1. Field of the present invention
The present invention relates to fire door locks, and, more particularly, to a fire door lock which allows a user to easily push forward to open a fire door mounted with the fire door lock.
2. Description of Related Art
A conventional fire door, as shown in
Please refer to
Under a normal condition, the shim 13c of the roller sliding pillar 13b holds the handle 11 in position at the top of the handle frame base 10. When the user exerts a force on the handle 11, the roller sliding pillar 13b is pushed downwards and travels along the slots 13a of each fixing seat 13 by the force, thereby inducing diagonal translocation of the handle 11 in the handle frame base 10.
The lock housing 12 located at the front of the handle frame base 10, shown in
In view of the above door opening operation in the use of the conventional fire door lock, although the user presses the handle 11 in a manner as illustrated in
Furthermore, when the conventional fire door lock is used in a fire accident, because there is no fire protection elements mounted in the fire lock, and the door lock does not have to prevent from opening, it is likely that a person, who does not realizes the fire condition, may mistakenly open the fire door lock, resulting in injuries and death caused by the fire, and the fire may start to spread. Therefore, a novel, improved fire door lock which can eliminate the above drawbacks is greatly desired.
An objective of the present invention is to provide a fire door lock which allows a user to press a handle in a vertical direction with respect to a first door mounted with the fire door lock to activate a locking bolt in a comfortable manner to open the first door.
Another objective of the present invention is to provide a fire door lock which allows the locking bolt to extend from a lock housing to be directly inserted into a hole of the locking bolt formed on an inner side of a door frame, such that when the door lock is engaged, the locking bolt cannot be easily damaged by vandals, thereby increasing the security of the door lock.
In order to achieve the above and other objectives, the present invention provides a fire door lock, specifically featuring the improvement on the pressing handle of the fire door lock, which allows a first opening unit thereof to be located inside a fire door mounted with the lock and to activate a locking bolt of the lock to move. Moreover, a second opening unit laterally located on the fire door has a pressing handle coupled with an actuating block for operating the locking bolt. When the pressing handle is pushed and pressed, the actuating block activates an actuating rod and a linking arm to move horizontally. One end of the linking arm is coupled to a driving lever, and driving lever drives the linking arm to swing. One end of the driving lever has a pulley extending into the first opening unit to activate a locking bolt base connected to the locking bolt to move horizontally. As a result, the locking bolt is accordingly adapted to extend from or retract into the first opening unit in a horizontal direction to facilitate the release or engagement of the lock.
Furthermore, the first opening unit of the fire door lock comprises a rotation device having a rotatable block coupled to a rotatable handle with a bolt lever, so as to allow the rotatable block to be driven by the rotatable handle to activate a rotatable plate having a protruding block that is coupled to the locking bolt base. When the rotatable plate rotates, the blocking arm exerts a force on the locking bolt base and induces the locking bolt base to move horizontally, such that the locking bolt connected to the locking bolt base can extend from and retract from the lock housing to engage or disengage the lock, thereby making the user to operate the handle and open the fire door in a comfortable manner.
Further, one side of the handle of the present invention is a strengthened structure.
In addition, the present invention is an improved invention of the Taiwan Patent No. 547533.
The present invention can be more fully understood by reading the following detailed description of the preferred embodiments, with reference made to the accompanying drawings, wherein:
Please refer to
As shown in
A slot hole 24 is formed on the bottom of the lock housing 20 corresponding to the protruding part 22a of the locking bolt base 22, allowing one end of the locking bolt base 22 to be coupled to the locking bolt 21, such that the locking bolt 21 can freely extend from and retract into the lock housing 20 along with the horizontal movement of the locking bolt base 22.
The rotation device 23 has an upper rotatable block 23a and a lower rotatable block 23a, each of which is coupled to a rotatable plate 23b, so as to allow a blocking arm 23c formed as an extension from the rotatable plate 23b to be secured in the recessed portion 22b of the locking bolt base. When a movement is made by rotating the rotation handle 25, the blocking arm 23c rotates to induce a horizontal movement of locking bolt base 22.
In an embodiment, a rotation device 23 coupled to the rotation handle 25 is accommodated in the lock housing 20. The rotation handle 25 is installed on the outer door panel of the fire door, and the rotation handle 25 drives the rotation device 23 via the bolt lever 26.
In addition, as shown in
A hole 220 is formed at a central position in the locking bolt base 22 and accommodates an axial tube 27 having a flat front close end 27a on one side. A through hole 270 is formed at the flat front end 27a of the axial tube 27 for receiving a screw connected to the locking bolt 21. As shown in
The axial rod 28 has one end formed with a blocking part 281 that has a larger diameter than the elastic member 280 for securing the elastic member 280 in position. The elastic member 280 has a length greater than that of the axial rod 28 and the depth of the hole 27d of the axial tube 27, such that by provision of the blocking part 281 of the axial rod 28, the elastic member 280 is held in a compressed status inside the hole 27d of the axial tube 27.
Furthermore, the blocking part 281 of the axial rod 28 is inserted into a hole 20a on a side wall of the lock housing 20, such that one end of the axial rod 28 is secured to the side wall of the lock housing 20, and the other end of the axial rod 28 is mounted on the elastic member 280 on the axial tube 28, to press the axial tube 27 to move towards a locking bolt catch 29, thereby inducing the locking bolt 21 to protrude from the lock housing 20.
When the recess portion 22b of the locking bolt base 22 is moved by the blocking arms 23c of the rotatable plates 23b of the rotatable handle 25, due to a force exerted from the blocking arms 23c being greater than a force pressed on the axial tube 27 by the elastic member 280, the locking bolt base 22 is pushed by the blocking arms 23c towards a direction away from the locking bolt catch 29, making the locking bolt 21 retract into the lock housing 20 to release or disengage the lock.
Referring to
The lock cover 30 accommodates the locking bolt transmission components, wherein the bottom of the lock cover 30 is coupled to a lock cover base plate 31 and one end thereof is coupled to a bottom frame plate 32 engaged with a recessed bottom frame 33.
The first carrier seat 34 is provided at each of two ends of the bottom frame plate 32 and is triangular.
The pressing handle 35 is accommodated in the bottom frame 33 and provides the user to press to release the lock by a downward and upward movement. The two bottom ends of the pressing handle 35 are each secured on the second carrier seat 36. The pressing handle 35 has a cover 35a allowing the user to press down and disengage the lock.
In an embodiment, one side of the pressing handle 35 has a strengthened structure 350 (such as a recessed portion), which is integrally formed, without the need of forming lock holes, thereby preventing damages caused by stress due to the installation of holes.
The second carrier seat 36 is located at each of two bottom ends of the pressing handle 35 and is triangular.
The actuating block 37 is bent by a right angle to form a central portion 37a, a left end portion 37b, and a right end portion 37c. The central portion 37a is coupled to the first carrier seat 34, and the right end portion 37c is coupled to the second carrier seat 36, to generate a swinging motion of the actuating block with the second carrier seat as a pivot. Furthermore, the actuating block 37 is formed with a recess portion by which the actuating block 37 can be bridged on the actuating rod 38. When the second carrier seat 36 receives a force from the pressing handle 35 pressed by the user and moves, the left end portion 37b of the actuating block 37 is accordingly adapted to move at the same time, making the right end portion 37c of the actuating block 37 to swing about the shim 34b as a pivot in the pivot hole 34a of the first carrier seat 34, to thereby induce a horizontal movement of the actuating rod 38 and the linking arm 39 coupled to the actuating rod 38.
The linking arm 39 is coupled to one end of the actuating rod 38, and receives the pulling forces in the horizontal direction according to the movement of the actuating rod 38 and the front end of the linking arm 39 is formed with a bending part 39a to couple with the driving lever 42.
The driving lever 42 is coupled to one end of the linking arm 39 to generate a swing movement induced by the movement of the linking arm, so as to induce a horizontal movement of the locking bolt base 22 through the slot 24 of the first opening unit 2A.
The lock cover base plate 41 accommodates the linking arm 39 and the driving lever 42, and the driving lever 42 is mounted on the lock cover base plate 41 to induce a swing movement.
The swing sliding base 41 is a rotation objection (such as a wheel) to be pivotally mounted on one end of the driving lever 42, and moves horizontally induced by the horizontal force by the linking arm 39 coupled with the actuating rod 38.
In the present embodiment, the sliding base 41 can extend from a slot hole 31a at a central position of the lock cover base plate 31 or retract into the slot 24 at the bottom of the lock housing 20. The sliding base 40 is in contact with the protruding part 22a of the locking bolt base 22. Through the swing movement of the driving lever 42 to induce a horizontal movement, the sliding base 40 pushes the locking bolt base 22, such that the locking bolt base 22 can extend out of the lock housing 20 to make the fire door lock in a locked position.
The function of the present prevention is achieved through the following manners, as shown in
The locking bolt base 22 can be made of a heat melting material. When the fire door lock experiences a high temperature in a fire, the locking bolt base 22 melts and the axial tube 27 fails to be moved by the blocking arms 23c of the rotation device 23. In the meantime, pressing the rotatable handle 25 or the pressing handle 35 cannot push the axial tube 27 to move towards a door frame of the fire door; on the other hand, the elastic member 280 inside the axial tube 27 and on the actuating axial rod 28 can generate a compression force to move the axial tube 27 towards the locking bolt catch 29, thereby making the locking bolt 21 connected to one end of the axial tube 27 move towards the locking bolt catch 29 and extend from the lock housing 20. to maintain the door in a locked state during the fire. As a result, the lock cannot be released or disengaged by operating the external rotatable handle 25 or the pressing handle 35, such that the fire door cannot accidentally opened during the fire and the flames can be prevented from spreading to unintended areas to damage people for the sake of the safety purpose, ensuring the fire door comply with the building fire safety legislation. In addition, the transmission components described in the present invention provide a better functionality, and are capable of preventing the possibility of failures with high safety requirement.
In summary, the combinations of the foregoing fire door components provide a power-saving, and comfortable manner to disengage the locked state of the fire door.
The present invention has been described using exemplary preferred embodiments. However, it is to be understood that the scope of the present invention is not limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements; for example, the connection means between the driving lever 42 and the locking bolt base 22 can be replaced by a hook or a shim, or the elastic member 280 can be modified to externally wrap the axial tube 27 or directly mounted inside the axial tube 27. The scope of the claims, therefore, should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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103212693 | Jul 2014 | TW | national |