CONTROL ELEMENT WITH BUCKLED MEMBER
    71.
    发明公开
    CONTROL ELEMENT WITH BUCKLED MEMBER 审中-公开
    控制元件与屈曲的成员

    公开(公告)号:EP3224688A1

    公开(公告)日:2017-10-04

    申请号:EP15863363.6

    申请日:2015-11-24

    Abstract: A control element having a beam member divided into an actuation section and a valve section positioned on opposing sides of a pivot member, in which active control of the actuation section causes buckling of the valve section to bring the valve section from a closed state to an open state or causes relaxing of the valve section to bring the valve section from an open state to a closed state.

    Abstract translation: 控制元件具有分成位于枢轴构件的相对侧上的致动区段和阀区段的梁构件,其中致动区段的主动控制导致阀区段弯曲以使阀区段从关闭状态变为 打开状态或导致阀部分放松以使阀部分从打开状态变为关闭状态。

    ACTUATOR
    74.
    发明公开
    ACTUATOR 审中-公开
    执行器

    公开(公告)号:EP2861837A1

    公开(公告)日:2015-04-22

    申请号:EP13806206.2

    申请日:2013-06-19

    Inventor: KLASSEN, James B

    Abstract: A motion producing device comprising an output member with a contact surface and a reference member. An actuator member is attached to the reference member, the actuator member having a traction surface and comprising actuator zones, each actuator zone being energizable to move a corresponding portion of the traction surface to change a contact state of the traction surface with the contact surface depending on an energized state of the actuator zone. An energy source is operatively coupled to the actuator zones for sequentially changing the energized state of the actuator zones. The actuator member provides a torque transmission path between the reference member and the output member.

    Abstract translation: 一种运动产生装置,包括具有接触表面和基准构件的输出构件。 致动器构件附接到参考构件,致动器构件具有牵引表面并且包括致动器区域,每个致动器区域可通电以移动牵引表面的对应部分以改变牵引表面与接触表面的接触状态, 在致动器区域的通电状态下。 能量源可操作地耦合到致动器区域,用于顺序地改变致动器区域的激励状态。 致动器构件在参考构件和输出构件之间提供扭矩传输路径。

    ACTUATOR
    77.
    发明公开
    ACTUATOR 审中-公开

    公开(公告)号:EP2861837A4

    公开(公告)日:2016-06-01

    申请号:EP13806206

    申请日:2013-06-19

    Inventor: KLASSEN JAMES B

    Abstract: A motion producing device comprising an output member with a contact surface and a reference member. An actuator member is attached to the reference member, the actuator member having a traction surface and comprising actuator zones, each actuator zone being energizable to move a corresponding portion of the traction surface to change a contact state of the traction surface with the contact surface depending on an energized state of the actuator zone. An energy source is operatively coupled to the actuator zones for sequentially changing the energized state of the actuator zones. The actuator member provides a torque transmission path between the reference member and the output member.

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