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    • 41. 发明授权
    • Impact sensing apparatus
    • 冲击感测装置
    • US5483846A
    • 1996-01-16
    • US143882
    • 1993-11-01
    • Kazunori SakamotoTateki KawamuraYutaka Kondoh
    • Kazunori SakamotoTateki KawamuraYutaka Kondoh
    • B60R21/16B60R21/33B60R21/32F42C15/24
    • B60R21/33Y10T74/11
    • An impact sensing apparatus includes a container, a weight swingably supported in the container and which is swung by an impact exceeding a predetermined value, an output member rotatably supported in the container and which engages the weight, the output member disengages the weight by the swing movement of the weight. A spring member is disposed between the container and the output member, which biases the output member so as to be rotated, and urges the weight so as not to swing. The weight includes a stopper portion for contacting the container so as to hold the weight at an initial position. The stopper portion is disposed at an outside edge of the weight and spaced from the pivotal axis of the weight so that the spring member presses against the container in an upwardly direction substantially vertical to a surface of the container.
    • 冲击感测装置包括容器,可摆动地支撑在容器中并通过超过预定值的冲击摆动的重物;可旋转地支撑在容器中并与重物接合的输出构件,输出构件使重量脱离摆动 运动的重量。 弹簧构件设置在容器和输出构件之间,其偏压输出构件以便旋转,并且促使重物不摆动。 重量包括用于使容器接触以将重量保持在初始位置的止动部分。 止动部分设置在重物的外边缘并且与重物的枢转轴线间隔开,使得弹簧构件在基本垂直于容器表面的向上方向上压靠容器。
    • 42. 发明授权
    • Shock detecting device
    • 冲击检测装置
    • US5454322A
    • 1995-10-03
    • US17299
    • 1993-02-12
    • Kazunori SakamotoMasanobu IshikawaKoji ItoYutaka Kondoh
    • Kazunori SakamotoMasanobu IshikawaKoji ItoYutaka Kondoh
    • G01D15/02B60R21/16B60R21/33G01P15/03F42C15/21F42C15/285
    • B60R21/33
    • A shock detecting device includes a housing, a weight disposed in the housing and moved by a shock which is more than a predetermined value from outside, an output member rotatably disposed in the housing and rotated in response to the movement of the weight so as to be projected from the housing and a safety mechanism being provided with a stopper pin which is formed on the weight and which contacts with the housing in an initial condition in order to maintain the weight in the initial condition, a rock lever which is rotatably supported on the housing and which being able to engage or disengage with or from the stopper pin and a first urging device which is disposed between the rock lever and the housing always for urging the rock lever so as to be engaged the rock lever with the stopper pin. According to this improved shock detecting device, it is able to maintain the high reliability of the safety mechanism with a simple structure.
    • 一种冲击检测装置,包括壳体,设置在壳体中并且受到来自外部的超过预定值的冲击而移动的重物,可旋转地设置在壳体中并响应于重物的运动而旋转的输出构件, 从壳体突出并设置有安全机构,该止动销形成在重物上并且在初始状态下与壳体接触以便将重量保持在初始状态,摇杆被可旋转地支撑在 所述壳体能够与所述止动销接合或脱离,以及设置在所述摇杆和所述壳体之间的第一推动装置,其总是用于推动所述摇杆,以使所述摇杆与所述止动销接合。 根据这种改进的冲击检测装置,能够以简单的结构保持安全机构的高可靠性。
    • 43. 发明申请
    • PROCESS FOR PRODUCING TRIPHENYLENE COMPOUND AND CRYSTAL OBTAINED BY THE PROCESS
    • 用于生产三苯乙烯化合物的方法和由该方法获得的晶体
    • US20100191020A1
    • 2010-07-29
    • US12670707
    • 2008-08-06
    • Daisuke TakanoTomokazu KatoToshihiro FujinakaKazunori Sakamoto
    • Daisuke TakanoTomokazu KatoToshihiro FujinakaKazunori Sakamoto
    • C07C39/12C07C37/00
    • C07C39/12C07B2200/13C07C37/11C07C37/84C07C2603/42Y02P20/55
    • An object of the present invention is to provide a process for producing high-purity hydroxytriphenylenes in which not only inexpensive raw materials can be used but also no complicated steps of deprotection such as dealkylation, and reduction and the like are necessary, and which is thereby advantageous in industrial production. Also there is provided a novel crystal of 2,3,6,7,10,11-hexahydroxytriphenylene monohydrate, which has satisfactory thermal stability. The process for producing a compound represented by the general formula (2) is characterized by reacting a compound represented by the general formula (1) in the presence of a metal oxide comprising a metal selected from trivalent iron, pentavalent vanadium and hexavalent molybdenum and of a nonvolatile strong acid: wherein, Rs are each independently a hydrogen atom, a halogen atom, an alkyl group having 1 to 3 carbon atoms or an alkoxy group having 1 to 3 carbon atoms.
    • 本发明的目的是提供一种生产高纯度羟基三苯并噻吩的方法,其中不仅可以使用便宜的原料,而且还不需要复杂的脱保护步骤如脱烷基化和还原等,从而 有利于工业生产。 还提供了具有令人满意的热稳定性的2,3,6,7,10,11-六羟基三亚苯一水合物的新晶体。 由通式(2)表示的化合物的制备方法的特征在于使通式(1)表示的化合物在包含选自三价铁,五价钒和六价钼的金属的金属氧化物的存在下反应, 非挥发性强酸:其中,R 5各自独立地为氢原子,卤素原子,碳原子数为1〜3的烷基或碳原子数为1〜3的烷氧基。
    • 45. 发明授权
    • Occupant load detecting device of seat for vehicle
    • 车辆座椅乘员负载检测装置
    • US07490523B2
    • 2009-02-17
    • US11976715
    • 2007-10-26
    • Kazunori SakamotoHideki KawabataMuneto InayoshiSatohiko NakanoMutsuro Aoyama
    • Kazunori SakamotoHideki KawabataMuneto InayoshiSatohiko NakanoMutsuro Aoyama
    • G01L1/26
    • G01G19/4142B60N2/002B60R21/01516
    • An occupant load detecting device of a seat for a vehicle includes a strain member arranged between a floor-side fixing member and a seat-side fixing member and having a strain gauge, a connecting member fixed to the strain member and securely connected to one of the floor-side fixing member and the seat-side fixing member, a first supporting member relatively immovably fitted into a fixing hole and fixed to an attachment surface formed at the other one of the floor-side fixing member and the seat-side fixing member to support the strain member, a second supporting member fitted into an attachment hole and fixed to the attachment surface, and a bracket including first and second fixing portions and an amplifier case fixing portion continuous with the first and second fixing portions and extending at a side of the strain member in a lateral direction of the seat.
    • 用于车辆的座椅的乘员负载检测装置包括布置在地板侧固定构件和座椅侧固定构件之间并具有应变计的应变构件,固定到应变构件的连接构件,并且牢固地连接到 地板侧固定构件和座椅侧固定构件,第一支撑构件,其相对不可移动地装配到固定孔中并固定到形成在地板侧固定构件和座椅侧固定构件中的另一个的安装表面 以支撑所述应变构件,安装在安装孔中并固定到所述附接表面的第二支撑构件,以及包括第一和第二固定部的支架以及与所述第一和第二固定部连续并在一侧延伸的放大器壳体固定部 在座椅的横向方向上的应变构件。
    • 50. 发明授权
    • Seating load detecting device with bracket mounted sensor
    • 座椅负载检测装置,带支架安装传感器
    • US06397688B1
    • 2002-06-04
    • US09665659
    • 2000-09-20
    • Kazunori SakamotoYoshisaburo TodoMakoto HamadaOsamu Fujimoto
    • Kazunori SakamotoYoshisaburo TodoMakoto HamadaOsamu Fujimoto
    • G01L104
    • B60N2/002
    • A seating load detecting device in which a lower arm for supporting a seat cushion and a seat back is coupled with an upper rail by a front bracket and a rear bracket. A distortion gage is attached to the bracket. The bracket comprises a curved portion of a U-shape or V-shape. The lower arm and the upper rail are coupled to each other with the direction orthogonal to two opposing legs of the curved portion being vertical. The distortion gage has a total of four distortion detecting elements G11 to G22 distributed in a matrix distribution, two attached in the front and back directional plane of the legs and two attached in the width directional plane of the legs. Due to the Wheatstone bridge connection line of these elements, high gain of a seating load detection voltage e with respect to the amount in change of the vertical load Fv can be obtained.
    • 座椅负载检测装置,其中用于支撑座垫和座椅靠背的下臂通过前支架和后支架与上轨道联接。 一个变形量规附在支架上。 支架包括U形或V形的弯曲部分。 下臂和上轨道彼此连接,其中弯曲部分的两个相对的腿的垂直方向正交。 畸变量具有总共四个分布在矩阵分布中的失真检测元件G11至G22,两个附接在腿的前后方向平面中的两个,并且两个附接在腿的宽度方向平面上。 由于这些元件的惠斯登电桥连接线,可以获得相对于垂直负载Fv的变化量的就座负载检测电压e的高增益。