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    • 3. 发明授权
    • Process for fixing alloy powder molding at sintering
    • 在烧结时固定合金粉末成型的工艺
    • US4681733A
    • 1987-07-21
    • US777563
    • 1985-09-18
    • Toshiharu KonishiYukio ShimizuTakahumi SakuramotoTsuyoshi MorishitaShigemi Osaki
    • Toshiharu KonishiYukio ShimizuTakahumi SakuramotoTsuyoshi MorishitaShigemi Osaki
    • C08K3/08B22F1/00B22F7/04C08L33/00C08L33/02C08L33/04C08L33/06C09J133/04C09J133/06C23C24/00B22F7/00
    • C23C24/00B22F1/0059B22F7/04C09J133/062
    • A method for fixing an alloy powder molding at sintering composition by placing an alloy powder molding formed by rolling a mixture of an alloy powder and a synthetic resin-based pressure-sensitive adhesive composition on a metal base material by interposing a composition between the molding and the base material until the molding is sintered, in the case that the alloy powder molding is placed on the metal base material and sintered after keeping at 150.degree. to 400.degree. C. for at least 5 minutes under a non-oxidizing atmosphere, the composition comprising as a main component an acrylic copolymer which comprises about 80 to 99.5% by weight of alkyl (meth)acrylate having an average carbon atom number of 2 to 12 in the alkyl moiety and about 20 to 0.5% by weight of a polymerizable monomer having a functional group in the molecule or a mixture of 100 parts by weight of the copolymer and about 0.1 to 100 parts by weight of a resin which gives adhesive property, the composition having a 10 second shear creep compliance of about 0.1 to 30.times.10.sup.-6 cm.sup.2 /dyne at room temperature and at least about 30% by weight of non-volatile materials when heated at 300.degree. C. for 80 minutes under a non-oxidizing atmosphere.
    • 一种通过将通过将合金粉末和合成树脂类压敏粘合剂组合物的混合物轧制在金属基材上而形成的合金粉末成型体的方式,在烧结组合物中固定合金粉末成型体的方法, 直到模制烧结为止,在将合金粉末成型体放置在金属基材上并在非氧化性气氛下在150-400℃下保持至少5分钟后进行烧结的情况下,将基材烧结, 包括作为主要组分的丙烯酸共聚物,其包含约80至99.5重量%的烷基部分中平均碳原子数为2至12的(甲基)丙烯酸烷基酯和约20至0.5重量%的可聚合单体,其具有 分子中的官能团或100重量份共聚物的混合物和约0.1至100重量份赋予粘合性的树脂,该组合物具有10秒 在非氧化性气氛下,在300℃加热80分钟时,在室温下,约100至30×10 -6 cm 2 / dyne的约束剪切蠕变柔量为至少约30%(重量)的非挥发性物质。
    • 6. 发明授权
    • Superabrasive tool and method of manufacturing the same
    • 超研磨工具及其制造方法
    • US06312324B1
    • 2001-11-06
    • US09077024
    • 1998-05-27
    • Kosuke MitsuiToshio FukunishiKazunori KadomuraYukio ShimizuYoshio KoutaMasaaki YamanakaAkio Hara
    • Kosuke MitsuiToshio FukunishiKazunori KadomuraYukio ShimizuYoshio KoutaMasaaki YamanakaAkio Hara
    • B24D300
    • B24B53/017B24B3/06B24B37/16B24B53/12B24D3/00B24D5/00B24D7/00B24D18/00
    • A superabrasive tool such as a superabrasive grindstone (101; 102), a superabrasive dresser (103; 104; 105) or a superabrasive lap surface plate (106) includes a base (20) of steel and a superabrasive layer (10) formed on the base (20). The superabrasive layer (10) includes superabrasive grains (11) consisting of diamond grains, cubic boron nitride grains or the like and a holding layer consisting of a nickel plating layer (16) and a bond layer (17), or a brazing filler metal layer (18), holding the superabrasive grains (11) and fixing the same onto the base (20). Grooves (12) or holes (14) are formed on flat surfaces (19) of the superabrasive grains (11) exposed from the holding layer (16, 17; 18). The holding layer (16, 17; 18) holding and fixing the superabrasive grains (11) so that the surfaces of the grains are partially exposed is formed on the base (20). The grooves (12) or the holes (14) are formed by irradiating the surfaces of the superabrasive grains (11) exposed from the holding layer (16, 17; 18) with a laser beam (50). Working of high accuracy can be performed by forming the grooves (12) or the holes (14) on the surfaces of the superabrasive grains (11).
    • 超研磨工具,例如超研磨磨石(101; 102),超研磨修整器(103; 104; 105)或超级磨料搭接表面板(106),包括钢的基部(20)和形成在 基座(20)。 超级磨料层(10)包括由金刚石晶粒,立方氮化硼晶粒等构成的超磨料颗粒(11)和由镀镍层(16)和接合层(17)组成的保持层,或钎料 层(18),保持超磨料颗粒(11)并将其固定到基底(20)上。 在从保持层(16,17; 18)露出的超级磨料颗粒(11)的平坦表面(19)上形成槽(12)或孔(14)。 保持层(16,17; 18)在基体(20)上形成有保持和固定超磨料颗粒(11)以使颗粒的表面部分露出的部分。 通过用激光束(50)照射从保持层(16,17; 18)暴露的超级磨料颗粒(11)的表面,形成凹槽(12)或孔(14)。 可以通过在超级磨料颗粒(11)的表面上形成凹槽(12)或孔(14)来实现高精度的工作。
    • 7. 发明授权
    • Package containers rack frame
    • 包装容器架子架
    • US5685442A
    • 1997-11-11
    • US426737
    • 1995-04-21
    • Shuji YoshinoSeiji HiranoYukio Shimizu
    • Shuji YoshinoSeiji HiranoYukio Shimizu
    • A47B57/36A47B43/00A47F5/13B25H3/04B62B3/00B62B3/02B65G1/14A47F5/00
    • A47F5/137A47B43/00B62B3/006B62B3/025
    • A package containers rack frame for storing, transferring and displaying relative light-weight packages. The rack frame is constructed of a pair of side frames and a plurality of support bases which are removable from the side frames. The support bases are engaged into sockets on the side frame without disassembling of the side frames. The side frames have folding elements that are for controlling the distance between the side frames, which are folding and/or unfolding. The frame members of side frames has an adjusting member for adjusting the distance between the side frames, which thereby permits use of different width or height dimension for the containers. The support base has upward curved projections at both ends thereof for restricting in lateral movement of the containers.
    • 用于存储,传输和显示相对轻质包装的包装容器架架。 机架框架由一对侧框架和可从侧框架移除的多个支撑底座构成。 支撑基座接合在侧框架上的插座中,而不会拆卸侧框架。 侧框架具有用于控制侧框架之间的距离的折叠元件,所述侧框架是折叠和/或展开的。 侧框的框架构件具有用于调节侧框架之间的距离的调节构件,从而允许对容器使用不同的宽度或高度尺寸。 支撑基座的两端具有向上弯曲的突起,用于限制容器的横向移动。
    • 10. 发明授权
    • Inductor and manufacturing method thereof
    • 电感及其制造方法
    • US08134444B2
    • 2012-03-13
    • US12895915
    • 2010-10-01
    • Michio HoriuchiYukio ShimizuKazunari SekigawaTsuyoshi Kobayashi
    • Michio HoriuchiYukio ShimizuKazunari SekigawaTsuyoshi Kobayashi
    • H01F17/04H01R4/58
    • H01F17/0013H01F41/041H01F2017/002Y10T29/4902
    • An inductor includes a core substrate including minute column-like electrical conductors extending between a front surface and a back surface of the core substrate. Each column-like electrical conductor is insulated from adjacent column-like electrical conductors by being surrounded by an insulating material. Insulation layers are formed on the front surface and the back surface of the core substrate, respectively. At least two connection electrical conductors extend through each of the insulation layers. Each connection electrical conductor is electrically connected to a plurality of the column-like electrical conductors. Wirings are formed on each of the insulation layers to connect said connection electrical conductors to each other electrically. The wirings, the connection electrical conductors and the column-like electrical conductors are connected to form a coil in a three-dimensional manner.
    • 电感器包括芯基板,其包括在芯基板的前表面和后表面之间延伸的微小列状电导体。 每个柱状电导体被绝缘材料包围,与相邻的柱状电导体绝缘。 绝缘层分别形成在芯基板的前表面和后表面上。 至少两个连接电导体延伸穿过每个绝缘层。 每个连接电导体电连接到多个柱状电导体。 在每个绝缘层上形成布线,以将所述连接电导体彼此电连接。 连线,连接电导体和列状电导体被连接以形成三维方式的线圈。