This invention relates to a power-off door closing device of fire proof rolling door, particularly to a fire proof rolling door which can be changed to a failsafe door closing type or non-failsafe door closing type with the same common control members.
There are two type of brake systems concerning conventional rolling door for fire proof purpose, one of them being failsafe door closing type in which the fire proof rolling door is immediately closed under power-off condition no matter how power-off happens, the other being non-failsafe door closing type in which the fire proof rolling door is not immediately closed under power-off condition no matter how power-off happens. A fire proof rolling door is ordinarily used as a door for coming in-and-out. The advantages and disadvantages of each type of brake systems will be described respectively as follow.
A) Failsafe Type
The fire proof rolling door of this type is immediately closed under power-off condition no matter how power-off happens. If power is still on under fire alarm condition, a smoke detector, temperature sensor, fire detecting device or fusible links which will be molt down by the heat caused by fire can also use to release the brake, to cause the rolling door sliding down by its own weight and close the door. If power-off is due to fire, the fire tongue or heavy smoke can be prevented from extending outside at first instance of fire disaster. Therefore, better safety for fire proof is the main advantage of this type. However, most of power-off in suburb area is not caused by fire. Door closing due to power-off under non-fire condition will cause inconvenience of users. This is the main disadvantage of this type.
B) Non-Failsafe Type
Under power-off condition, this non-failsafe type device is bringing into braking state and the fire proof rolling door is not immediately closed, unless a fire is detected and confirmed by a smoke detector, a temperature sensor or another fire detecting device to temporarily supply electric current to a solenoid by a reserved power source, such as capacitor or battery etc. to maintain a temporary brake-releasing, or a fusible links device is melted down by the high temperature caused by fire to mechanically release the brake, to cause the rolling door sliding down by its own weight to close. The main advantage of this type is that it will not close the fire proof rolling door immediately under power-off condition and it will not cause user's inconvenience if the power-off is not due to fire. However, if power-off is due to fire and fire ignition point is far away from the fire detecting device or the fusible links device, the fire proof rolling door can not be closed at the first instance of fire alarm. Therefore, insufficiency in safety is the main disadvantage of this type.
Based on the description above, manufacturers have to produce two different control type in response to different users, for both failsafe door closing type and non-failsafe door closing type. Not only the time for development is long and cost is high, but also the parts numbers is high so that the production becomes complicated and the inventory is also high.
The object of this invention is to provide a power-off door closing device of a fire proof rolling door which can be changed easily into failsafe door closing type or non-failsafe door closing type by common structure members.
Above and the other objects can be attained by the power-off door closing device of fire proof rolling door of present invention, which is provided on one side face of the cover plate of the rolling machine for rotating the rolling door, a receiving chamber being formed on this side face by a tail cover; an inherent brake device being fixed on the other side face of said cover plate, a braking pin included in this brake device being extended into said receiving chamber, wherein it comprises: a brake actuation rod, one end of which being fixed on said brake actuation rod, the other end being formed as a free end; a clamp member, one end of which guides a sliding block, the other end being formed as a pivot end wherein one end of said sliding block abuts against the free end of said brake actuation rod, and the other end being a connecting end; a bent arm having a first end and a second end, said first end being supported on the pivot end of said clamp member and said first end including an extension end which moves together with the second end of the bent arm by a support arm; a solenoid having a sliding lever provided at the center and stored with potential energy of a spring, said sliding lever having a first end and a second end in which said first end moves together with the second end of the bent arm, and said first end being acted by the spring to be pushed outwardly in axial direction under de-energizing condition of said solenoid; a control circuit used to control the solenoid for brake-applying under energized condition of said solenoid or for brake-releasing under power-off condition. Thus, the brake under power-off condition is brought into released state to cause the rolling door sliding down to close by its own weight, no matter what is the cause of power-off. If power is still on under fire alarm condition, the power supply is cut either by a smoke detector, temperature sensor or another fire detecting device, or by the melting down of a conventional fusible links by the high temperature caused by fire to cut the power supply mechanically, so that the brake is released to cause the rolling door sliding down by its own weight to close. This is so-called failsafe door closing type.
According to present invention, it is easy to change into a non-failsafe door closing type with the original structure members without increasing additional cost. In other words, the solenoid is disposed in reverse orientation. The second end of said sliding lever, under the action of the solenoid in energized condition controlled by said control circuit, through the moving together of the second end of the sliding block and the second end of the bent arm, is pushed outwardly in axial direction to resist the potential energy of the spring so that the brake is brought into released state. Under power-off condition, said sliding lever is acted by the spring and the second end of it is retracted inwardly so as to bringing the device into braking state. At this moment, if fire is detected and confirmed by a smoke detector, a temperature sensor or another fire detecting device, electric current is temporarily supplied to the solenoid by a reserved power source, such as a capacitor or a battery etc. to maintain a temporary brake-releasing, or a fusible links device is melted down by the high temperature caused by fire to mechanically release the brake, to cause the rolling door sliding down by its own weight to close. In this way, not only that the development cost is low, parts numbers being few to make production simple and reduce inventories, but also the assembly is easy etc. This is another object of present invention.
According to present invention, it can reduce the force with the use of the clamp member and the bent arm. The device can be operated with a smaller solenoid. Therefore, cost-saving is still another object of present invention.
a is a sectional view taken along the line 2a-2a in
a shows that the brake mechanism is brought into brake-applied state in response to the power-off door closing device of
a shows that the brake mechanism is brought into brake-released state in response to the power-off door closing device of
a shows that the brake mechanism is brought into brake-applied status in response to the power-off door closing device of
The other technical features and advantages of present invention will be better understood by the detailed description of preferred embodiments of present invention, with reference to the accompanied drawings. However, it is noted that these embodiments are for illustrative purpose only, not for limitative purpose.
Referring to
According to this invention, a brake actuating rod 21 is included, one end of which is fixed on the braking pin 34 and the other end being formed as a free end 21b. Protruding portions 22a, 22b are formed respectively at opposite ends of a clamp member 22. Protruding portion 22a of one end has a guide groove 22a′ for the guiding of a sliding block 23, while the protruding portion 22b of the other end forms a pivot end. One end 23a of the sliding block 23 is located at a position to abut with the free end 21b of the brake actuation rod 21, the other end of the sliding block 23 being a connecting end 23b. A bent arm 24 has a first end 24a and a second end 24b wherein the first end 24a is supported on the pivot end of the protruding portion 22b of the clamp member 22 and has an extension end 241 which moves together with the connecting end 23b by an support arm 25. A sliding groove 242 is formed on the second end 24b. A solenoid 26 is provided with a sliding lever 261 at its center, which has a first end 261a and a second end 261b. The sliding lever 261 is stored with potential energy of a spring 262 such that the first end 261a is pushed outwardly in axial direction under de-energized condition of the coil. A protruding pin 263 is provided on the first end 261a of the sliding lever 261, which is inserted and sliding in the sliding groove 242 of the second end 24b of the bent arm 24. A conventional control circuit (not shown) is used to control the rolling machine 1 to run/stop, at the same time to control the solenoid 26 for braking under energized condition of the coil or for brake releasing under power-off condition.
As shown in
Referring further to
Summing up above, the power-off door closing device of fire proof rolling door of present invention has the advantages set forth below.
The above-mentioned are only preferred embodiments of the present invention which should not be considered to be a limitation on the range of the present invention. Any variations, modifications or equivalent changes without departing from the range or spirit of the appended claims of present invention should be considered to be within the range of present invention.
1 rolling machine
10 tail cover
10
a receiving chamber
11 cover-plate
12 rotary shaft
13 brake drum
20 power-off door closing device of present invention
21 brake actuation rod
22 clamp member
23 sliding block
24 bent arm
241 extension end
242 sliding groove
25 support arm
26 solenoid
261 sliding lever
262 spring
263 protruding pin
30 brake device
31 brake shoe
32 shaft pin
33 spring
34 brake pin