This application is based upon and claims priority under 35 U.S.C. 119 from China Patent Application No. 201920583470.3 filed on Apr. 26, 2019, which is hereby specifically incorporated herein by this reference thereto.
The present invention relates to a safety gate.
A safety gate is mounted at an entrance of a building or an area for controlling access to the building or area.
The conventional safety gate and the wall-mounted post assemblies thereof are hard to be assembled and inconvenient to use because an occupied space of the conventional safety gate is large. Besides, a width of the conventional safety gate cannot be adjusted so the conventional safety gate cannot adapt to entrances with difference widths, which is also inconvenient.
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, the occupied space thereof being smaller and a blocked range of the entrance being adjustable.
The safety gate has two wall-mounted post assemblies, a main frame, and two connecting assemblies. The two wall-mounted post assemblies are respectively mounted on two walls of two sides of an entrance. The main frame is configured to block the entrance and comprises a first frame portion, a second frame portion, and at least one sliding set. The at least one sliding set connects the first frame portion and the second frame portion and thereby the first frame portion and the second frame portion are capable of sliding with respect to each other for adjusting an overlapping area of the first frame portion and the second frame portion. The two connecting assemblies are respectively mounted on two ends of the main frame. Each one of the connecting assemblies is detachably connected to a respective one of the wall-mounted post assemblies.
Therefore, with the aforesaid safety gate, the main frame is detachably connected on the walls on two sides of the entrance via the connecting assemblies and the wall-mounted post assemblies, so the main frame is easy to be detached. Besides, the first frame portion and the second frame portion are movably connected by the sliding set, and the overlapping area of the first frame portion and the second frame portion can be adjusted to block the entrance or let the entrance open. With the first frame portion and the second frame portion being movable in the extending directions thereof, compared to opening and closing the entrance via the pivotal first frame portion and the second frame portion, the occupied space is smaller and a blocked range of the entrance can be adjusted arbitrarily.
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.
In order to facilitate the understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. A preferred embodiment of the present invention is shown in the drawings. However, the invention may be embodied in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that this disclosure will be more fully understood.
It should be noted that when a component is referred to as being “fixed” to another component, it can be directly mounted on said another component or still another component may be disposed between the component and said another component. When a component is considered to be “connected” to another component, it can be directly connected to said another component or still another component may be disposed between the component and said another component. The terms “vertical,” “horizontal,” “left,” “right,” and the like, as used herein, are for the purpose of illustration and are not intended to be the only embodiment.
All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in the description of the present invention is for the purpose of describing particular embodiments and is not intended to limit the invention. The term “and/or” used herein includes any and all combinations of one or more of the associated listed items.
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One of the embodiments of the safety gate 10 of the present invention comprises at least one wall-mounted post assembly 100, a main frame 200, and at least one connecting assembly 300. The at least one wall-mounted post assembly 100 is mounted on a wall of the entrance and the at least one connecting assembly 300 is detachably mounted on the at least one wall-mounted post assembly 100.
The main frame 200 comprises a first frame portion 210, a second frame portion 220, and a sliding set 230. The first frame portion 210 and the second frame portion 220 are parallel to each other. The sliding set 230 connects the first frame portion 210 and the second frame portion 220, and thereby the first frame portion 210 and the second frame portion 220 are capable of sliding with respect to each other, which adjusts an overlapping area of the first frame portion 210 and the second frame portion 220. In this embodiment, an amount of the at least one wall-mounted post assembly 100 is two, and an amount of the at least one connecting assembly 300 is two. The two connecting assemblies 300 are respectively and securely mounted on two ends of the main frame 200 and respectively and detachably mounted on the two wall-mounted post assemblies 100.
In the aforesaid embodiment of the safety gate 10 of the present invention, the main frame 200 can be mounted on the walls via the connecting assemblies 300 and the wall-mounted post assemblies 100, and the main frame 200 is easy to be installed on or detached from the walls. Besides, the overlapping area of the first frame portion 210 and the second frame portion 220 can be adjusted via the sliding set 230, which blocks the entrance or lets the entrance open. The first frame portion 210 and the second frame portion 220 are capable of sliding with respect to each other in extending directions thereof, so the first frame portion 210 or the second frame portion 220 only can be moved along a straight line. Compared to a conventional safety gate which has a first frame portion and a second frame portion that can pivot with respect to each other to block or open the entrance, the safety gate 10 of the present invention has a smaller occupied space and a blocked range in the entrance can be adjusted arbitrarily.
In a preferred embodiment, the first frame portion 210 may comprise a first lateral rod 211, a second lateral rod 212, and a plurality of first support rods 213. Two ends of each one of the first support rods 213 are respectively connected to the first lateral rod 211 and the second lateral rod 212. Also, the second frame portion 220 may comprise a third lateral rod 221, a fourth lateral rod 222, and a plurality of second support rods 223. Two ends of each one of the second support rods 223 are respectively connected to the third lateral rod 221 and the fourth lateral rod 222.
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The second sliding component 250 is mounted on one end of the third lateral rod 221 via a screw. The second sliding component 250 forms a second sliding channel 251 and a second fixing chamber (not shown in the drawings), and the second fixing chamber and the second sliding channel 251 extend parallel to each other. Said one end of the third lateral rod 221 is securely mounted in the second fixing chamber and the first lateral rod 211 is movably mounted in the second sliding channel 251, so the second sliding component 250 and the third lateral rod 221 are capable of moving along the first lateral rod 211.
Also, the sliding set 230 may comprise another first sliding component 240 and another second sliding component 250 mounted on the second lateral rod 212 and the fourth lateral rod 222. Therefore, the second lateral rod 212 and the fourth lateral rod 222 are also connected and thereby the first frame portion 210 and the second frame portion 220 may slide more stably. Besides, if an upper part and a lower part of the first frame portion 210 or the second frame portion 220 slide simultaneously, at the same time, the entrance is open or is blocked at an upper side and a lower side. In other words, the first frame portion 210 or the second frame portion 220 may be moved entirely rather than leave a threshold when the entrance is open, which prevents people stumbling against the threshold.
In a preferred embodiment, the first frame portion 210 and the second frame portion 220 can be moved to a first state and a second state. Please refer to
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Precisely, the safety gate 10 is convenient to be installed and removed because of aforesaid structures of the wall-mounted post assemblies 100 and the connecting assemblies 300. Besides, the safety gate 10 can be installed at various circumstances. For example, normally, walls on two sides of an entrance may be parallel to each other, and thus the safety gate 10 may be installed normally. However, if walls on two sides of another entrance are staggered from each other, a frame portion of a conventional safety gate may be interfered by the walls when pivoted, so said safety gate cannot adapt to this circumstance. On the contrary, the safety gate 10 of the present invention is capable of being installed in such circumstance. Precisely, after the wall-mounted post assemblies 100 are mounted on the two walls on the two sides of the entrance and the connecting assemblies 300 are mounted on the wall-mounted post assemblies 100, because the first frame portion 210 and the second frame portion 220 can slide with respect to each other, the main frame 200 will not be interfered by the walls.
In another embodiment, the connecting assemblies 300 may be integrally formed on the first frame portion 210 or the second frame portion 220, or the safety gate 10 may not have any connecting assembly 300 but holes are formed on the first frame portion 210 and the second frame portion 220 to receive the connecting posts 111.
In this embodiment, the safety gate 10 may further comprise two stopping assemblies 400 mounted on a respective one of the wall-mounted post assemblies 100. Precisely, each one of the stopping assemblies 400 is mounted on a side of a corresponding one of the wall-mounted post assemblies 100. Said side of the wall-mounted post assembly 100 is close to the main frame 200. Each one of the stopping assemblies 400 is capable of extending elastically in the corresponding wall-mounted post assembly 100 and thereby is configured to limit the connecting assembly 300 connected on the corresponding wall-mounted post assembly 100 in position. Therefore, the connecting assemblies 300 and the wall-mounted post assemblies 100 are connected stably.
In a preferred embodiment, each one of the wall-mounted post assemblies 100 forms an installing chamber 120. The installing chamber 120 is configured to receive one of the stopping assemblies 400. Each one of the stopping assemblies 400 comprises a stopping block 410 and an elastic component 420. One end of the elastic component 420 is mounted in the installing chamber 120 and another end of the elastic component 420 is connected to the stopping block 410. The stopping block 410 and the seat 110 are spaced from each other. The elastic component 420 exerts an elastic force on the stopping block 410, which limits the connecting assembly 300 between the stopping block 410 and the seat 110 by the stopping block 410 and prevents the connecting assembly 300 from being detached from the connecting post 111.
Specifically, when the user wants to open the safety gate 10, the user may press the stopping block 410 to move the stopping block 410 away from the corresponding connecting assembly 300. After the stopping block 410 withdraws into the installing chamber 120, the user can lift the connecting assembly 300 to separate from the connecting post 111, and thereby the first frame portion 210 or the second frame portion 220 is detached from the corresponding wall-mounted post assembly 100. Then, the user pivots the first frame portion 210 or the second frame portion 220 to completely open the safety gate 10 of the present invention.
When the user does not want the safety gate 10 to block the entrance, just like opening the safety gate 10, the user may press the two stopping blocks 410 on both sides at the same time or successively make the first frame portion 210 separate from the corresponding wall-mounted post assembly 100 and the second frame portion 220 separate from the corresponding wall-mounted post assembly 100. Thus, the main frame 200 can be detached.
When the user wants to mount the main frame 200 on the wall-mounted post assemblies 100, the user can press the stopping blocks 410 to respectively move away from the corresponding connecting assemblies 300 so that the stopping blocks 410 withdraw into the corresponding installing chambers 120. Then, the user respectively sleeves the connecting assemblies 300 on the connecting posts 111 and releases the stopping blocks 410, such that the stopping blocks 410 move toward the corresponding connecting assembly 300 via the elastic components 420 and extend out of the corresponding installing chambers 120. Therefore, the connecting assemblies 300 are limited between the stopping blocks 410 and the corresponding seats 110. In other words, the connecting assemblies 300 are fixed, i.e., the first frame portion 210 and the second frame portion 220 are respectively locked on the corresponding wall-mounted post assemblies 100, and thereby the safety gate is installed completely.
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Further, each one of the stopping blocks 410 forms a guiding chamber 411 and each one of the installing chambers 120 comprises a guiding block 123 therein. The sectional shape and sectional size of the guiding block 123 and the sectional shape and sectional size of the guiding chamber 411 are the same. Each one of the elastic components 420 connects a respective one of the guiding chambers 411 and a respective one of the guiding blocks 123. The guiding chamber 411 and the guiding block 123 are configured to guide the stopping block 410 together, which prevents the stopping block 410 from deviating from a predetermined direction during movement. Therefore, the stopping block 410 can be moved in the installing chamber 120 stably.
In a preferred embodiment, the guiding block 123 comprises an installing hole 125 and a first guiding component 127. The first guiding component 127 is mounted in the installing hole 125. The stopping blocks 410 each comprise a second guiding component 413 in the guiding chamber 411. One end of the elastic component 420 is mounted on the first guiding component 127 and another end of the elastic component 420 is mounted on the second guiding component 413, which guides the elastic component 420 and prevents the elastic component 420 from being bent during compression or stretching.
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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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201920583470.3 | Apr 2019 | CN | national |
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