Not applicable.
The present invention relates to a retractable surface system installed within an opening in a surface and a method of installing the retractable surface system into the opening within the surface, particularly a retractable athletic surface system and a method of installing the retractable athletic system into an opening of an athletic field.
The investment of public/private funds in facilities, particularly athletic facilities, requires significant funds. Unfortunately, because such facilities are often designed as single-use facilities, there is a lack of flexibility in use of many of these facilities for different activities. An example of such lack of flexibility are athletic facilities containing elevated surfaces used for pitching mounds, bull pen mounds, track and field fixtures or areas, such as pits/water obstacles, etc. Because of the structure of these features of athletic facilities, the flexibility to use these venues for other purposes is limited. Further, the expense of manual conversion of these facilities for multiple uses is substantial. In addition, the potential for injury of athletes using converted sports facilities is significant, without a better control of the surface of the playing fields of these facilities.
The seasons of athletic teams often overlap, placing a premium on making a field playable in a short period of time for multiple uses. Accordingly, it is critical for a field to be convertible and playable within 24 hours from use for one sport to use for a different sport. Further, game scheduling is often conducted by league administration and is not under the control of the respective athletic teams, making quick modification of the surface of the athletic field often necessary. Further, efficient transformation of a stadium from one event to another is critical with regard to materials and employees needed for a successful and quick transformation.
The ability to raise and lower various ground level features of athletic field surfaces or surfaces in general with minimal manpower and materials allows the surfaces to be converted from one use to another use efficiently and economically. This conversion ability also allows these venues to be more utilized and productive for multiple sports and the communities they serve. For example, such a conversion would allow a baseball playing field to be easily converted to use for football, soccer, band competitions, non-athletic events and music concerts.
For such conversions to be practical, there is a need for a system which will allow venues to use their primary playing surface without a tripping hazard that often occurs with raised or depressed athletic field features, such as pitching mounds. Further, when athletic surfaces, such as pitching mounds, cannot be removed, the presence of the pitching mound in the middle of the athletic field seriously limits the amount of seating for events such as concerts. Efficient conversions of athletic surfaces also contribute to safety of use of such surfaces for participants. Further, because the seasons for athletic teams overlap, a field is only available for a very short window of time to allow for initial installation of a retractable athletic surface.
Currently, a retractable athletic surface exists as discussed in U.S. Pat. No. 9,278,276. Unfortunately, because of its design and difficulty in installation, it is impractical to use and expensive to install. Further, the '276 patent requires the use of extensive excavation as installation and maintenance require use of a concrete foundation, which has to be precisely measured, poured and set within the opening in the athletic field. This concrete foundation has been impractical as it takes numerous skilled artisans to install, which takes significant time. Moreover, the skilled artisans must be trained in how to install and maintain the surface, which also takes time and results in excess costs and significantly limits the number of workers available. What is needed is an improved retractable surface system, which can be, for the most part, prefabricated and delivered to the surface, such as an athletic field, for quicker, more efficient installation and maintenance.
In addition, a quick and efficient method of constructing and installing a retractable surface system within an surface, such as an athletic field, in a short period of time is important to allow for optimal usage of the surface or athletic field. Further, this method of installing the retractable surface system should account for an on-site assessment of pre-existing conditions prior to construction of the retractable surface system. Further, a method of installing and constructing the retractable surface system is needed which allows for less excavation of the surface or athletic field and less on-site construction time to optimize surface and athletic field usage. This method of constructing a retractable surface system should also allow for precise quality control of the retractable surface.
The retractable surface system and method of installation disclosed herein eliminates the need for the complicated, multicomponent concrete foundation previously used, allows for precise quality control of the retractable surface via prefabrication of a majority of the components of the system, and significantly decreases the amount of time necessary for installation of the retractable surface system.
In an embodiment of one invention disclosed herein, is a retractable surface system installed within an opening in a surface, wherein the system includes a mat located at a base of the opening, inner piers supported by the mat, wherein said inner piers contain a vertical sleeve, outer piers supported by the mat, wherein said outer piers support upper and lower stops, a raising and lowering system secured to the inner piers, and a platform to support a retractable surface, which platform is located within the opening and supported by the raising and lowering system.
In an embodiment of one invention disclosed herein, is a method of installing a retractable surface system within an opening of a surface, the method including excavating the opening within the surface, introducing a mat into a base of the opening, introducing outer piers and inner piers into the mat, securing a sleeve vertically within the inner piers to facilitate the lowering and raising of the system, securing upper and lower stops to the outer piers, securing a raising and lowering system into the inner piers, and securing a platform to the raising and lowering system.
Other objects and features of the invention disclosed herein will be apparent from the following.
One embodiment of an inventive concept disclosed herein is a retractable surface system (10), which is installed within an opening (20) of a surface, as shown in
In one embodiment, before excavation of the opening occurs, the athletic field is investigated for pre-existing conditions, which may negatively inhibit installation and maintenance of the retractable surface system (10). If any negative conditions are found, they are either removed, relocated, or the retractable surface system is modified to not conflict with the pre-existing structural elements. One way in which the retractable surface system can be modified is by adjusting the location of inner and outer piers (40, 50) in a way as to not conflict with the prior existing structural elements. The present system is significantly more flexible that the prior art systems as the prior art system required use of a monolithic concrete foundation. This concrete foundation could not be easily adjusted or modified around pre-existing structural elements. The new system is significantly more flexible as the inner and outer piers can be placed around the pre-existing structural elements so as to not interfere.
In one embodiment, a mat (30) is introduced into a base (32) of the opening, as shown in
In one embodiment, a form (38) is placed in each respective inner and outer pier opening, as shown in
In one embodiment, secured to a top portion of the outer piers (50) are shaft stop assemblies (80), which include upper stops (52) and lower stops (54) (see
In one embodiment, the outer piers (50) are further supported by and secured to a retaining wall (56) as shown in
The inner piers (40) include a sleeve (42), which is vertically supported within the inner piers as shown in
In one embodiment, the raising and lowering system includes well-known mechanical and/or electrical systems to raise and lower the retractable surface (12). One such system, as shown in
The drive shafts (48), lowered by the mechanical screw jacks (46) extend downward into a sleeve (42), which is vertically secured within each inner pier (40) as shown in
The use of one electrically powered drive motor (44), instead of multiple motors, allows for ease of replacement and maintenance of the motor. Access to the motor is provided by an access panel (68) in the platform (60), as shown in
In one embodiment, the platform (60) is supported by a support structure (62), a steel support structure, such as is disclosed in
In one embodiment, a rubber seal (66) is installed on top of the platform (60) to limit penetration of water and debris into the base as shown in
In use when the retractable surface (12), such as a pitching mound (90), is being used for baseball, the retractable surface is secured in a raised position, such as is shown in
One method of installing the retractable surface system (10) includes excavating an opening (20) within an athletic field as shown in
Once the mat (30) is successfully secured into the base (32) of the opening (20), inner piers (40) and outer piers (50) are introduced and secured within the mat as shown in
In one embodiment, reinforcement steel is also placed within the poured concrete of the form (38) for further support of the inner and outer piers. The elevation of the top of the inner and outer piers is confirmed to ensure proper height for the retractable surface when in a raised and lowered position. In one embodiment, shaft stop assemblies (80) are secured to outer piers via a base plate which is bolted to the outer piers. In this embodiment, upper and lower stops (52, 54) are secured to the shaft stop assemblies to support the retractable surface in a raised and lowered position (see
In one embodiment, a retaining wall (56) is secured or bolted, to the outer piers, as shown in
In one embodiment, the inner piers (40) include a sleeve (42), which is vertically secured within the inner piers, as shown in
In one embodiment, the raising and lowering system is further secured to the platform (60) to raise and lower the retractable surface. In one embodiment, the platform is connected to the raising and lowering system by guide pins, which are welded to the raising and lowering system. Further, a support structure (62) may be secured between the platform and the raising and lowering system by bolting to the raising and lowering system and the platform via guide pins.
In one embodiment, the retractable surface (12) is placed on and/or secured to a platform (60), a steel platform, which is retractable within the opening (20) in the athletic field. Top layers of the retractable surface are secured on top of the platform to be raised and lowered into the opening of the athletic field as shown in
In one embodiment, following installation steps, calibration and testing of the retractable surface system (10) occurs. This process involves lowering the platform (60) without the top layers to the lower stop position and allowing the mound platform to rest on the lower stops (54). Calibration of any switches also occurs. The platform should be raised to the upper stop position to allow the platform to rest on the upper stops (52) and calibration of the limit switches should continue during this testing process. This process should be repeated at least five times to ensure that all vertical and horizontal tolerances are maintained. Following calibration and testing, installation of any top layers of the athletic retractable surface occurs.
While several embodiments of the present invention have been shown and described, it is understood that many changes and modifications can be made thereto without departing from the scope of the inventions as disclosed herein.
Number | Name | Date | Kind |
---|---|---|---|
2884252 | Thompson | Apr 1959 | A |
3508747 | Orsatti | Apr 1970 | A |
3818892 | Von Kohorn | Jun 1974 | A |
4591154 | Santarone | May 1986 | A |
4749223 | Goeders | Jun 1988 | A |
5213323 | Novinsky | May 1993 | A |
5467977 | Beck | Nov 1995 | A |
5618131 | Weber | Apr 1997 | A |
5624112 | Hummel et al. | Apr 1997 | A |
5707305 | Goeders et al. | Jan 1998 | A |
5716295 | Anglea | Feb 1998 | A |
5769745 | Bartoli | Jun 1998 | A |
5827140 | Bartoli | Oct 1998 | A |
5919103 | Bartoli | Jul 1999 | A |
6843739 | Putnam | Jan 2005 | B2 |
D520094 | Hess | May 2006 | S |
7090586 | Everett | Aug 2006 | B1 |
7150688 | Coulbourn | Dec 2006 | B1 |
7344459 | Bykowsky | Mar 2008 | B2 |
7621831 | Roberts | Nov 2009 | B2 |
7927238 | Mejia Perez | Apr 2011 | B2 |
8157678 | Goeders | Apr 2012 | B2 |
8167746 | Massaro | May 2012 | B2 |
8216095 | Weber et al. | Jul 2012 | B2 |
8616988 | Coffman | Dec 2013 | B1 |
9278276 | Estopinal | Mar 2016 | B2 |
20040242352 | Panus | Dec 2004 | A1 |
20110192096 | Koberinski | Aug 2011 | A1 |
Number | Date | Country |
---|---|---|
06026298 | Nov 1988 | JP |
H03222976 | Oct 1991 | JP |
H0852251 | Feb 1996 | JP |
H08522552 | Feb 1996 | JP |
H0947540 | Feb 1997 | JP |
H0947541 | Feb 1997 | JP |
H10192473 | Jul 1998 | JP |
H10295872 | Nov 1998 | JP |
2000140191 | May 2000 | JP |
Number | Date | Country | |
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20200054932 A1 | Feb 2020 | US |