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    • 31. 发明专利
    • Phosphor for el
    • 磷酸盐
    • JP2007063301A
    • 2007-03-15
    • JP2005247133
    • 2005-08-29
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • KAWAI CHIHIROINOUE RYUICHI
    • C09K11/08C09K11/00C09K11/56H05B33/14
    • PROBLEM TO BE SOLVED: To provide a phosphor for EL continually emitting light of the EL in a short wavelength region at high intensity and to provide the phosphor for the EL emitting the EL even when using Ag-doped phosphor powder without originally emitting the EL. SOLUTION: The phosphor for the EL comprises the phosphor powder, electroconductive particles formed on a part of the surface of the phosphor powder and an insulating layer covering the phosphor powder and the electroconductive particles. The principal component of the phosphor powder preferably especially contains a composition of general formula Zn (1-x) A x S:Ag, D or Zn (1-x) A x S:Cu,D äwherein, A is at lease one kind of group 2A element selected from the group of Be, Mg, Ca, Sr and Ba; D is at least one kind selected from a group 3B element or a group 7B element; and the mixing ratio x thereof is 0≤x COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供EL在高强度下在短波长区域连续发射EL的荧光体,并且即使当使用Ag掺杂的荧光体粉末而不发射时也提供用于发射EL的EL的荧光体 EL。 解决方案:用于EL的磷光体包括荧光体粉末,形成在荧光体粉末表面的一部分上的导电颗粒和覆盖荧光体粉末和导电颗粒的绝缘层。 荧光体粉末的主要成分优选特别含有通式Zn(SB)(1-x),S,Ag,D或Zn(1- x)S:Cu,D,其中A是选自Be,Mg,Ca,Sr和Ba组中的至少一种2A族元素; D是选自3B族元素或7B族元素中的至少一种; 其混合比x为0≤x<1。 版权所有(C)2007,JPO&INPIT
    • 32. 发明专利
    • マグネシウム合金成形体、マグネシウム合金板、マグネシウム合金成形体の製造方法、及びマグネシウム合金板の製造方法
    • 镁合金成型,镁合金板,制造镁合金成型的方法及制造镁合金板的方法
    • JP2015034350A
    • 2015-02-19
    • JP2014216651
    • 2014-10-23
    • 住友電気工業株式会社Sumitomo Electric Ind Ltd
    • OISHI YUKIHIROKAWABE NOZOMIOKUDA NOBUYUKIMORI NOBUYUKINUMANO MASASADAMORI KOJIKITAMURA TAKAHIKOINOUE RYUICHI
    • C22C23/02B21B3/00C22F1/06
    • C22C23/02C22F1/06
    • 【課題】耐衝撃特性に優れるマグネシウム合金成形体、この成形体の素材に適したマグネシウム合金板、マグネシウム合金成形体の製造方法、マグネシウム合金板の製造方法を提供する。【解決手段】マグネシウム合金からなる板をプレス成形したマグネシウム合金成形体であって、前記マグネシウム合金は、Alを7質量%以上12質量%以下含有し、前記成形体は、絞り変形を伴わない平坦な部分を有しており、前記平坦な部分を板厚方向に切断した断面の金属組織において、平坦な部分の表面から板厚方向に板厚の1/3までの領域を表層領域とし、前記表層領域の任意の2箇所から選択した100μm?100μmの領域を観察視野とし、Al及びMgを含む金属間化合物の粒子であって、粒子径が5μm以上である粒子を粗大粒子とするとき、前記各観察視野内に存在する前記粗大粒子が5個以下であることを特徴とするマグネシウム合金成形体。【選択図】図1
    • 要解决的问题:为了提供耐冲击特性优异的镁合金成型剂,适合作为成型材料的镁合金板,镁合金成型体的制造方法以及镁合金板的制造方法。 通过对由镁合金构成的片材进行加压成型而形成镁合金成形体,镁合金含有7-12质量%的Al。 模制件具有没有拉伸变形的平坦部分。 在沿板厚方向切割的平坦部分的横截面的金属结构中,从平坦部分的表面到板厚度方向上的板厚度的1/3的区域为 表面层区域,从作为观察视野的表层区域的两个任意部分中选择的100μm×100μm100μm区域和具有5μm以上的粒径为5μm以上的粒径为5μm以上的Al和Mg的金属间化合物的粒子, 每个观察视野中存在的粗粒子数为5个以下。
    • 33. 发明专利
    • プレス体
    • 新闻稿
    • JP2014221493A
    • 2014-11-27
    • JP2014177950
    • 2014-09-02
    • 住友電気工業株式会社Sumitomo Electric Ind Ltd
    • INOUE RYUICHIKAWABE NOZOMIOISHI YUKIHIROOKUDA NOBUYUKIMORI NOBUYUKINUMANO MASASADAKITAMURA TAKAHIKOMORI KOJI
    • B21D51/18B21D22/20B21D22/30
    • 【課題】鋭利な角部を有するプレス体を提供する。【解決手段】プレス体Fは、金属板1をプレス成形してなり、天板部20と、天板部10から立設される側壁部21とを具える箱体である。天板部20の外側面20oと側壁部21の外側面21oとを繋ぐ角部22の外側曲げ半径Rが金属板1の厚さt以下である。プレス体Fは、多段の温間プレス加工により形成することができる。第一のプレス加工では、肩部の曲げ半径Rpが実質的に0mmのパンチ53を用いて、角部12の内側曲げ半径r0が実質的に0mmであるプレス材Pを形成する。第二のプレス加工では、プレス材Pの側壁部11の端面11eとプレス材Pの内角部12iとを押圧する段差パンチ55を用いて、R≦̸tの角部22を有するプレス体Fを形成する。【選択図】図1
    • 要解决的问题:提供一种具有尖锐拐角部分的压制体。解决方案:压制体F是通过压制成形金属板1形成的箱体,包括顶板部分20和侧壁部分 连接顶板部20的外表面20o和侧壁部21的外表面21o的角部22的外侧弯曲半径R彼此等于或小于 金属板1的厚度(t)。压制体F可以通过多级热压加工形成。 在第一次加压时,通过使用角部12的内侧弯曲半径rof大致为0毫米的冲头53,形成压头材料P,使得角部12的内侧弯曲半径rof基本为0毫米。 在第二次冲压加工中,通过使用阶梯冲头55将压制材料P的侧壁部11的端面11e和压制材料P的侧壁部11的内侧角部12i 新闻材料P.
    • 34. 发明专利
    • Magnesium alloy coil material, and method for manufacturing magnesium alloy coil material
    • 镁合金线圈材料及制造镁合金线圈材料的方法
    • JP2013237079A
    • 2013-11-28
    • JP2012111780
    • 2012-05-15
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • INOUE RYUICHIOISHI YUKIHIROMORI NOBUYUKIKITAMURA TAKAHIKOKAWABE NOZOMIITO YUTA
    • B21B3/00B21B28/04B21B39/00B21B39/08B21B45/00B21B45/02B21C47/26B21C47/34B21C51/00C22C23/02C22C23/06C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy coil material having excellent surface texture, and a method for manufacturing the magnesium alloy coil material.SOLUTION: A magnesium alloy is rolled, and an obtained rolled plate (plate material 1) is coiled to manufacture a magnesium alloy coil material in which the plate material 1 is spirally coiled. A work roll (such as a pinch roll 13), which is brought into contact with the plate material 1 that has been subjected to a rolling mill 10 to execute a predetermined action, is present between rolling rolls 10u, 10d and a reel 17. Rolling scraps deposited on a surface of the work roll (the proximal work roll) arranged at the position closest to the rolling rolls 10u, 10d are removed by a roll side removing member 20 or the like. In the obtained magnesium alloy coil material, the amount of existent indentations with the maximum diameter thereof being ≥0.5 mm is ≤5 pieces/m. Removing of rolling scraps deposited on the proximal work roll prevents generation of large indentations which is caused by the rolling scraps pressed against the plate material 1 by the proximal work roll or the like.
    • 要解决的问题:提供具有优异表面纹理的镁合金线圈材料和制造镁合金线圈材料的方法。解决方案:轧制镁合金,将所得的轧制板(板材1)卷成制造 一种镁合金线圈材料,其中板材1螺旋卷绕。 在轧辊10u,10d和卷轴17之间存在与经过轧机10的板材1接触以执行预定动作的工作辊(例如夹送辊13)。 通过辊侧除去部件20等,将布置在最靠近轧辊10u,10d的位置的工作辊(近端工作辊)的表面上沉积的轧制废料除去。 在获得的镁合金线圈材料中,最大直径≥0.5mm的现有压痕量≤5个/ m。 去除沉积在近端工作辊上的轧制废料防止由通过近端工作辊等压在板材1上的轧制废料产生大的压痕。
    • 35. 发明专利
    • Method for manufacturing metal coil material and metal coil material
    • 制造金属线圈材料和金属线圈材料的方法
    • JP2013170299A
    • 2013-09-02
    • JP2012035321
    • 2012-02-21
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MORI NOBUYUKIKITAMURA TAKAHIKOINOUE RYUICHIOISHI YUKIHIRO
    • C22F1/06C22C23/00C22C23/02C22C23/04C22C23/06C22F1/00
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a metal coil material capable of manufacturing a metal coil material excellent in flatness with high productivity, and a metal coil material suitable for a raw material of the metal coil material excellent in flatness.SOLUTION: A rolled coil material is produced by warm-winding a rolled plate warm-rolled in a coil shape, and a heat treatment is applied to the rolled coil material at a temperature higher than a rolling temperature at the warm-rolling. By applying the warm-rolling, even a metal inferior in plastic workability at a low temperature such as a magnesium alloy can be worked in a thin sheet and further easily wound up. By making a metal coil material wound up in a coil shape a heat treating object, whole thereof can be hold in a uniform temperature environment, and a temperature control becomes easy. The coil material after the heat treatment can be sufficiently and uniformly expanded and straightened even in a low temperature of lower than 100°C since removal of processing strain and recrystallization are carried out. Therefore, the metal coil material excellent in flatness can be manufactured with high productivity.
    • 要解决的问题:提供一种制造能够以高生产率制造平面度优异的金属线圈材料的金属线圈材料的制造方法,以及适用于平坦度优异的金属线圈材料的原料的金属线圈材料。解决方案: 轧制卷材是通过将卷绕成卷状的轧制板进行热卷绕而制成的,在轧制温度高于轧制温度的温度下对轧制卷材进行热处理。 通过施加温轧,即使在低温下塑性加工性差的金属如镁合金也可以在薄片中加工并进一步容易地卷起。 通过使卷绕成线圈状的金属线圈材料成为热处理物体,其整体可以保持在均匀的温度环境中,并且温度控制变得容易。 即使在低于100℃的低温下,热处理后的线圈材料也可以充分均匀地膨胀和矫直,因为进行了加工应变的去除和再结晶。 因此,能够以高生产率制造平坦度优异的金属线圈材料。
    • 36. 发明专利
    • Magnesium alloy coil material, and method for producing the same
    • 镁合金线圈材料及其制造方法
    • JP2012025982A
    • 2012-02-09
    • JP2010163375
    • 2010-07-20
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • UCHIHARA TAKESHIINOUE RYUICHIOISHI YUKIHIROKAWABE NOZOMI
    • C22C23/02C22C23/00C22C23/04C22C23/06C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy coil material having a substantially homogeneous metal structure over the full length of the coil material.SOLUTION: In this magnesium alloy coil material 2 formed by winding a lengthy material comprising a magnesium alloy, the average grain size of 100 or more continuous crystal grains of the magnesium alloy is 20-80 μm. The magnesium alloy coil material 2 is produced by a production method including: a heating step of heating in a heat treatment furnace, at least one coil material formed by winding the lengthy material comprising the magnesium alloy; and a cooling step of dipping the coil material passing through the heating process into a coolant stored in a coolant tank to cool it. In the heating step, the atmosphere is stirred by a soaking unit having a convection unit for convecting the atmosphere in the heat treatment furnace, to thereby heat substantially uniformly all the coil materials in the heat treatment furnace.
    • 要解决的问题:提供一种在线圈材料的整个长度上具有基本均匀的金属结构的镁合金线圈材料。 解决方案:在通过缠绕长时间包含镁合金的材料形成的镁合金线圈材料2中,镁合金的100个以上的连续晶粒的平均粒径为20〜80μm。 镁合金线圈材料2通过以下的制造方法制造:包括:加热步骤,在热处理炉中加热,通过卷绕长时间包含镁合金的材料形成的至少一个线圈材料; 以及将通过加热过程的线圈材料浸入储存在冷却剂箱中的冷却剂以冷却其的冷却步骤。 在加热步骤中,通过具有对流单元的浸泡单元搅拌气氛,以使热处理炉中的气氛对流,从而大致均匀地加热热处理炉中的所有卷材。 版权所有(C)2012,JPO&INPIT
    • 37. 发明专利
    • Magnesium alloy plate, method of manufacturing the same, and mold
    • 镁合金板,其制造方法和模具
    • JP2012024785A
    • 2012-02-09
    • JP2010163372
    • 2010-07-20
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MORI KOJIINOUE RYUICHI
    • B21D28/02B21B3/00B22D11/00C22C23/02C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy plate which has a large shear plane in a cut surface thereof with minimized tearing, a method of manufacturing the same, and a mold.SOLUTION: The magnesium alloy plate 11 is a plate of magnesium alloy which is subjected to cut process, including a shear plane 11s formed from the main surface side to the middle in the thickness direction in a cut surface 11c, and a fracture surface 11b formed to be inclined from the middle in the thickness direction to the reverse surface side by tearing the plate 11. The length of the shear plane 11s in the thickness direction of the plate 11 is 0.3 mm or more, and the distance from a virtual plane obtained by extending the shear plane 11c to the reverse surface side of the plate 11 to a boundary between the fracture surface 11b and the reverse surface of the plate 11 is 0.1 mm or less.
    • 要解决的问题:提供一种在其切割表面具有大剪切平面的镁合金板,其撕裂最小化,其制造方法和模具。 解决方案:镁合金板11是经过切割加工的镁合金板,包括在切割表面11c中从主表面侧至厚度方向中间形成的剪切平面11s,以及断裂 表面11b通过撕裂板11而形成为从厚度方向的中间向背面侧倾斜。板11的厚度方向上的剪切面11s的长度为0.3mm以上,距离 通过将剪切面11c延伸到板11的反面侧到断裂面11b与板11的背面之间的边界而获得的虚拟平面为0.1mm以下。 版权所有(C)2012,JPO&INPIT
    • 38. 发明专利
    • Method for production of magnesium alloy coil material
    • 生产镁合金线圈材料的方法
    • JP2012006070A
    • 2012-01-12
    • JP2010146962
    • 2010-06-28
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • INOUE RYUICHIOISHI YUKIHIROOKUDA NOBUYUKIKAWABE NOZOMI
    • B21B3/00B21B1/22B21B45/00B21C47/26
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy coil material which is a coil material taking up a long rolled sheet comprising a magnesium alloy and has less thickness variation throughout the length thereof, to provide a method for production thereof, and to provide a device for producing the magnesium alloy coil material, and a magnesium alloy sheet.SOLUTION: A stock coil material arranged on a delivery drum 17 is wound off, and is compartmentalized into a product region 1 and the narrow strips 2 by cutting in both edges of a material sheet 100 using the cutters 12. The product region 1 and narrow strips 2 are introduced between rolling rolls 11 in such a state that the strips 2 are taken along on both sides of the region 1, and are subjected to warm rolling. The rolled product region 1 (rolled sheet) and strips 2 are simultaneously taken up by a winding drum 18, thus obtaining the magnesium alloy coil material comprising a long wound rolled sheet. Since the narrow strip 2 functions as a material for controlling extension of the product region 1 toward its width direction and a heat insulator, crack in the edge of the rolled sheet can be suppressed.
    • 要解决的问题:提供一种镁合金线圈材料,其是卷绕包含镁合金的长轧板材并且在整个长度上具有较小厚度变化的卷材,以提供其生产方法,以及 提供一种镁合金线圈材料的制造装置和镁合金板。 解决方案:布置在输送滚筒17上的储料卷材被卷绕,并且通过使用切割器12在材料片100的两个边缘上切割而被分隔成产品区域1和窄条带2.产品区域 在条带2沿着区域1的两侧截取的状态下,在轧辊11之间引入窄条2和窄条2,并进行暖轧。 轧制产品区域1(轧制板材)和条带2同时被卷取辊18卷取,从而获得包括长卷绕卷材的镁合金卷材。 由于窄带2用作用于控制产品区域1向其宽度方向延伸的材料和绝热材料,因此可以抑制轧制板材边缘的裂纹。 版权所有(C)2012,JPO&INPIT
    • 39. 发明专利
    • Method of polishing magnesium alloy plate, and magnesium alloy plate
    • 抛光镁合金板和镁合金板的方法
    • JP2011177822A
    • 2011-09-15
    • JP2010043590
    • 2010-02-26
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • INOUE RYUICHINAGAYAMA NAOKIMIZUNO OSAMU
    • B24B7/13B24B21/04B24B55/02
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy plate polishing method in which any polish burn is hardly formed on a surface of a magnesium alloy plate, and any stripe pattern is less conspicuous when the surface of the magnesium alloy plate is subjected to the wet polishing to be smooth, and a magnesium alloy plate produced by the polishing method.
      SOLUTION: The magnesium alloy plate polishing method includes a polishing step of polishing the surface of the conveyed magnesium alloy plate P by means of a polishing belt 1A (polishing material) while using a polishing liquid 13. In this step, the polishing liquid 13 is sprayed on the magnesium alloy plate P without being sprayed locally in the width direction of the polishing belt 1A. Thus, the polishing liquid 13 is uniformly and entirely spread in the width direction of the surface of the magnesium alloy plate P, and it is possible to mitigate occurrence of localized differences in the wet condition of the polishing liquid 13 in the width direction of the magnesium alloy plate P.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种在镁合金板的表面上难以形成任何抛光烧伤的镁合金板材抛光方法,当镁合金板的表面经受时,任何条纹图案都不明显 使湿法抛光光滑,并通过抛光方法制造镁合金板。 解决方案:镁合金板材抛光方法包括在使用研磨液13的同时通过研磨带1A(研磨材料)对所输送的镁合金板P的表面进行研磨的研磨工序。在该工序中, 液体13喷射在镁合金板P上,而不会在研磨带1A的宽度方向局部喷涂。 因此,抛光液13在镁合金板P的表面的宽度方向上均匀地且均匀地扩展,并且可以减轻研磨液13的湿度状态在宽度方向上的局部差异 镁合金板P.版权所有(C)2011,JPO&INPIT