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公开(公告)号:WO2013151358A1
公开(公告)日:2013-10-10
申请号:PCT/KR2013/002822
申请日:2013-04-04
Applicant: 한국기초과학지원연구원
IPC: F16J15/08
CPC classification number: F16J15/0893
Abstract: 본 발명에 따르면, 내부에 통공(110)이 형성된 원형의 고리형태로 형성되어 외주면(120)의 형상 및 크기는 표준화된 규격을 따르며, 수직단면의 원주방향으로 상기 외주면(120)에서 내주면(130)까지의 두께(t)를 조절하여 탄성복원력을 증대시킨 메탈오링씰에 있어서, 상기 수직단면의 원주방향에서의 양측 위치에서 원주를 따라 상측 및 하측으로 갈수록 상기 두께(t)가 점차적으로 얇아지며, 상기 상측 및 하측의 내주면(130)에는 상기 수직단면의 중심(C) 방향으로 융기된 돌기부(140)가 돌출 형성되면서 상기 돌기부(140)의 양측에 홈부(141)가 형성된 메탈오링씰(100)을 개시한다.
Abstract translation: 根据本发明,公开了一种形成为圆环状的金属O型密封圈(100),其具有内部具有贯穿孔(110)的外孔(120)的形状和尺寸符合标准, 在垂直截面的圆周方向上控制从外周面(120)到内周面(130)的厚度(t),从而增加弹性,其中厚度(t)沿圆周方向逐渐减小 在垂直横截面的圆周方向上从两侧接近上下部分,凸起突起(140)在上部和下部的内周表面(130)处朝向垂直横截面的中心突出, 并且在所述突起(140)的两侧形成有槽(141)。
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公开(公告)号:WO2013151199A1
公开(公告)日:2013-10-10
申请号:PCT/KR2012/002693
申请日:2012-04-09
Applicant: 한국기초과학지원연구원 , 김근홍 , 양형렬
IPC: F16J15/08
CPC classification number: F16J15/0893
Abstract: 본 발명에 따르면, 내부에 통공(110)이 형성된 원형의 고리형태로 형성되어 외주면(120)의 형상 및 크기는 표준화된 규격을 따르며, 수직단면의 원주방향으로 상기 외주면(120)에서 내주면(130)까지의 두께(t)를 조절하여 탄성복원력을 증대시킨 메탈오링씰에 있어서, 상기 수직단면의 원주방향에서의 양측 위치에서 원주를 따라 상측 및 하측으로 갈수록 상기 두께(t)가 점차적으로 얇아지며, 상기 상측 및 하측의 내주면(130)에는 상기 수직단면의 중심(C) 방향으로 융기된 돌기부(140)가 돌출 형성되면서 상기 돌기부(140)의 양측에 홈부(141)가 형성된 메탈오링씰(100)을 개시한다.
Abstract translation: 根据本发明,一种金属O形环密封件(100),其形成为具有延伸穿过其中的通孔(110)的具有外周表面(120)的环形环,其形状和尺寸 符合给定的标准,其中调整从垂直横截面圆周方向的外周面(120)到内周面(130)的厚度(t),以增加弹性恢复力 。 当沿垂直横截面的圆周方向从任一侧沿着圆周向上侧和下侧进行时,厚度(t)逐渐变薄。 在上表面和下表面的内周表面(130)上形成突起(140),使得突起(140)朝向垂直横截面的中心(C)突出,并且形成凹槽(141) 在突起(140)的任一侧。
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公开(公告)号:KR100920170B1
公开(公告)日:2009-10-06
申请号:KR1020070086102
申请日:2007-08-27
Applicant: 한국기초과학지원연구원 , 김유찬
Abstract: 본 발명은 원통 내부용 용접기 및 그 용접방법에 관한 것으로, 더욱 상세하게는 용접 및 촬영을 할 수 있는 토치부를 수직, 수평, 회전 및 고정시킬 수 있도록 수직이동부, 수평이동부, 회전부 및 고정부를 설치하고, 토치부에 와이어를 공급하는 와이어공급부를 설치하며, 원통 내부를 외부에서 확인할 수 있도록 영상출력부를 설치하여 고정부이동바퀴에 의해 원통 내부를 용이하게 이동할 수 있고, 카메라에 의해 원통의 용접부위를 외부에서 육안으로 확인할 수 있어 외부에서 용이하게 조작할 수 있으며, 수직이동부와 회전부 및 수평이동부에 의해 토치부를 원통의 용접부위에 용이하게 이동시킴은 물론, 고정부에 의해 원통 내부에 용접기를 견고하게 고정시킬 수 있어 흔들림없이 용접을 할 수 있기 때문에, 시간이 단축되어 작업효율을 향상시킬 수 있다.
용접기, 원통, 파이프, 내부용접-
公开(公告)号:KR100805681B1
公开(公告)日:2008-02-21
申请号:KR1020060113410
申请日:2006-11-16
Applicant: 한국기초과학지원연구원
CPC classification number: Y02E40/64 , Y02E40/641
Abstract: A center solenoid coil structure for a superconducting tokamak device is provided to achieve a sufficient strength resistant to electromagnetic force and absorb contraction strain. A center solenoid coil structure for a superconducting tokamak device comprises a joint(10), a floating plate(20), a CS(Center Solenoid) structure body(30), and an elastic support(40). The joint is joined to an inner upper part of the toroidal coil. The floating plate is connected to the bottom of the joint. The CS structure body is connected to the other end of the floating plate and is positioned inside of the toroidal coil. The elastic support is connected to the bottom of the CS structure body and slides in the bottom of the toroidal coil according to the variation of the CS structure body. One or more spaces(21) penetrate the floating plate and therefore the floating plate floats according to the variation of the CS structure body.
Abstract translation: 提供用于超导托卡马克装置的中心螺线管线圈结构,以实现足够的抵抗电磁力的强度并吸收收缩应变。 用于超导托卡马克装置的中心螺线管线圈结构包括接头(10),浮动板(20),CS(中心电磁阀)结构体(30)和弹性支撑件(40)。 接头连接到环形线圈的内部上部。 浮板连接到接头的底部。 CS结构体连接到浮动板的另一端并位于环形线圈的内部。 弹性支撑件连接到CS结构体的底部,并根据CS结构体的变化在环形线圈的底部滑动。 一个或多个空间(21)穿透浮板,因此浮板根据CS结构体的变化而浮动。
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公开(公告)号:KR100683165B1
公开(公告)日:2007-02-15
申请号:KR1020050123056
申请日:2005-12-14
Applicant: 한국기초과학지원연구원
IPC: G21B1/00
Abstract: A PF(Poloidal Field) coil structure of a bending type of a tangential direction of a superconducting tokamak is provided to absorb intensity enough to endure an electromagnetic force and contraction transformation by connecting a PF coil fixing unit to a PF coil supporting unit and a base block attached to a PF coil by a moving plate. A PF coil structure of a bending type of tangential direction of a superconducting tokamak includes a PF coil supporting unit(10a), a moving plate(22), and a PF coil fixing unit(10). The PF coil supporting unit(10a) supports a PF coil to a toroidal coil. The moving plate(22) is connected to left/right sides and inner/outer sides of the PF coil supporting unit(10a). The PF coil fixing unit(10) fixes the PF coil and is connected to the moving plate(22). A base block(30) is attached to the toroidal coil. A lower plate is horizontally attached to an upper part of the base block(30). A supporting wall(12a) is attached to inner/outer sides of the lower plate. An upper block(14) is horizontally attached to an upper part of the supporting wall(12a). The fluid plate(22) is connected to inner/outer sides of left/right sides of a lower part of the upper block(12).
Abstract translation: 设置超导托卡马克的切线方向的弯曲型的PF(极向场)线圈结构,以通过将PF线圈固定单元连接到PF线圈支撑单元和基座来吸收足以承受电磁力和收缩变换的强度 通过移动板连接到PF线圈。 超导托卡马克的切线方向的弯曲型的PF线圈结构包括PF线圈支撑单元(10a),移动板(22)以及PF线圈固定单元(10)。 PF线圈支撑单元(10a)将PF线圈支撑到环形线圈。 移动板(22)连接到PF线圈支撑单元(10a)的左侧和右侧以及内侧/外侧。 PF线圈固定单元(10)固定PF线圈并连接到移动板(22)。 底座(30)连接到环形线圈。 下板水平地连接到基座块(30)的上部。 支撑壁(12a)连接到下板的内侧/外侧。 上块(14)水平地连接到支撑壁(12a)的上部。 流体板22连接到上块12的下部的左侧/右侧的内侧/外侧。
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公开(公告)号:KR1020130112762A
公开(公告)日:2013-10-14
申请号:KR1020130035178
申请日:2013-04-01
Applicant: 한국기초과학지원연구원
IPC: F16J15/08
CPC classification number: F16J15/0893
Abstract: PURPOSE: A high resilient metal O-ring seal is provided to enable the wise use thereof because the thickness of the metal O-ring seal can be adjusted. CONSTITUTION: A high resilient metal O-ring seal (100) is formed in a circular ring shape and comprises a through hole (110), an outer surface (120), and an inner surface (130). The through hole is formed inside of the metal O-ring seal. The thickness from the outer surface to the inner surface can be adjusted to improve the elastic restoring force of the metal O-ring seal. In the vertical cross section of the metal O-ring seal, the thickness of the widthwise portions of the metal O-ring seal is shorter than the thickness of the lengthwise portions of the metal O-ring seal.
Abstract translation: 目的:提供高弹性金属O形圈密封件,以便明智地使用它,因为可以调节金属O形圈密封件的厚度。 构成:高弹性金属O形圈密封件(100)形成为圆环形,并且包括通孔(110),外表面(120)和内表面(130)。 通孔形成在金属O形圈密封件的内部。 可以调节从外表面到内表面的厚度,以改善金属O形圈密封件的弹性恢复力。 在金属O形圈密封件的垂直截面中,金属O形圈密封件的宽度方向的厚度比金属O形圈密封件的长度方向的厚度短。
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公开(公告)号:KR101054002B1
公开(公告)日:2011-08-04
申请号:KR1020090026857
申请日:2009-03-30
Applicant: 한국기초과학지원연구원
IPC: G21B1/11
CPC classification number: Y02E30/122
Abstract: 본 발명은 초전도 토카막 장치의 진공용기 가열 장치에 관한 것으로, 초전도 토카막 장치에 있어서, 진공용기 내부에 구비되는 다수의 할로겐 램프, 상기 할로겐 램프를 진공용기 내부에 지지하는 지지대, 상기 진공용기의 내부 온도를 감지하는 온도센서 및 상기 온도센서의 검출 온도값에 따라 할로겐 램프를 제어하는 제어부를 포함하여 구성되는 것을 특징으로 한다. 이와 같이 구성되고 작용되는 본 발명은 진공용기를 용이하게 가열하여 불순물을 제거할 수 있고, 저비용으로 가열장치를 설비할 수 있는 장점이 있다.
초전도, 토카막, 진공용기, 가열, 램프-
公开(公告)号:KR1020110075661A
公开(公告)日:2011-07-06
申请号:KR1020090132168
申请日:2009-12-28
Applicant: 한국기초과학지원연구원
IPC: G21B1/17
CPC classification number: Y02E30/122 , G21B1/17 , G21B1/057
Abstract: PURPOSE: A heating structure for a vacuum container coating flow path of a tokamak is provided to prevent or minimize an influence due to mutual magnetic field with a vacuum container by installing a heating unit apart form a coating flow path. CONSTITUTION: A vapor state of carborane is injected into a coating flow path so as to reduce internal contaminants of a vacuum container of a tokamak. A heating unit(110) heats gas. A heat exchange unit(120) is formed to cover an outside of a coating flow path. The heat exchange unit has a circulation path through the heated gas is moved. The heat exchange unit maintains the vapor state of carborane and supplies the vapor state of carborane to the vacuum container.
Abstract translation: 目的:提供一种用于托卡马克的真空容器涂布流路的加热结构,以通过将加热单元分开形成涂布流动路径来防止或最小化由于与真空容器的相互磁场的影响。 构成:将碳硼烷的蒸气状态注入涂布流路,以减少托卡马克真空容器的内部污染物。 加热单元(110)加热气体。 形成热交换单元(120)以覆盖涂布流路的外部。 热交换单元具有通过加热气体的循环路径移动。 热交换单元维持碳硼烷的蒸汽状态,并将碳硼烷的蒸汽状态提供给真空容器。
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公开(公告)号:KR1020080063910A
公开(公告)日:2008-07-08
申请号:KR1020070000497
申请日:2007-01-03
Applicant: 한국기초과학지원연구원
CPC classification number: Y02E30/122 , G21B1/17 , G21B1/057
Abstract: An assembly structure of a superconduction tokamak vacuum vessel is provided to be finished by using a connection member to a predetermined open gap maintained after a vacuum vessel body having a structure divided into a sector 1 and a sector two is coupled. An assembly structure of a superconduction tokamak vacuum vessel includes a vacuum vessel body and a connection member(200). The vacuum vessel is divided into a sector 1 and a sector 2. The vacuum vessel maintains a gap of a predetermined angle after the sector 1 and the sector 2 are coupled to each other. The vacuum vessel body is installed by sequentially inserting Toroidal magnetic structures into the gap. The connection member finishes the vacuum vessel by being coupled to the gap. The connection member is welded to inside and outside by being divided into a plurality.
Abstract translation: 提供了一种超导托卡马克真空容器的组装结构,通过在具有划分为扇区1和扇区2的结构的真空容器主体联接之后,将连接构件连接到保持的预定开口间隙来完成。 超导托卡马真空容器的组装结构包括真空容器主体和连接构件(200)。 真空容器被分为扇区1和扇区2.真空容器在扇区1和扇区2彼此耦合之后保持预定角度的间隙。 通过将环形磁性结构顺序地插入到间隙中来安装真空容器体。 连接构件通过联接到间隙而完成真空容器。 连接构件被分割成多个内部和外部。
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公开(公告)号:KR100826589B1
公开(公告)日:2008-04-30
申请号:KR1020060122483
申请日:2006-12-05
Applicant: 한국기초과학지원연구원
Abstract: A welding deformation control method of a Tokamak vacuum vessel is provided to prevent the determined assembling angles from changing by measuring and confirming welding deformation in real-time and reflecting welding conditions during a succeeding welding operation when welding and thus assembling the sectors to determined assembling angles at the installation position after dividing a vacuum vessel into sectors one and two and transporting the sectors to an installation position. In a welding deformation control method of a Tokamak vacuum vessel, in which the sectors are assembled to determined assembling angles at the installation position after dividing a vacuum vessel into sectors one and two and transporting the sectors to an installation position, the welding deformation control method comprises: a welding pre-treatment and preparation step(S10) of fixing the sectors one and two while reversely deforming the sectors one and two before welding as much as a deformation amount to be generated on the sectors one and two after welding of the sectors one and two, and preparing to observe deformation of the sectors one and two during welding; a welding condition changing step(S20) of feedbacking the observed deformation after welding respective portions to be welded to change welding conditions; a structure welding step(S30) of welding the portions to be welded of the sectors one and two; a welding deformation measuring and welding amount calculating and feedbacking step(S40) of measuring welding deformation generated after welding one portion to be welded to predict welding deformation that can be generated in a succeeding portion to be welded, and checking the welding amount, thereby calculating an estimated welding amount by the final welding to feedback the calculated estimated welding amount; and a welding finishing step(S50) of performing a final dimension inspection and finishing welding of the vacuum vessel at the same time.
Abstract translation: 提供了一种托卡马克真空容器的焊接变形控制方法,用于通过在焊接期间实时测量和确认焊接过程中的焊接变形以及焊接过程中的反映焊接条件,从而防止所确定的组装角度,从而将扇区组装到确定的组装角度 在将真空容器分成第一和第二部分并将扇区运送到安装位置之后的安装位置。 在托卡马克真空容器的焊接变形控制方法中,在将真空容器分割成扇区1和2并将扇区运送到安装位置之后,其中扇区被组装成在安装位置确定组装角度,焊接变形控制方法 包括:焊接预处理和准备步骤(S10),其在焊接之前对扇区1和2进行反向变形,同时在扇区1和2之间产生多少变形量,焊接后的扇区 一,二,准备在焊接过程中观察一个和两个扇区的变形; 焊接条件改变步骤(S20),用于在焊接各待焊接部分之后反馈观察到的变形以改变焊接条件; 焊接部分1和2的待焊接部分的结构焊接步骤(S30); 焊接变形测量和焊接量计算和反馈步骤(S40),用于测量焊接一个待焊接部分之后产生的焊接变形,以预测在待焊接的后续部分中可能产生的焊接变形,并且检查焊接量,由此计算 通过最终焊接的估计焊接量来反馈计算出的估计焊接量; 以及同时执行真空容器的最终尺寸检查和整理焊接的焊接精加工步骤(S50)。
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