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    • 1. 发明授权
    • Electrolytic capacitor with open circuit mode mechanism
    • 电解电容器具有开路模式机制
    • US6064563A
    • 2000-05-16
    • US066345
    • 1999-01-22
    • Morihiro YamadaHiroshi KurimotoMasaharu Minami
    • Morihiro YamadaHiroshi KurimotoMasaharu Minami
    • H01G9/008H01G9/00H01G9/12H01G9/10
    • H01G9/0003H01G9/12
    • An electrolytic capacitor (K1-K3) with an open circuit mode mechanism, comprises: a metallic casing (32; 52; 62) for accommodating a capacitor element (31; 51; 61); an upper lid (33; 53; 63) which is mounted on a mouth of the metallic casing; a pair of metallic rivets (35; 54; 65) which are secured to the upper lid; a pair of external connection terminals (39; 55; 70) each of which is connected to one end portion of each of the metallic rivets; and a fixing member (40; 56; 71) which is molded by resin and is formed with a pair of through-holes (41; 57; 72) each for passing the other end portion of each of the metallic rivets therethrough such that the other end of each of the metallic rivets projecting out of the fixing member is connected, by metallic junction, to each of a pair of lead-out lead plates (42; 58; 73) drawn from the capacitor element. In case pressure in the metallic casing rises due to a malfunction of the electrolytic capacitor, the upper lid is deformed by this rise of the pressure, so that the metallic rivets are lifted in a direction away from the capacitor element upon this deformation of the upper lid and thus, the metallic junction between the other end of each of the metallic rivets and each of the lead-out lead plates is cut off, thereby resulting in break of an electric circuit of the electrolytic capacitor.
    • PCT No.PCT / JP96 / 03093 Sec。 371日期1999年1月22日 102(e)1999年1月22日PCT PCT 1996年10月24日PCT公布。 公开号WO97 / 16837 日期1997年5月9日具有开路模式机构的电解电容器(K1-K3)包括:用于容纳电容器元件(31; 51; 61)的金属壳体(32; 52; 62) 安装在金属壳体的口部上的上盖(33; 53; 63) 一对固定在上盖上的金属铆钉(35; 54; 65) 一对外部连接端子(39; 55; 70),每个外部连接端子连接到每个金属铆钉的一个端部; 以及固定部件(40; 56; 71),其通过树脂模制并且形成有一对通孔(41; 57; 72),每个通孔使每个金属铆钉的另一端部穿过其中,使得 从固定构件突出的每个金属铆钉的另一端通过金属结连接到从电容器元件拉出的一对引出引出板(42; 58; 73)中的每一个上。 如果由于电解电容器的故障而使金属外壳中的压力升高,则上盖由于压力的上升而变形,使得金属铆钉在上部变形时沿着远离电容器元件的方向被提升 因此,每个金属铆钉的另一端与每个引出引线板之间的金属接合点被切断,从而导致电解电容器的电路断裂。
    • 2. 发明申请
    • SEAL STRUCTURE FOR GAS TURBINE COMBUSTOR
    • 燃气轮机油封密封结构
    • US20090072497A1
    • 2009-03-19
    • US11990769
    • 2006-08-11
    • Nobuhiro KunitakeKuniaki AoyamaMasaharu Minami
    • Nobuhiro KunitakeKuniaki AoyamaMasaharu Minami
    • F16J15/08F02C7/28
    • F16J15/0887F01D9/023F01D11/005F02C7/28F05D2240/57
    • Provided is a seal structure, according to the present invention, for sealing opposite surfaces of flanges between adjacent tail ducts, which can be prevented from being worn or aged deteriorated due to a thermal deformation in a high temperature atmosphere or vibration of a gas turbine combustor, and which can maintain a satisfactory sealing function for a long time. The seal structure is characterized in that recess grooves 24, 25 are formed in opposed surfaces t1, t2 of adjacent flanges 21, 22 at the outlet end of tail ducts, striding between the opposed surfaces, a seal assembly 30 composed of a seal member 31 and a leaf spring 32 is inserted in the recess grooves, the seal member has a pair of continuous beads 31a, 31b which are arranged facing the inner surfaces 24a, 25a, on the combustion gas passage side, of the recess grooves, striding between the opposed surfaces of the flanges within the recess grooves, the leaf spring 32 is arranged so as to be made into contact with the seal member 31 within the recess grooves so that the beads are pressed against the surfaces on the combustion gas passage side by the resilient force of the leaf spring so as to create seal surfaces.
    • 根据本发明,提供一种用于密封相邻尾管之间的法兰相对表面的密封结构,其可以防止由于高温气氛中的热变形或燃气轮机燃烧器的振动而被磨损或老化而劣化 ,长时间保持良好的密封功能。 密封结构的特征在于,凹槽24,25形成在尾管的出口端处的相邻凸缘21,22的相对的表面t1,t2中,跨过相对的表面之间,密封组件30由密封构件31 并且板簧32插入到凹槽中,密封构件具有一对连续的凸缘31a,31b,它们相对于凹槽的燃烧气体通道侧的内表面24a,25a布置, 凸缘在凹槽内相对的表面,片弹簧32被布置成与凹槽内的密封件31接触,使得珠被弹性件压在燃烧气体通道侧的表面上 从而形成密封面。
    • 3. 发明授权
    • Electron beam machining apparatus of the dynamic seal type
    • 动态密封型电子束加工装置
    • US4080526A
    • 1978-03-21
    • US762402
    • 1977-01-26
    • Shiso KiharaHiroshi KonoMasaharu MinamiMasaru Higuchi
    • Shiso KiharaHiroshi KonoMasaharu MinamiMasaru Higuchi
    • H01J37/30B23K15/00B23K15/06H01J37/18H01J37/301H01J37/315B23K9/00
    • H01J37/301H01J37/18
    • Electron beam machining apparatus of the dynamic seal type, characterized by upper and lower fixed plates for fixedly clamping a workpiece therebetween, which plates define upper and lower vacuum chambers; a movable plate disposed on said upper fixed plate so as to be movable in the working direction, said plate defining a movable chamber which communicates with said upper vacuum chamber, said upper and lower vacuum chambers and the movable chamber providing a working chamber of the apparatus; inflatable seal members for said upper and lower vacuum chambers; said upper and lower plates defining auxiliary vacuum chambers located outwardly of and encircling their respective fixed vacuum chambers, an upper wall of said upper vacuum chamber defining an opening in the form of a V-shaped groove which extends in the working direction of V-belt seal, and by a belt seal guide tube mounted on said movable plate and extending in the working direction, to enclose the electron gun, said V-belt fitting into said groove in front of and to the rear of said guide tube, but passing upwardly out of the vacuum chamber and through said guide tube whereby an effective seal is maintained around the electron gun during movement of the movable plate for a machining operation.
    • 动力密封型电子束加工装置,其特征在于用于在其间固定夹紧工件的上固定板和下固定板,该板限定上下真空室; 可动板,其设置在所述上​​固定板上,以在所述工作方向上可移动;所述板限定与所述上真空室连通的可移动室,所述上下真空室和所述可移动室提供所述装置的工作室 ; 用于所述上真空室和下真空室的充气密封件; 所述上板和下板限定了辅助真空室,所述辅助真空室位于它们各自固定的真空室的外面并且环绕它们各自的固定的真空室,所述上部真空室的上壁限定了V形槽的形式的开口,V形槽在V形带的工作方向上延伸 密封,并且通过安装在所述可移动板上并沿着工作方向延伸的带密封引导管将所述电子枪包围,所述V形皮带配件进入所述导管的前面和后面的所述凹槽中,但是向上 离开真空室并通过所述导管,由此在用于机械加工操作的可移动板的移动期间,电子枪周围保持有效的密封。
    • 5. 发明授权
    • Electron beam working apparatus for cylindrical members
    • 用于圆柱形构件的电子束加工装置
    • US4393294A
    • 1983-07-12
    • US223927
    • 1981-01-09
    • Michitsune ShimaSeiichi IidaShiso KiharaMasaharu MinamiToshikazu ShimoyamaGenta TakanoAkira Kato
    • Michitsune ShimaSeiichi IidaShiso KiharaMasaharu MinamiToshikazu ShimoyamaGenta TakanoAkira Kato
    • H01J37/315B23K15/04B23K15/06H01J37/301B23K15/00
    • H01J37/301B23K15/04
    • An electron beam working apparatus for cylindrical workpieces having a circular working line is improved so that a volume of a vacuum chamber to be maintained can be minimized and the vacuum chamber may not contain a contamination source such as a driving motor. In order to achieve the improvements, two disk-shaped partition plates having inflatable annular seal members disposed along their respective outer peripheral surfaces are placed inside the cylindrical workpieces respectively above and below the working line with said seal members pressed against the inner peripheral surfaces of said cylindrical workpieces to form a first vacuum chamber surrounded by said two partition plates and the inner peripheral surfaces of said cylindrical workpieces. Two annular fixed chamber wall members having inflatable annular seal members disposed along their respective inner peripheral surfaces are placed outside the cylindrical workpieces respectively above and below said working line with said seal members pressed against the outer peripheral surface of said cylindrical workpieces and an annular rotary chamber wall member provided with an electron beam gun is rotatably provided around the two annular fixed chamber wall members so that the inner peripheral surface of the former may make slide contact with the outer peripheral surfaces of the latter via seal members to thereby form a second vacuum chamber surrounded by the outer peripheral surfaces of said cylindrical workpieces, said two annular fixed chamber wall members and the inner peripheral surface of said rotary chamber wall member.
    • 具有圆形工作线的圆筒形工件的电子束加工装置得到改进,使得要保持的真空室的体积可以最小化,并且真空室可能不包含诸如驱动电动机的污染源。 为了实现改进,具有沿其相应的外周面设置的可充气环形密封构件的两个盘形隔板分别位于工作线的上下方的圆筒形工件的内部,所述密封构件压靠在所述工作线的内周面上 圆柱形工件形成由所述两个分隔板和所述圆柱形工件的内周表面围绕的第一真空室。 具有沿其各自内周面设置的可充气环形密封构件的两个环形固定室壁构件分别位于所述工作线上方和下方的圆柱形工件的外侧,其中所述密封构件压靠在所述圆柱形工件的外周表面上,并且环形旋转室 设置有电子束枪的壁构件可旋转地设置在两个环形固定室壁构件周围,使得前者的内周面可以通过密封构件与后者的外周表面滑动接触,从而形成第二真空室 由所述圆筒形工件的外周面,所述两个环形固定室壁构件和所述旋转室壁构件的内周面包围。
    • 6. 发明授权
    • Seal structure for gas turbine combustor
    • 燃气轮机燃烧室密封结构
    • US08069673B2
    • 2011-12-06
    • US12767055
    • 2010-04-26
    • Nobuhiro KunitakeKuniaki AoyamaKiyoshi FujimotoMasaharu Minami
    • Nobuhiro KunitakeKuniaki AoyamaKiyoshi FujimotoMasaharu Minami
    • F02C7/20
    • F16J15/0887F01D9/023F01D11/005F02C7/28F05D2240/57
    • Provided is a seal structure, according to the present invention, for sealing opposite surfaces of flanges between adjacent tail ducts, which can be prevented from being worn or aged deteriorated due to a thermal deformation in a high temperature atmosphere or vibration of a gas turbine combustor, and which can maintain a satisfactory sealing function for a long time. The seal structure is characterized in that recess grooves are formed in opposed surfaces of adjacent flanges at the outlet end of tail ducts, striding between the opposed surfaces, a seal assembly composed of a seal member and a leaf spring is inserted in the recess grooves, the seal member has a pair of continuous beads which are arranged facing the inner surfaces, on the combustion gas passage side, of the recess grooves, striding between the opposed surfaces of the flanges within the recess grooves, the leaf spring is arranged so as to be contact with the seal member within the recess grooves so that the beads are pressed against the surfaces on the combustion gas passage side by the resilient force of the leaf spring so as to create seal surfaces.
    • 根据本发明,提供一种用于密封相邻尾管之间的法兰相对表面的密封结构,其可以防止由于高温气氛中的热变形或燃气轮机燃烧器的振动而被磨损或老化而劣化 ,长时间保持良好的密封功能。 密封结构的特征在于,在尾管的出口端的相邻凸缘的相对的表面上形成凹槽,跨过相对的表面之间,由密封件和片簧组成的密封组件插入凹槽中, 所述密封构件具有一对连续的珠,所述一对连续的珠子相对于所述凹槽的燃烧气体通道侧的内表面布置,跨越所述凹槽内的所述凸缘的相对的表面之间,所述板簧布置成 与凹槽内的密封构件接触,使得珠被片簧的弹力压靠在燃烧气体通路侧的表面上,从而形成密封面。
    • 9. 发明授权
    • Magnetic separator and pulverized coal combustion apparatus using the
same
    • 磁选机和粉煤燃烧装置使用它
    • US5873313A
    • 1999-02-23
    • US845348
    • 1997-04-25
    • Masaharu MinamiHiroyuki KatayamaTakuya Kimura
    • Masaharu MinamiHiroyuki KatayamaTakuya Kimura
    • B03C1/26B03C1/0355F23K1/00F23D1/00
    • F23K1/00B03C1/0355F23K2201/30
    • In a vacuum housing (1), an inner duct (17) is disposed. Quadrupole magnets (superconducting coils) (4) is placed around the inner duct (17) is excited by a DC power supply (10). Quadrupole magnets (4) are cooled by liquid helium contained in a helium housing and outer tubes (2, 3) and is brought into a superconducting state. Pulverized coal X is ejected together with air Y from a header (11) through piping (12) and a valve (13) to a baffle plate (14). Pulverized coal is made to fall into the inner duct (3). Paramagnetic materials such as ash are attracted by magnetic force to the tube and are then collected by a collection tube (26). Combustible diamagnetic materials are collected by a combustible collecting tube (18) extending in the central axis. Intermediate materials are collected by an intermediate collection tube (23) and are put back to the head (11) through a bypass tube (25). There are no mechanical parts in the inner duct (3). Consequently, rotation loss and eddy-current heating are prevented.
    • 在真空壳体(1)中设置内部管道(17)。 围绕内部管道(17)放置的四极铁氧体(4)由直流电源(10)激发。 四极磁体(4)由包含在氦壳体和外管(2,3)中的液氦冷却,并进入超导状态。 粉煤X与空气Y一起从集管(11)通过管道(12)和阀(13)一起喷射到挡板(14)。 粉煤被落入内管(3)。 顺磁材料如灰分被磁力吸引到管上,然后由收集管(26)收集。 可燃抗反射材料由在中心轴线延伸的可燃收集管(18)收集。 中间材料由中间收集管(23)收集,并通过旁通管(25)放回头部(11)。 内管(3)中没有机械部件。 因此,防止旋转损失和涡流加热。
    • 10. 发明授权
    • Seal structure for gas turbine combustor
    • 燃气轮机燃烧室密封结构
    • US07788932B2
    • 2010-09-07
    • US11990769
    • 2006-08-11
    • Nobuhiro KunitakeKuniaki AoyamaKiyoshi FujimotoMasaharu Minami
    • Nobuhiro KunitakeKuniaki AoyamaKiyoshi FujimotoMasaharu Minami
    • F02C7/20
    • F16J15/0887F01D9/023F01D11/005F02C7/28F05D2240/57
    • Provided is a seal structure, according to the present invention, for sealing opposite surfaces of flanges between adjacent tail ducts, which can be prevented from being worn or aged deteriorated due to a thermal deformation in a high temperature atmosphere or vibration of a gas turbine combustor, and which can maintain a satisfactory sealing function for a long time. The seal structure is characterized in that recess grooves are formed in opposed surfaces of adjacent flanges at the outlet end of tail ducts, striding between the opposed surfaces, a seal assembly composed of a seal member and a leaf spring is inserted in the recess grooves, the seal member has a pair of continuous beads which are arranged facing the inner surfaces, on the combustion gas passage side, of the recess grooves, striding between the opposed surfaces of the flanges within the recess grooves, the leaf spring is arranged so as to be contact with the seal member within the recess grooves so that the beads are pressed against the surfaces on the combustion gas passage side by the resilient force of the leaf spring so as to create seal surfaces.
    • 根据本发明,提供一种用于密封相邻尾管之间的法兰相对表面的密封结构,其可以防止由于高温气氛中的热变形或燃气轮机燃烧器的振动而被磨损或老化而劣化 ,长时间保持良好的密封功能。 密封结构的特征在于,在尾管的出口端的相邻凸缘的相对的表面上形成凹槽,跨过相对的表面之间,由密封件和片簧组成的密封组件插入凹槽中, 所述密封构件具有一对连续的珠,所述一对连续的珠子相对于所述凹槽的燃烧气体通道侧的内表面布置,跨越所述凹槽内的所述凸缘的相对的表面之间,所述板簧布置成 与凹槽内的密封构件接触,使得珠被片簧的弹力压靠在燃烧气体通路侧的表面上,从而形成密封面。