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    • 71. 发明授权
    • Method for finishing surface of preliminary polished glass substrate
    • 预抛光玻璃基板表面处理方法
    • US07803280B2
    • 2010-09-28
    • US12475878
    • 2009-06-01
    • Koji OtsukaKenji Okamura
    • Koji OtsukaKenji Okamura
    • B44C1/22C03C15/00
    • G01B9/02065C03C15/02C03C19/00C03C23/006C03C2204/08G01B9/02057G01B9/0209G01B11/30G03F1/60H01J2237/0812Y10T428/24355
    • The invention provides a method in which waviness generated on a glass substrate surface during pre-polishing is removed, thereby finishing the glass substrate to have a surface excellent in flatness. The method for finishing a pre-polished glass substrate uses ion beam etching, gas cluster ion beam etching or plasma etching, the method including: a step of measuring flatness of the glass substrate surface using a shape measurement unit, and a step of measuring a concentration distribution of the dopant contained in the glass substrate. Processing conditions of the glass substrate surface are set up for each site of the glass substrate based on the results obtained from the step of measuring flatness and the step of measuring a concentration distribution of the dopant. Finishing includes keeping an angle formed by a normal line of the glass substrate and an incident beam onto the glass substrate at from 30° to 89°.
    • 本发明提供了一种在预抛光期间在玻璃基板表面上产生的波纹被去除的方法,从而使玻璃基板整理成具有优异的平坦度的表面。 用于精加工预抛光玻璃基板的方法使用离子束蚀刻,气体簇离子束蚀刻或等离子体蚀刻,该方法包括:使用形状测量单元测量玻璃基板表面的平坦度的步骤,以及测量 包含在玻璃基板中的掺杂剂的浓度分布。 基于从测量平坦度的步骤和测量掺杂剂的浓度分布的步骤获得的结果,为玻璃基板的每个部位设置玻璃基板表面的加工条件。 整理包括将玻璃基板的法线和入射光束形成的角度保持在玻璃基板上30°至89°。
    • 73. 发明申请
    • CONNECTOR
    • 连接器
    • US20100009568A1
    • 2010-01-14
    • US12487867
    • 2009-06-19
    • Toshifumi IchioKenji Okamura
    • Toshifumi IchioKenji Okamura
    • H01R4/48H01R31/08
    • H01R13/4223H01R2201/20
    • Locking lances (12) are formed at an outer wall (10B) of a housing (10) and are resiliently deformable between engaging positions to engage terminals (20) and disengaging positions outward from the engaging positions to permit the insertion and withdrawal of the terminals (20). Leading end surfaces (12B) of the locking lances (12) are inclined to project gradually forward toward an inner side of the housing (10). A facing surface (15A) of the outer wall (10B) of the housing 10 facing the leading end surfaces (12B) of the locking lances 12 is inclined to project gradually toward the locking lances (12) at more outward positions on the housing (10). The leading end surfaces (12B) of the locking lances (12) contact the facing surface (15A) when the locking lances (12) are deformed outward beyond the disengaging positions.
    • 锁定枪(12)形成在壳体(10)的外壁(10B)处,并且在接合位置之间可弹性变形,以接合端子(20)和从接合位置向外脱离位置,以允许端子的插入和拉出 (20)。 锁定喷枪(12)的前端表面(12B)倾斜向着壳体(10)的内侧逐渐向前突出。 壳体10的面向锁定矛杆12的前端表面(12B)的外壁(10B)的面对表面(15A)倾斜以在壳体上的更多外部位置逐渐朝向锁定矛杆(12)突出 10)。 当锁定矛杆(12)向外变形超出脱离位置时,锁定矛杆(12)的前端表面(12B)与相对表面(15A)接触。
    • 74. 发明授权
    • Joint connector
    • 接头连接器
    • US07572154B2
    • 2009-08-11
    • US12187461
    • 2008-08-07
    • Toshifumi IchioKenji Okamura
    • Toshifumi IchioKenji Okamura
    • H01R13/502
    • H01R13/514H01R13/4361H01R13/6456
    • A joint connector (10) has sub-housings (S) (S1 to S6) that can be built up in plural levels. Projecting pieces (31) project on outer sides of the respective sub-housings (S) in directions intersecting a build-up direction (BUD) of the sub-housings (S) and define hand-push portions (13) by building up the sub-housings (S). The sub-housings (S) built up in levels are fit into the intermediate connector (20) by pushing the hand-push portions (13) towards the intermediate connector (20) so that terminal fittings (40) in the joint connector (10) are connected electrically with intermediate terminals (24) in the intermediate connector (20). Identifying projections (A) on the lower mating surfaces of the projecting pieces (31) enter identifying recesses (B) in the upper mating surfaces of adjacent projecting pieces (31) if the sub-housings (S) are built up properly.
    • 接头连接器(10)具有可以多层建立的子壳体(S)(S1至S6)。 投影片(31)在与副壳体(S)的累积方向(BUD)相交的方向上突出于相应副壳体(S)的外侧,并且通过构成手推动部分 子外壳(S)。 通过将手推部分(13)推向中间连接器(20),通过将接合连接器(10)中的端子接头(40)推到中间连接器(20)中,构成水平的子壳体(S) )与中间连接器(20)中的中间端子(24)电连接。 如果副壳体(S)正确地组装,则在突出片(31)的下配合表面上识别突起(A)进入相邻突片(31)的上配合表面中的识别凹部(B)。
    • 76. 发明授权
    • High-density composite material
    • 高密度复合材料
    • US07304105B2
    • 2007-12-04
    • US10490493
    • 2002-09-30
    • Yasunao KaiMasahiro YamauchiKenji Okamura
    • Yasunao KaiMasahiro YamauchiKenji Okamura
    • C08K3/10
    • F42B12/745C08K3/013C08K3/08C08L9/06C08L23/00C08L21/00C08L2666/52
    • A composite material which comprises an elastomer or vulcanized rubber and particles of a high-density material, such as tungsten, evenly dispersed therein, wherein the contents of the elastomer or vulcanized rubber and the high-density particles are 35 to 50 vol. % and 50 to 65 vol. %, respectively, based on the whole composite material, and the high-density particles have a particle composition comprising 60 to 80 vol. % coarse particles having a particle diameter of 10 to 100 μm, 10 to 20 vol. % medium particles having a particle diameter of 3 to 6 μm, and 10 to 20 vol. % fine particles having a particle diameter of 1 to 2 μm, the spaces among the coarse particles being filled with the medium particles and fine particles. The composite material is excellent in flexibility and processability and is suitable for use as a radiation-shielding sheet material, weight member, vibration-damping material, balancing member, radiating material, and shot material.
    • 包含弹性体或硫化橡胶的复合材料以及均匀分散在其中的诸如钨的高密度材料的颗粒,其中弹性体或硫化橡胶和高密度颗粒的含量为35〜50体积%。 %和50至65体积% %,基于整个复合材料,高密度颗粒具有60至80体积%的颗粒组成。 粒径为10〜100μm的粗粒子,10〜20体积% 粒径为3〜6μm的中等粒径的微粒,10〜20体积% 粒径为1〜2μm的微细粒子,粗粒子之间的空隙填充有中等粒子和微粒。 复合材料的柔软性和加工性优异,适用于辐射屏蔽片材,重量件,减振材料,平衡构件,辐射材料和射出材料。
    • 79. 发明授权
    • Connector with lock arm
    • 带锁臂的连接器
    • US07118417B2
    • 2006-10-10
    • US11103831
    • 2005-04-12
    • Tetsuya AiharaKenji Okamura
    • Tetsuya AiharaKenji Okamura
    • H01R13/40
    • H01R13/6272H01R12/724
    • A female housing (40) has a lock arm (40) with an arm main body (43) that cantilevers back from the front of the female housing (40). A lock (46) is formed on the arm main body (43). An unlocking portion (44) is at the rear end of the arm main body (43) and extends normal to the arm main body (43). Arm portions (55) project obliquely downward from the opposite sides of the unlocking portion (44), and are coupled to protection walls (52) to sandwich the unlocking portion (44). Two restricting walls (55) project from the upper ends of the protection walls (52) at positions behind the arm portions (50) and higher than the arm portions (50) and face each other. The restricting walls (55) prevent an operator's finger from touching the arm portions (50).
    • 阴壳体(40)具有锁定臂(40),其具有从阴壳体(40)的前部向后悬伸的臂主体(43)。 在臂主体(43)上形成锁(46)。 解锁部分(44)位于臂主体(43)的后端并且垂直于臂主体(43)延伸。 手臂部分55从解锁部分44的相对侧向下倾斜,并与保护壁52连接以夹住解锁部分44。 两个限制壁(55)从保护壁(52)的上端突出在臂部(50)的后方并且高于臂部(50)并且彼此面对的位置。 限制壁(55)防止操作者的手指接触臂部(50)。
    • 80. 发明授权
    • Waterproof connector
    • 防水连接器
    • US06527586B2
    • 2003-03-04
    • US09485304
    • 2000-02-08
    • Kenji OkamuraYasuhiro Hattori
    • Kenji OkamuraYasuhiro Hattori
    • H01R1340
    • H01R13/5208
    • Terminals connected to wires pass through insertion holes of a holder and the segment holes of a seal member, and are held in the receptors of a connector housing in a state such that the seal member is housed in a recess of a seal setting portion of the connector housing. A pressing portion of the holder containing indents compresses the seal member to thereby reduce the respective sizes of the segment holes of the seal member so as deform the segment holes to shrink in conformity with the outer shape of the inserted wires.
    • 连接到电线的端子通过保持器的插入孔和密封构件的分段孔,并且以这样的状态保持在连接器壳体的接收器中,使得密封构件容纳在密封件的密封设置部分的凹部中 连接器外壳。 包含凹口的保持器的按压部分压缩密封构件,从而减小密封构件的分段孔的相应尺寸,使得分段孔变形以使其与插入的线的外形一致而收缩。