Abstract:
A motor vehicle sliding door that may be supported by a pillar of the motor vehicle and having a sliding door assembly with a self-adaptive carriage. The self-adaptive carriage can allow for attachment of the door to the vehicle body at the A, B, or C pillars with reduced movement efforts and increased stability while accommodating manufacturing tolerance variation over large scale production runs.
Abstract:
A hanger for a sash of a window to detachably engage the sash with a rail of the window, and the hanger includes a pulley assembly and a restricting assembly. The pulley assembly has a base and a plurality of pulleys mounted on the base for rotation. The pulleys engage the rail so that the pulley assembly moves in the rail. The base is provided with a slot. The sash is provided with a rod. The rod engages the slot of the pulley assembly to engage the sash with the rail, and the rod leaves the slot via a lateral opening thereof while the covering rotates for a predetermined angle. At this time, the sash is disengaged with the rail to be moved off the window.
Abstract:
A tilt-up door for a building having an opening, a pair of substantially vertically juxtaposed members, cam surfaces extending laterally from the vertical members at the upper portion and a door sized to span the opening. The door can be pivotally coupled to carriages arranged for vertical movement along the vertical members and can have cam followers extending laterally from the upper portion of the door to contact the cam surfaces. An actuator or actuators can be connected to the carriages to move the carriages along the vertical members. When the actuator or actuators are operated to move the carriages vertically along the members the cam followers can move along the cam surfaces to tilt the door to a horizontal position as the door is moved vertically upward into an open raised position.
Abstract:
A hanger for a sash of a window to detachably engage the sash with a rail of the window, and the hanger includes a pulley assembly and a restricting assembly. The pulley assembly has a base and a plurality of pulleys mounted on the base for rotation. The pulleys engage the rail so that the pulley assembly moves in the rail. The base is provided with a slot. The sash is provided with a rod. The rod engages the slot of the pulley assembly to engage the sash with the rail, and the rod leaves the slot via a lateral opening thereof while the covering rotates for a predetermined angle. At this time, the sash is disengaged with the rail to be moved off the window.
Abstract:
A tilt-up door for a building having an opening, a pair of substantially vertically juxtaposed members, cam surfaces extending laterally from the vertical members at the upper portion and a door sized to span the opening. The door can be pivotally coupled to carriages arranged for vertical movement along the vertical members and can have cam followers extending laterally from the upper portion of the door to contact the cam surfaces. An actuator or actuators can be connected to the carriages to move the carriages along the vertical members. When the actuator or actuators are operated to move the carriages vertically along the members the cam followers can move along the cam surfaces to tilt the door to a horizontal position as the door is moved vertically upward into an open raised position.
Abstract:
The invention relates to an electric door-locking system to be applied to at least one electric door body that is movable in a sliding manner, and includes forwardly and reversely rotatable screws disposed side by side along a direction in which the electric door body slides at the side of a door frame; a cam assembly provided at a predetermined position of the screws to perform a locking function and an unlocking function; and a sliding unit provided with a locking roller resiliently biased in a direction toward the cam assembly and engaging with the cam assembly to perform the locking function, one end of the sliding unit being rotatably connected to the screw and the other end of the sliding unit being connected to the electric door body.
Abstract:
The carriage, which serves for holding a slidable separation element, comprises a carriage body and at least one running wheel, which is a rolling along a rail when the separation elements is displaced. According to the invention the carriage body comprises a housing with an interior space, in which a holding unit is provided, which is protruding through an opening out of the housing and which is seated slidable in a direction at least approximately vertically to the running direction of the carriage, and which the holding unit comprises a holding element that interacts within the housing with an adjusting element, that is displaceable in relation to the holding element by means of an adjusting screw, which is held by the carriage body, so that the holding unit is held at a selected position, whereas either the part of the holding unit that is protruding out of the housing is provided with the at least one running wheel and the carriage body is connected to the separation element; or the part of the holding unit that is protruding out of the housing is connected to the separation element and the carriage body is provided with the at least one running wheel.
Abstract:
The device used to hold a separation element includes a carriage with a carriage body and at least one wheel which rolls on a running surface of a rail. The carriage is releasably connected to a mounting element which is connected to the separation element. The mounting element which is mounted laterally on an upper edge of the separation element includes a guide profile provided with a first guide surface which holds a lower and an upper flange element of the carriage body inserted therein which can be displaced along the first guide surface extending inclined by a first angle relative to the upper edge of the separation element and can be locked in an appropriate position by means of locking elements.
Abstract:
A carrier for a window sash having an actuatable friction adjuster. The friction adjuster has a carrier interface that interacts with a mating friction adjuster interface of the carrier such that the actuation of the friction adjuster by rotating it within an oblong slot in the carrier causes the carrier interface to interact with the friction adjuster interface and forces a rear portion of the friction adjuster into progressively increasing frictional contact with an adjacent portion of a window frame sash channel.
Abstract:
A coplanar closure sliding mechanism to be applied to a two or three wing wardrobe and the like, characterized in that said sliding mechanism comprises a rail fixed to a top surface of said wardrobe and thereon a sliding carriage coupled to a support bracket fixed to the wardrobe wing to be driven is slidingly engaged, said bracket being supported by sliding blocks perpendicular to the plane of said wardrobe wing, said sliding blocks and bracket being driven by a rod leverage coupled to one of said sliding blocks, to said carriage and supporting bracket, and being driven by movable follower cam wheels engaged in a chamber formed by a plate fixed to said rail to space, as said wardrobe wing is opened, said wing from said wardrobe and bring said wing onto another laying plane parallel to and overlapping an adjoining wardrobe wing.