This invention relates to an active brake release device, and particularly to an active brake release device attached to the exterior of a door controller, which can actively shut off the safety door in unexpected electricity failure.
The conventional safety door, such as a fire door and an emergency door, consists of one or the other of these two types of systems based on the type of door controller, that is, the failsafe system and the non-failsafe system. As the safety door is usually used as a door access system for ordinary people, these two door controller systems both have their merits and demerits in usage depend on the user,
The conventional non-failsafe system, such as the baking device (91) of the door controller as shown in
Due to the insufficient safety of fire protection for the non-failsafe door controller used in the safety door, the main object of the present invention is to provide an active brake release device that is attached to the exterior of the door controller, which could actively shut off the safety door in the event of an unexpected electricity failure to prevent the fire or exhaust of smoke from escaping at the first instant of fire, so as to enhance the safety of fire protection.
Another object of the present invention is to provide an externally attached brake release device, which could be attached to the current door controller and converts the passive fire protection into the active fire protection, so as to save the high cost from modification.
To this end, the active break release device attached to the door controller, including a braking device and a brake release bar extending outwardly, comprises: a first electromagnet, which is fixed on a base plate, with one end having a sliding portion; a first and second actuator, which can be activated by the sliding portion, and in which the first actuator is located at the position abutted against to the brake release bar, the second actuator having a cutoff portion; a sliding bar positioned in opposite to the first electromagnet, with one end connected to the sliding portion, and the other end yieldingly biased by a spring; a limit means, with one end pivoted on the base plate to swing, and the other end penetrated with a sliding pin and yieldingly biased by a spring to limit the cut-off portion of the second actuator at a fixed point; a second electromagnet, which has a sliding bar located at the position to abut against the sliding pin, for pushing the sliding pin sliding in the opposite direction during excitation; a circuit, including a limit-switch, for supplying power to the first electromagnet immediately during the resetting of the device; and, a capacitor, which is stored with a low voltage power, for temporarily supplying power to the second electromagnet to release the locked status of the second actuator, so as to use mechanical force to release the brake, so that the safety door will fall due to its own weight and shut off.
In this way, the safety door would be shut off actively at the instant in the event of an unexpected electricity failure, and if the reason of electricity failure is indeed due to fire, it can stop the fire or exhaust of smoke at the first instant of fire occurrence, so that the fire protection could be more active, and greatly enhancing the fire safety.
The invention will be more clearly understood by the detailed description of the following embodiments in conjunction with the accompanied drawings, wherein:
a shows the conventional brake device for the non-failsafe door controller, wherein the irrelevant components have been omitted.
b shows the brake control device on the back of
a is a perspective view of the active brake release device attached to the exterior of a door controller, wherein the other components have been omitted.
b is a perspective view of the structure on the back of
Firstly, the safety door of the present invention, such as the winding door lifting in the vertical direction or winding in the horizontal direction, is used as the safety door or the emergency door. The technical features of the invention will be further explained by the following embodiments. The embodiment is a preferred illustration only, should not be considered as a limitation of the application range of the present invention, which could be best appreciated by referring the drawings in conjunction with the following detailed description.
a and 2b show perspective view of the linking relationship between the active brake release devices attached to the exterior of the door controller and the door controller brake device according to the present invention.
The active brake release device (1) attached to the exterior of the door controller according to the present invention comprises:
a door controller (90), having a braking device (91), which employs a break release rod 92 to activate the brake or release the brake; in which, one end of the brake release bar (92) is extended outwardly. Normally, when the door controller (90) is energized to operate, the electromagnet (93) is also energized for magnetic excitation at the same time, so as to activate the brake release bar (92) by the sliding portion (93a) of the electromagnet (93) to release the brake, and, the device will turn into at the braking state in de-energized condition;
a base plate (10), attached to the exterior of the door controller (90) by a plurality of supporting frames (12);
a first electromagnet (20), provided at a fixed point on the base plate (10), having a sliding portion (21) at one end, which is attracted to the side of the first electromagnet (20) during excitation;
a first actuator (40), one end of which being fixed to one side of the sliding portion (21) and linked with the sliding portion (21), and the other end of which being provided with a pulley (41) at the position abutted against the brake release bar (92);
a second actuator (50), one end of which being fixed to another side of the sliding portion (21) and also activated by the sliding portion (21), and the other end of which being formed with a notch on one side of the end to form a cut-off portion (51), and forming a guide portion (52) on the opposite side of the end guiding toward the notch direction;
a sliding bar (30), which could be guided by a pair of L-shaped guide plates (31, 31′) for sliding, and being located on the opposite side of the sliding portion (21) of the first electromagnet (20), one end (30a) of said sliding bar (30) being connected with the sliding portion (21) through an axle pin (32), and the exterior of the other end being penetrated with a spring located between the pair of L-shaped guide plates (31, 31, and compression stroke of the spring 36 is limited by an insert pin (33) on the sliding rod (30);
a limit member (60), having an U-shaped structure, being provided with an accommodation space (60 , one end of which being pivoted on the base plate (10) through an axle pin (65) to swing, and the other end of which being a free end and penetrated with a sliding pin (61) in the vertical direction, and the outside of said one end of the sliding pin (61) being provided with a pulley (61a) located between the ends of the free ends of the limit means (60), and the other end of the sliding pin (61) being penetrated through the guiding slot (11) on the base plate (10) to form an extending end (61b), so that the sliding pin (61) is guided in the guiding slot (11) for sliding. A spring is constructed with one end hooked on the end of the sliding pin (61), and the other end hooked on the L-shaped guide plate (31), so that the free end of the limit means (60) is yieldingly biased with the trend constantly turning toward the direction of the second actuator (50), and, at the same time, the pulley (61a) on the sliding pin (61) is located at the position where the cut-off portion (51) of the second actuator (50) abuts against the guide portion (52);
a second electromagnet (70), as a low voltage electromagnet, being fixed on the back of the base plate (10), and having a sliding bar (71) located at a position to abut against the extended end (61b) of the sliding pin (61), being used to push the sliding pin (61) sliding toward the direction against the action of the spring (66) during energized state of said second electromagnet (70); and
a circuit, comprising a limit-switch (80) for switching on the first electromagnet (20) at the moment of resetting the device (1); and, a capacitor (not shown in the diagram), for temporarily supplying power to the second electromagnet (70) in the event of an unexpected electricity failure.
According to the present invention, the second actuator (50) is further provided with a contact wheel (53) which is located at the position to pressed against the contact arm (81) of the limit-switch (80). When the device (1) is not reset, the contact wheel (53) is pressed against the contact arm (81) of the limit-switch (80) so as to make the circuit of the first electromagnet (20) closed (as shown in
According to the present invention, the capacitor in the circuit stores the electricity under normal circumstances. In an event of unexpected electricity failure, no matter what the reason is, it will temporarily supply low voltage power to the second electromagnet (70). As indicated by the arrow in
In conclusion, the active brake release device attached to the exterior of a door controller according to the present invention can easily convert the door controller on a safety door from the non-failsafe system to the failsafe system, and actively shut off the safety door in the event of any unexpected electricity failure. The present invention could make the fire safety protection more actively, which make it an innovative, progressive and commercial viable invention.
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Number | Date | Country | |
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20080016977 A1 | Jan 2008 | US |