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    • 2. 发明专利
    • フリータイプ双方向クラッチ
    • 免费型双向离合器
    • JP2015021526A
    • 2015-02-02
    • JP2013148316
    • 2013-07-17
    • オリジン電気株式会社Origin Electric Co Ltd
    • IIYAMA TOSHIO
    • F16D41/02F16H35/00
    • F16D43/02F16D41/00
    • 【課題】入出力軸間の動力伝達の向きにより伝達状態を変更するフリータイプ双方向クラッチにおいて、簡易な構造で伝達トルクの増大等を図る。【解決手段】固定のハウジング1の内部に、共通の回転軸を備えた入力軸2と出力軸3とを設置するとともに、複数の外歯6tが形成された作動子6と、同一歯数の内歯5tが形成された円筒部材5とを組み合わせて設置する。入力軸2の回転時には、作動子6、円筒部材5及び出力軸3がロック状態となって、入力軸2の回転が出力軸3に伝達される。逆に出力軸3が回転したときは、出力軸3の偏心輪3sにより作動子6の中心が円周上を移動するが(公転)、作動子6は自転せず、円筒部材5には回転トルクが作用しない。入力軸2の穴部2rと作動子6の突軸6sとの関係も同様であり、出力軸3が回転しても入力軸2が回転することはなく、動力伝達は遮断される。【選択図】図1
    • 要解决的问题:通过简单的结构在自由式双向离合器中增加传动扭矩,用于根据输入轴和输出轴之间的动力传递方向改变传动状态。解决方案:输入轴2和 具有共同旋转轴的输出轴3安装在固定壳体1内,形成有多个外齿6t的致动元件6和形成有与外齿相同数量的内齿5t的圆柱形构件5是 相结合并安装。 当输入轴2旋转时,致动元件6,圆柱形构件5和输出轴3被锁定,从而使输入轴2转动以传递到输出轴3.而且,当输出轴3 驱动元件6的中心通过输出轴3的偏心环3s(旋转)在圆周上移动,致动元件6不显示任何自动旋转,并且旋转扭矩在圆柱形构件上不起作用 输入轴2的孔部2r与致动元件6的突出轴6s的关系与上述结构相同,即使输出轴3旋转,输入轴2也不旋转 并断电。
    • 3. 发明专利
    • トルクリミッタ及びトルクリミッタユニット
    • 扭矩限制和扭矩限制单元
    • JP2014238131A
    • 2014-12-18
    • JP2013120643
    • 2013-06-07
    • オリジン電気株式会社Origin Electric Co Ltd
    • ISOBE TAROWATANABE SHUNICHIMORIMOTO ISAMUIUCHI HARUHI
    • F16D7/02F16D41/02
    • F16D7/022F16D43/211
    • 【課題】内輪部材の摩耗の軽減及び部品点数の削減ができ、しかもコスト低減が図れるトルクリミッタ及びトルクリミッタユニットを提供することである。【解決手段】内輪部材12の外周面に潤滑剤を介して締まり嵌めされるコイルバネ13を樹脂で形成し、コイルバネ13と接触する内輪部材12の外周面のうち、コイルバネ13の先端部が接触する部分を除いた外周面に複数の凸部15を形成し、そのコイルバネ13の後端部を外輪部材14で保持し、内輪部材12と外輪部材14との間のトルクが所定値以下のときはコイルバネ13がスリップせずに内輪部材12と外輪部材14との間でトルク伝達を行い、内輪部材12と外輪部材14との間のトルクが所定値を超えたときはコイルバネ13がスリップして内輪部材12と外輪部材14との間のトルク伝達を遮断する。【選択図】図1
    • 要解决的问题:为了提供能够减轻内圈构件的摩擦的扭矩限制器,可以减少零件的数量,并且可以降低成本,并且可以降低成本。扭矩限制器单元。解决方案:收缩的螺旋弹簧13 通过润滑剂配合到内圈构件12的外周面由树脂形成,在外周面形成多个突起15,除了螺旋弹簧13的尖端与其接触的部分之外 当内环构件12和外圈构件14之间的转矩不高时,内圈构件12的外周面与螺旋弹簧13接触,螺旋弹簧13的后端由外圈构件14保持 超过规定值时,扭矩在内圈部件12与外圈部件14之间传递而不会使螺旋弹簧13滑动,并且当内圈部件12与外圈部件14之间的转矩超过规定值时, 螺旋弹簧13滑动,并且内圈构件12与外圈构件14之间的转矩传递被阻挡。
    • 4. 发明专利
    • 塗料
    • 涂料配方
    • JP2014208841A
    • 2014-11-06
    • JP2014139585
    • 2014-07-07
    • オリジン電気株式会社Origin Electric Co Ltd
    • KUGA NORIYUKI
    • C09D127/04C09D7/12
    • C09D7/12
    • 【課題】エステル系有機溶媒、ケトン系有機溶媒、アルコール系有機溶媒、および非芳香族炭化水素系有機溶媒のうちの1種以上から構成される有機溶媒を用いた塗料、言い換えると、トルエン、キシレン、エチルベンゼン等の芳香族炭化水素を含有しない有機溶媒を用いた塗料であって、ポリオレフィン基材に塗膜として塗装した際、優れた付着性を有するとともに、耐傷付き性を向上させる塗料を提供する。【解決手段】エステル系有機溶媒、ケトン系有機溶媒、アルコール系有機溶媒、および非芳香族炭化水素系有機溶媒のうちの1種以上から構成される有機溶媒と、アクリル変性塩素化ポリオレフィン樹脂(A)と、多孔質性の樹脂粒子(B)と、脂肪酸アミド(C)と、を含むことを特徴とする。【選択図】なし
    • 要解决的问题:为了提供使用由选自酯类有机溶剂,酮类有机溶剂,醇类有机溶剂和非芳族烃系溶剂中的至少一种构成的有机溶剂的涂料配方,在其他 使用不含芳香烃如甲苯,二甲苯和乙苯的有机溶剂的涂料配方,当涂布在聚烯烃基材上以形成涂膜时,其涂布性能优异,并且改善耐刮擦性。 解决方案:涂料配方包括:由选自酯基有机溶剂,酮基有机溶剂,醇基有机溶剂和非芳族烃类溶剂中的至少一种组成的有机溶剂; 丙烯酸改性氯化聚烯烃树脂(A); 多孔树脂颗粒(B); 和脂肪酰胺(C)。
    • 5. 发明专利
    • Ac-dc power conversion device
    • AC-DC电源转换器件
    • JP2014166050A
    • 2014-09-08
    • JP2013035588
    • 2013-02-26
    • Origin Electric Co Ltdオリジン電気株式会社
    • MASUDA TADASHIOMAKI SHINICHI
    • H02M7/12
    • PROBLEM TO BE SOLVED: To provide an AC-DC power conversion device capable of detecting an accurate input current not dependent on a load factor without using a CT for current detection usable for utility AC and capable of being operated with low distortion.SOLUTION: Provided is an AC-DC power conversion device equipped with a circuit having two switching elements connected in series between input terminals via inductor means. A control circuit 3 has amplification means 31, 32, the input terminals at one end of which have a voltage across opposite ends of detection means 14, 15 input thereto, and the input terminals at other ends of which are connected to the anode sides of diodes D1, D2 respectively via diodes D1, D2 whose cathode sides are connected on the output side respectively, and pulse width control means 39 to which a signal corresponding to input currents based on respective signals output via the diodes D1, D2 from the amplification means 31, 32 is input, and which outputs a pulse-shaped signal, with switching elements 12, 13 turned on and off on the basis of the pulse-shaped signal output from the pulse width control means 39.
    • 要解决的问题:提供一种AC-DC电力转换装置,其能够检测不依赖于负载系数的精确输入电流,而不使用用于公用事业AC的电流检测用CT并能够以低失真操作。解决方案:提供 是具有通过电感器装置串联连接在输入端子之间的两个开关元件的电路的AC-DC电力转换装置。 控制电路3具有放大装置31,32,其一端的输入端具有输入到其的检测装置14,15的相对端的电压,其另一端的输入端连接到 分别通过其阴极侧分别连接在输出侧的二极管D1,D2的二极管D1,D2以及基于从放大装置经二极管D1,D2输出的相应信号的与输入电流对应的信号的脉冲宽度控制装置39 31,32输入,并根据从脉冲宽度控制装置39输出的脉冲信号,输出开关元件12,13导通和截止的脉冲状信号。
    • 6. 发明专利
    • Free-type bidirectional clutch
    • 免费型双向离合器
    • JP2014152857A
    • 2014-08-25
    • JP2013022880
    • 2013-02-08
    • Origin Electric Co Ltdオリジン電気株式会社
    • IIYAMA TOSHIO
    • F16D41/02F16H1/28
    • PROBLEM TO BE SOLVED: To achieve an increase or the like of transmittable torque, and to perform exact rotation control, in a free-type bidirectional clutch which changes a power transmission state between an input shaft and an output shaft.SOLUTION: A rotatable inner housing 2 is arranged in a fixed outer housing 1, and a planetary gear mechanism having a first planetary gear train and a second planetary gear train is accommodated in the inner housing. In both the planetary gear trains, a common sun gear SG is arranged and connected to an output shaft 5; a first ring gear RG1 and a second ring gear RG2 which have the same number of teeth are arranged; the first ring gear RG1 is firmly adhered to the inner housing 2; and the second ring gear RG2 is connected to an input shaft 4 via a gear. In blocking power transmission from the output shaft 5 to the input shaft 4, the output shaft 5 is idled by using the planetary gear mechanism, and in permitting power transmission from the input shaft 4 to the output shaft 5, the whole of the planetary gear mechanism is locked, and the inner housing 2 is integrated to the input shaft 4 and the output shaft 5.
    • 要解决的问题:在输入轴和输出轴之间改变动力传递状态的自由型双向离合器中,为了实现可传递扭矩的增加等,并进行精确的旋转控制。解决方案:可旋转的内部 壳体2设置在固定的外壳1中,并且具有第一行星齿轮系和第二行星齿轮系的行星齿轮机构容纳在内壳中。 在两个行星齿轮系中,共同的太阳轮SG布置并连接到输出轴5; 布置具有相同齿数的第一齿圈RG1和第二齿圈RG2; 第一齿圈RG1牢固地粘附到内壳体2; 并且第二齿圈RG2经由齿轮连接到输入轴4。 在阻止从输出轴5到输入轴4的动力传递中,输出轴5通过使用行星齿轮机构而空转,并且在允许从输入轴4到输出轴5的动力传递的同时,整个行星齿轮 机构被锁定,并且内壳2与输入轴4和输出轴5成一体。
    • 7. 发明专利
    • Storage battery charger/discharger and storage battery system
    • 存储电池充电器/放电器和存储电池系统
    • JP2014128179A
    • 2014-07-07
    • JP2012285946
    • 2012-12-27
    • Origin Electric Co Ltdオリジン電気株式会社
    • SUDO TAKUYA
    • H02J7/10H01M10/44
    • PROBLEM TO BE SOLVED: To provide a storage battery charger/discharger and a storage battery system having a relatively simple circuit configuration and capable of reducing a loss during a discharge, thereby helping solve the problem of a system provided with a storage battery for supplying power from a converter to a load, that a charger and a discharger for the storage battery makes circuit configuration and operation complicated, giving rise to a loss at the time of a discharge via a diode.SOLUTION: In a charger/discharger 5 and a storage battery system 10 pertaining to the present invention, when a storage battery voltage reaches a target value at charge time, a control unit switches a control signal for reduction to lower than a storage battery current when a voltage target value is reached, and causes the battery to be charged until the storage batter voltage declining to a value lower than the target value reaches a next target value; at discharge time, a FET is made to conduct electricity in a direction opposite to that at charge time, causing the energy of the storage battery to be supplied to a load.
    • 要解决的问题:提供具有相对简单的电路结构并能够减少放电时的损耗的蓄电池充电器/放电器和蓄电池系统,从而有助于解决设置有用于供电的蓄电池的系统的问题 从转换器到负载,蓄电池的充电器和放电器使电路配置和操作复杂,在通过二极管放电时引起损耗。解决方案:在充电器/放电器5和存储器 电池系统10,当蓄电池电压在充电时间达到目​​标值时,控制单元在达到电压目标值时将用于还原的控制信号切换成低于蓄电池电流,并且使电池 直到存储电池电压下降到低于目标值的值才能达到下一个目标值; 在放电时,使FET以与充电时间相反的方向导通电力,从而将蓄电池的能量供给到负载。
    • 9. 发明专利
    • Reverse input cut-off clutch
    • 反向输入切断离合器
    • JP2014081037A
    • 2014-05-08
    • JP2012229480
    • 2012-10-17
    • Origin Electric Co Ltdオリジン電気株式会社
    • ISOBE TAROWATANABE SHUNICHIMORIMOTO ISAMUIUCHI HARUHI
    • F16D63/00
    • PROBLEM TO BE SOLVED: To provide a reverse input cut-off clutch having an input member capable of responding to high-load.SOLUTION: A reverse input cut-off clutch of this invention is constituted such that an input acting against an input member 11 is transmitted to an output member 12 under an action that an input engaging piece 11a pushes against an output engaging piece 12c of the output member 12 and a reverse input acting against the output member 12 is not transmitted to the input member 11 under an action that an engaging member 13 is locked between the extremity end surface of the output engaging piece 12c and a cylindrical inner surface of an outer ring member 15. The input member 11 is formed while being divided into two segments, i.e. an input engaging part 19 having the input engaging piece 11a and added with an external input and a connecting part 20 abutted against the inner surface of the outer ring member 15 and slid. The input engaging part 19 is formed of metal and the connecting part 20 is formed of resin.
    • 要解决的问题:提供具有能够响应高负荷的输入构件的反向输入切断离合器。解决方案:本发明的反向输入切断离合器构成为使得输入部件11 在输入接合件11a推动输出构件12的输出接合件12c的作用下被传递到输出构件12,并且作用在输出构件12上的反向输入不会以下述动作传递到输入构件11: 接合构件13被锁定在输出接合件12c的末端表面和外圈构件15的圆柱形内表面之间。输入构件11被形成为分成两段,即具有 输入接合件11a,并且附加有外部输入和与外圈构件15的内表面抵接并滑动的连接部20。 输入接合部19由金属形成,连接部20由树脂形成。
    • 10. 发明专利
    • Reverse input cutoff clutch
    • 反向输入切割离合器
    • JP2014081020A
    • 2014-05-08
    • JP2012228596
    • 2012-10-16
    • Origin Electric Co Ltdオリジン電気株式会社
    • ISOBE TAROWATANABE SHUNICHIMORIMOTO ISAMUIUCHI HARUHI
    • F16D41/10F16D63/00
    • PROBLEM TO BE SOLVED: To provide a reverse input cutoff clutch capable of safely keeping a close relation between a braking load attained by a braking member and a torsional load.SOLUTION: A braking member 11 generates a braking load so as not to cause an engaging member 14 to move until a locked state is established by an output engaging piece 13c, engaging member 14 and outer ring member 15 when a reverse input acts against an output member 13 and at the same time when an inputting direction of the input member 12 is the same direction as that of reverse input of the output member 13, the locked state of the output member 13 is held and when an inputting direction of the input member 12 is an opposite direction to a reverse input of the output member 13, the engaging member may generate a torsional load holding the engaging member does not reach to the lock position. At the braking member 11, a location generating the braking load and a location generating a torsional load are locations where the braking load and the torsional load are not influenced from each other.
    • 要解决的问题:提供一种能够安全地保持由制动构件获得的制动负荷与扭转载荷之间的紧密关系的反向输入切断离合器。解决方案:制动构件11产生制动负载,以便不引起接合 当反向输入作用在输出构件13上时,构件14移动直到通过输出接合件13c,接合构件14和外圈构件15建立锁定状态,并且同时当输入构件12的输入方向为 与输出构件13的反向输入方向相同的方向,保持输出构件13的锁定状态,并且当输入构件12的输入方向与输出构件13的反向输入相反的方向时,接合 构件可能产生扭转载荷,该扭转载荷保持接合构件未到达锁定位置。 在制动构件11处,产生制动负荷的位置和产生扭转载荷的位置是制动负载和扭转载荷彼此不受影响的位置。