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    • 1. 发明公开
    • 판재의 접합방법
    • 连接板的方法
    • KR1020170121567A
    • 2017-11-02
    • KR1020160050204
    • 2016-04-25
    • 주식회사 성우하이텍
    • 송문종이문용
    • B23K26/21B23K26/32B23K26/06B23K26/073B23K26/08B23K101/18B23K103/04B23K103/10
    • 판재의접합방법이개시된다. 본발명의실시예에따른판재의접합방법은 2장의판재를서로맞대어레이저용접에의해접합하기위한판재의접합방법에있어서, 2장의판재를지그상에서로맞대어규제한상태로, 각판재의상호맞댄면을용접선으로하고, 2개의옵틱헤드로부터일정각도의입사각으로조사되는각 레이저빔의각 초점영역의일부가서로중첩되는초점중첩영역을형성하여상기초점중첩영역이상기용접선을따라이동하면서상기 2장의판재를맞대기용접하여용접부를형성하여접합한다.
    • 公开了一种连接薄片构件的方法。 片状材料的根据本发明的一个实施例作为根据片材的用于通过相互对接两个板构件激光焊接的接合的接合方法的接合方法中,彼此对接的两个板件的上夹具调节hansangtae,每个板构件的相互背面侧 与焊接线和每两个聚焦两个板件的一部分沿着聚焦重叠区域的移相器的焊接线移动,以形成聚焦重叠相互重叠在每个激光束的区域的区域照射来自光学头的预定角度的入射角 彼此焊接以形成焊接部分。
    • 2. 发明公开
    • 알루미늄 판재와 탄소 섬유 강화 플라스틱 복합판재의 접합방법
    • 铝板和碳纤维增强塑料片的焊接方法
    • KR1020160078170A
    • 2016-07-04
    • KR1020140189049
    • 2014-12-24
    • 주식회사 성우하이텍
    • 송문종이문용
    • B32B37/06B32B15/04B32B15/20B32B5/28
    • B32B37/06B32B5/28B32B15/04B32B15/20
    • 알루미늄판재와탄소섬유강화플라스틱복합판재의접합방법이개시된다. 본발명의일 실시예에따른알루미늄판재와탄소섬유강화플라스틱복합판재의접합방법은 CFRP 복합판재와알루미늄판재를상호겹친상태로지그상의전자마그네틱상에상기알루미늄판재를상부로하여로딩하는로딩단계; 상기지그의상부에구성되는작동실린더에의해승하강하는히팅금형을하강시켜상기 CFRP 복합판재에대해알루미늄판재를가압함과동시에상기히팅금형의둘레에일체로구성된금속가이더를상기알루미늄판재의상면에접촉시킨상태로, 상기지그상의전자마그네틱을작동하여자력으로상기금속가이더를끌어당겨상기 CFRP 복합판재와알루미늄판재를상호압착하는압착단계; 상기압착단계의상태에서, 히팅금형을열원으로상기알루미늄판재를가열하면서열전달에의해상기 CFRP 복합판재를비점까지가열하여용융수지내에발생되는고압버블이접합경계면에서터지면서상기알루미늄판재의접합부표면을거칠게하여상기 CFRP 복합판재의용융수지가상기접합부표면에침투및 고화시켜접합하는가열접합단계를포함한다.
    • 公开了一种铝板和碳纤维增强塑料(CFRP)片的焊接方法,其能够使用它们之间的沸点差来粘合铝片和CFRP片。 根据本发明的一个实施例,铝板和碳纤维增强塑料片的焊接方法包括加载步骤,压缩步骤和热焊接步骤。 根据加载步骤,将叠层的CFRP片和铝片放置在夹具上的电磁体上,同时将铝片放置在层叠结构体的上部。 根据压缩步骤,通过构成夹具上部的工作圆筒将加热模具向下移动,以相对于CFRP片材压缩铝片,并且使金属制引导件与 加热模具,与铝板的顶表面接触。 在这种状态下,夹具上的电子磁铁被操作以通过磁力拉动金属导向器,使得CFRP片和铝片相互压缩。 根据热焊接工序,加热模具作为加热铝板的热源,通过热传递将CFRP板加热至沸点。 因此,熔融树脂中产生的高温气泡在焊接边界面上爆裂,形成具有粗糙表面的铝板的焊接部分。 因此,CFRP片的熔融树脂渗入焊接部件的表面,凝固并焊接。
    • 3. 发明公开
    • 드라이아이스 세척장치
    • 干燥清洁装置
    • KR1020150079019A
    • 2015-07-08
    • KR1020130168962
    • 2013-12-31
    • 주식회사 성우하이텍
    • 송문종이문용
    • B08B3/02B08B5/02B08B7/00
    • B08B3/02B08B5/02B08B7/00
    • 드라이아이스세척장치가개시된다. 본발명의일 실시예에따른드라이아이스세척장치는내부에세척공간이형성되는세척부스; 상기세척공간에드라이아이스펠렛을분사하는분사노즐; 상기세척부스의어느한쪽측면상에설치되고, 상기분사노즐이설치되며, 제1 구동부의작동에따라상기분사노즐을상,하로이동시키는수직이동유닛; 및상기세척부스의상측에설치되고, 상기수직이동유닛을제2 구동부의작동에따라좌,우로이동시키는수평이동유닛을포함한다.
    • 公开了一种干冰清洁装置。 根据本发明的一个实施例,一种干冰清洗装置包括:洗衣间,其内部具有洗涤空间; 喷嘴,用于将干冰球注入洗涤空间; 垂直运动单元,其安装在所述洗衣间的一侧,以通过第一驱动部的操作来上下移动所述喷嘴,其中,所述喷嘴被安装; 以及安装在洗衣间上方的水平移动单元,以使第二驱动部的操作使垂直运动单元向左右移动。
    • 6. 发明公开
    • 롤 포밍 시스템용 레이저 용접장치
    • 用于滚筒成型系统的激光焊接装置
    • KR1020110130223A
    • 2011-12-05
    • KR1020100049764
    • 2010-05-27
    • 주식회사 성우하이텍
    • 이문용송문종
    • B23K26/21B23K26/70B23K26/082
    • PURPOSE: A laser welding device for roll forming system is provided to reduce a process cycle time due to additional processes. CONSTITUTION: A laser welding device for roll forming system comprises a welding frame(F), a focus control member(21), a laser scanner(31), a distance sensing sensor(41) and a rotation counter sensor(51). The welding frame is installed on a base(11) of the back end of a roll former unit. The focus control member is installed in the top one side of the welding frame. The laser scanner is installed in the focus control member. The laser scanner emits the laser beam generated from the laser generator in the welding unit of the shaped beam. The distance sensing sensor is installed in one side of the laser scanner. The distance sensing sensor measures distance to the welding unit of the laser scanner and shaped beam. The distance sensing sensor outputs the signal measuring distance to the controller. The rotation counter sensor is composed in one side of the most latter part roll former of the roll former unit. The rotation counter sensor senses the number of rotation of the forming roll and outputs the signal to the controller.
    • 目的:提供一种用于轧辊成型系统的激光焊接装置,以减少由于额外工艺而导致的工艺周期时间。 构成:用于辊成形系统的激光焊接装置包括焊接框架(F),聚焦控制构件(21),激光扫描器(31),距离感测传感器(41)和旋转计数器传感器(51)。 焊接框架安装在轧辊成形器单元的后端的基部(11)上。 聚焦控制构件安装在焊接框架的顶部一侧。 激光扫描器安装在聚焦控制部件中。 激光扫描器在成形梁的焊接单元中发射由激光发生器产生的激光束。 距离感测传感器安装在激光扫描仪的一侧。 距离感测传感器测量到激光扫描仪和成形梁的焊接单元的距离。 距离感测传感器输出到控制器的信号测量距离。 旋转计数器传感器组成在轧辊成形器单元的最后部分辊轧机的一侧。 旋转计数器传感器检测成型辊的旋转数,并将该信号输出到控制器。
    • 8. 发明公开
    • 금형의 육성용접방법
    • 压力机焊接焊接方法
    • KR1020110067981A
    • 2011-06-22
    • KR1020090124788
    • 2009-12-15
    • 주식회사 성우하이텍
    • 이문용정병훈송문종
    • B23K26/342
    • PURPOSE: A backstrip welding method of a mold is provided to alloy the damaged part of the mold by repeating a process of generating a melting part by rapidly radiating low heat input of laser beam in a given pattern of radiating at a high speed and rapidly cooling the melting part with cold air. CONSTITUTION: A backstrip welding method of a mold comprises next steps. Metal powder(30) is supplied to the damaged part(B) on the surface of the mold(10) to have a given height. Low heat input of laser beam(LB) is radiated to the damaged part of the metal-powder supplied mold in a given pattern of radiating at a given welding speed. A part of the damaged part of the mold along with the metal powder generates a melting part(40). Cold air is supplied to the melting part through an air nozzle to rapidly cool the melting part. The laser beam consists of Nd:YAG laser beam oscillated from an Nd:YAG laser oscillator. The output of the laser beam is within in a range of 3.2~3.8Kw.
    • 目的:提供一种模具的背板焊接方法,通过重复一种通过快速辐射激光束的低热量输入产生熔化部分的工艺来合并损坏的部件,该工艺以给定的高速散热模式快速冷却 熔化部分与冷空气。 构成:模具的背板焊接方法包括以下步骤。 将金属粉末(30)供给到模具(10)的表面上的损伤部分(B)以具有给定的高度。 激光束的低热输入(LB)以给定的给定模式以给定的焊接速度辐射到金属粉末供应的模具的损坏部分。 模具的损坏部分与金属粉末一部分产生熔化部分(40)。 冷空气通过空气喷嘴供应到熔化部分,以快速冷却熔化部分。 激光束由Nd:YAG激光振荡器振荡的Nd:YAG激光束组成。 激光束的输出在3.2〜3.8Kw的范围内。
    • 10. 发明公开
    • 레이저 용접용 틸팅 지그 장치
    • 一种用于激光焊接的倾斜装置
    • KR1020090034566A
    • 2009-04-08
    • KR1020070099868
    • 2007-10-04
    • 주식회사 성우하이텍
    • 이문용송문종
    • B23K26/10B23K26/21
    • A tilting jig apparatus for laser welding is provided to prevent an operator from fume or radiation factor of a laser beam by using a protective glass. Front and rear jig frames(1,3) are formed in a rectangle beam shape and are apart from each other at regular intervals and are connected in the center with a rotary rod(5). A rotary unit is connected through a rotating rod and a rotary shaft(21) in the outer side of the front jig frame and rotates front and rear jig frames. A lifting unit lifts front and rear jig frames with a driving motor at the same time. Both side jig plates(23,25) are pivotally installed in both sides between the front and rear jig frames and are equipped with a plurality of clamping units in a section. A tilting unit is mounted on both sides of the front jig frame. A protective glass(37) is mounted in the upper and lower parts of the front and rear jig frames.
    • 提供了一种用于激光焊接的倾斜夹具装置,以通过使用保护玻璃来防止操作者发出烟雾或激光束的辐射因子。 前后夹具框架(1,3)形成为矩形梁形状并且以规则的间隔彼此分开,并且在中心与旋转杆(5)连接。 旋转单元通过旋转杆和位于前夹具框架的外侧的旋转轴(21)连接,并使前后夹具框架旋转。 起重机同时用驱动电机提升前后夹具框架。 两侧夹具板(23,25)可枢转地安装在前和后夹具框架之间的两侧,并且在一部分中装备有多个夹紧单元。 倾斜单元安装在前夹具框架的两侧。 保护玻璃(37)安装在前后夹具框架的上部和下部。