This application claims the benefit of European Application No. 18305553.2, filed May 3, 2018, which is incorporated herein by reference in its entirety.
The subject matter disclosed herein generally relates to elevator car wall panels and, more particularly, elevator car panel systems that allow for ease of opening such panels.
Elevator systems are used to transport passengers within buildings between floors of the building. Elevators include various components located within an elevator shaft (either affixed to the shaft or on an exterior of an elevator car). From time to time, maintenance is performed upon such components, such as inspection, repair, replacement, etc., as appreciated by those of skill in the art.
Entering an elevator shaft has risks and thus reducing the amount of exposure of mechanics and other authorized personnel to the elevator shaft is advantageous. Further, there is a trend to reduce the volumetric footprint of elevator systems within buildings, and thus reducing the required space for various components has advantages. However, to accommodate such improvements, changes in the elevator car may be required. Accordingly, it may be beneficial to have improved elevator car systems that provide for ease of access to components for maintenance while ensuring the safety of mechanics or other personnel.
According to some embodiments, elevator car wall panel systems are provided. The systems include an elevator car frame, at least two wall panels pivotally connected to the frame, a connecting element operably connecting the at least two wall panels, and an actuation element operably connected to the connecting element, wherein the actuation element is operable to transition the at least two wall panels from a closed state to an open state.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include a locking element arranged to lock the at least two wall panels in the closed state.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include that the connecting element is a rigid rod.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include that each wall panel is pivotally connected to the connecting element by a respective connector.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include that each connector comprises a bracket and a connector extension.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include that each connector extension is a part of the connecting element.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator car wall panel systems may include that the actuation element comprises at least one sliding pivot and at least one rotating pivot.
According to some embodiments, elevator cars are provided that include the elevator car wall panel systems of any of the above described embodiments.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator cars may include that the elevator car includes a passenger space, wherein the at least two wall panels are aesthetic panels of the passenger space.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator cars may include that the connecting element is located at least one of a ceiling and a floor of the elevator car.
According to some embodiments, elevator systems are provided that include the elevator cars as described in the above embodiments, wherein the elevator car is positioned within an elevator shaft of the elevator system.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator systems may include that when the at least two wall panels are opened, at least a portion of the wall panels extends into the elevator shaft.
In addition to one or more of the features described herein, or as an alternative, further embodiments of the elevator systems may include at least one elevator component located within the elevator shaft, wherein when the at least two wall panels are opened, the at least one elevator component is accessible from the passenger space.
The foregoing features and elements may be combined in various combinations without exclusivity, unless expressly indicated otherwise. These features and elements as well as the operation thereof will become more apparent in light of the following description and the accompanying drawings. It should be understood, however, that the following description and drawings are intended to be illustrative and explanatory in nature and non-limiting.
The subject matter is particularly pointed out and distinctly claimed at the conclusion of the specification. The foregoing and other features, and advantages of the present disclosure are apparent from the following detailed description taken in conjunction with the accompanying drawings in which:
The roping 107 engages the machine 111, which is part of an overhead structure of the elevator system 101. The machine 111 is configured to control movement between the elevator car 103 and the counterweight 105. The position encoder 113 may be mounted on an upper sheave of a speed-governor system 119 and may be configured to provide position signals related to a position of the elevator car 103 within the elevator shaft 117. In other embodiments, the position encoder 113 may be directly mounted to a moving component of the machine 111, or may be located in other positions and/or configurations as known in the art.
The controller 115 is located, as shown, in a controller room 121 of the elevator shaft 117 and is configured to control the operation of the elevator system 101, and particularly the elevator car 103. For example, the controller 115 may provide drive signals to the machine 111 to control the acceleration, deceleration, leveling, stopping, etc. of the elevator car 103. The controller 115 may also be configured to receive position signals from the position encoder 113. When moving up or down within the elevator shaft 117 along guide rail 109, the elevator car 103 may stop at one or more landings 125 as controlled by the controller 115. Although shown in a controller room 121, those of skill in the art will appreciate that the controller 115 can be located and/or configured in other locations or positions within the elevator system 101.
The machine 111 may include a motor or similar driving mechanism. In accordance with embodiments of the disclosure, the machine 111 is configured to include an electrically driven motor. The power supply for the motor may be any power source, including a power grid, which, in combination with other components, is supplied to the motor. Although shown and described with a roping system, elevator systems that employ other methods and mechanisms of moving an elevator car within an elevator shaft may employ embodiments of the present disclosure.
Turning to
As shown, the second subpanels 233 of the first elevator car wall panel 227 include associated handrails 237, 239. The second elevator car wall panel 229 includes a respective handrail 241 mounted thereto. The handrails 237, 239, 241 are mounted to the respective subpanels 233, 235 of the elevator car wall panels 227, 229 and provide users or passengers of the elevator to have a handrail to provide support or other function. In some embodiments, ends of the handrails 237, 239, 241 may be fixedly attached to, mounted to, and supported by the respective subpanels 233, 235. As noted above, the first subpanel 231 of the first elevator car wall panel 227 includes an operation or control section 243. The control section 243, as shown, includes a number of buttons that are used to enable a passenger to select a destination floor, and may also include emergency buttons, or other buttons as known in the art. The first subpanel 231 may further include other electronic elements, such as speakers, displays, etc., as will be appreciated by those of skill in the art.
The elevator car wall panels can be fixedly and semi-permanently installed to an elevator car structural panel or frame. For example, screws, bolts, or other fasteners can be used to fasten the wall panels to the elevator car structural panel. However, such configurations may not allow easy changing and/or replacement of such elevator car wall panels and/or access to components located behind the wall panels. Accordingly, embodiments provided herein are directed to elevator car wall panels and associated systems that enable easy opening and operation to grant access to elements/components located behind the wall panels, thus avoiding a need for a mechanic to enter an elevator shaft to access such elements/components.
For example, turning now to
Each wall panel 308a, 308b, 308c is pivotally mounted to the frame 306 at a respective pivot 312a, 312b, 312c. Further, each wall panel 308a, 308b, 308c is operably connected to a connecting element 314, such as a support rod or other rigid body. The connecting element 314 is operable by an actuation element 316 that is operable to actuate, move, translate, etc. the connecting element 314 to, in turn, open (or close) the wall panels 308a, 308b, 308c, as described herein. The connecting element 314 may be located at a top or bottom of the frame 306 (e.g., proximate a floor or ceiling of the elevator car 302). Although shown with the connecting element 314 arranged relatively on the interior of the car frame 306, in other embodiments, the connecting element may be located above the car frame or even located on the exterior of the car frame, i.e., located on the elevator shaft side of the car frame.
Each wall panel 308a, 308b, 308c is operably connected to the connecting element 314 by a respective connector 318a, 318b, 318c. The connectors 318a, 318b, 318c may be brackets or similar structures that allow for the movement of the connecting element 314 to force or urge the wall panels 308a, 308b, 308c to move about the respective pivots 312a, 312b, 312c, as shown in
As shown in
In the first or closed state (
Turning now to
Each wall panel 408a, 408b, 408c is pivotally mounted to the frame 406 at a respective pivot 412a, 412b, 412c. Further, each wall panel 408a, 408b, 408c is operably connected to a connecting element 414, such as a support rod or other rigid body. The connecting element 414 is operable by an actuation element, not shown, that is operable to actuate, move, translate, etc. the connecting element 414 to, in turn, open (or close) the wall panels 408a, 408b, 408c, as described herein. The connecting element 414 may be located at a top or bottom of the frame 406 (e.g., proximate a floor or ceiling of the elevator car 402). Although shown with the connecting element 414 arranged relatively on the interior of the car frame 406, in other embodiments, the connecting element may be located above the car frame or even located on the exterior of the car frame, i.e., located on the elevator shaft side of the car frame.
Each wall panel 408a, 408b, 408c is operably connected to the connecting element 414 by a respective connector 418a, 418b, 418c. The connectors 418a, 418b, 418c may be brackets or similar structures that allow for the movement of the connecting element 414 to force or urge the wall panels 408a, 408b, 408c to move about the respective pivots 412a, 412b, 412c, as shown in
In some embodiments, when the wall panels 408a, 408b, 408c are opened, as shown in
Turning now to
Each wall panel 508a, 508b is pivotally mounted to the frame 506 at a respective pivot 512a, 512b, with the pivots 512a, 512b being rotating pivots 522. Further, each wall panel 508a, 508b is operably connected to a connecting element 514, such as a support rod or other rigid body. As shown in
The connecting element 514 is operable by an actuation element 516 that is operable to actuate, move, translate, etc. the connecting element 514 to, in turn, open (or close) the wall panels 508a, 508b. The connecting element 514 may be located at a top or bottom of the frame 506 (e.g., proximate a floor or ceiling of an elevator car). The actuation element 516 can include one or more rotating pivots 522 and one or more sliding pivots 524, as schematically shown.
As the actuation element 516 is actuated or operated, the pivots 522, 524 move, as schematically shown in the change between
Accordingly, in accordance with some embodiments of the present disclosure, operation of an actuation element enables easy opening and closing of all wall panels of an elevator car. The systems described herein can include a rotary actuator, a rod which ensures all panels are integrally moved, and pivots on each panel, as shown and describe above. A lock or other securing device may be configured with the actuation element to secure the wall panels from inadvertent or unintentional opening or operation. For example, as shown in
Those of skill in the art will appreciate that various example embodiments are shown and described herein, each having certain features in the particular embodiments, but the present disclosure is not thus limited. That is, features of the various embodiments can be exchanged, altered, or otherwise combined in different combinations without departing from the scope of the present disclosure. Further, additional features and/or components can be incorporated into customizable elevator handrails as provided herein without departing from the scope of the present disclosure.
Advantageously, embodiments described herein provide elevator wall panel systems that are configured for relatively simple operation during maintenance operations. Embodiments provided herein allow a maintenance operation to be performed from inside the elevator car and eliminates any need to have a mechanic enter an elevator shaft or go on the elevator car roof.
While the present disclosure has been described in detail in connection with only a limited number of embodiments, it should be readily understood that the present disclosure is not limited to such disclosed embodiments. Rather, the present disclosure can be modified to incorporate any number of variations, alterations, substitutions, combinations, sub-combinations, or equivalent arrangements not heretofore described, but which are commensurate with the scope of the present disclosure. Additionally, while various embodiments of the present disclosure have been described, it is to be understood that aspects of the present disclosure may include only some of the described embodiments.
Accordingly, the present disclosure is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
18305553 | May 2018 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
4635756 | Sherwood | Jan 1987 | A |
4711322 | Orndorff | Dec 1987 | A |
6209931 | Von Stoutenborough | Apr 2001 | B1 |
6484850 | Kobayashi | Nov 2002 | B1 |
6902040 | Fujita | Jun 2005 | B2 |
6971686 | Becken | Dec 2005 | B2 |
7404306 | Walls | Jul 2008 | B2 |
7556126 | Wang | Jul 2009 | B2 |
7878034 | Alber | Feb 2011 | B2 |
9796562 | Yao | Oct 2017 | B2 |
20050224299 | Soemardjan | Oct 2005 | A1 |
20080217113 | Bonatre | Sep 2008 | A1 |
20100038183 | Henseler | Feb 2010 | A1 |
20100176944 | Shell | Jul 2010 | A1 |
20120104917 | Fan | May 2012 | A1 |
20120255815 | Koskelainen | Oct 2012 | A1 |
20150167355 | Coltel | Jun 2015 | A1 |
20150246792 | Baltis | Sep 2015 | A1 |
20170297870 | Fauconnet | Oct 2017 | A1 |
20180051468 | Beauchaud | Feb 2018 | A1 |
20180111797 | Fauconnet | Apr 2018 | A1 |
20180222723 | Gressien | Aug 2018 | A1 |
20180282127 | Fauconnet | Oct 2018 | A1 |
20190337764 | Convard | Nov 2019 | A1 |
Number | Date | Country |
---|---|---|
101068738 | Nov 2007 | CN |
101588980 | Mar 2012 | CN |
107298365 | Oct 2017 | CN |
3231758 | Oct 2017 | EP |
H06271220 | Sep 1994 | JP |
H08282928 | Oct 1996 | JP |
2000247563 | Sep 2000 | JP |
2006290565 | Oct 2006 | JP |
2006306527 | Nov 2006 | JP |
2008007276 | Jan 2008 | JP |
2010052859 | Mar 2010 | JP |
2013018574 | Jan 2013 | JP |
2013220865 | Oct 2013 | JP |
2014189386 | Oct 2014 | JP |
2004046010 | Jun 2004 | WO |
2009028089 | Mar 2009 | WO |
2012053074 | Apr 2012 | WO |
2017005327 | Jan 2017 | WO |
Entry |
---|
European Search Report for European Application No. 18305553.2, International Filing Date May 3, 2018, dated Oct. 16, 2018, 10 pages. |
Shanghai Shenghong Electronic Accessory Co., Ltd.—cabinet lock; Retrieved from Internet; URL: https://shenghonglock.en.alibaba.com/; 2018; 18 pgs. |
Number | Date | Country | |
---|---|---|---|
20190337764 A1 | Nov 2019 | US |