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    • 41. 发明申请
    • COATED HARD ALLOY
    • 涂层硬质合金
    • WO1996010658A1
    • 1996-04-11
    • PCT/JP1995002016
    • 1995-10-02
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.MORIGUCHI, HidekiIKEGAYA, AkihikoKITAGAWA, NobuyukiUCHINO, Katsuya
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • C23C28/04
    • C23C28/044C23C28/04C23C30/005Y10T407/27Y10T428/12743Y10T428/12771Y10T428/12785Y10T428/24975Y10T428/26Y10T428/265
    • A coated hard alloy for use in making cutting tools excellent in wear and chipping resistances. It is produced by forming a hard coating layer on the surface of a base material such as cemented carbide or cermet. The coating layer is composed of an inner layer (2) formed on the base material (1) and comprising titanium carbide, nitride, carbide-nitride, carbide-oxide, carbide-nitride-oxide or boride-nitride, an intermediate layer (3) formed on the inner layer (2) and comprising Al2O3 or ZrO2, and an outer layer (4) formed on the intermediate layer (3) and comprising titanium carbide, nitride, carbide-nitride, carbide-oxide, carbide-nitride-oxide or boride-nitride. The thickness of the inner layer (2) is 0.1-5 mu m, while the thickness of the intermediate layer (3) is 5-50 mu m in the case of Al2O3 or 0.5-20 mu m in the case of ZrO2, and the thickness of the outer layer (4) is 5-100 mu m.
    • 一种涂层硬质合金,用于制造耐磨损和耐磨损性能优异的切削刀具。 其通过在诸如硬质合金或金属陶瓷等基材的表面上形成硬涂层来制造。 涂层由形成在基材(1)上的内层(2)组成,包括碳化钛,氮化物,碳化氮化物,碳化物 - 氧化物,碳化物 - 氮化物 - 氧化物或硼化物 - 氮化物,中间层(3) ),其形成在所述内层(2)上并且包含Al 2 O 3或ZrO 2以及形成在所述中间层(3)上并且包含碳化钛,氮化物,碳化物 - 氮化物,碳化物 - 氧化物,碳化物 - 氮化物 - 氧化物 或硼化物氮化物。 内层(2)的厚度为0.1-5μm,而在Al2O3的情况下,中间层(3)的厚度为5-50μm,在ZrO 2的情况下为0.5-20μm, 外层(4)的厚度为5〜100μm。
    • 43. 发明申请
    • NONMAGNETIC OR FEEBLE MAGNETISM DIAMOND SINTERED BODY AND METHOD OF MANUFACTURING THE SAME
    • 非磁性或可怕的磁铁钻石烧结体及其制造方法
    • WO1995033862A1
    • 1995-12-14
    • PCT/JP1995001089
    • 1995-06-02
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.WAKABAYASHI, TakayoshiYAMAMURA, Akihiko
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • C22C26/00
    • B01J3/062B01J2203/062B01J2203/0655B01J2203/0685C22C26/00H01F1/0018H01F1/0306
    • This invention aims at providing a nonmagnetic or feeble magnetism diamond sintered body which can be used for a magnetized product and a magnetic material. This object is achieved by a nonmagnetic or feeble magnetism diamond sintered body the magnetic susceptibility of which is not more than 3 % of that of Fe, characterized in that this sintered body comprises a high-hardness sintered body containing not less than 50 vol.% of diamond of a grain size of 0.1-100 mu m, a binder phase of the diamond sintered body having a metal component selected from the group comprising ferromagnetic iron family metals, such as Ni, Co and Fe and a mixture thereof, 1-50 vol.% of binder phase of not less than one kind of feeble magnetism metal component having a magnetic susceptibility of not more than 5x10 (emu/g), such as Cr, V, Cu, Si, Zn, Al, No and W being solid dissolved in the previously-mentioned metal component, whereby the magnetic moment of the diamond sintered body having a binder phase the main components of which are iron family metals is reduced by not less than 80 %.
    • 本发明旨在提供一种可用于磁化产品和磁性材料的非磁性或微弱的磁性金刚石烧结体。 该目的通过磁化率不超过Fe的3%的非磁性或微弱的磁性金刚石烧结体实现,其特征在于该烧结体包括含有不低于50体积%的高硬度烧结体, 的金刚石,粒径为0.1-100μm的金刚石,金刚石烧结体的粘结相,其具有金属成分,所述金属成分选自铁磁性铁族金属如Ni,Co和Fe及其混合物,1-50 不少于1种具有不大于5×10 -6(emu / g)的磁化率的微弱磁性金属组分的结合相的体积%,例如Cr,V,Cu,Si,Zn,Al, No和W固体溶解在上述金属组分中,其中主要成分为铁族金属的粘结相的金刚石烧结体的磁矩降低不小于80%。
    • 44. 发明申请
    • ORGANIC ELECTROLUMINESCENT ELEMENTS
    • 有机电致发光元件
    • WO1995033014A1
    • 1995-12-07
    • PCT/JP1995000289
    • 1995-02-23
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.KIDO, Junji
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • C09K11/06
    • C09K11/06H05B33/14Y02B20/181Y10S428/917
    • A first organic electroluminescent element comprises a hole-transporting luminescent layer (1) containing a dye dispersed therein on a molecular level and an electron-transporting layer (2) containing a triazole derivative represented by general formula (1). A second element is provided with a layer of a triazole derivative of formula (1). A third element comprises an electron-transporting layer, a hole-transporting layer and, interposed therebetween, a layer of a triazole derivative of formula (1). The three elements are each excellent in luminescence efficiency, luminance and stability, and capable of realizing blue luminescence, multiple primary-color luminescence and white luminescence, wherein each symbol is as defined in the specification.
    • 第一有机电致发光元件包括在分子水平上含有分散在其中的染料的空穴传输发光层(1)和含有通式(1)表示的三唑衍生物的电子传输层(2)。 第二元件设置有一层式(1)的三唑衍生物。 第三元素包括电子传输层,空穴传输层,并且在其间插入式(1)的三唑衍生物的层。 这三个元件的发光效率,亮度和稳定性均优异,并且能够实现蓝色发光,多原色发光和白色发光,其中每个符号如本说明书中所定义。
    • 45. 发明申请
    • COVERED OPTICAL FIBER AND PROCESS FOR PRODUCING THE SAME
    • 覆盖的光纤及其制造方法
    • WO1995021800A1
    • 1995-08-17
    • PCT/JP1995000207
    • 1995-02-14
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.OISHI, KazumasaAKASAKA, NobuhiroKAKUTA, TatsuyaMATSUDA, Yasuo
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • C03C25/02
    • G01M11/088C03C25/12G02B6/02395
    • A process for producing a covered optical fiber which comprises covering an optical transmission fiber with a resinous covering layer, pressing a roller having an uneven surface against the covered fiber while running the same so as to flaw the surface of the covering layer, measuring the tensile break strength of the flawed fiber, and sorting out the fiber having a strength retention ratio RS(=SA/SO) of 0.98 or above as nondefective (wherein SA and SO are, respectively, median values of tensile break strength after and before flawing). According to the above process, it is possible to reduce both the length of the covered optical fiber necessary for evaluating the flaw resistance and the time taken for the measurement, and to produce a covered optical fiber having good properties while evaluating the flaw resistance of the fiber quantitatively.
    • 一种包覆光纤的制造方法,其特征在于,包括用树脂覆盖层覆盖光纤传输光纤,将具有不平坦表面的辊压靠在被覆纤维上,同时使其覆盖覆盖层的表面,测定拉伸强度 有缺陷的纤维的断裂强度,并且将强度保持率RS(= SA / SO)为0.98以上的纤维分选为无缺陷性(其中SA和SO分别为缺陷之前和之后的拉伸断裂强度的中值) 。 根据上述方法,可以减小评价耐缺损性所需的被覆光纤的长度和测量所花费的时间,并且可以在评价耐蚀性的同时制造具有良好性能的覆盖光纤 纤维定量。
    • 50. 发明申请
    • INFRARED OPTICAL PART AND MEASURING INSTRUMENT
    • 红外光学部件和测量仪器
    • WO1994008224A1
    • 1994-04-14
    • PCT/JP1993001287
    • 1993-09-10
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.SATO, ShuichiSUMIYA, HitoshiKAWATE, KatsuyukiKATOH, Jiro
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • G01N21/27
    • G02B1/02B01J2203/0655G01N21/552
    • An infrared optical part, such as a prism consisting of synthetic diamond and capable of carrying out an ATR spectroscopic analysis of a sample to be measured, which is deposited on an object in a place in bad environment, a structure or clothes, by merely bringing the prism into pressure contact with these objects, and a sample holding slide plate, which consists of synthetic diamond and has a long useful life, for an infrared microscope; and a measuring instrument using this prism. Since a total reflection (ATR) prism (14) of synthetic diamond the crystals of which have a nitrogen content of not more than 3 ppm and a boron content of not more than 3 ppm, optical mirrors (12, 17), lenses (13, 16) or fibers are used, a total reflection (ATR) spectroscopic analysis of a sample is carried out by bringing the prism into direct pressure contact with the sample (15) without using a holder.
    • 一种红外光学部件,例如由合成金刚石组成的棱镜,能够进行待测样品的ATR光谱分析,其沉积在恶劣环境中的物体上,结构或衣服上,仅通过 棱镜与这些物体进行压力接触,并且用于红外显微镜的样品保持滑动板,其由合成金刚石组成并且具有长的使用寿命; 以及使用该棱镜的测量仪器。 由于合成金刚石的全反射(ATR)棱镜(14)的晶体具有不大于3ppm的氮含量和不大于3ppm的硼含量,所以光学镜(12,17),透镜(13) ,16)或纤维,通过使棱镜与样品(15)直接压力接触而不使用保持器来进行样品的全反射(ATR)光谱分析。