1. Field of the Invention
The present invention relates to a handle device and a lock implementing the same, and more particularly, to a handle device capable of meeting fire prevention regulations and saving costs and a lock implementing the same.
2. Description of the Prior Art
Conventionally, a lock includes a latch installed on a door. A latch head of the latch is connected to a handle device by a latch driving member, and the handle device is used for driving the latch driving member, so that the latch driving member can activate the latch head to stretch out of the door or retract inside the door. In such a manner, when the latch head stretches out of the door, the latch head latches the corresponding wall, so as to lock the door on the wall. When the latch head retracts inside the door, the latch head separates from the corresponding wall, so as to unlock the door from the wall.
The conventional handle device includes a handle body and a pivoting portion connected to the handle body. A latch assembly is installed inside the pivoting portion. According to fire prevention regulations, a gap needs to be reserved between the handle body and the door. However, the fire prevention regulations differ from nation to nation, it results in design change for the handle body, the pivoting portion and the latch assembly installed inside the pivoting portion in accordance with the various fire prevention regulations. As a result, it causes a great increase in costs and does not facilitate to market.
The present invention provides a handle device capable of meeting fire prevention regulations and saving costs and a lock implementing the same for solving above drawbacks.
According to an embodiment of the present invention, a handle device includes a pivoting portion and a handle body. The pivoting portion includes a surrounding wall formed along a longitudinal axis, and the surrounding wall has atop surface. The handle body protrudes from the pivoting portion along a radial direction perpendicular to the longitudinal axis. The handle body is not connected to the top surface of the surrounding wall and apart from the top surface of the surrounding wall by a gap.
According to another embodiment of the present invention, a lock includes a latch sleeve, a latch head and a handle device. The latch head is disposed inside the latch sleeve in a retractable manner. The handle device is for retracting the latch head inside the latch sleeve and includes a pivoting portion and a handle body. The pivoting portion includes a surrounding wall formed along a longitudinal axis, and the surrounding wall has a top surface. The handle body protrudes from the pivoting portion along a radial direction perpendicular to the longitudinal axis. The handle body is not connected to the top surface of the surrounding wall and apart from the top surface of the surrounding wall by a gap.
In summary, the present invention can further change a distance between the extended portion of the handle body and the door by adjusting the gap, so as to satisfy the fire prevention regulations from nation to nation and further to increase flexibility in use. In addition, since the size of the pivoting portion does not change, there is no need to do design change on the latch assembly disposed inside the pivoting portion for saving costs. In other words, the structural design of the extended portion of the handle body, the pivoting portion and the gap of the present invention can not only satisfy the fire prevention regulations from nation to nation but also save costs.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Please refer to
Please refer to
In this embodiment, the latch head 36 is made of stainless steel which has a higher melting point. When a special case, such as a fire, occurs, the latch head 36 of the present invention is capable of enduring high temperature without melting. Accordingly, the lock 30 of the present invention keeps functioning normally under the special case, so as to keep the fire within a specific area for stopping the spread of the fire. As a result, the people in the fire place can escape in time for decreasing a number of casualties.
It should be noticed that metal materials for the latch head 36 of the present invention are not limited to those mentioned in this embodiment. For example, the latch head 36 can be made of copper or steel materials. As for which one of the above-mentioned designs is adopted, it depends on practical demands. Practically, the latch head 36 is made in a powder forming manner, so that the fixing structures with complex structures, such as a through hole, a screw hole and so on, are achievable on the latch head 36. As mentioned above, a second fixing structure 361 can be formed on the latch head 36 and located in a position corresponding to the first fixing structure 341 on the latch driving member 34.
Please refer to
As shown in
It should be noticed that structures for fixing the latch driving member 34 and the latch head 36 of the present invention are not limited to those mentioned in this embodiment. Please refer to
As mentioned above, the present invention can utilize the first fixing structure 341, the second fixing structure 361 and the connecting structure 38 to fix the latch driving member 34 and the latch head 36 in a structural disposing manner. Alternatively, the present invention can utilize the first fixing structure 341′, the second fixing structure 361′ and the connecting structure 38′ in a screwing manner for fixing the latch driving member 34 and the latch head 36. As a result, the present invention can stably fix the latch driving member 34 and the latch head 36. Accordingly, it can prevent the latch driving member 34 from loosing from the latch head 36, so that the lock 30 of the present invention can function normally. As for which one of the above-mentioned designs is adopted, it depends on practical demands.
Please refer to
In this embodiment, the first sliding structure 325 is a sliding slot, and the second sliding structure 441 is a hook. The hook is movably engaged inside the sliding slot, so that the extending sleeve 44 slides relative to the sleeve body 323. In addition, when the hook movably engages with the sliding slot, the hook can constrain the extending sleeve 44 from rotating relative to the sleeve body 323. In other words, the hook can be further used for preventing the extending sleeve 44 from rotating relative to the sleeve body 323. Structures of the first sliding structure 325 and the second sliding structure 441 of the present invention are not limited to those mentioned in this embodiment. For example, the first sliding structure 325 and the second sliding structure 441 can be a combination of a sliding slot and a sliding protrusion as well. In other words, the structures enabling the extending sleeve 44 to movably sheathe the sleeve body 323 are within the scope of the present invention.
As shown in
A containing slot 327 is formed on the sleeve body 323, as shown in
In summary, the extending sleeve 44 can utilize the resilient engaging member 46 to selectively engage with the first constraining structure 443 or the second constraining structure 445, so as to fix the extending sleeve 44 in the corresponding first position or the second position. Accordingly, the lock 30 is capable of adjusting its length for being installed onto the handle device 30 indifferent positions. In this embodiment, the first constraining structure 443 and the second constraining structure 445 are, but not limited to, respectively an opening structure. For example, the first constraining structure 443 and the second constraining structure 445 can be respectively an engaging slot as well, or conversely, the first constraining structure 443 and the second constraining structure 445 can be disposed on the sleeve body 323, and the resilient engaging member 46 is installed on the extending sleeve 44. In other words, the structures capable of fixing the extending sleeve 44 and the sleeve body 323 in different positions are within the scope of the present invention.
Please refer to
It should be noticed that the latch head 36″ is made of stainless steel which has a higher melting point. When a special case, such as a fire, occurs, the latch head 36″ of the present invention is capable of enduring high temperature without melting. Accordingly, the lock 30″ of the present invention keeps functioning normally under the special case, so as to keep the fire within a specific area for stopping the spread of the fire. As a result, the people in the fire place can escape in time for decreasing a number of casualties.
In addition, there is a design change implemented in the handle device 60 of the present invention in order to satisfy differences of fire prevention regulations performed from nation to nation. As shown in
When the handle device 60 is installed on the door, the gap G makes the extended portion 607 of the handle body 601 approach the door without shortening the pivoting portion 603, i.e. the pivoting portion 603 can keep original length and thus the design change for the latch assembly is not required. Furthermore, the handle body 601 is located nearby a center of the pivoting portion 603, resulting in mass concentration. As a result, it can avoid the mass from aggregating on an end of the pivoting portion 603 and further increase feasibility of the handle device 60.
In other words, the present invention can change a distance between the extended portion 607 of the handle body 601 and the door by adjusting the gap G, so as to satisfy the fire prevention regulations from nation to nation and further to increase flexibility in use. In addition, since the size of the pivoting portion 603 does not change, there is no need to do design change on the latch assembly for saving costs. In other words, the structural design of the extended portion 607 of the handle body 601, the pivoting portion 603 and the gap G of the present invention can not only satisfy the fire prevention regulations from nation to nation but also save costs.
As shown in
Compared to the prior art, the latch head of the lock of the present invention is made of metals which has a higher melting point, such as stainless steel, copper, steel and so on. When a special case, such as a fire, occurs, the latch head of the present invention is capable of enduring high temperature without melting. Accordingly, the lock of the present invention keeps functioning normally under the special case, so as to keep the fire within a specific area for stopping the spread of the fire. As a result, the people in the fire place can escape in time for decreasing a number of casualties. Practically, the latch head of the lock of the present invention is made in a powder forming manner, so that the fixing structures with complex structures, such as a through hole, a screw hole and so on, are achievable on the latch head. The fixing structures can cooperate with a fixing member, such as a pin, a screw component and so on, for fixing the latch head and the latch driving member. Alternatively, the latch head and the latch driving member of the present invention can be fixed by welding. Accordingly, the present invention utilizes the connecting structure to be disposed through or to weld for fixing the latch head and the latch driving member more stably, so as to prevent the latch head from loosing from the latch driving member and further to keep the lock function normally.
In addition, the present invention can further change a distance between the extended portion of the handle body and the door by adjusting the gap, so as to satisfy the fire prevention regulations from nation to nation and further to increase flexibility in use. In addition, since the size of the pivoting portion does not change, there is no need to do design change on the latch assembly for saving costs. In other words, the structural design of the extended portion of the handle body, the pivoting portion and the gap of the present invention can not only satisfy the fire prevention regulations from nation to nation but also save costs.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
102101776 | Jan 2013 | TW | national |