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    • 2. 发明授权
    • Column-and-beam join structure
    • 柱梁连接结构
    • US06739099B2
    • 2004-05-25
    • US10163475
    • 2002-06-05
    • Toru TakeuchiYasushi MaedaKazuaki SuzukiKen OkadaSatoshi YamadaAkira Wada
    • Toru TakeuchiYasushi MaedaKazuaki SuzukiKen OkadaSatoshi YamadaAkira Wada
    • E04B198
    • E04B5/10E04B1/2403E04B2001/2415E04B2001/2439E04B2001/2442E04B2001/2448E04B2001/2454E04C3/04E04C3/30E04C2003/0413E04C2003/0421E04C2003/043E04C2003/0434E04C2003/0452E04C2003/0465Y10T403/73
    • The present invention provides a column-and-beam join structure which absorbs energy caused by a large earthquake or the like by split tees surely yielding at a prescribed value, does not cause other members to fracture, and thus makes it possible to replace only the split tees which have become unusable, and, more specifically, a column-and-beam join structure constructed by attaching and connecting, using bolts 9, the ends 8a of both the upper and lower flanges 8 of a steel beam (H-shaped steel beam) 7 between the webs 6 of a pair of upper and lower split tees 4 the flanges 5 of which are connected to a steel column 1 using bolts 3. The upper limit of the yield stress of the steel material used for the split tees 4 is defined to be not more than twice the lower limit thereof. Further, in order for the web 6 extending from the flange 5 of a split tee 4 in the axial direction of an H-shaped steel beam 7 to absorb earthquake energy by its plasticization, the cross-sectional area of the web 6 is reduced partially and the base end portion 6a of the web 6 is divided from the tip portion 6b which is connected to the flange 8 of the H-shaped steel beam 7.
    • 本发明提供了一种柱形梁接合结构,其通过分开的三通,由大的地震等引起的能量确定地产生规定的值,不会导致其他构件断裂,从而可以仅替换 更具体地说,是使用螺栓9连接和连接钢梁(H型钢)的上下凸缘8的端部8a而构成的柱梁连接结构 横梁)7在一对上,下开口三通4的腹板6之间,其凸缘5使用螺栓3连接到钢柱1上。用于分体三通4的钢材的屈服应力的上限 被定义为不超过其下限的两倍。 此外,为了从H形钢梁7的轴向方向从裂缝三通4的凸缘5延伸的纤维网6通过其增塑而吸收地震能量,纤维网6的横截面积部分地减小 腹板6的基端部6a与H形钢梁7的凸缘8连接的前端部6b分开。
    • 5. 发明申请
    • COIN DISPENSING APPARATUS
    • 硬币分配设备
    • US20070170036A1
    • 2007-07-26
    • US11625466
    • 2007-01-22
    • Toru Takeuchi
    • Toru Takeuchi
    • G07F1/04
    • G07D9/008G07D5/08
    • A coin dispensing apparatus is provided which can detect a dispensed coin without lowering a dispensation speed of coins, even dispensed small-diameter coins without lowering a dispensation speed without damaging a coin detecting device. The coin dispensing apparatus has a throwing-out device and a noncontact type detecting device. A rebound member is provided against which the coin thrown out by the throwing-out device strikes, to rebound in a predetermined direction. The noncontact type coin detecting device continuously detects a coin before the coin strikes against the rebound member and after the coin rebounds.
    • 提供了一种硬币分配装置,其可以在不降低分配速度的情况下检测分配的硬币,而不降低硬币的分配速度,甚至分配小直径硬币,而不损坏硬币检测装置。 硬币分配装置具有投掷装置和非接触式检测装置。 提供一个反弹构件,由抛出装置抛出的硬币撞击该反弹构件,以预定的方向回弹。 非接触式硬币检测装置在硬币撞击回弹部件之前和硬币弹回之后连续检测硬币。
    • 7. 发明授权
    • Impact type clamping apparatus
    • 冲击式夹紧装置
    • US5366026A
    • 1994-11-22
    • US112362
    • 1993-08-27
    • Junichi MaruyamaTeruo FukumuraToru Takeuchi
    • Junichi MaruyamaTeruo FukumuraToru Takeuchi
    • B23P19/06B25B23/14B25B23/151G05D17/02
    • G05D17/02B23P19/066B25B23/1405
    • In an impact type clamping apparatus including a motor unit for generating a pulsatory driving torque, a main spindle driven by said pulsatory driving torque to rotate a fastening member, a detecting unit for detecting a pulsatory torque applied to the main spindle, a calculating circuit for calculating a clamping force in accordance with a peak value of the pulsatory torque, and a control unit for stopping the operation of said motor unit when the calculated clamping force exceeds a desired clamping force, said clamping force is calculated not only from the peak value of the pulsatory torque but also from an increasing coefficient which represents a relationship between the peak value of the pulsatory torque and an increment of the clamping force. The increasing coefficient is gradually decreased in accordance with the increase in the clamping force, so that the clamping force can be calculated very accurately and the fastening member can be clamped with an actual clamping force which is very close to the desired clamping force.
    • 在包括用于产生脉动驱动扭矩的马达单元的冲击式夹紧装置中,由所述脉动驱动扭矩驱动的主轴使紧固构件旋转的检测单元,用于检测施加于主轴的脉动转矩的检测单元, 根据脉动扭矩的峰值计算夹紧力;以及控制单元,用于当计算出的夹紧力超过期望的夹紧力时停止所述马达单元的操作,所述夹紧力不仅从 脉动转矩也来自表示脉动转矩的峰值与夹紧力的增量之间的关系的增加系数。 根据夹紧力的增加,增加的系数逐渐减小,从而可以非常精确地计算夹紧力,并且可以以非常接近期望夹紧力的实际夹紧力夹紧紧固构件。
    • 9. 发明授权
    • Overflow chute apparatus for coin storing
    • 用于硬币存储的溢流斜槽装置
    • US07455579B2
    • 2008-11-25
    • US11690252
    • 2007-03-23
    • Toru Takeuchi
    • Toru Takeuchi
    • G07D1/00
    • G07D9/008
    • A coin storing apparatus with overflow chute apparatus is supplied with coins from a slot-shaped replenishing port to a coin storing portion and stores the coins in piles in the coin storing portion. The coins overflow via a downward overflow chute having a width equal to or larger than a diameter of a coin, when an amount of the coins in the coin storing portion reaches a predetermined amount. A downward slope wider than the diameter of the coin is disposed below the replenishing port. A guide rail is continuous with the downward slope and has a predetermined width narrower than a radius of the coin. A downward overflow chute extends at a predetermined angle to the guide rail and has a width equal to or larger than the diameter of the coin and is provided below the guide rail. The guide rail is disposed on the downward slope adjacent to a downstream side of the overflow chute. A coin dropped from the replenishing port comes in face contact with the downward slope, and then a lower face of the coin on a downstream side of the overflow chute slides on the guide rail to reach the storing portion, and the coins accumulated in the storing portion can be moved to the overflow chute.
    • 具有溢流滑槽装置的硬币存储装置从槽形补充口向硬币存储部分提供硬币,并将硬币存储在硬币存​​储部分中。 当硬币存储部分中的硬币量达到预定量时,硬币通过具有等于或大于硬币直径的宽度的向下的溢流槽溢出。 宽度大于硬币直径的向下倾斜度设置在补充口下方。 导轨与向下的斜面连续,并且具有比硬币的半径窄的预定宽度。 向下的溢流斜槽与导轨以预定的角度延伸,并且具有等于或大于硬币的直径的宽度,并且设置在导轨的下方。 导轨设置在与溢流槽的下游侧相邻的向下斜面上。 从补充口落下的硬币与向下的斜面面接触,然后在溢流槽的下游侧的硬币的下面在导轨上滑动到达存储部,并且硬币积累在存储部 部分可以移动到溢流槽。
    • 10. 发明授权
    • Banknote moving unit for a banknote storing unit
    • 纸币存放单元的钞票移动单元
    • US07252284B2
    • 2007-08-07
    • US11042035
    • 2005-01-25
    • Toru Takeuchi
    • Toru Takeuchi
    • B65H29/44
    • G07D11/0021B65H29/18B65H29/46B65H31/10B65H31/14B65H31/22B65H2701/1912
    • A banknote storing system for providing an economical and space-efficient storage of banknotes of various sizes in a removable banknote storage unit is provided. A banknote transporting unit can move a banknote with a movable elongated belt unit to a position over a gap position on the removable banknote storage unit. The slider unit in the banknote storage unit can move relative to a movable elongated bank unit for forcing the banknote unit into a storage area. The slider unit can form a pair of U-shaped channels that are positioned above the gap for laterally receiving the banknote when transported by the movable elongated belt unit.
    • 提供了一种用于在可拆卸钞票存储单元中提供各种尺寸的纸币的经济且节省空间的存储的钞票存储系统。 纸币传送单元可以将可移动细长带单元的钞票移动到可移除的钞票存储单元上的间隙位置上。 纸币存储单元中的滑块单元可以相对于可移动的细长存储单元移动,以迫使钞票单元进入存储区域。 滑块单元可以形成一对U形通道,其位于间隙上方,用于当由可移动细长带单元传送时侧向接收钞票。