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    • 43. 发明授权
    • Cosmetic container
    • 化妆品容器
    • US07503718B2
    • 2009-03-17
    • US11660204
    • 2005-08-01
    • Masafumi Hamada
    • Masafumi Hamada
    • A46B11/00A46B17/08
    • A45D34/046A45D40/267A45D2200/051B65D45/32B65D51/32
    • A cosmetic container having a container body for receiving cosmetics and a cap having a cap body, an outer tube, and an inner tube. A first spring for urging the outer tube rearward is installed between the cap body and the outer tube. A second spring for urging the cap body forward is received in the inner tube. A shaft section with an application section is projectingly formed on the inner tube. An engagement groove is provided in the container body, in the outer peripheral surface near its head. A locking ball reception hole and a locking ball received in the hole are provided on the cap body. A restriction projection for restricting the locking ball from moving outward is provided inside the outer tube. The locking ball projected inward by the restriction projection fits in the engagement groove, and the cap is installed on the container body.
    • 一种具有用于容纳化妆品的容器本体和具有帽体,外管和内管的帽的化妆品容器。 用于向外推动外管的第一弹簧安装在盖体和外管之间。 用于向前推动盖体的第二弹簧被容纳在内管中。 具有施加部的轴部突出地形成在内管上。 在容器主体中,靠近头部的外周面设置有卡合槽。 盖体上设有锁孔接纳孔和容纳在孔中的锁定球。 用于限制锁定球不向外移动的限制突起设置在外管的内部。 通过限制突起向内突出的锁定球适合于接合槽中,并且帽安装在容器主体上。
    • 44. 发明授权
    • Method for producing a sealed 210Pb—210Po alpha particle emitter
    • 密封的210Pb-210Poα粒子发射体的制备方法
    • US07476370B2
    • 2009-01-13
    • US10560922
    • 2004-06-09
    • Hiroaki MitsugashiraNoriyoshi Tsuyuzaki
    • Hiroaki MitsugashiraNoriyoshi Tsuyuzaki
    • C01G56/00
    • G21G4/04
    • The present invention provides a method for producing a sealed 210Pb—210Po α source (α particle emitter) and an apparatus thereof, which can be used as an α particle source for a random pulse generator. The method for producing a sealed 210Pb—210Po α source (α particle emitter) includes the steps of: collecting 210Pb—210Po with a 210Pb collector using radon collection; precipitating the hydroxides of the collected 210Pb—210Po and collecting the precipitates by a polycarbonate (PC) filter; dissolving the 210Pb—210Po hydroxide precipitate to form a 210Pb—210Po radioactive thin film; and sealing the 210Pb—210Po radioactive thin film for protection.
    • 本发明提供一种密封的210Pb-210Poα源(α粒子发射体)的制造方法及其装置,其可用作随机脉冲发生器的α粒子源。 用于生产密封的210Pb-210Poα源(α粒子发射体)的方法包括以下步骤:使用氡收集器用210Pb收集器收集210Pb-210Po; 沉淀收集的210Pb-210Po的氢氧化物,并通过聚碳酸酯(PC)过滤器收集沉淀物; 溶解210Pb-210Po氢氧化物沉淀物形成210Pb-210Po放射性薄膜; 并密封210Pb-210Po放射性薄膜进行保护。
    • 45. 发明授权
    • Polymer alloy
    • 聚合物合金
    • US07462672B2
    • 2008-12-09
    • US11802762
    • 2007-05-24
    • Sadayuki KobayashiJiro Kumaki
    • Sadayuki KobayashiJiro Kumaki
    • C08L67/02C08L81/04
    • C08L67/02C08J3/005C08L69/00C08L81/02C08L2666/18
    • A polymer alloy of polyphenylene sulfide resin and a polyester resin with polyethylene terephthalate as a main component, and forming a co-continuous structure with a wavelength of concentration fluctuation of 0.001 to 1 μm or a dispersed structure with a distance between particles of to 1 μm. The co-continuous structure or dispersed structure of the polymer alloy is formed by the phase separation caused by spinodal decomposition. The polymer alloy is miscible when the shear rate is kept in a range from 100 to 10000 sec−1, and is separated into phases under no shear flow. The polymer alloy of this invention can provide a molded article, film, fibers and the like respectively with excellent mechanical properties at high productivity.
    • 聚苯硫醚树脂和聚对苯二甲酸乙二醇酯作为主要成分的聚酯树脂的聚合物合金,形成浓度波动为0.001〜1μm的共连续结构体或粒径为1μm的分散结构体 。 聚合物合金的共连续结构或分散结构通过由旋节分解引起的相分离形成。 当剪切速率保持在100至10000秒-1的范围内时,聚合物合金是可混溶的,并且在无剪切流动下分离成相。 本发明的聚合物合金可以分别以高生产率提供优异的机械性能的模塑制品,薄膜,纤维等。
    • 48. 发明授权
    • Transfer needle assembly
    • 转移针组件
    • US07452348B2
    • 2008-11-18
    • US10733198
    • 2003-12-11
    • Mitsuru Hasegawa
    • Mitsuru Hasegawa
    • A61B19/00A61M5/32
    • A61J1/2096A61J1/201A61J1/2055A61J1/2075A61J1/2082
    • A transfer needle assembly including a cap-like outside guide member; a tubular inside guide member; and a puncture member. The puncture member has a tip fitting portion at a proximal end and a puncture needle at a distal end. The inside guide member can slide along an inner wall of a skirt portion of the outside guide member from a position where a distal end of the needle is receded in the inside guide member, to a position where the distal end of the needle projects outside of the inside guide member. At the position where the distal end of the needle is receded in the inside guide member, the outside guide member and the inside guide member are engaged so as to be incapable of sliding, with the engagement being releasable by inserting a mouth portion of a vial into the inside guide member.
    • 一种转印针组件,其包括帽状外部引导构件; 管状内导向件; 和穿刺构件。 穿刺构件在近端具有尖端配合部分和在远端具有穿刺针。 内引导构件可以从外引导构件的裙部的内壁从内导向构件的后端退出的位置滑动到针的前端向外突出的位置 内部引导构件。 在针头的前端在内部引导构件中退回的位置处,外部引导构件和内部引导构件接合以便不能滑动,通过插入小瓶的口部可以释放接合 进入内部引导构件。