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    • 2. 发明授权
    • Sheets separating and feeding apparatus
    • 片材分离和送料装置
    • US4653742A
    • 1987-03-31
    • US750782
    • 1985-07-01
    • Naoya SasakiMasataka KawauchiYoshio FukudomeFumio TakedaYoichi SuzukiToshio MirubayashiItsunori Utsumi
    • Naoya SasakiMasataka KawauchiYoshio FukudomeFumio TakedaYoichi SuzukiToshio MirubayashiItsunori Utsumi
    • B65H1/06B65H3/06
    • B65H3/063B65H2701/1912
    • This invention relates to a apparatus for separating and feeding sheets such as sheets of paper comprising an accommodation box for accommodating the sheets of paper stacked by their own weight, a pick-up roller provided so that the upper surface thereof projects into the interior of the box to bear the weight of the stacked sheets of paper, a separation arrangement comprising a frictional roller and the feed roller and provided so as to face an ejection port of the accommodation box from which sheets are sent out to the separation arrangement, and a support arrangement disposed on the side opposite to the ejection port supports the end, opposite to the ejection port, of the sheets of paper, and for allowing the lowermost sheet end to be free of the weight of the sheet thereabove when the lowermost sheet is moved to the ejection port side so that frictional resistance of the lowermost sheet is reduced greatly and the pick-up roller can surely pick up and convey the sheet one by one from the lower side of the sheets. The support arrangement comprises a roller freely rotating or a roller driven by a driving device, the latter have a circular or elliptical cross-sectional shape. The elliptical roller vibrate the end portion of the sheets opposite to the ejection port to make gaps therebetween.
    • 本发明涉及一种用于分离和输送诸如纸张的纸张的装置,其包括用于容纳由其自重重叠的纸张的收纳箱,拾取辊,其设置成使得其上表面突出到 盒,以承载堆叠纸张的重量,分离装置包括摩擦辊和进给辊,并且设置成面对将纸张从出纸口送出到分离装置的收纳箱的排出口,以及支撑件 布置在与喷射口相对的一侧的布置支撑纸张的与喷射口相对的端部,并且当最下面的纸张移动到最下面的纸张端部以允许最下面的纸张端部没有上述纸张的重量时 喷射口侧使得最下面的片材的摩擦阻力大大降低,并且拾取辊可以可靠地拾起并一个接一个地输送片材 在纸张的下侧。 支撑装置包括一个自由旋转的滚子或由驱动装置驱动的滚子,后者具有圆形或椭圆形的横截面形状。 椭圆形的辊使弹性片的与弹出口相对的端部振动,从而在它们之间形成间隙。
    • 3. 发明申请
    • LUBRICANT AND MAGNETIC DISK DEVICE USING SAME
    • 使用相同的润滑剂和磁性盘装置
    • US20110293965A1
    • 2011-12-01
    • US13146078
    • 2009-12-11
    • Yoko SaitoTomio IwasakiNaoya SasakiMina Amo
    • Yoko SaitoTomio IwasakiNaoya SasakiMina Amo
    • C08G65/22G11B5/725
    • G11B5/725C10M107/38C10M107/40C10M2213/043C10M2217/003C10M2217/065C10N2220/021C10N2220/028C10N2230/56C10N2240/204
    • In a lubricant including a structure of a polymer compound, the structure includes polar groups or side chains having polarity at terminal ends and in at least one intermediate portion of a main chain, and also includes non-polar side chains at the terminal ends or in the intermediate portions of the main chain. For example, any of —OH, —CH2OH, —COOH, —NH2, and —CH2OCH2CH(OH)CH2OH groups is used for the polar group or the side chain having polarity, and a side chain including the structure of the formula (5) or (6) is used for the non-polar side chain.Then, in the lubricant used for a magnetic disk device, the surface energy is suppressed to a low level while a thin film thickness is being kept small for one molecule, thereby realizing stabilization of head-disk interface in the magnetic disk device for a long time. —(CF2O)P—CF3  (5) —(CF2)P—CF3  (6) (where P represents an integer of 0 or greater in the formulas (5) and (6)).
    • 在包含高分子化合物的结构的润滑剂中,该结构包括在末端和主链的至少一个中间部分具有极性的极性基团或侧链,并且还包括在末端或在末端的非极性侧链 主链的中间部分。 例如,对于具有极性的极性基团或侧链使用-OH,-CH 2 OH,-COOH,-NH 2和-CH 2 OCH 2 CH(OH)CH 2 OH中的任何一个,以及包含式(5)的结构的侧链 )或(6)用于非极性侧链。 然后,在用于磁盘装置的润滑剂中,表面能被抑制到低水平,同时对于一个分子的薄膜厚度保持较小,从而实现长时间磁盘装置中的磁头 - 磁盘接口的稳定 时间。 - (CF 2 O)P-CF 3(5) - (CF 2)P-CF 3(6)(其中P表示式(5)和(6)中的0以上的整数)。
    • 5. 发明授权
    • Angular velocity sensor
    • 角速度传感器
    • US07296467B2
    • 2007-11-20
    • US10957129
    • 2004-10-01
    • Toshiyuki KawamuraYoshinori SatohToru MatsunagaTakeshi MaedaNaoya SasakiKazuhiro Chiba
    • Toshiyuki KawamuraYoshinori SatohToru MatsunagaTakeshi MaedaNaoya SasakiKazuhiro Chiba
    • G01C19/00G01P15/08
    • G01C19/5663
    • An angular velocity sensor 1 includes support members 10A1, 10A2, 10B1 and 10B2, bonded to two nodal points of a pillar-shaped oscillator, generated on oscillations of the oscillator, in a manner of sandwiching the nodal points from upper and lower sides of the oscillator. The support members simultaneously serve for mechanically supporting and providing for electrical connection of the oscillator. Upper support members 10A1, 10A2 and lower support members 10B1 and 10B2 for the nodal points include bent parts, the bent parts being bent in the same direction with respect to the longitudinal direction of the oscillator. The upper support members and lower support members also include arms 11 extending at right angles to the up-and-down direction and to the longitudinal direction of the oscillator and connecting portion 13 for the arms and the oscillator.
    • 角速度传感器1包括支撑构件10A 1,10 A 2,10 B 1和10 B 2 ,以从振荡器的上侧和下侧夹住节点的方式结合到在振荡器的振荡上产生的柱状振荡器的两个节点。 支撑构件同时用于机械地支撑并提供振荡器的电连接。 上支撑构件10 A 1,10 A 2和下支撑构件10 B 1和10 B 2,用于 节点包括弯曲部分,弯曲部分相对于振荡器的纵向方向在相同的方向上弯曲。 上支撑构件和下支撑构件还包括臂11,它们与上下方向成直角地延伸,并且还包括用于臂和振荡器的振荡器和连接部分13的纵向。
    • 6. 发明授权
    • Analyzing apparatus and fine particle collecting apparatus
    • 分析装置和微粒收集装置
    • US07275453B2
    • 2007-10-02
    • US10773743
    • 2004-02-06
    • Masanori IshikawaNaoya SasakiKatsumi NagumoShigenori MorishimaHiroshi Naka
    • Masanori IshikawaNaoya SasakiKatsumi NagumoShigenori MorishimaHiroshi Naka
    • G01N1/00
    • G01N1/2214G01N1/2208G01N1/24G01N2001/022G01N2001/028G01N2001/2223
    • A simple and convenient analyzing apparatus is provided which easily, conveniently, and efficiently collects a material in the state of fine particles adhered to a target object, extracts the object to be analyzed, and analyzes the extracted object. An apparatus for detecting fine particles in a gas which sucks the gas under measurement from the target object by using a suction pump, extracts the fine particles contained in the gas under measurement, and performs measurement by using a spectrometer is embodied such that an inertial impactor for collecting the fine particles having diameters not less than a specified particle diameter is disposed upstream of the spectrometer, the fine particles are collected in the fine particle collector of the inertial impactor, the collector containing the collected fine particles is heated such that the collected fine particles are vaporized into a gas, and the vaporized fluid to be examined is supplied to the spectrometer to be measured thereby.
    • 提供了一种简单便利的分析装置,其容易地,方便地且有效地收集粘附到目标物体上的细小颗粒状态的材料,提取待分析物体,并分析提取的物体。 一种用于检测气体中的微粒的装置,其通过使用抽吸泵从目标物体吸取测量中的气体,提取测量气体中所含的微粒,并且通过使用光谱仪进行测量,使得惯性冲击器 为了收集直径不小于规定粒径的微粒,配置在光谱仪的上游侧,将微粒收集在惯性冲击器的微粒收集体中,将收集的微粒的收集体加热使得收集的细 将颗粒蒸发成气体,将待检测的汽化流体供给到待测量的光谱仪。
    • 8. 发明授权
    • Method and apparatus for measuring fabric stress
    • 测量织物应力的方法和装置
    • US5616852A
    • 1997-04-01
    • US601383
    • 1996-02-14
    • Haruji TsubotaNaoya Sasaki
    • Haruji TsubotaNaoya Sasaki
    • G01L5/10G01L5/04
    • G01L5/105
    • A device for measuring woven fabric stress. The device includes a vacuum chamber having high rigidity; a vacuum pump for reducing the pressure in the vacuum chamber; a pressure gauge; a fabric displacement measuring device; and a fabric stress calculator. The vacuum chamber has an opening for sealing engagement with a surface of a fabric under atmospheric pressure. Upon evacuating the air from the vacuum chamber, the atmospheric pressure against the opposite surface of the fabric distends a portion of the fabric into the vacuum chamber. The measure of fabric distension and the reduced pressure reading in the vacuum chamber are transmitted to the fabric stress calculator, which compares the readings to compute a fabric stress reading.
    • 一种用于测量机织织物应力的装置。 该装置包括具有高刚度的真空室; 用于减小真空室中的压力的​​真空泵; 压力表 织物位移测量装置; 和织物压力计算器。 真空室具有用于在大气压力下与织物的表面密封接合的开口。 当从真空室排出空气时,相对于织物的相对表面的大气压使织物的一部分进入真空室。 织物膨胀量和真空室中减压读数的测量被传递到织物应力计算器,该计算器比较读数以计算织物应力读数。
    • 10. 发明申请
    • Angular velocity sensor
    • 角速度传感器
    • US20050115318A1
    • 2005-06-02
    • US10957129
    • 2004-10-01
    • Toshiyuki KawamuraYoshinori SatohToru MatsunagaTakeshi MaedaNaoya SasakiKazuhiro Chiba
    • Toshiyuki KawamuraYoshinori SatohToru MatsunagaTakeshi MaedaNaoya SasakiKazuhiro Chiba
    • G01C19/56G01C19/5663H01L41/08H01L41/187G01P3/44
    • G01C19/5663
    • Disclosed is an angular velocity sensor superior in shock-proofness and in assembling properties. The angular velocity sensor 1 includes support members 10A1, 10A2, 10B1 and 10B2, bonded to two nodal points of a pillar-shaped oscillator, generated on oscillations of the oscillator, in a manner of sandwiching the nodal points from upper and lower sides of the oscillator. The support members simultaneously serve for mechanically supporting and providing for electrical connection of the oscillator. Upper support members 10A1, 10A2 and lower support members 10B1 and 10B2 for the nodal points include bent parts halfway, the bent parts being bent in the same direction with respect to the longitudinal direction of the oscillator. The upper support members and lower support members also include arms 12 extending at right angles to the up-and-down direction and to the longitudinal direction of the oscillator and junction parts 13 for the arms and the oscillator.
    • 公开了一种在防震性和组装性方面优异的角速度传感器。 角速度传感器1包括支撑构件10A 1,10 A 2,10 B 1和10 B 2 ,以从振荡器的上侧和下侧夹住节点的方式结合到在振荡器的振荡上产生的柱状振荡器的两个节点。 支撑构件同时用于机械地支撑并提供振荡器的电连接。 上支撑构件10 A 1,10 A 2和下支撑构件10 B 1和10 B 2,用于 节点包括弯曲部分,弯曲部分相对于振荡器的纵向方向在相同的方向弯曲。 上支撑构件和下支撑构件还包括臂12,该臂12与上下方向成直角地延伸,并且还包括振荡器的纵向方向和用于臂和振荡器的接合部分13。