This application is based upon and claims priority under 35 U.S.C. 119 from China Patent Application No. 201721190203.7 filed on Sep. 15, 2017, which is hereby specifically incorporated herein by this reference thereto.
The present invention relates to a gate, especially to a safety gate.
A conventional safety gate has a main frame, a rotating shift, and a door lock. The rotating shift and the door lock are mounted on two opposite sides of the main frame. The rotating shift is mounted on a wall. The door lock is selectively mounted on another wall, and can make the main frame locked or unlocked against the wall.
However, it is complicated to install and disassemble the conventional safety gate from one place to another place, so the conventional safety gate is inconvenient to use.
To overcome the shortcomings, the present invention provides a safety gate to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a safety gate that is convenient to install and disassemble.
The safety gate has a main frame, two connecting assemblies, and two wall-mounted assemblies, and the two connecting assemblies are respectively mounted on two opposite sides of the main frame. Each one of the two connecting assemblies is movably mounted on the main frame and comprises a first connecting part and a second connecting part, and the first connecting part and the second connecting part are arranged apart from each other.
The two wall-mounted assemblies are disposed on the two opposite sides of the main frame respectively, are adjacent to the two connecting assemblies respectively, and are detachably connected to the two connecting assemblies respectively. Each one of the two wall-mounted assemblies comprises a first pivot base and a second pivot base, the first connecting part of the adjacent connecting assembly is detachably and pivotally connected to the first pivot base, and the second connecting part of the adjacent connecting assembly is detachably and pivotally connected to the second pivot base.
The two connecting assemblies have a pivoting condition and a disassembling condition.
In the pivoting condition, one of the two connecting assemblies is operated to make the first connecting part and the second connecting part of said connecting assembly detached from the first pivot base and the second pivot base of the corresponding wall-mounted assembly respectively, so the main frame is capable of pivoting along the other connecting assembly, and the main frame is capable of opening or closing.
In the disassembling condition, both of the two connecting assemblies are operated to make the first connecting part and the second connecting part of each one of the two connecting assemblies detached from the first pivot base and the second pivot base of the corresponding wall-mounted assembly respectively, and the main frame is capable of being removed from the two wall-mounted assemblies.
Given the foregoing structure of the safety gate, the two wall-mounted assemblies are respectively mounted on two side walls that are disposed on two opposite sides of an aisle. Each wall-mounted assembly has a first pivot base and a second pivot base; specifically, the first pivot base and the second pivot base are both mounted on a side of the wall-mounted assembly that is away from the side wall where the wall-mounted assembly is mounted.
The two connecting assemblies are respectively and movably mounted on two opposite sides of the main frame, and the positions of the two connecting assemblies correspond to the positions of the two wall-mounted assemblies. Each connecting assembly has a first connecting part and a second connecting part. The first connecting part is detachably and pivotally connected to the adjacent first pivot base. The second connecting part is detachably and pivotally connected to the adjacent second pivot base. The first connecting part and the second connecting part can be detached from the corresponding first pivot base and second pivot base.
By detaching one connecting assembly from the corresponding wall-mounted assembly, a user may rotate the main frame against the other connecting assembly; in other words, the user may open or close the main frame relative to the wall-mounted assembly that is detached from the main frame.
By detaching the two connecting assemblies from the two wall-mounted assemblies, the user may detach the main frame from the two wall-mounted assemblies. It is equivalent of having a rotating unit and a locking unit on both sides of the main frame. Therefore, the user may unlock and open the main frame from either side of the main frame, and use the other side as a rotating shift. When the user wants to disassemble the main frame, the user only needs to detach the two connecting assemblies from the two corresponding wall-mounted assemblies. Therefore the installing and disassembling process of the present invention is fast and convenient.
Furthermore, if the user wants to install the detached main frame onto another position (e.g. doorway or staircase), he/she only needs to install another two wall-mounted assemblies onto the corresponding side walls and connect the main frame to said wall-mounted assemblies. In other words, by having a single main frame with two connecting assemblies on it, when the user has mounted multiple wall-mounted assemblies on different places, the main frame can be easily installed from place to place.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
On the other hand, in the disassembling condition, by operating both of the connecting assemblies 50, the main frame 30 can be unlocked and detached from both of the wall-mounted assemblies 10, so the disassembling process of the main frame 30 is also convenient.
Specifically, the two connecting assemblies 50 are respectively mounted on two opposite sides of the main frame 30. Through the connecting relation between each connecting assembly 50 and the corresponding wall-mounted assembly 10, the main frame can block a passage between two side walls or between two objects.
With reference to
With reference to
The two frame portions 35, 36 are pivotally connected to each other through the two rotating units 311, 321. Specifically, a pivot angle between the two frame portions 35, 36 is from 0 degree to 180 degrees, which means the first frame portion 35 can horizontally pivot relative to the second frame portion 36 from 0 to 180 degrees, so the first frame portion 35 can be folded with the second frame portion 36, and vice versa. The pivoting ability of the two frame portions 35, 36 allows the safety gate 100 to be capable of fitting into places with different widths between two walls or objects.
With reference to
With reference to
The wall-mounted assemblies 10 are respectively mounted on two side walls or two objects disposed on two opposite sides of the passage, so when the main frame 30 is to be mounted on the passage, two sides of the main frame 30 may be detachably connected to the corresponding wall-mounted assemblies 10.
With reference to
In the preferred embodiment, each wall-mounted assembly 10 further comprises a first connecting portion 14 and a second connecting portion 15, and the first connecting portion 14 and the second connecting portion 15 are respectively mounted on two opposite ends of the connecting portion 13. The first pivot base 11 is integrated to the first connecting portion 14, and the second pivot base 12 is integrated to the second connecting portion 15. A first installation hole 111 is formed through the first pivot base 11, and a second installation hole 121 is formed through the second pivot base 12. The first installation hole 111 and the second installation hole 121 are for detachably connecting with the connecting assemblies 50. In the preferred embodiment, a center line of the first installation hole 111 and a center line of the second installation hole 121 are coaxial.
Specifically, the first connecting portion 14 and the second connecting portion 15 are respectively mounted around two ends of the connecting portion 13, a mounting unit is mounted through the first connecting portion 14 and the connecting portion 13, and another mounting unit is mounted through the second connecting portion 15 and the connecting portion 13. By the two mounting units, the wall-mounted assembly can be mounted securely on a wall or on an object.
With reference to
For each connecting assembly 50, the first connecting part 51 is disposed in the first installation hole 111 of the corresponding first pivot base 11, and the second connecting part 52 is disposed in the second installation hole 121 of the corresponding second pivot base 12. In the preferred embodiment, the first connecting part 51 and the second connecting part 52 are, but not limited to, both cylindrical, so the connecting parts 51, 52 can rotate relative to the corresponding bases 11, 12.
With reference to
The adjusting assembly 54 has an unlocked condition and a locked condition, described as follows.
In the unlocked condition, the connecting rod 53 is capable of moving up and down relative to the corresponding wall-mounted assembly 10 and the main frame 30, and the connecting rod 53 is also capable of moving up and down with the first connecting part 51, the second connecting part 52, and the adjusting assembly 54 that are mounted on it.
When the connecting rod 53 is moved upwardly relative to the wall-mounted assembly 10, the first connecting part 51 is detached from the corresponding first pivot base 11, and the second connecting part 52 is detached from the corresponding second pivot base 12, so the connecting assembly 50 and the main frame 30 may be detached from the wall-mounted assembly 10.
In the locked condition, the adjusting assembly 54 makes the first connecting part 51 connected securely to the corresponding first pivot base 11, and the second connecting part 53 is connected securely to the corresponding second pivot base 12. Therefore, the main frame 30 is not capable of moving relative to the wall-mounted assembly 10.
With reference to
With reference to
The adjusting assembly 54 can be operated to lock or unlock the main frame 30 from detaching from the corresponding wall-mounted assembly 10. Specifically, with reference to
With reference to
In the preferred embodiment, each first connecting part 51 is disposed into the first installation hole 111 of the corresponding first pivot base 11 from a position above said first pivot base 11, each second connecting part 52 is disposed into the second installation hole 121 of the corresponding second pivot base 12 from a position above said second pivot base 12, and each block 542 abuts a bottom surface of the corresponding first pivot base 11.
In another embodiment, the first connecting part 51 and the corresponding block 542 can jointly lock the main frame 30 on the corresponding first pivot base 11 from different arrangements, e.g. each first connecting part 51 can be disposed into the first installation hole 111 of the corresponding first pivot base 11 from a position below said first pivot base 11, each second connecting part 52 is then disposed into the second installation hole 121 of the corresponding second pivot base 12, and each block 542 abuts a top surface of the corresponding first pivot base 11, but the arrangement is not limited thereto.
When the user wants to open the safety gate 100, the user first holds the housing 541 of one of the adjusting assemblies 54, and pushes the pushing bottom 543 away from the adjacent wall-mounted assembly 10 until the bushing bottom 543 moves back into the housing 541. Then the user lifts up the adjusting assembly 54, so the corresponding first connecting part 51, the connecting rod 53, and the second connecting part 52 are all moved upwardly. By moving upwardly, the first connecting part 51 and the second connecting part 52 are detached from the corresponding first pivot base 11 and second pivot base 12 respectively. Then the user pivots the main frame 30 along the other wall-mounted assembly 10 to open the safety gate 100.
When the user wants to detach the main frame 30 from the two wall-mounted assemblies 10, the user unlocks the main frame 30 from the two wall-mounted assemblies 10 by holding the housings 541 of the two adjusting assemblies 54, and pushes each pushing bottom 543 away from the adjacent wall-mounted assembly 10 until the bushing bottom 543 moves back into the housing 541. Then the user lifts up the adjusting assemblies 54, so the corresponding first connecting part 51, connecting rod 53, and second connecting part 52 are all moved upwardly. By moving upwardly, the first connecting part 51 and the second connecting part 52 of each adjusting assembly 54 are detached from the corresponding first pivot base 11 and the second pivot base 12 respectively. Then the main frame 30 is capable of being detached from the two wall-mounted assemblies 10.
When the user wants to mount the detached main frame 30 on another two wall-mounted assemblies 10, the user first holds the housings 541 of the two adjusting assemblies 54, and pushes each pushing bottom 543 away from the adjacent wall-mounted assembly 10 until the bushing bottom 543 moves back into the housing 541. Then the user moves down the adjusting assemblies 54, so the corresponding first connecting part 51, connecting rod 53, and second connecting part 52 are all moved downwardly, by moving downwardly, the first connecting part 51 and the second connecting part 52 of each adjusting assembly 54 are disposed into the corresponding first pivot base 11 and second pivot base 12 respectively; specifically, each first connecting part 51 and second connecting part 52 are respectively disposed into the first installation hole 111 and the second installation hole 121. After that, the user stops pushing the two pushing bottoms 543, so the two blocks 542 protrude out again from the corresponding housings 541 and abut the adjacent first connecting parts 51.
In an embodiment, each adjusting assembly 54 further comprises a second resilient element 544, one end of the second resilient element 544 is connected to the housing 541, and another end of the second resilient element 544 is connected to the pushing bottom 543, so when the pushing bottom 543 is pushed, the second resilient element 544 will be stretched, so when the force pushing the pushing bottom 543 is stopped, the second resilient element 544 can pull the pushing bottom 543 back to the initial place.
By the elasticity of the second resilient element 544, the block 542 can remain protruding out from the inside of the housing 541, so the block 542 can continuously abut the corresponding first pivot base 11.
With reference to
All the embodiments shown above can be mixed and paired to each other. For the clarity of the specification, a thorough combination of the embodiments is not detailed. However, unless a combination between two embodiments shown above contradicts the original structure of the embodiments, all of the possible combinations derived from the embodiments shown above are encompassed in the specification.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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201721190203.7 | Sep 2017 | CN | national |