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    • 64. 发明授权
    • Guide bush and method of forming hard carbon film over the inner surface of the guide bush
    • 引导衬套和在导套内表面上形成硬质碳膜的方法
    • US06419997B1
    • 2002-07-16
    • US09514896
    • 2000-02-28
    • Yukio MiyaOsamu SugiyamaRyota KoikeTakashi ToidaSosaku KimuraKunihiko Kokubo
    • Yukio MiyaOsamu SugiyamaRyota KoikeTakashi ToidaSosaku KimuraKunihiko Kokubo
    • C23C1626
    • B23B31/202B23B13/125B23B2222/28B23B2222/88B23B2231/2059C23C16/0281C23C16/045C23C16/26Y10T279/17418Y10T279/17452
    • A hard carbon film (15) is formed directly or through an intermediate layer for enhancing adhesion over an inner surface (11b) of a guide bush (11) for holding a workpiece (51) rotatably and axially slidable on an automatic lathe at a position near a cutting tool, to be in sliding contact with the workpiece (51) or directly or through an intermediate layer for enhancing adhesion on the surface of a superhard lining fixed to the inner surface (11b). The guide bush (11) has remarkably enhanced durability and prevents damaging the workpiece (51) and seizing that makes a machining operation impossible even when the guide bush (11) is used for an extended period of time and when the automatic lathe operates for heavy machining. The hard carbon film (15) having satisfactory adhesion to the inner surface (11b) can be efficiently formed in a uniform thickness over the inner surface (11b) by placing the guide bush (11) in a vacuum vessel, extending an auxiliary electrode in the center bore of the guide bush (11) and producing a plasma of a gas containing carbon.
    • 硬质碳膜(15)直接或通过中间层形成,用于增强在导筒(11)的内表面(11b)上的粘合力,用于保持工件(51)在自动车床上可旋转和轴向滑动的位置 靠近切割工具,与工件(51)滑动接触,或直接或通过中间层,以增强固定在内表面(11b)上的超硬衬里的表面上的附着力。 引导衬套(11)具有显着增强的耐久性,并且防止损坏工件(51)并且即使当导套(11)长时间使用时也不可能进行加工操作,并且当自动车床操作重 加工。 通过将引导衬套(11)放置在真空容器中,可以在内表面(11b)上以均匀的厚度有效地形成对内表面(11b)具有令人满意的粘合力的硬质碳膜(15) 引导衬套(11)的中心孔并产生含碳气体的等离子体。
    • 65. 发明授权
    • Manual electronic-part mounting apparatus and method
    • 手动电子部件安装装置及方法
    • US06315024B1
    • 2001-11-13
    • US09285569
    • 1999-04-02
    • Osamu Sugiyama
    • Osamu Sugiyama
    • B65C908
    • H05K13/08H05K3/305H05K13/0447H05K13/0469H05K2203/0195H05K2203/0537Y02P70/613Y10T29/49144Y10T29/53178Y10T156/10Y10T156/1089Y10T156/1092Y10T156/1744Y10T156/1766Y10T156/1785Y10T156/1798
    • A manual electronic-part mounting apparatus includes a manual adhesive coating apparatus, a manual electronic-part fitting apparatus, and a manual printed-wiring-board checking apparatus. The manual adhesive coating apparatus has a pressing plate portion to which a large number of needles are fitted, being arranged such that the needles with the adhesive are brought in contact with a printed-wiring board, thereby the adhesive being coated on predetermined positions of the printed-wiring board. The manual electronic-part fitting apparatus has a large number of electronic-part supply rods. The electronic-part supply rod has an electronic-part storage rod supported by a fixed plate and an extruding rod supported by a movable plate. When the movable plate is moved relative to the fixed plate, the chip-type electronic part is extruded from an end-portion side aperture of the electronic-part storage rod.
    • 手动电子部件安装装置包括手动粘合剂涂布装置,手动电子部件装配装置和手动印刷电路板检查装置。 手动粘合剂涂布装置具有压入多个针的压板部,其布置成使得具有粘合剂的针与印刷线路板接触,从而将粘合剂涂覆在预定位置上 印刷电路板。 手动电子部件装配装置具有大量的电子部件供给杆。 电子部件供给杆具有由固定板支撑的电子部件存放杆和由可动板支撑的挤压杆。 当可移动板相对于固定板移动时,芯片型电子部件从电子部件存放杆的端部侧孔径挤出。
    • 66. 发明授权
    • Connector structure and assembling method for connectors
    • 连接器的连接器结构和组装方法
    • US06183276B2
    • 2001-02-06
    • US09274974
    • 1999-03-23
    • Masanori TsujiOsamu Sugiyama
    • Masanori TsujiOsamu Sugiyama
    • H01R1362
    • H01R12/722H01R13/516
    • A connector structure includes a printed board (4), a connector (1) having a frame (11) in which terminals (3) are engaged and a mechanism member (2) being assembled to the connector (1). The mechanism member (2) is provided with a mechanism part (21) to draw a mating connector into the mechanism member (2). The mechanism member (2) and the connector (1) are constituted in different bodies. The mechanism member (2) is provided with a hood part (22) for engagement with the frame (11) of the connector (1). In assembling, the mechanism member (2) is assembled to the connector (1) after soldering the terminals (3) to the printed board (4).
    • 连接器结构包括印刷电路板(4),具有端子(3)接合的框架(11)的连接器(1)和组装到连接器(1)上的机构构件(2)。 机构构件(2)设置有用于将配合连接器拉入机构构件(2)的机构部分(21)。 机构构件(2)和连接器(1)由不同的主体构成。 机构构件(2)设置有用于与连接器(1)的框架(11)接合的罩部分(22)。 在组装时,在将端子(3)焊接到印刷电路板(4)之后,将机构构件(2)组装到连接器(1)。
    • 67. 发明授权
    • Jig for forming hard carbon film over inner surface of guide bush using
the jig
    • 夹具用于使用夹具在导套的内表面上形成硬质碳膜
    • US6131533A
    • 2000-10-17
    • US910828
    • 1997-08-15
    • Osamu SugiyamaYukio MiyaRyota KoikeTakashi ToidaToshiichi Sekine
    • Osamu SugiyamaYukio MiyaRyota KoikeTakashi ToidaToshiichi Sekine
    • C23C16/02C23C16/04C23C16/26C23C16/503C23C16/509C23C16/00
    • C23C16/0281C23C16/045C23C16/26C23C16/503C23C16/509Y10S279/906Y10S427/104Y10T279/17231Y10T279/18Y10T279/29Y10T82/2518Y10T82/2521
    • A hard carbon film is formed over an inner surface of a guide bush by fixing an auxiliary electrode support member for supporting an auxiliary electrode of a jig for forming a film in a center bore of the guide bush by an auxiliary electrode insulation member, disposing an auxiliary electrode in alignment with the axis of the center bore so as to face the inner surface, disposing legs, and a first electrode plate, a second electrode plate, and the insulation member which are fixed to the legs are placed on the bottom of a vacuum vessel placing the guide bush on the first electrode plate contacted electrically with a power source, while the projection of the auxiliary electrode support member projecting out of the auxiliary electrode insulation member is contacted electrically with the second electrode plate. The auxiliary electrode is grounded through the auxiliary electrode support member, the second electrode plate, the legs, and the vacuum vessel, a gas containing carbon is introduced into the vacuum vessel after evacuating the vacuum vessel, and a plasma is produced in the vacuum vessel by supplying electric power to the guide bush through the first electrode plate from the power source.
    • 通过辅助电极绝缘部件固定辅助电极支撑部件,该辅助电极支撑部件通过固定在辅助电极绝缘部件的引导衬套的中心孔中形成膜的夹具的辅助电极而形成在硬质碳膜的内表面上, 辅助电极与中心孔的轴线对准,以面对内表面,设置腿,以及固定到腿部的第一电极板,第二电极板和绝缘构件放置在底部上 真空容器将引导衬套放置在与电源电接触的第一电极板上,而从辅助电极绝缘构件突出的辅助电极支撑构件的突起与第二电极板电接触。 辅助电极通过辅助电极支撑构件,第二电极板,支腿和真空容器接地,抽空真空容器后,将含碳气体引入真空容器中,并在真空容器中产生等离子体 通过第一电极板从电源向引导衬套提供电力。
    • 68. 发明授权
    • Structure for connecting connectors
    • 连接连接器的结构
    • US6116928A
    • 2000-09-12
    • US261215
    • 1999-03-03
    • Masanori TsujiOsamu Sugiyama
    • Masanori TsujiOsamu Sugiyama
    • H01R13/629H01R13/64H01R13/62
    • H01R13/62977H01R13/62922
    • A female connector 30 is provided with a reciprocative and slidable slide member 13; an operation lever 20 rotatably coupled to the connector for sliding the slide member 13 within the connector; and a guide groove 14 and a guide pin 44 arranged to be engaged to the slide member 13 and a male connector 40. The operation lever 20 is rotated to introduce the male connector 40 into the female connector 30 so that the two connectors are connected to each other. A projection 27 arranged to be brought into contact with the outer surface of the male connector 40 when the guide groove 14 and the guide pin 44 have incompletely been connected to each other is integrally provided with a side wall 22 of the operation lever 20 so as to prevent rotation of the operation lever 20. Thus, the connector structure will resist breakage and deformation even if excessive force is exerted on the lever when attempting to secure a connection while the male and female connectors are not completely connected.
    • 阴连接器30设置有可往复滑动的滑动构件13; 可旋转地联接到连接器的操作杆20,用于将滑动构件13滑动在连接器内; 以及布置成与滑动构件13接合的引导槽14和引导销44以及阳连接器40.操作杆20旋转以将阳连接器40引入阴连接器30,使得两个连接器连接到 彼此。 当引导槽14和引导销44未完全连接时,突出部27与凸形连接器40的外表面相接触,与操作杆20的侧壁22一体地设置成 以防止操作杆20的旋转。因此,即使在阳连接器和母连接器未完全连接时尝试固定连接时,即使过大的力施加在杠杆上,连接器结构也将抵抗断裂和变形。
    • 70. 发明授权
    • Method of forming hard carbon film over the inner surface of guide bush
    • 在导套内表面上形成硬质碳膜的方法
    • US6020036A
    • 2000-02-01
    • US51636
    • 1998-04-16
    • Osamu SugiyamaYukio MiyaRyota KoikeTakashi ToidaToshiichi Sekine
    • Osamu SugiyamaYukio MiyaRyota KoikeTakashi ToidaToshiichi Sekine
    • C23C16/04C23C16/26B05D3/06B05D7/22
    • C23C16/045C23C16/26Y10S427/103Y10S427/104
    • A guide bush (11), coming in sliding contact with a workpiece, for use in an automatic lathe is placed in a vacuum vessel (61), and after inserting an auxiliary electrode (71), which is grounded or to which a positive DC voltage is applied, in the center bore (11j) of the guide bush (11), forming the inner surface (11b) thereof, the vacuum vessel (61) is evacuated such that an initially reached pressure therein is not higher than a predetermined degree of vacuum. Then, after a DC voltage is applied to an anode (79) and an AC voltage is applied to a filament (81) while applying a DC voltage to the guide bush (11), carbon-containing gas is fed into the vacuum vessel (61), producing a plasma therein and the pressure inside the vacuum vessel (61) is controlled to attain a film-forming pressure higher than the initially reached pressure while forming a hard carbon film over the inner surface of the guide bush (11) by means of a plasma CVD process.
    • PCT No.PCT / JP97 / 02868 Sec。 371日期:1998年4月16日 102(e)1998年4月16日PCT PCT 1997年8月19日PCT公布。 出版物WO98 / 07895 日期1998年2月26日将与工件滑动接触的导向衬套(11)用于自动车床放置在真空容器(61)中,并且在插入辅助电极(71)之后,其被接地或 在该导套(11)的中心孔(11j)中施加正的直流电压,形成其内表面(11b),真空容器(61)被抽真空,使得其中初始达到的压力不在 高于预定的真空度。 然后,在将直流电压施加到阳极(79)上并且向引线衬套(11)施加DC电压的同时向灯丝(81)施加AC电压时,将含碳气体供给到真空容器 61),在其中产生等离子体,并且控制真空容器(61)内部的压力,以获得高于初始达到的压力的成膜压力,同时在导套(11)的内表面上形成硬碳膜,同时通过 等离子体CVD工艺的手段。