造金属的铸模(1),其具有包括流入开口(3),排出开口(4)和铸造锥体(6)的模腔部分(2),设置有至少一个凹部 在铸造方向(G)上延伸的压花(7),使得凹形压花从预定弯液面位置(5)到排出口延伸一定距离(A)。 在起始区域开始至少一个凹形压花,并且起始区域延伸长度从流入开口测量的模腔部分的长度(L)的30%至70%。

    전자기력을이용한개재물제어방법
    9.
    发明公开
    전자기력을이용한개재물제어방법 失效
    使用电磁力控制包含的装置

    公开(公告)号:KR1020000040629A

    公开(公告)日:2000-07-05

    申请号:KR1019980056299

    申请日:1998-12-18

    Inventor: 조명종 김상준

    CPC classification number: B22D11/186 B22D11/043 B22D11/122

    Abstract: PURPOSE: A controller of inclusion using an electromagnetic force is provided to improve a quality of a product. CONSTITUTION: A controller is equipped with an iron core for an N polar(11) and an iron core for an S polar(12) formed in a circular arc shape as the same form with a flowing direction of steel. Iron cores(11)(12) is maintained by installing to close in both side surface portions of a solidifying shell(140) advanced during drawing a set curvature. A coil(13) is rolled in each iron core(11)(12) to form a magnetic field. A DC magnetic field formed by iron cores(11)(12) is the parallel direction with a ground. A Lorentz force by an electric field is formed larger than a Lorentz force by the magnetic field. A size of the Lorentz force by the electric field is set to be similar to a size of a buoyancy of an inclusion. Thereby a gathering of inclusion to an inner side of the solidifying shell(140) by rising is prevented.

    Abstract translation: 目的:提供使用电磁力包容的控制器,以提高产品的质量。 构成:控制器配备有N极(11)铁心和S极(12)的铁芯,圆弧形形状与钢的流动方向相同。 铁芯(11)(12)通过安装来保持,以在拉伸设定的曲率期间在固化壳(140)的两个侧表面部分中前进。 在每个铁芯(11)(12)中卷绕线圈(13)以形成磁场。 由铁芯(11)(12)形成的直流磁场是与地面平行的方向。 通过电场形成的洛伦兹力比磁场的洛伦兹力大。 通过电场的洛伦兹力的大小被设定为与夹杂物的浮力的大小相似。 由此,防止了通过升高将凝固壳体(140)的内侧包围的集合体。

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