This invention relates generally to elevators, and more specifically, to an elevator life safety gate.
This invention relates generally to elevators, and more specifically, to an elevator life safety gate. In some embodiments, an elevator life safety gate extends from the bottom of an elevator car. The elevator life safety gate may be further configured for completely blocking access to the elevator hoistway. In some embodiments, an elevator life safety gate may have a front face comprising a webbing, which may be a lattice of straps, where the fabric is nylon or another lightweight, durable material. A webbing facilitates escape from an elevator car by acting as a ladder, permitting occupants to climb down to the landing.
In some embodiments, an elevator life safety gate may extend and retract on rails. In some embodiments, an elevator life safety gate is slidably mounted and may retract upwardly behind an elevator toe guard.
In some embodiments, an elevator life safety gate may have at least a frame, slide rails mounted to the frame, slide guides mounted to side mount rails, the slide guides configured for receiving the slide rails, a top mount rail, an anti-derailment bar, a rear lining, and a hook-and-loop fastener for the rear lining. In some embodiments, a frame of an elevator life safety gate may be a hollow frame, comprising four bars coupled together defining a generally rectangular gate having an aperture in the center. The hollow frame of the elevator life safety gate may reduce overall weight of the gate, permitting its installation without requiring rebalancing of the elevator car with an elevator counterweight. The hollow frame of the elevator life safety gate may also facilitate use of the webbing of the gate as a ladder. In some embodiments, a bottom bar of the frame is supplemented with a trip wire disposed below the bottom bar.
In some embodiments, an elevator life safety gate may have a top gate catch, and a microswitch. In some embodiments, an elevator life safety gate may latch into place with the top gate catch when reaching a fully retracted position. In some embodiments, a microswitch may engage when the top gate catch engages, signaling the elevator emergency stop switch.
Embodiments of the present invention are described in detail below with reference to the following drawings:
a is a depiction of the prior art;
b is a front view of an elevator life safety gate, in accordance with an embodiment of the invention;
a and 4b are rear views of an elevator life safety gate, in accordance with an embodiment of the invention;
a and 6b are perspective views of a portion of an elevator life safety gate, in accordance with an embodiment of the invention;
This invention relates generally to elevators, and more specifically, to an elevator life safety gate. Specific details of certain embodiments of the invention are set forth in the following description and
a is a depiction of the prior art. An elevator car 1 may become stalled above or below a landing 8. Should the hallway doors 9 and elevator car doors 11 be opened, the elevator hoistway 6 may be accessible below the bottom of the elevator car 12. An accessible elevator hoistway is a life-threatening safety condition. Elevators may have a toe guard 5 mounted below the elevator car 1, and the toe guard 5 may partially block access to the elevator hoistway 6. However, depending on the size of the toe guard 5 and where the elevator car 1 is stalled relative to a landing 8, a portion of the hoistway 6 may still be accessible even when a toe guard 5 is used.
b is a front view of an elevator life safety gate, in accordance with an embodiment of the invention. In some embodiments of the invention, an elevator life safety gate 2 may be configured to extend from underneath an elevator car 1. In some embodiments, the elevator life safety gate extends from the bottom of an elevator car 12. The elevator life safety gate 2 may be further configured for completely blocking access to the elevator hoistway (the elevator hoistway not visible in
In some embodiments, an elevator life safety gate 2 is at least as wide as the width of the opening between the landing 8 and the elevator hoistway. In other embodiments, an elevator life safety gate 2 is at least as wide as the hallway doors 9. In different embodiments, multiple life safety gates may be installed side-by-side such that the width of the plurality of life safety gates is at least as wide as the width of the opening between the landing 8 and the elevator hoistway.
In some embodiments, when extended, the elevator life safety gate 2 is at least as tall as the height of the tallest opening between the landing 8 and the elevator hoistway. In different embodiments, the combination of the toe guard 5 and life safety gate 2 is at least as tall as the height of the tallest opening between the landing 8 and the elevator hoistway.
In some embodiments, where an elevator car 1 has elevator car doors 11 on multiple sides of the elevator car 1 (e.g. elevator car doors in the front and the back of the elevator car), multiple elevator life safety gates 2 may be configured to extend from underneath an elevator car 1, from beneath each elevator car door 11 of the elevator car 1.
In some embodiments, an elevator life safety gate 2 may extend and retract on rails. In some embodiments, an elevator life safety gate 2 may retract upwards, underneath the elevator car 1 and towards the inside of the elevator hoistway 6, retracting like a garage door being opened, parallel to the bottom of the elevator car 12. In a preferred embodiment, an elevator life safety gate 2 is slidably mounted and may retract upwardly behind an elevator toe guard 5. Most elevator toe guards have nothing mounted to them on the hoistway side, so the hoistway side of an elevator toe guard is an advantageous spot for mounting an elevator life safety gate. Further, the elevator life safety gate can be retrofitted to existing elevator toe guards, and thus has universal application. In different embodiments, an elevator life safety gate 2 may collapse, telescope, compress, condense, or compact.
a and 4b are rear views of an elevator life safety gate, in accordance with an embodiment of the invention. In some embodiments, an elevator life safety gate 2 may have at least a frame 20, slide rails 22 mounted to the frame 20, slide guides 23 mounted to side mount rails 50, the slide guides 23 configured for receiving the slide rails, a top mount rail 51, an anti-derailment bar 24, a rear lining 30, and a hook-and-loop fastener for the rear lining 37.
In some embodiments, a frame 20 of an elevator life safety gate 2 may be a hollow frame, comprising four bars coupled together defining a generally rectangular gate having an aperture in the center. The hollow frame of the elevator life safety gate 2 may reduce overall weight of the gate, permitting its installation without requiring rebalancing of the elevator car 1 with an elevator counterweight. The hollow frame of the elevator life safety gate 2 may also facilitate use of the webbing 29 of the gate as a ladder as described elsewhere herein. The four bars of the frame 20 may comprise a top bar and a bottom bar oriented horizontally, and a left side bar and right side bar oriented vertically. In a preferred embodiment, a bottom bar is supplemented with a trip wire 25 disposed below the bottom bar (trip wire 25 not shown in
In some embodiments, a frame 20 of an elevator life safety gate 2 may have slide rails 22 coupled to each of the left side and right side of the elevator life safety gate 2. In a preferred embodiment, a toe guard of an elevator has side mount rails 50 and a top mount rail 51 mounted to the back side of the elevator toe guard. To the mount rails are coupled slide guides 23, the slide guides configured for receiving the slide rails 22. As can be seen in
In some embodiments, an elevator life safety gate 2 may have a webbing 29 inside the hollow area of the frame 20, the webbing comprising a front face of the gate. In some embodiments, the hollow area of the frame 20 may also have a rear lining 30, the rear lining comprising a rear face of the gate. The rear lining 30 prevents objects or limbs from becoming stuck in the webbing 29 from behind the gate. For example, when a technician is performing maintenance on the elevator and is working in the elevator pit, any tools protruding from a tool belt of the technician will not get stuck in the webbing 29 should the technician brush against the life safety gate 2, because the tools will just deflect against the rear lining 30. However, it may be convenient to quickly remove the rear lining 30, so the rear lining is held in place to the frame 20 with hook-and-loop style fasteners 37. The fasteners 37 may facilitate the breaking away of the rear lining 30 by the foot of a person evacuating the elevator car 1 using the webbing 29.
In some embodiments, an elevator life safety gate 2 may have an anti-derailment bar 24. In some embodiments, an anti-derailment bar 24 is coupled with the slide guides 23 at the bottom of the slide guides 23. An anti-derailment bar 24 prevents deflection of the life safety gate 2 if the life safety gate 2 is subject to pressure from the front side of the life safety gate 2. An elevator code may require that when an elevator is being serviced and the hallway doors are open making the hoistway accessible, a safety yellow colored barricade must be in front of the hallway doors, the barricade able to withstand a force of 200 pounds, for example. This is to prevent a person or object from inadvertently or intentionally falling through the doors into the hoistway. The rear lining 30 is safety yellow colored, and the anti-derailment bar may be configured to withstand a force of 200 pounds against the life safety gate 2 from the front face of the gate. In some embodiments, the foregoing may prevent a person or object from inadvertently or intentionally falling through the doors into the hoistway and satisfy the requirements for a barricade. The anti-derailment bar 24 also provides support from behind the gate if a person climbs out of the elevator car 1 using the webbing 29 on the front of the gate 2.
In some embodiments, an elevator life safety gate 2 may have a check valve to control the rate of extension and retraction of the life safety gate 2 (i.e. the rate at which the gate slides up and down in the slide guides). The check valve may be coupled with a portion of the toe guard or mounting arrangement for the life safety gate 2, and with a portion of the life safety gate 20. In a preferred embodiment, the check valve is mounted to the horizontal toe guard mount rail 51 above the life safety gate 2 and to the top bar of the frame 20 of the life safety gate 2. The check valve may control the rate at which the life safety gate extends and retracts.
Turning to
In some embodiments, a top gate catch 4 has a strike 40, the strike 40 having a strike roller 41. A top gate catch 4 also has a handle 42 and a latch 43 (latch 43 not being visible in
In some embodiments, it may be advantageous to operate the elevator's emergency stop circuit if the life safety gate 2 is fully retracted and latched. For example, if the elevator car is traveling downward in the hoistway, and the life safety gate 2 comes into contact with an object or a person in the hoistway. This may occur should there be an elevator technician in the pit and another individual inadvertently sends the elevator downward. Should the bottom of the life safety gate 2 hit the object or person causing the gate to fully retract and latch, halting the travel of the elevator may save the life of the person in the pit and/or prevent damage to the object or to the elevator. Consequently, in some embodiments, an elevator life safety gate 2 may have a microswitch 31, operated by a microswitch bumper 32, and signaling the emergency stop circuit through a microswitch signal cable 33. The microswitch 31 may be coupled in a normally-open style circuit with the elevator emergency stop circuit. As can be seen in
In some embodiments, an elevator life safety gate 2 may have an additional latch accessible from the hallway for latching the gate in a retracted position. The additional latch may be, for example, a barrel slide bolt latch. This latch could be engaged, for example, by a technician wishing to enter the hoistway and elevator pit from the hallway, and would provide an additional way of latching the gate which would not be able to be overcome by the force with which the top gate catch could be disengaged.
In some embodiments, an elevator life safety gate 2 may have a trip wire 25, the trip wire 25 defining a bottom edge of the life safety gate 2. The trip wire may be wrapped around one or more trip wire sheaves 27 and connected to a trip wire stop switch 26. The trip wire stop switch 26 may be wired in series with the elevator emergency stop switch, so that if the trip wire 25 is tripped, activating the trip wire stop switch 26, the elevator emergency stop circuit is also engaged, halting the elevator. This may be advantageous to an elevator technician working in the pit who needs to quickly halt the elevator and may do so by merely pulling on the trip wire 25, where a trip wire 25 might be more easily accessible than an emergency switch mounted in the hoistway. A trip wire 25 may also be activated should the elevator be traveling downward and encounter an object or person in the hoistway. Halting the travel of the elevator in this scenario may prevent harm to the person and/or prevent damage to the object or the elevator. A trip wire stop switch 26 may have a trip wire reset 36, facing the hoistway, so that a technician can resume operation of the elevator easily by pressing the trip wire reset 36. In some embodiments, the trip wire 25 may be covered with a yellow vinyl trip wire cover 38 (vinyl trip wire cover not visible in
In some embodiments, an elevator life safety gate 2 may have one or more bumpers 28 at the bottom of the gate 2. In some embodiments, one or more rubber bumpers 28 may cover the trip wire sheaves 27. A rubber bumper 28 may reduce noise should the gate come into contact with the elevator pit, and can cushion impact should the gate come into contact with an object or a person.
In some embodiments, one or more lights 35 may be disposed along a portion of the frame 20. The lights may be operated to provide additional light to the elevator hoistway and pit when needed. The lights may also be operated to provide a status signal related to operation of the elevator. The status signal may be color coded, for example, including red meaning the elevator emergency stop switch is not engaged (and thus the elevator is in a possibly unsafe status for anyone viewing the lights from the pit), or green indicating that at least one of the emergency stops have been engaged.
While preferred and alternative embodiments of the invention have been illustrated and described, as noted above, many changes can be made without departing from the spirit and scope of the invention. Accordingly, the scope of the invention is not limited by the disclosure of these preferred and alternate embodiments. Instead, the invention should be determined entirely by reference to the claims that follow.
This invention claims the benefit of U.S. provisional patent application Ser. No. 61/443,275 filed Feb. 16, 2011 (our ref. THOM-1-1002). The foregoing application is incorporated by reference in its entirety as if fully set forth herein.
Number | Date | Country | |
---|---|---|---|
61443275 | Feb 2011 | US |