会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明授权
    • Cup holder
    • 杯架
    • US06817584B2
    • 2004-11-16
    • US10228942
    • 2002-08-28
    • Mitsuo Ogura
    • Mitsuo Ogura
    • A47K108
    • B60N3/102A47G23/0208B60N3/106Y10S224/926
    • A cup holder has a frame portion, a receiving portion and a housing portion. The frame portion has two insertion holes. The frame portion has a holding member for abutting on the external surface of a beverage container that is inserted in the insertion hole, thereby holding the container. The holding member is constituted by a central holding member and an outer holding member, and the holding members are supported to be individually rotatable and to be protruded inwardly from the periphery of the insertion hole, respectively. The arrangement is such that the degree of protrusion of the central holding member from the periphery of the insertion hole and the degree of protrusion of the outer holding member from the periphery of the insertion hole are different from each other.
    • 杯架具有框架部分,接收部分和壳体部分。 框架部分具有两个插入孔。 框架部分具有用于抵接在插入插入孔中的饮料容器的外表面上的保持构件,从而保持容器。 保持构件由中央保持构件和外保持构件构成,保持构件分别被支撑为可分别旋转并且从插入孔的周边向内突出。 该布置使得中心保持构件从插入孔的周边突出的程度和外保持构件从插入孔的周边的突出程度彼此不同。
    • 22. 发明授权
    • Pneumatically operated screw driver
    • 气动螺丝刀
    • US6026713A
    • 2000-02-22
    • US106713
    • 1998-06-29
    • Yasuki OhmoriYasuo SasakiMitsuo OguraMichio WakabayashiAkira UnoHiroyasu Ishikawa
    • Yasuki OhmoriYasuo SasakiMitsuo OguraMichio WakabayashiAkira UnoHiroyasu Ishikawa
    • B25B21/02B25B17/00
    • B25B21/023
    • An air motor has a rotor rotatable in response to the pressure of pressurized air. A cylindrical rotary member is connected to the air motor for causing a rotation in synchronism with the rotation of the rotor. A rotary slider is slidable in the axial direction along the inner cylindrical wall of the rotary member. A rotational force transmitting mechanism is provided for transmitting the rotation of the rotary member to the rotary slider. A shaft has one end fixed to the rotary slider and the other end equipped with a piston and a driver bit holder. The rotational and axial motion of the rotary slider is transmitted to a driver bit held in the driver bit holder. And, a cylinder guides the axial slide movement of the piston responsive to the pressure of pressurized air applied on a pressure-receiving surface of the piston.
    • 空气马达具有响应于加压空气的压力而可旋转的转子。 圆柱形旋转构件连接到气动马达,用于与转子的旋转同步地旋转。 旋转滑块可沿旋转构件的内圆筒壁沿轴向滑动。 旋转力传递机构用于将旋转构件的旋转传递到旋转滑块。 轴具有固定到旋转滑块的一端,另一端配备有活塞和驾驶员座架。 旋转滑动件的旋转和轴向运动被传递到保持在驱动器钻头保持器中的驱动器钻头。 并且,气缸响应于施加在活塞的压力接收表面上的加压空气的压力来引导活塞的轴向滑动运动。
    • 23. 发明授权
    • Power screwdriver and clutch mechanism used therein
    • 其中使用的电动螺丝刀和离合器机构
    • US5735183A
    • 1998-04-07
    • US594712
    • 1996-01-31
    • Yasuo SasakiMitsuo OguraYuuichi Satou
    • Yasuo SasakiMitsuo OguraYuuichi Satou
    • B25B21/00B25B23/14B25B23/155B25B23/157F16D13/08
    • B25B23/0064B25B21/00B25B23/14F16D13/08
    • A power screw driver includes a clutch mechanism composed of a coiled clutch spring so designed as to entangle a drive shaft member and an output shaft member to connect them together, thereby enabling the drive and output shaft members to rotate in unison. By the use of the coiled clutch spring, the clutch engaging operation is achieved smoothly and silently without accompanying impact blow or shock, thereby securing reliable transmission of a torque from the drive shaft member to the output shaft member. The coiled clutch spring may be activated only when the drive shaft member is rotating in the forward direction, in which instance a one-way clutch is used to undertake transmission of the torque when the drive shaft member is rotating in the reverse direction. As an alternative, a single clutch spring may be used to undertake transmission of the torque in the forward and reverse rotational directions. Alternatively, two coiled clutch springs each provided for one rotational direction may be used.
    • 动力螺杆驱动器包括离合器机构,该离合器机构由设计成缠绕驱动轴构件和输出轴构件的线圈式离合器弹簧构成,以将它们连接在一起,从而使驱动和输出轴构件能够一致地旋转。 通过使用线圈式离合器弹簧,离合器接合操作平稳无声地实现,而没有伴随冲击或冲击,从而确保扭矩从驱动轴构件到输出轴构件的可靠传递。 线圈离合器弹簧只有当驱动轴构件向前方向旋转时才能起动,在这种情况下,当驱动轴构件沿相反方向旋转时,使用单向离合器来承受扭矩的传递。 作为替代,可以使用单个离合器弹簧在正向和反向旋转方向上进行扭矩的传递。 或者,可以使用各自设置在一个旋转方向上的两个盘绕离合器弹簧。
    • 24. 发明授权
    • Vacuum pump with helically threaded cylinders
    • 真空泵带有直升机缸
    • US5154572A
    • 1992-10-13
    • US649766
    • 1991-01-25
    • Takeshi ToyoshimaMitsuo Ogura
    • Takeshi ToyoshimaMitsuo Ogura
    • F04D19/04
    • F04D19/044F05B2250/25F05B2250/281
    • A vacuum pump includes a rotatable cylinder rotatably disposed coaxially around an inner stationary cylinder and in an outer stationary cylinder. The rotatable cylinder has a plurality of recesses defined in inner and outer circumferential surfaces thereof. The outer stationary cylinder has a helical groove defined in an inner circumferential surface thereof. The inner stationary cylinder has a helical groove defined in an outer circumferential thereof. The rotatable cylinder is rotated by a motor to deliver a gas axially along the helical grooves. The recesses are effective to produce turbulent flows in the gas to increase the rate at which the gas is discharged. The recesses have an axial length smaller than the transverse width of helical threads on the outer circumferential surface of the inner stationary cylinder and the inner circumferential surface of the outer stationary cylinder, to minimize any gas leakage across the helical threads.
    • 真空泵包括可旋转的圆筒,该可旋转圆筒可旋转地同轴地设置在内部静止圆筒和外部静止圆筒的周围。 可旋转圆筒具有限定在其内圆周表面和外圆周表面中的多个凹部。 外固定筒具有限定在其内圆周表面中的螺旋槽。 内固定筒具有限定在其外周的螺旋槽。 可旋转的气缸由马达旋转以沿着螺旋槽轴向地输送气体。 这些凹槽有效地在气体中产生湍流以增加排出气体的速率。 这些凹部的轴向长度小于内固定筒的外圆周表面和外固定圆筒的内圆周表面上的螺旋螺纹的横向宽度,以最小化穿过螺旋螺纹的任何气体泄漏。
    • 25. 发明授权
    • Cup holder
    • 杯架
    • US08353495B2
    • 2013-01-15
    • US12948849
    • 2010-11-18
    • Mitsuo Ogura
    • Mitsuo Ogura
    • A47K1/08
    • B60N3/106
    • In a non-use state where no beverage container is housed in a housing space, holding claws are urged by a ring spring to an advanced reference position where the holding claws are mostly advanced into the housing space and a bottom plate is urged by a coil spring to a highest reference position where the bottom plate is mostly moved upwardly. When a beverage container is housed in the housing space, the holding claws are pushed toward the radial outer direction of the housing space by the side surface of the beverage container, whereby the holding claws move backwardly against the urging force of the ring spring. Simultaneously, since the weight of the beverage container is applied to the bottom plate, the bottom plate moves downwardly against the urging force of the coil spring, whereby a lock member moves downwardly together with the downward movement of the bottom plate. Thus, since a restricted slanted surface abuts against the lock member, the weight of the beverage container is transmitted to a restricted vertical surface from the lock member, so that the backward movement of the holding claw is restricted.
    • 在没有饮料容器容纳在容纳空间中的非使用状态下,保持爪通过环形弹簧被推动到高级参考位置,其中保持爪大部分进入容纳空间,并且底板被线圈 弹簧到底板大部分向上移动的最高参考位置。 当饮料容器容纳在容纳空间中时,保持爪通过饮料容器的侧表面被推向容器空间的径向外侧,由此保持爪克服环形弹簧的推动力向后移动。 同时,由于饮料容器的重量被施加到底板,底板抵抗螺旋弹簧的推动力向下移动,由此锁定构件随着底板的向下运动而向下移动。 因此,由于限制的倾斜表面与锁定构件抵接,因此饮料容器的重量从锁定构件传递到限制的垂直表面,从而限制了保持爪的向后移动。
    • 26. 发明授权
    • Container holder device
    • 集装箱装置
    • US07828171B2
    • 2010-11-09
    • US11702487
    • 2007-02-06
    • Mitsuo OguraKenji Asano
    • Mitsuo OguraKenji Asano
    • B65D25/00B65D43/26B60R13/00B60N3/12
    • B60N3/102
    • The container holder device includes a rotary body which is fixed to the lid body and held so as to slide up and down with respect to the holder body and so as to rotate, and a guide body which is formed on a side wall of the holder body. The rotary body is engageable with the guide body to rotate, along with the upward and downward sliding movements of the rotary body. Because the rotary body is engageable with the guide body to rotate, along with the upward and downward sliding movements of the rotary body, the rotary body can stably rotate while sliding. Because the lid body will rotate together with the rotary body while sliding, the lid body will move stably between the closed position and the open position. As the results, the moving orbit of the lid body can be made small, and the inner diameter of the storage space can be made small.
    • 容器保持装置包括:旋转体,其固定在盖体上并保持成相对于保持体上下滑动并旋转;导向体,其形成在保持架的侧壁上 身体。 旋转体可与引导体接合以随着旋转体的向上和向下滑动运动而旋转。 由于旋转体与引导体接合以旋转,所以随着旋转体的向上和向下滑动运动,旋转体可以在滑动的同时稳定地旋转。 因为盖体在滑动的同时与旋转体一起旋转,因此盖体将在关闭位置和打开位置之间稳定地移动。 结果,可以使盖体的移动轨道变小,并且可以使存储空间的内径小。
    • 27. 发明授权
    • Console-sliding structure
    • 控制台滑动结构
    • US07530615B2
    • 2009-05-12
    • US11902381
    • 2007-09-21
    • Mitsuo Ogura
    • Mitsuo Ogura
    • B60J7/00
    • B60R7/04
    • A sliding structure slidably supports a wheel by a groove of a rail. The wheel is rotatably supported to a movable console through a supporting shaft. The sliding structure includes an elastic deforming portion which is elastically deformed when an overload is vertically applied to the movable console and is restored to the original state when its application ceases; an ascending/descending portion which descends with elastic deformation of the elastic deforming portion and ascends with restoration; and a bottom of a tray serving as a pressure receiving portion, which is provided on an ascending/descending path of the ascending/descending portion and comes in contact with the ascending/descending portion 79 descended to receive a part of the overload.
    • 滑动结构通过轨道的凹槽可滑动地支撑车轮。 车轮通过支撑轴可旋转地支撑在可动控制台上。 滑动结构包括弹性变形部,当过载垂直地施加到可移动控制台时弹性变形,并且当应用停止时恢复到初始状态; 上升/下降部分随着弹性变形部分的弹性变形而下降并随着恢复而上升; 以及用作压力接收部分的托盘的底部,其设置在上升/下降部分的上升/下降路径上并与上升/下降部分79接触以下降以接收一部分过载。
    • 28. 发明申请
    • Cup holder
    • 杯架
    • US20080029672A1
    • 2008-02-07
    • US11826850
    • 2007-07-19
    • Mitsuo Ogura
    • Mitsuo Ogura
    • B60N3/10
    • B60N3/106Y10S224/926
    • A cup holder includes a box-shaped body having a holder opening at the top, a supporting arm, an urging element urging the supporting arm to come inward into the holder opening of the box-shaped body, an engaging element engages temporarily the supporting arm at a retreated position, an enabling/disabling element enabling the urging action of the urging element and disabling the engagement action of the engaging element by a pressing force resulting from a container, a fixing element, and a releasing element. The fixing element includes a mechanical mechanism, which fixes the supporting arm to bring it into contact with the container. The releasing element includes a mechanical mechanism, which releases the supporting arm from the fixing action of the fixing element upon taking out the container, and enables the supporting arm to come outward out of the holder opening.
    • 杯架包括:箱体,其具有在顶部的开口,支撑臂,推动元件推动支撑臂向内进入箱形主体的保持器开口;接合元件暂时接合支撑臂 在退避位置,启用/禁用元件能够通过由容器,固定元件和释放元件产生的按压力来实现推动元件的推动作用和禁止接合元件的接合动作。 固定元件包括机械机构,其固定支撑臂以使其与容器接触。 释放元件包括机械机构,其在取出容器时从固定元件的固定动作释放支撑臂,并且使支撑臂能够从保持器开口向外外侧。
    • 29. 发明申请
    • Container holder device
    • 集装箱装置
    • US20070227918A1
    • 2007-10-04
    • US11702487
    • 2007-02-06
    • Mitsuo OguraKenji Asano
    • Mitsuo OguraKenji Asano
    • B65D77/00
    • B60N3/102
    • The container holder device includes a rotary body which is fixed to the lid body and held so as to slide up and down with respect to the holder body and so as to rotate, and a guide body which is formed on a side wall of the holder body. The rotary body is engageable with the guide body to rotate, along with the upward and downward sliding movements of the rotary body. Because the rotary body is engageable with the guide body to rotate, along with the upward and downward sliding movements of the rotary body, the rotary body can stably rotate while sliding. Because the lid body will rotate together with the rotary body while sliding, the lid body will move stably between the closed position and the open position. As the results, the moving orbit of the lid body can be made small, and the inner diameter of the storage space can be made small.
    • 容器保持装置包括:旋转体,其固定在盖体上并保持成相对于保持体上下滑动并旋转;导向体,其形成在保持架的侧壁上 身体。 旋转体可与引导体接合以随着旋转体的向上和向下滑动运动而旋转。 由于旋转体与引导体接合以旋转,所以随着旋转体的向上和向下滑动运动,旋转体可以在滑动的同时稳定地旋转。 因为盖体在滑动的同时与旋转体一起旋转,因此盖体将在关闭位置和打开位置之间稳定地移动。 结果,可以使盖体的移动轨道变小,并且可以使存储空间的内径小。
    • 30. 发明授权
    • Register for air conditioning
    • 注册空调
    • US07018288B2
    • 2006-03-28
    • US10889045
    • 2004-07-13
    • Makoto OkadaMitsuo OguraKenji AsanoJunichiro Kako
    • Makoto OkadaMitsuo OguraKenji AsanoJunichiro Kako
    • B60H1/34
    • B60H1/345B60H1/3421B60H2001/3478
    • An air-conditioning register includes a cylinder-shaped retainer having opposite inner surfaces, a fin assembly including a plurality of fin members disposed in the retainer, a first connector connecting the fin members, a second connector, and a guide guiding the second connector on a predetermined track. The fin members includes paired fin members disposed in proximity to the opposite inner surfaces of the retainer, at least one of the paired fin members swinging by a swing angle smaller than that of all of the other fin members, and functioning as a dummy fin member keeping a constant angle independently within a predetermined swing-angle range where all of the other fin members swing. The second connector connects the dummy fin member and all of the other fin members while absorbing a swing-angle difference between the dummy fin member and all of the other fin members.
    • 空调装置包括具有相对的内表面的圆柱形保持器,包括设置在保持器中的多个翅片构件的翅片组件,连接翅片构件的第一连接器,第二连接器和引导第二连接器的引导件 预定轨道 翅片构件包括成对的翅片构件,其设置在保持器的相对的内表面附近,所述一对翅片构件中的至少一个摆动摆动角小于所有其它翅片构件的摆动角度,并且用作虚拟翼片构件 在所有另一个翅片构件摆动的预定摆动范围内独立地保持恒定的角度。 第二连接器连接虚拟翅片构件和所有其它翅片构件,同时吸收虚拟翅片构件和所有其它翅片构件之间的摆角差。