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    • 3. 发明授权
    • Tape-shaped oxide superconductor
    • 带状氧化物超导体
    • US08431515B2
    • 2013-04-30
    • US12601992
    • 2008-05-07
    • Yasuo TakahashiTsutomu KoizumiYuji AokiAtsushi KanekoTakayo Hasegawa
    • Yasuo TakahashiTsutomu KoizumiYuji AokiAtsushi KanekoTakayo Hasegawa
    • H01L39/24
    • H01L39/2461
    • A tape-shaped oxide superconductor includes a 15 to 100 nm-thick Ce—Gd—O-based oxide layer (Ce:Gd=40:60 to 70:30 molar ratio) and a 100 nm-thick Ce—Zr—O-based oxide layer (Ce:Zr=50:50 molar ratio) as first and second intermediate layers are formed by MOD on an Ni-base alloy substrate having a half value width (FWHM:Δφ) of 6.5 degrees. A 150 nm-thick CeO2 oxide layer as a third intermediate layer is formed on the second intermediate layer by RF sputtering. A 1 μm-thick YBCO superconducting layer is formed by TFA-MOD on the three-layer structure. In the tape-shaped oxide superconductor, the Δφ values of the first to third intermediate layers are (6.0 to 6.5) degrees, (6.0 to 6.6) degrees, and (6.0 to 6.6) degrees, respectively, and the Jc value of the YBCO superconducting layer in liquid nitrogen is 1.8 to 2.2 MA/cm2.
    • 带状氧化物超导体包括15至100nm厚的Ce-Gd-O基氧化物层(Ce:Gd = 40:60至70:30摩尔比)和100nm厚的Ce-Zr-O- 通过MOD在具有6.5度的半值宽度(FWHM:Deltaphi)的Ni基合金基材上由MOD形成作为第一和第二中间层的基于氧化物的氧化物层(Ce:Zr = 50:50的摩尔比)。 通过RF溅射在第二中间层上形成作为第三中间层的150nm厚的CeO 2氧化物层。 1层厚YBCO超导层由三层结构上的TFA-MOD形成。 在带状氧化物超导体中,第一至第三中间层的Deltaphi值分别为(6.0〜6.5)度,(6.0〜6.6)度,(6.0〜6.6)度,YBCO的Jc值 液氮中的超导层为1.8〜2.2MA / cm 2。
    • 5. 发明申请
    • TAPE-SHAPED OXIDE SUPERCONDUCTOR
    • 胶带形氧化超导体
    • US20100197506A1
    • 2010-08-05
    • US12601992
    • 2008-05-07
    • Yasuo TakahashiTsutomu KoizumiYuji AokiAtsushi KanekoTakayo Hasegawa
    • Yasuo TakahashiTsutomu KoizumiYuji AokiAtsushi KanekoTakayo Hasegawa
    • H01B12/02H01B12/00
    • H01L39/2461
    • This invention provides a tape-shaped oxide superconductor which can prevent the diffusion of elements constituting a metallic substrate into a superconducting layer and cracking of an intermediate layer and improve the orientation of the superconducting layer. A 15 to 100 nm-thick Ce—Gd—O-based oxide layer (2) (Ce:Gd=40:60 to 70:30 molar ratio) as a first intermediate layer and a 100 nm-thick Ce—Zr—O-based oxide layer (3) (Ce:Zr=50:50 molar ratio) as a second intermediate layer are formed by an MOD method on an Ni-base alloy substrate (1) having a half value width (FMHW: Δφ) of 6.5 degrees. A 150 nm-thick CeO2 oxide layer (4) as a third intermediate layer is further formed on the second intermediate layer by an RF sputtering method. A 1 μm-thick YBCO superconducting layer (5) is formed by a TFA-MOD method on the intermediate layer having a three-layer structure. In the tape-shaped oxide superconductor, the Δφ values of the first to third intermediate layers are (6.0 to 6.5) degrees, (6.0 to 6.6) degrees, and (6.0 to 6.6) degrees, respectively, and the Jc value of the YBCO superconducting layer (5) in liquid nitrogen is 1.8 to 2.2 MA/cm2.
    • 本发明提供一种带状氧化物超导体,其可以防止构成金属基板的元件扩散到超导层中,并且中间层的开裂和改善超导层的取向。 作为第一中间层的15〜100nm厚的Ce-Gd-O系氧化物层(2)(Ce:Gd = 40:60〜70:30摩尔比)和100nm厚的Ce-Zr-O 在具有半值宽度的Ni基合金基板(1)上通过MOD法形成作为第二中间层的基于氧化物的氧化物层(3)(Ce:Zr = 50:50的摩尔比)(FMHW:&Dgr;&phgr ;)6.5度。 通过RF溅射法在第二中间层上进一步形成作为第三中间层的150nm厚的CeO 2氧化物层(4)。 通过TFA-MOD法在具有三层结构的中间层上形成1μm厚的YBCO超导层(5)。 在带状氧化物超导体中,&Dgr& 第一至第三中间层的值分别为(6.0〜6.5)度,(6.0〜6.6)度,(6.0〜6.6)度,液氮中YBCO超导层(5)的Jc值为1.8 至2.2MA / cm 2。
    • 7. 发明授权
    • Heat treatment apparatus for oxide superconducting wire
    • 氧化物超导线材热处理装置
    • US08062028B2
    • 2011-11-22
    • US12087311
    • 2007-01-10
    • Takayo HasegawaTsutomu Koizumi
    • Takayo HasegawaTsutomu Koizumi
    • A21B1/22
    • H01B13/0016F27B5/04H01L39/2451
    • This invention provides a heat treatment apparatus for an oxide superconducting wire that is easy to control atmosphere during baking and can realize a high manufacturing speed. A heat treatment apparatus (1) comprises a heat treating furnace (4) and a cylindrical rotator (5), rotatable about a horizontal rotating axis, provided within the heat treating furnace (4). The rotator (5) in its cylindrical body (5a) have a number of through-holes (5b) formed evenly over the whole surface of the cylindrical body (5a). One end of the cylindrical body (5a) is hermetically sealed by a lid. On the other end, a gas discharge pipe (7) for discharging gas within the cylindrical body to the outside of the heat treating furnace (4) is connected to the lid. A plurality of gas supply pipes (8) are symmetrically provided separately from each other on the outer surface of the cylindrical body (5a). A number of gas jet holes are formed in each of the gas supply pipe (8) so as to jet atmosphere gas toward the surface of the cylindrical body. A tape-shaped wire (6) formed of a precursor film of a YBCO superconducting layer is wound around the rotator (5) for heat treatment for superconductor formation.
    • 本发明提供一种氧化物超导线材的热处理装置,其在烘烤时易于控制气氛,能够实现高的制造速度。 热处理设备(1)包括设置在热处理炉(4)内的可绕水平旋转轴线旋转的热处理炉(4)和圆筒形旋转器(5)。 其圆筒体(5a)中的旋转体(5)具有在圆筒体(5a)的整个表面上均匀地形成的多个通孔(5b)。 圆筒体(5a)的一端被盖子气密地密封。 另一方面,将用于将筒体内的气体排出到热处理炉(4)的外部的气体排出管(7)与盖连接。 多个气体供给管(8)在圆筒体(5a)的外表面上彼此分开对称设置。 在每个气体供给管(8)中形成有多个气体喷射孔,以朝向圆柱体的表面喷射气氛气体。 由YBCO超导层的前体膜形成的带状线(6)缠绕在转子(5)上,用于超导体形成的热处理。
    • 8. 发明申请
    • Heat Treatment Apparatus for Oxide Superconducting Wire
    • 氧化物超导线热处理装置
    • US20100282244A1
    • 2010-11-11
    • US12087311
    • 2007-01-10
    • Takayo HasegawaTsutomu Koizumi
    • Takayo HasegawaTsutomu Koizumi
    • F24C3/00
    • H01B13/0016F27B5/04H01L39/2451
    • This invention provides a heat treatment apparatus for an oxide superconducting wire that is easy to control atmosphere during baking and can realize a high manufacturing speed. A heat treatment apparatus (1) comprises a heat treating furnace (4) and a cylindrical rotator (5), rotatable about a horizontal rotating axis, provided within the heat treating furnace (4). The rotator (5) in its cylindrical body (5a) have a number of through-holes (5b) formed evenly over the whole surface of the cylindrical body (5a). One end of the cylindrical body (5a) is hermetically sealed by a lid. On the other end, a gas discharge pipe (7) for discharging gas within the cylindrical body to the outside of the heat treating furnace (4) is connected to the lid. A plurality of gas supply pipes (8) are symmetrically provided separately from each other on the outer surface of the cylindrical body (5a). A number of gas jet holes are formed in each of the gas supply pipe (8) so as to jet atmosphere gas toward the surface of the cylindrical body. A tape-shaped wire (6) formed of a precursor film of a YBCO superconducting layer is wound around the rotator (5) for heat treatment for superconductor formation.
    • 本发明提供一种氧化物超导线材的热处理装置,其在烘烤时易于控制气氛,能够实现高的制造速度。 热处理设备(1)包括设置在热处理炉(4)内的可绕水平旋转轴线旋转的热处理炉(4)和圆筒形旋转器(5)。 其圆筒体(5a)中的旋转体(5)具有在圆筒体(5a)的整个表面上均匀地形成的多个通孔(5b)。 圆筒体(5a)的一端被盖子气密地密封。 另一方面,将用于将筒体内的气体排出到热处理炉(4)的外部的气体排出管(7)与盖连接。 多个气体供给管(8)在圆筒体(5a)的外表面上彼此分开对称设置。 在每个气体供给管(8)中形成有多个气体喷射孔,以朝向圆柱体的表面喷射气氛气体。 由YBCO超导层的前体膜形成的带状线(6)缠绕在转子(5)上,用于超导体形成的热处理。
    • 9. 发明授权
    • Air bag device
    • 气囊装置
    • US07690678B2
    • 2010-04-06
    • US11989371
    • 2006-07-24
    • Keiichiro FujitaTsutomu KoizumiTakayuki Hisajima
    • Keiichiro FujitaTsutomu KoizumiTakayuki Hisajima
    • B60R21/16
    • B60R21/2037
    • A floating type air bag device able to prevent backlash of a module cover and easily position the module cover with respect to a steering wheel without dispersion and a sacrifice of an operation feeling of horn sounding is provided. The air bag device has a retainer (10) to which an inflator and a folded air bag are attached, the retainer (10) being fixed to a steering wheel armature (60) and having a plurality of hooks (13) formed in a side wall portion thereof (12); a module cover (20) in which the module cover covers the air bag and the hook (13) is engaged with an opening (22b) of a leg piece portion (22) projected from a rear side and the module cover (20) can be vertically moved with respect to the retainer (10); a horn plate (30) attached along a circumferential edge of the module cover (20); a contact plate (40) attached to an extending-out portion (11) of the retainer (10) or the horn plate (30); and a horn spring (50) arranged between the horn plate (30) and the retainer (10); wherein a first position regulation section (pin) (11d) of the retainer (10) to the steering wheel (60) is received by a resin coating portion (62) of the steering wheel armature, and is placed below a second position regulation section (C) formed by the opening (21a) of the leg piece portion (21) of the module cover (20) and a pawl (11c) extended in the retainer (10).
    • 一种浮动式气囊装置,其能够防止模块盖的间隙,并且容易地相对于方向盘定位模块盖,而不会产生分散,并且牺牲了喇叭声的操作感觉。 安全气囊装置具有安装有充气机和折叠气囊的保持器(10),保持器(10)固定在方向盘电枢(60)上并且具有形成在侧面的多个钩(13) 其壁部分(12); 模块盖(20),其中模块盖覆盖气囊并且钩(13)与从后侧突出的腿部部分(22)的开口(22b)和模块盖(20)接合 相对于保持器(10)垂直移动; 沿着模块盖(20)的周向边缘附接的喇叭板(30); 附接到所述保持器(10)或喇叭板(30)的延伸部分(11)的接触板(40); 以及喇叭弹簧(50),布置在喇叭板(30)和保持器(10)之间; 其中,所述保持器(10)到所述方向盘(60)的第一位置调节部(销)(11d)被所述方向盘电枢的树脂涂覆部分(62)接收,并且被放置在所述第二位置调节部 (20)的腿部(21)的开口(21a)和延伸在保持器(10)中的棘爪(11c)形成。