序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 一种可手动摇头定位结构及自动摇头装置 CN201220420213.6 2012-08-23 CN202838086U 2013-03-27 陈伟乐; 杨立平; 侯剑飞; 钟锦富; 李春宏; 张培德
本实用新型涉及一种可手动摇头定位结构及自动摇头装置,其中,一种用于自动摇头装置的可手动摇头定位结构,所述自动摇头装置包括自动转头动机构、曲柄支撑体、机头、连杆,机头设有插于支撑体的支撑转轴,自动转头动力机构固定地设于机头上,自动转头动力机构连接曲柄,曲柄连接连杆的摆动端;所述可手动摇头定位结构包括轴套及轴套转动调节组件,轴套套设于支撑转轴上并且连接连杆的自转端,轴套转动调节组件设于支撑体上并对轴套进行可手动调节地定位。本实用新型可手动摇头定位结构能更好地实现自动摇头装置的摇头功能。
2 Apparatus for adjusting individual actuating cams of a pusher conveyor EP84305939.5 1984-08-30 EP0145128A1 1985-06-19 Kingsbury, Charles Mason; Beckwith, Bruce Roscoe

A conveyor cam adjusting apparatus permitting adjustment of the radial position of each cam (30) on a drive shaft (32) while it is rotating. A plurarity of individual electric motors (44) are mounted for rotation about a common drive shaft (32) each motor (44) being associated with a single cam (30). Each motor (44) is provided with a means (149) for manually selectively connecting it to a control means in order to enable an operator to rotate the associated cam (30) relative to the common drive shaft (32) while the shaft (32) is rotating. A sensing means (150) may be used to detect the position of each cam (30) relative to a predetermined reference position and the output of the sensing means (150) may be used by a computer control means to automatically selectively activate each motor (44) to adjust the associated cam (30) accordingly.

3 PRESSURIZED DEFORMABLE ACTUATING DEVICE AND METHOD THEREOF PCT/IL2008/001170 2008-08-28 WO2009027979A2 2009-03-05 WOLF, Alon

A deformable actuating device comprises at least one inflatable tube having an inlet for inflating a space within the tube by a pressurized fluid. The tube has a wall with sections of different elasticity along the tube so as to cause the tube to bend in a predetermined direction when inflated

4 ENSEMBLE DE TRANSMISSION D'EFFORTS ET ENSEMBLE DE COMMANDE COMPRENANT UN TEL ENSEMBLE PCT/FR2009/052073 2009-10-27 WO2010049644A1 2010-05-06 ROUSSEY, Bastien, Jean, Charles

Cet ensemble (1) de transmission d'efforts permettant notamment la transmission d'efforts entre un levier et un organe directionnel, comprend : un dispositif de transmission d'efforts (8) comportant un arbre (81) définissant un axe central (X-X), et; un dispositif d'accompagnement d'efforts (3) comportant : une came (71), l'arbre et la came étant adaptés pour être mobiles en rotation de manière relative l'un par rapport à l'autre; un poussoir (6), adapté pour coopérer avec la came et pour se translater le long de l'arbre, et; un organe élastique (9) adapté pour travailler en compression sous l'effet d'un mouvement en translation du poussoir (6), ce mouvement de translation étant provoqué par la mise en marche de l'ensemble de transmission. Le poussoir (6) comprend, à la fois, un corps (68) conçu pour recevoir des galets de came (621; 622) adaptés pour coopérer avec la came (71), et une douille à billes (64) disposée dans le corps, la douille étant adaptée pour coopérer avec l'arbre (81).

5 ENSEMBLE DE TRANSMISSION D'EFFORTS ET ENSEMBLE DE COMMANDE COMPRENANT UN TEL ENSEMBLE EP09760227.0 2009-10-27 EP2349832B1 2013-09-04 ROUSSEY, Bastien, Jean, Charles
6 ENSEMBLE DE TRANSMISSION D'EFFORTS ET ENSEMBLE DE COMMANDE COMPRENANT UN TEL ENSEMBLE EP09760227.0 2009-10-27 EP2349832A1 2011-08-03 ROUSSEY, Bastien, Jean, Charles
The invention relates to a force transmission unit (1), particularly enabling the transmission of forces between a lever and a steering member, including: - a force transmission device (8) comprising a shaft (81) defining a central axis (X-X), and – a force accompanying device (3) comprising: - a cam (71), the shaft and the cam being suitable for being rotatably mobile in relation to one another, - a push member (6) suitable for engaging with the cam and for translating along the shaft, and – and a resilient member (9) suitable for working under compression during a translation movement of the push member (6), said translation movement being caused by activating the transmission unit. The push member (6) includes, at the same time, a body (68) designed for receiving cam followers (621; 622) suitable for engaging with the cam (71), and a linear bearing (64) arranged in the body, the bearing being suitable for engaging with the shaft (81).
7 Magnetic locking mechanism for prosthetic or orthotic joints US16901995 2020-06-15 US11707365B2 2023-07-25 Arinbjörn Viggo Clausen
A magnetic locking actuator for a prosthetic or orthotic device is provided. The actuator includes a first component including one or more magnets and a second component including one or more magnets. The first and second components are coupled to separate portions of the device. The magnets allow for adjustment of a length of the actuator to adjust an angular orientation of the first and second portions of the device. When magnets in the second component are aligned with magnets in the first component having an opposite polarity, a position of the second component is fixed relative to the first component, locking the actuator. When magnets in the second component are not aligned with magnets in the first component having the opposite polarity, the position of the second component is adjustable relative to the first component, thereby allowing adjustment of the height of the actuator.
8 Power assistance control device US532536 1983-09-15 US4519294A 1985-05-28 James F. Hemens
A power assistance device has a double acting piston and cylinder whose piston rod is connected to an output. Compressed air is passed via a pair of air pressure regulators to opposite sides of the piston. Each regulator has a regulator spring, and the regulators are housed in a body which is moved upon manual effort being applied to an input to cause the springs to differentially bias so decreasing pressure on one side of the piston and increasing pressure on its opposite side, creating a pressure differential across the piston causing it to move with its piston rod to apply a magnified load to the output which is proportional to the manual effort applied to the input. The regulators could be set so that in a neutral position of the power assistance device, zero pressures exist on opposite sides of the piston. In an alternative arrangement a pair of single acting piston and cylinder devices could be used. Other gaseous fluids could be utilized, and a hydraulic fluid could also be used as the pressurized fluid medium.
9 Pneumatic remote speed control device for marine engine US3772937D 1971-08-10 US3772937A 1973-11-20 TAKAGI M; NITTA A
A cam mechanism geared to the operating handle of a remotely located operator''s speed controller for a marine engine, said cam mechanism including cam means operable by movement of the operator''s handle to various positions for transmitting a corresponding degree of movement through a lever arrangement to the operating stem of a fluid pressure operable control valve device which remotely controls the speed of the engine.
10 Overtravel mechanism US3505887D 1968-09-30 US3505887A 1970-04-14 ANDERSON JOHN P; ORME MYRL E
11 Adjustable stroke control device US3440933D 1966-12-02 US3440933A 1969-04-29 SUTTON DONALD E
12 Phase displacement device of two shafts US50831165 1965-11-17 US3405571A 1968-10-15 GEORGES MERSCH
13 Phase relation control US47067465 1965-07-09 US3315465A 1967-04-25 WALLIS ROLLAND B
14 Control device for coaxial members US11770361 1961-06-16 US3256743A 1966-06-21 VALLIERE PIERRE FRANCOIS DE
15 Adjustable drive for doughnut machines US23725062 1962-11-13 US3175415A 1965-03-30 BELSHAW THOMAS E
16 Variable ratio mechanism US9397561 1961-03-07 US3079810A 1963-03-05 ARNOLD SCHINDEL
17 Adjustable actuating arm US2601060 1960-05-02 US3041888A 1962-07-03 DEHN WILLIAM F
18 Device for adjusting rotational angular relation between two concentric shafts US77102658 1958-10-31 US2955480A 1960-10-11 GUT STANLEY J
19 Drive for porcupine sheet-turnover rack with timing-adjusting means US1714848 1948-03-26 US2565779A 1951-08-28 MUDDIMAN EARL R
20 Mechanical movement US60337332 1932-04-05 US1947853A 1934-02-20 KING FRANK A
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