Abstract:
A locking mechanism of a braking device for aluminum doors and window according to the invention includes a sleeve and a locking pillar. The sleeve is a hollow tube-shaped structure, which has an expanded projecting rim at an upper end surface thereof, and a fastening mechanism below the projecting rim. The locking pillar has a fastening section at an outer wall thereof for corresponding with the fastening mechanism of the sleeve to accommodate the locking pillar in the sleeve and to further accommodate the sleeve in a through opening at a supporting window frame of a casement, thereby locating a securing section of the sleeve to the through opening at an upper board of the supporting window frame. Hence, the locking pillar is allowed with sliding movements in the sleeve without being bounced out or disengaged.
Abstract:
A brake assembly for locking a vertical or horizontal slidable sash window or door within a track of a frame is disclosed. The track has an elongated base and a pair of spaced apart, opposed sidewalls extending perpendicular from the base. Each sidewall has an inner shoulder spaced from and parallel to the base. The assembly has a slider body having a central opening extending from a front face of the body to a rear face of the body. The slider body has a side opening in each side of the slider body and being in communication with the central opening. A pair of brake members are provided wherein one brake member is slidably positioned within a respective one of the side openings. A cam has a rear face and a front face, and is adapted to receive a pivot member mounted on either the sash window or door. The cam is positioned in the central opening and is adapted to be rotatable within the opening by the pivot member. The cam, slider body and brake members include cooperative structure for converting rotary motion of the cam into radial movement of the brake members through the side openings and axial movement of the cam and slider body to lock the brake assembly within the track.
Abstract:
An actuating mechanism includes a motor, a tube, a transmission, a shank, a worm, a worm wheel, and a spring; the tube has a steel roll-up curtain connected thereto, and can be turned in one direction for winding the curtain around it, and in the other direction for unwinding the curtain; the transmission is joined to an output shaft of the motor and the tube; the shank is joined to a main body of the motor and the worm wheel; the worm has a toothed side for engaging the worm wheel, and it has a straight side facing in an opposite direction to that of the toothed side; the spring is fixed at one end, and securely joined to the transmission at other end; the roll-up curtain can be manually opened and closed without power supply to the motor after the worm is disengaged from the worm wheel.
Abstract:
The invention concerns a cabinet hinge with an automatic opening device, especially for cabinet doors with a hinge cup, which is connected with a hinge to a hinge arm, which is, being adjustable and lockable, connected to a base plate, which is connected to a cabinet body; whereby, the hinge includes an inner and outer joint lever, which are fastened to the hinge cup, as well as the hinge arm, with each one pivoting joint pin, which causes a kind of parallelogram-joint to be formed between the hinge cup and the hinge arm, by which means the cabinet door relative to the cabinet body can be swung out; whereby, at least one elastic resilient spring element directly affects at least one joint pin of outer and/or inner joint lever and causes a torque for opening of the cabinet door from the closed position through a defined opening-angle area, and; whereby, the resilient spring element is fastened to the hinge cup, whereby, at least one resilient spring element affects through a sliding wedge directly or indirectly at least one join pin of the outer and/or inner joint lever. Specifically, the spring element is contained totally inside the hinge cup and includes at least one one-step piston rod-cylinder unit, which allows a relative movement of the sliding wedge towards the hinge cup and its top part during the opening process of the door by means of a spring and during the closing process by means of the strength of the user. The advantage of the spring element position on or in the hinge cup is that considerably more room is available for a heavy spring and heavy doors can be equipped with the automatic opening device, according to the invention.
Abstract:
Piece of furniture with a movable furniture component, in particular a drawer or door, a drive unit and a device for the mechanical transmission of force from the drive unit to the movable furniture component or the body of the furniture, in particular a pin arranged on a lever that can be powered by the drive unit, for the ejection and/or insertion of the movable furniture component, the device for the mechanical transmission of force (4) being arranged in a guide track (8) for the transmission of tensile and thrust forces.
Abstract:
A window glass interlock device for a vehicle sliding door adapted to limit the opening of the sliding door when the window glass exceeds a prescribed opening degree, thereby preventing jamming of a passenger's body part between the sliding door and the vehicle body and minimizing injury to the passenger.
Abstract:
The invention concerns a cabinet hinge with an automatic opening device, especially for cabinet doors with a hinge cup, which is connected with a hinge to a hinge arm, which is, being adjustable and lockable, connected to a base plate, which is connected to a cabinet body; whereby, the hinge includes an inner and outer joint lever, which are fastened to the hinge cup, as well as the hinge arm, with each one pivoting joint pin, which causes a kind of parallelogram-joint to be formed between the hinge cup and the hinge arm, by which means the cabinet door relative to the cabinet body can be swung out; whereby, at least one elastic resilient spring element directly affects at least one joint pin of outer and/or inner joint lever and causes a torque for opening of the cabinet door from the closed position through a defined opening-angle area, and; whereby, the resilient spring element is fastened to the hinge cup, whereby, at least one resilient spring element affects through a sliding wedge directly or indirectly at least one join pin of the outer and/or inner joint lever. Specifically, the spring element is contained totally inside the hinge cup and includes at least one one-step piston rod-cylinder unit, which allows a relative movement of the sliding wedge towards the hinge cup and its top part during the opening process of the door by means of a spring and during the closing process by means of the strength of the user. The advantage of the spring element position on or in the hinge cup is that considerably more room is available for a heavy spring and heavy doors can be equipped with the automatic opening device, according to the invention.
Abstract:
A door apparatus for opening and closing two doors supported on a horizontal door rail includes an actuator connected to one of the two doors for driving the same, a direction conversion mechanism connected to the other of the two doors for transmitting a movement of the actuator to the other door to move the same and having an engaging portion formed of a first stage and a second stage, and a locking mechanism having a latch engaging the direction conversion mechanism for locking the two doors and non-engaging the direction conversion mechanism for allowing the two doors to open. The latch engages the first stage of the engaging portion to semi-lock the doors to be able to open manually, and engages the second stage of the engaging portion to lock the doors completely.
Abstract:
A door apparatus for opening and closing two doors supported on a horizontal door rail includes an actuator connected to one of the two doors for driving the same, a direction conversion mechanism connected to the other of the two doors for transmitting a movement of the actuator to the other door to move the same and having an engaging portion formed of a first stage and a second stage, and a locking mechanism having a latch engaging the direction conversion mechanism for locking the two doors and non-engaging the direction conversion mechanism for allowing the two doors to open. The latch engages the first stage of the engaging portion to semi-lock the doors to be able to open manually, and engages the second stage of the engaging portion to lock the doors completely.
Abstract:
The present system includes various mechanisms and devices which may be used to automatically open and close a window. In cooperation with the various mechanisms, a remote controller may be operated to accuate the mechanisms and devices without manual manipulation. In addition to the window mechanism being automatically operated, the system may also operate to lock the window structure to prevent unnecessary stress and overload to the motor, or to prevent unauthorized access and entry through the window.