Abstract:
In an opening-closing mechanism of a door member for shifting the door member from a closed position for closing an opening portion of a base member to an open position and vice versa, the door member includes a pair of arm portions. Each arm portion includes a circular arc shape gear and a rotary gear disposed in a center of the circular arc of the gear. The base member includes a first fixed gear portion with internal teeth engaging the circular arc shape gear portion, and a second fixed gear portion disposed inside the first fixed gear engaging the rotary gear. The arm portion is held to move vertically through engagements between the first fixed gear portion and the circular arc shape gear portion and between the rotary gear and the second fixed gear portion, so that the door member is shifted along a path corresponding to the first fixed gear portion.
Abstract:
A floating damper assembly operates between first and second associated components. A damper is adjustably mounted in the first component and includes a damper gear engaged with a gear on the second component. The second component defines a guide surface and the damper has a bearing surface engaging the guide surface.
Abstract:
It is an object of the present invention to provide a rotary damper capable of automatically adjusting an exhibited braking force in correspondence with variation in load. A fluid chamber 2 into which viscous fluid is charged is formed in a casing 1. A vane 3 is disposed in the fluid chamber 2. The vane 3 is formed with a fluid passage 5, and is provided with a valve 6. The valve 6 automatically varies a flow rate of the viscous fluid passing through the fluid passage 5 in correspondence with variation in load. With this structure, it is possible to automatically adjust the exhibited braking force in correspondence with variation in load caused by variation in rotational motion of a subject to be controlled, and to reduce variation in rotation speed of the subject to be controlled to an extremely small value.
Abstract:
An acceleration/deceleration mechanism is installed for a lid body rotatably supported on a main body. The mechanism includes a forcing device for forcing the lid body toward an open direction, a locking device for maintaining a closed state of the lid body relative to the main body in opposition to the force of the forcing device, and an acceleration/deceleration device situated between the lid body and the main body. The acceleration/deceleration device increasing a speed of opening of the lid body at less than a prescribed angle of opening of the lid body, and decreasing the speed of opening in excess of the prescribed angle of opening.
Abstract:
A hinge structure rotatably connects one member to the other member. The hinge structure includes a hinge case attached to the one member; a first cam member; a second com member; an urging device for urging the first member toward one end portion of the hinge case; and a rotary damper including a rotor having a specific rotational resistance relative to a damper main body. The second cam member has a cam surface at an end portion thereof for abutting against a cam surface of the first cam member, and a connecting portion at the other end portion thereof protruding outwardly from an end portion of the hinge case and connected to the other member. One of the rotor and the dumper main body is connected to the hinge case, and the other is rotationally disposed in the hinge case together with the second cam member.
Abstract:
A sliding assisting device assists a movable body to move between a drawn-in position and a drawn-out position relative a main body. The sliding assisting device includes a unit main body provided on one of the main body and the movable body, and having a slider, a lock member, and a spring member; and an operating member provided on the other of the main body and the movable body. When the movable body is drawn out to a mid-course position from the drawn-in position or drawn-out position, the operating member displaces the lock member from a locked position to an unlocked position, so that the movable body slides from the mid-course position to the drawn-out position or drawn-in position by the spring member.
Abstract:
A hinge device for a storage container which includes a pair of hinge couplers combined in the form of a single unit, and enables a door of the storage container to be more smoothly closed without generating impact. A storage container, which includes the hinge device, is also disclosed. The hinge device includes a housing fixed to a container body of the storage container or the door, a first hinge shaft and a second hinge shaft rotatably coupled to the housing at opposite sides of the housing, respectively, each of the first and second hinge shafts having one end extending into the housing, and the other end extending outwardly beyond the housing and fixedly coupled to the other one of the container body and the door, a driver arranged in the housing at the side of the first hinge shaft to apply, to the first hinge shaft, a rotating force to cause the door to be maintained in an opened state or to be closed in accordance with an opening angle of the door, and a damper arranged in the housing at the side of the second hinge shaft to increase a resistance to rotation of the second hinge shaft, and thus, to cause the door to be smoothly closed.
Abstract:
The present powered sliding device includes a wire drum (16) connected to a vehicle sliding door (11) through wire cables (18, 19), a motor (14) for rotating the wire drum, a clutch mechanism (25) provided between the motor and the wire drum, a first rotational member (85) rotated integrally with the wire drum, first detection means (86) for detecting the rotation of the first rotational member, and a housing (74). The housing includes a first space (76) accommodating the wired drum and communicating with the outside of the housing through the wire cables and a second space accommodating the first rotational member and the first detection means, and a housing body (73) provided between the first space and the second space for zoning the first space and the second space.
Abstract:
A slide damper for use with an associated sliding object that is movable between a first position and a second position provides an assisted, dampened return. The slide damper includes a housing having a track, a gear on the housing and a cover configured for movement along the housing. The cover further includes a track engaging pin for engaging the housing track as the cover moves along the housing. A biasing element operably connects the cover and the housing to bias the cover to the second position. A damper assembly is disposed within the cover and includes a damper housing having a geared outer periphery, a damping material disposed in the damper housing and a rotor disposed at least in part within the damper housing for cooperating with the damping material. The rotor has a shaft and is rotatable relative to the damper housing. The rotor shaft extends through the cover and a damper gear operably connects the shaft and the housing gear. The damper assembly is selectively engaged in which the rotor rotates relative to the damper housing when the cover is moved toward the second position and movement of the damper gear along the housing gear is dampened, and disengaged in which the rotor is stationary relative to the damper housing when the cover is moved toward the first position and movement of the damper gear along the housing gear is unimpeded.
Abstract:
An annular groove part with a predetermined depth is formed in a rotation body, and a wall surface of the annular groove part is sealed by a second protrusion elongated annular part formed in an inner circumference of a rotor attached to the annular groove part, and a wall surface of the annular groove part is sealed by a first protrusion elongated annular part formed in an outer circumference of the rotor, and grease is sealed in the inside. When the rotor is engaged in a support body and the rotation body is rotated, rotation of the rotor is regulated, so that the rotation body is damped by fluid resistance of the grease and is slowly rotated. The rotation body is supported by a support shaft inserted into a shaft hole.