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    • 2. 发明专利
    • Ceramic sintered compact and method for manufacturing the same
    • 陶瓷烧结紧固件及其制造方法
    • JP2013216517A
    • 2013-10-24
    • JP2012086673
    • 2012-04-05
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TATSUMI NATSUOKUKINO AKIRA
    • C04B35/581B23B27/14C04B35/58
    • PROBLEM TO BE SOLVED: To provide a ceramic sintered compact having high hardness and toughness, and a method for manufacturing the same.SOLUTION: A ceramic sintered compact includes cubic aluminum nitride, and at least one kind of metal compound selected from a group comprising nitrides, carbides and borides of groups 4A, 5A and 6A metals in the periodic table. A method for manufacturing the ceramic sintered compact includes a step for mixing cubic aluminum nitride powder with at least one kind of metal compound powder selected from the group comprising nitrides, carbides and borides of the groups 4A, 5A and 6A metals in the periodic table, and a step for sintering a mixture obtained by mixing at a temperature of ≥700°C and ≤1,500°C and at a pressure of ≥2 GPa and ≤20 GPa.
    • 要解决的问题:提供一种具有高硬度和韧性的陶瓷烧结体及其制造方法。解决方案:一种陶瓷烧结体包括立方氮化铝和至少一种选自氮化物的金属化合物 ,元素周期表4A,5A和6A族金属的碳化物和硼化物。 制造陶瓷烧结体的方法包括:将立方氮化铝粉末与选自元素周期表中的4A,5A和6A族金属的氮化物,碳化物和硼化物中的至少一种金属化合物粉末混合的步骤, 以及烧结通过在≥700℃和≤1,500℃的温度和≥2GPa和≤20GPa的压力下混合获得的混合物的步骤。
    • 6. 发明专利
    • Microprobe
    • 微探针
    • JP2008026281A
    • 2008-02-07
    • JP2006202474
    • 2006-07-25
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NISHIBAYASHI YOSHIKITATSUMI NATSUOIMAI TAKAHIRO
    • G01Q60/16G01Q60/38G01Q60/40G01Q70/00G01Q70/10
    • PROBLEM TO BE SOLVED: To provide a microprobe having a sharp tip, and enhancing a strength.
      SOLUTION: The microprobe comprises: a base 4; an intermediate layer 6 provided on the base 4; and a probe 8 provided on the intermediate layer 6 and formed from diamond. The probe 8 has a root 10 connected to the intermediate layer 6, and the sharp tip 12. A tip diameter D of the probe 8 is 0.5 μm or less. A first aspect ratio T1 of a width L2 of a cross section of the probe 8 at a predetermined distance from the tip 12 of the probe 8 divided by a length L1 from the tip 12 to the cross section is 0.3 or more. A second aspect ratio T2 of a width L4 at the root 10 of the probe 8 divided by a length L3 from the tip 12 of the probe 8 to the root 10 is 0.36 or more.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供具有尖尖的微探针并提高强度。 解决方案:微探针包括:基座4; 设置在基座4上的中间层6; 以及设置在中间层6上并由金刚石形成的探针8。 探头8具有与中间层6连接的根部10以及尖端12.探针8的尖端直径D为0.5μm以下。 探针8的与探针8的尖端12相隔预定距离的横截面的宽度L2的第一宽高比T1除以从尖端12到横截面的长度L1为0.3以上。 探针8的根部10处的宽度L4除以从探针8的尖端12到根部10的长度L3的第二宽高比T2为0.36以上。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Ceramic sintered body and method for manufacturing the same, and tool
    • 陶瓷烧结体及其制造方法及工具
    • JP2014062013A
    • 2014-04-10
    • JP2012208396
    • 2012-09-21
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MOROGUCHI HIROYATATSUMI NATSUOKUKINO AKIRA
    • C04B35/58B23P15/28
    • PROBLEM TO BE SOLVED: To provide a high-hardness ceramic sintered body having no reactivity with iron, and a method for manufacturing the same.SOLUTION: A ceramic sintered body contains aluminum oxynitride and has a Vickers hardness of 2,400 Hv or more. A method for manufacturing the ceramic sintered body includes: a step (S10) of preparing a precursor from starting substances including at least either one of aluminum nitride and aluminum oxide and producing a first composite powder containing a normal pressure phase aluminum oxynitride powder or a normal pressure phase aluminum oxynitride from the precursor; a step (S20) of producing a second composite powder containing a high pressure phase aluminum oxynitride powder or a high pressure phase aluminum oxynitride from the first composite powder containing the normal pressure phase aluminum oxynitride powder or the normal pressure phase aluminum oxynitride; and a step (S30) of producing a sintered body by sintering the second composite powder containing the high pressure phase aluminum oxynitride powder or the high pressure phase aluminum oxynitride.
    • 要解决的问题:提供一种与铁不具有反应性的高硬度陶瓷烧结体及其制造方法。解决方案:陶瓷烧结体含有氮氧化铝,维氏硬度为2,400Hv以上。 一种陶瓷烧结体的制造方法,其特征在于,包括:从包含氮化铝和氧化铝中的至少任一种的起始物质制备前体的工序(S10),制作含有常压铝合金粉末或常压 来自前体的压力相铝氧氮化物; 从包含常压相铝氮氧化物粉末或常压相氮氧化铝的第一复合粉末制备含有高压相铝氮氧化物粉末或高压相氮氧化铝的第二复合粉末的步骤(S20) 以及通过烧结含有高压相铝氮氧化物粉末或高压相氮氧化铝的第二复合粉末来制造烧结体的步骤(S30)。