Inflatable surfing apparatus and method of providing reduced fluid turbulence

Information

  • Patent Grant
  • 10376799
  • Patent Number
    10,376,799
  • Date Filed
    Monday, November 14, 2016
    8 years ago
  • Date Issued
    Tuesday, August 13, 2019
    5 years ago
  • CPC
  • Field of Search
    • US
    • 472 116000
    • 472 117000
    • 472 128000
    • 472 134000
    • 482 070-071
    • 244 130000
    • CPC
    • A63G21/00
    • A63G21/18
    • A63G31/00
    • A63G31/007
    • A63G31/12
    • A63B69/00
    • A63B69/0093
    • A63B69/125
    • B63B1/00
    • B63B1/34
  • International Classifications
    • A63G21/18
    • A63G31/00
Abstract
A water attraction having one or more inflatable areas and/or features for reducing turbulence of water flow over a ride surface is disclosed. The water attraction includes a ride surface, a water delivery section, and a recovery section. The water delivery section provides water flow on the ride surface. The ride surface may include the assembly of multiple segments and may be fully or partially inflatable. The water delivery section may include one or more water delivery mechanisms, for example, nozzles. A water delivery mechanism may deliver a water flow different from the water flows from other water delivery mechanisms. In one embodiment, the water delivery section includes water delivery mechanisms directed in a fanned-out configuration in order to reduce turbulence. In another embodiment, gaps between segments of the ride surface may provide a “buffer” for overlapping water flow in order to achieve a smooth water surface.
Description
BACKGROUND

1. Field


The present invention relates generally to amusement attractions, such as surfing simulators or other wave machines. More particularly, the present invention relates to large surfing attractions that incorporate one or more inflatable sections or areas and with features directed towards reduction of turbulence of water flow over ride surfaces thereof.


SUMMARY

A water attraction or ride vehicle using inflatable materials is disclosed that is shaped or configured such that a rider has a large area for maneuverability without experiencing turbulent water effects. The water attraction of the present invention comprises a ride surface, a water delivery section, and a recovery section. The water delivery section provides water flow on all or part of the ride surface so that users may perform maneuvers upon the flow of water, such as surfing and skimming. The ride surface may be fully or partially inflatable and may be assembled with multiple segments. The water attraction may further include a support portion supporting the ride surface. The support section may also be fully or partially inflatable. The water delivery section may include one or more water delivery mechanisms, for example, nozzles. A water delivery mechanism may deliver a water flow different from the water flows from other water delivery mechanisms. The difference in water flows may cause undesired turbulence. In one embodiment, the water delivery section includes water delivery mechanisms directed in a fanned-out configuration in order to reduce turbulence. In another embodiment, the gap between two segments of the ride surface may provide a “buffer” where additional water may be flow so that a smooth surface of water is achieved





BRIEF DESCRIPTION OF THE DRAWINGS

Other systems, methods, features, and advantages of the present invention will be or will become apparent to one with skill in the art upon examination of the following figures and detailed description. It is intended that all such additional systems, methods, features, and advantages be included within this description, be within the scope of the present invention, and be protected by the accompanying claims. Component parts shown in the drawings are not necessarily to scale and may be exaggerated to better illustrate the important features of the present invention, in the drawings, like reference numerals designate like parts throughout the different views, wherein:



FIG. 1 shows a perspective view of surfing attraction configured in the shape of a portion of a circle according to an embodiment of the present invention;



FIG. 2 shows a perspective view of surfing attraction configured in the shape of a half-circle according to an embodiment of the present invention;



FIG. 3 shows a portion of a surfing attraction to be configured as an underlying part of a ride surface according to an embodiment of the present invention;



FIG. 4 shows a segment of a ride surface for a surfing attraction according to an embodiment of the present invention; and



FIG. 5 shows a zoomed-in view of a water delivery section of a surfing attraction for reduction of turbulence according to an embodiment of the present invention.





DETAILED DESCRIPTION

The detailed description of exemplary embodiments herein makes reference to the accompanying drawings and pictures, which show the exemplary embodiments by way of illustration and its best mode. While these exemplary embodiments are described in sufficient detail to enable those skilled in the art to practice the invention, it should be understood that other embodiments may be realized and that logical and mechanical changes may be made without departing from the spirit and scope of the invention. Thus, the detailed description herein is presented for purposes of illustration only and not of limitation. For example, the steps recited in any of the method or process descriptions may be executed in any order and are not limited to the order presented. Moreover, any of the functions or steps may be outsourced to or performed by one or more third parties. Furthermore, any reference to singular includes plural embodiments, and any reference to more than one component may include a singular embodiment.



FIG. 1 illustrates a perspective view of a surfing attraction 100 that is configured to be substantially in the shape of a portion of a circle. The surfing attraction 100 may be operated by directing a flow of water over ail or a portion of the surfing attraction 100 so that users upon the surfing attraction 100 may surf, skim, or otherwise perform maneuvers upon the flow of water, either using a ride vehicle such as a board or not, in varying embodiments. Although the surfing attraction 100 is depicted having a particular shape, orientation, configuration, and/or utilize features or operation in FIG. 1, alternative embodiments may utilize any of a variety of alternative shapes, orientations, configurations, features, and/or operation.


The surfing attraction 100 includes a recovery section 102 and a ride surface 104. In varying embodiments, the recovery section 102 and/or the ride surface 104 may be made up or constructed of one or more component parts that are subsequently fastened or connected together in order to form the final desired shape. A water delivery section 106 is also part of the surfing attraction 100 and, during operation, provides a flow of water across all or a part of the ride surface 104 to the recovery section 102. Users may perform maneuvers upon this flow of water on the ride surface 104, such as surfing maneuvers, skimming maneuvers, etc. One or more entry or exit zones (110, 112, 114, 116) may be provided that allow a user to enter and/or exit from the surfing attraction 100. As shown, entry/exit zones (110, 112) may be disposed adjacent or connected with the recovery section 102 to allow users to enter and/or exit from such recovery section 102. Likewise, as shown, entry/exit zones (114, 116) may be disposed adjacent or connected with the ride surface 104 and/or the water delivery section 106 to allow users to enter and/or exit from such ride surface 104 and/or water delivery section 106.


The ride surface 104 and/or recovery section 102 may be configured in a particular shape and/or orientation, as shown in FIG. 1, for example, a portion of a circle. Such a configuration may allow for multiple users to ride upon the ride surface 104 simultaneously, for example, due to the larger surface area of the ride surface 104. Such a configuration may also or alternatively allow for a single user to ride upon the ride surface 104, but may allow the user increased maneuverability due to the shape and/or size of the surface area of the ride surface 104. In an alternative embodiment, greater or smaller portions of a circle may be configured for the ride surface 104 and/or the recovery section 102, for example, as seen in FIG. 2. Indeed, any of a variety of possible shapes, sizes, configurations, or other orientations may be used as desired in alternative embodiments.


As discussed in greater detail herein, the size, shape, and/or other configuration of the ride surface 104 may require a plurality of water delivery mechanisms, such as nozzles, to operate and flow water over all or a portion of the ride surface 104. As shown, a first one or more water delivery mechanisms may provide a first flow or volume of water 120 upon the ride surface 104 while a second one or more water delivery mechanisms may provide a second flow or volume of water 122 upon the ride surface 104 in an adjacent area. It may be undesirable, in certain embodiments, for the flow of water upon the ride surface 104 to vary upon its surface, for example, because it may introduce an area of turbulence 130 at such intersections of different water flows (120, 122). Thus, as described in greater detail herein, certain aspects, features, and/or operation of the water delivery section 106 and/or the ride surface 104 may be provided to eliminate or reduce such turbulence.



FIG. 2 shows a perspective view of surfing attraction 200 configured in the shape of a half-circle. The surfing attraction 200 may include features that are the same as or similar to those discussed throughout, for example, in, FIG. 1. The surfing attraction 200 is in the shape of a half-circle and thus has a slightly modified configuration or shape from that previously discussed for FIG. 1. Alternative embodiments may utilize any of a variety of possible shapes.


Similar to the previous discussion. The surfing attraction 200 may be operated by directing a flow of water over all or a portion of the surfing attraction 200 so that users upon the surfing attraction 200 may surf, skim, or otherwise perform maneuvers upon the flow of water, either using a ride vehicle such as a board or not, in varying embodiments. Although the surfing attraction 200 is depicted having a particular shape, orientation, configuration, and/or utilize features or operation in FIG. 2, alternative embodiments may utilize any of a variety of alternative shapes, orientations, configurations, features, and/or operation.


The surfing attraction 200 includes a recovery section 202 and a ride surface 204, entrance/exiting/other pathway 201 is disposed around a perimeter of all or some of the recovery section 202. In varying embodiments, the recovery section 202 and/or the ride surface 204 may be made up or constructed of one or more component parts that are subsequently fastened or connected together in order to form the final desired shape. A water delivery section 206 is also part of the surfing attraction 200 and, during operation, provides a flow of water across all or a part of the ride surface 204 to the recovery section 202. Users may perform maneuvers upon this flow of water on the ride surface 204, such as surfing maneuvers, skimming maneuvers, etc. One or more entry or exit zones (210, 212) may be provided that allow a user to enter and/or exit from the surfing attraction 200. As shown, entry/exit zones (210, 212) may be disposed adjacent or connected with the recovery section 202 and/or connected with the pathway 201 to allow users to enter and/or exit from such recovery section 202 and/or enter and/or exit from the pathway 201, for example, if a user was merely using the pathway 201 to view other users upon the surfing attraction 200.


The ride surface 204 and/or recovery section 202 may be configured in a particular shape and/or orientation, as shown in FIG. 2, for example, a half-circle. Such a configuration may allow for multiple users to ride upon the ride surface 204 simultaneously, for example, due to the larger surface area of the ride surface 204. Such a configuration may also or alternatively allow for a single user to ride upon the ride surface 204, but may allow the user increased maneuverability due to the shape and/or size of the surface area of the ride surface 204. In an alternative embodiment, greater or smaller portions of a circle may be configured for the ride surface 204 and/or the recovery section 202. Indeed, any of a variety of possible shapes, sizes, configurations, or other orientations may be used as desired in alternative embodiments.


As discussed in greater detail herein, the size, shape, and/or other configuration of the ride surface 204 may require a plurality of water delivery mechanisms, such as nozzles, to operate and flow water over all or a portion of the ride surface 204. As shown, a first one or more water delivery mechanisms may provide a first flow or volume of water 220 upon the ride surface 204 while a second one or more water delivery mechanisms may provide a second flow or volume of water 222 upon the ride surface 204 in an adjacent area. It may be undesirable, in certain embodiments, for the flow of water upon the ride surface 204 to vary upon its surface, for example, because it may introduce an area of turbulence 230 at such intersections of different water flows (220, 222). Thus, as described in greater detail herein, certain aspects, features, and/or operation of the water delivery section 206 and/or the ride surface 204 may be provided to eliminate or reduce such turbulence.



FIG. 3 shows a portion 300 of a surfing attraction to be configured as an underlying part of a ride surface. The surfing attraction and/or the ride surface may contain features that are the same as or similar to those discussed throughout. For example, the ride surface may be configured to be fully or partially inflatable, for example, using a drop-stitch material. The drop-stitch material may be configured to inflate flat in certain embodiments. In such an embodiment, a ride surface that is fully or partially inflatable may allow for a more comfortable surface for a user to perform maneuvers thereon, particularly upon losing balance and making physical contact with the ride surface. In certain embodiments, the ride surface (inflatable or otherwise) may provide enough support, stability, and/or comfort features to be used without any underlying parts. FIG. 3 illustrates the portion 300 of an embodiment of a surfing attraction that utilizes an underlying part to be disposed underneath one or more segments of a ride surface, as discussed in greater detail below.


The portion 300 may be made of any of a variety of materials, such as foam, plastic, rubber, etc. In certain embodiments, the portion 300 may be configured to be fully or partially inflatable. Thus, in some embodiments, both the portion 300 and any other segment of a ride surface that is disposed above or otherwise connected or adjacent to the portion 300 may be inflatable. In other embodiments, the ride surface may be inflatable and the portion 300 not configured to be inflatable. A front area 302 of the portion 300 may be configured to connect to an area adjacent to a water delivery section of a surfing attraction, such as water delivery section 106 of FIG. 1. Likewise, a rear area 304 of the portion 300 may be configured to connect to an area adjacent to a recovery section of a surfing attraction, such as the recovery section 102 of FIG. 1. Thus, for the embodiment illustrated, the portion 300 may be configured to be disposed between a water delivery section and a recovery section of a surfing attraction, such that a ride surface (inflatable or otherwise) may be disposed thereover or thereon. In certain embodiments, the portion 300 may provide additional support or cushion for a user riding upon its connected ride surface.


The portion 300 has a thinner profile at a first section 310 to be disposed near the water delivery section. The portion 300 has a raised profile at a second section 315 to be disposed further away from the water delivery section and concludes at an even more raised profile at a third section 320 to be disposed near the recovery section. Thus, as shown, a profile for the portion 300 may provide the overall profile for the ride surface of the surfing attraction, for example, the ride surface 102 of FIG. 1. In this fashion, the ride surface of a surfing attraction may have its overall profile defined by the portions 300 that are disposed underneath one or more ride surface segments, for example, as illustrated in FIG. 4. Such a configuration may be desirable, particularly for inflatable ride surface segments, since the overall shape or profile for a surfing attraction may be defined by underlying portions, such as portion 300 that are constructed out of materials more easily shaped than inflatable materials. A connecting element 340 may be disposed at the front area 302 of the portion 300 for its connection with another component of the surfing attraction, such as the water delivery section. Likewise, a second connecting element and/or barrier or stabilizing element 301, for example, a perimeter bar for helping hold a desired shape or position of the portion 300 or other elements of a surfing attraction, may be disposed near a rear area 304 of the portion 300. As previously mentioned, multiple portions 300 may be connected with one another, for example, along their sides, in order to construct a complete underlying profile upon which one or more ride surface segments (such as ride surface segment 400 of FIG. 4) may be disposed thereon. These multiple portions 300 may be used to form partial circles, half-circles, or any other desired shape in varying embodiments.



FIG. 4 shows a ride surface segment 400 for a surfing attraction. The surfing attraction and/or various features or components thereof may include the same or similar features to those discussed throughout. For example, as previously discussed, the ride surface segment 400 may be provided upon an underlying portion, such as portion 300 of FIG. 3. The ride surface segment 400 may be partially or fully inflatable, such as using a drop-stitch material.


The ride surface segment 400 has a first end 402, which may be a front end, and a second end 404, which may be a rear end. The first end 402 may be configured to be located near or adjacent to a water delivery section of a surfing attraction and the second end 404 may be configured to be located near or adjacent to a recovery section of a surfing attraction. In some embodiments, the ride surface segment 400 may be configured to have one profile or thickness along its length and/or width. For example, if an underlying part, such as the portion 300 discussed for FIG. 3, is used to aid in defining a shape or profile of the overall ride surface for a surfing attraction, the ride surface segment 400 may merely be laid upon a top of the underlying part such that the overall ride surface retains the shape of the underlying part rather than being impacted by any specific profile of the ride surface segment 400. In an alternative embodiment, the ride surface segment 400 may have varying degrees of thickness, shapes, or other profile characteristics as desired. As shown in FIG. 4, for example, a first section 410 of the ride surface segment 400 may be configured to be connected or otherwise adjacent to the first section 310 of the portion 300 of FIG. 3. Likewise, in the embodiment shown in FIG. 4, a second section 415 of the ride surface segment 400 may be configured to be connected or otherwise adjacent to the second section 315 of the portion 300 and a third section 420 of the ride surface segment 400 may be configured to be connected or otherwise adjacent to the third section 320 of the portion 300 of FIG. 3.



FIG. 5 shows a zoomed-in view of a water delivery section 500 of a surfing attraction for reduction of turbulence. The water delivery section 500 includes one or more water delivery mechanisms (505, 510, 520, 530, 540, 550). The one or more water delivery mechanisms may be oriented in a configuration matching that of a ride surface, such as the ride surface 104 of FIG. 1. In this fashion, larger shapes or configurations of a ride surface may be adequately provided with a flow of water thereon and in a desired direction of flow by one or more of the water delivery mechanisms (505, 510, 520, 530, 540, 550). Although six water delivery mechanisms (505, 510, 520, 530, 540, 550) are specifically illustrated in FIG. 5, any of a variety of water delivery mechanisms may be used in an alternative embodiment.


Each water delivery mechanism may contain one or more water delivery elements configured to provide a flow of water upon a ride surface of the surfing attraction. For example, for water delivery mechanism 550, a plurality of water delivery elements (571, 572, 573, 574, 575), such as nozzles, are disposed within the water delivery mechanism 550 and each is configured to output a flow or volume of water therefrom. Likewise, for example, for water delivery mechanism 540, a plurality of water delivery elements (576, 577, 578, 579, 580), such as nozzles, are disposed within the water delivery mechanism 540 and each is configured to output a flow or volume of water therefrom. In alternative embodiments, differing rates of flow may be provided for different water delivery elements. For example, in an effort to reduce turbulence due to an increase of fluid or water in a vicinity of area 590, the adjacent water delivery elements, for example, water delivery elements 575 and 576 may output a reduced amount of water compared to one or more water delivery elements (572, 573, 574, 577, 578, 579).


In various embodiments, one or more of the water delivery elements (571, 572, 573, 574, 577, 578, 579, 580) may deliver a water flow different from that from other nozzles. Such difference may be either in direction, amount, pressure, or other characteristic in various embodiments. The difference in water flows and/or the overlap of water flow from one or more of the water delivery elements (571, 572, 573, 574, 577, 578, 579, 580) may cause undesired water turbulence if not controlled according to the features discussed. Likewise, in one embodiment, one or more of the water delivery elements (571, 572, 573, 574, 577, 578, 579, 580) may be configured to spread water more horizontally on the ride surface 104, such as by directing the water in a more “fanned-out” orientation in order to more desirably flow the water of the ride surface.


In one embodiment, the one or more of the water delivery elements (571, 572, 573, 574, 577, 578, 579, 580) may be configured or positioned to match the profile of the ride surface 104 and/or directed in a fanned-out configuration to reduce overlap among flows from the one or more of the water delivery elements (571, 572, 573, 574, 577, 578, 579, 580). In another embodiment, gaps between portions 300, for example as shown in FIG. 3, (caused by connecting portions in a side-by-side manner) and/or gaps between segments 400, for example as shown in FIG. 4 (caused by connecting segments in a side-by-side manner) would create channels to accommodate additional water flow (caused by flow overlap and/or flow difference) so that water turbulence is reduced and a substantially smooth water surface is achieved.


The previous description of the disclosed examples is provided to enable any person of ordinary skill in the art to make or use the disclosed methods and apparatus. Accordingly, the terminology employed throughout should be read in a non-limiting manner. Various modifications to these examples will be readily apparent to those skilled in the art, and the principles defined herein may be applied to other examples without departing from the spirit or scope of the disclosed method and apparatus. The described embodiments are to be considered in all respects only as illustrative and not restrictive and the scope of the invention is, therefore, indicated by the appended claims rather than by the foregoing description. All changes which come within the meaning and range of equivalency of the claims are to be embraced within their scope. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the disclosed apparatus and methods. The steps of the method or algorithm may also be performed in an alternate order from those provided in the examples.

Claims
  • 1. A water attraction comprising: a ride surface defining a surface area shaped in at least a partial circle, the ride surface constructed by connecting a plurality of segments each segment defining a portion of the ride surface;a water delivery section comprising at least one water delivery mechanism wherein the at least one water delivery mechanism comprises a first water nozzle configured to provide a first flow of water upon the ride surface, and a second water nozzle configured to provide a second flow of water upon the ride surface;the ride surface includes at least one water channel positioned between adjacent ones of the plurality of segments and one of the at least one water channel positioned between the first flow of water and the second flow of water to reduce flow turbulence; anda recovery section.
  • 2. The water attraction of claim 1 wherein the ride surface is at least partially inflatable.
  • 3. The water attraction of claim 1 further comprising a support structure disposed underneath the ride surface and configured to define a profile for the ride surface.
  • 4. The water attraction of claim 1 wherein the first water nozzle and the second water nozzle are configured to direct the first flow of water and the second flow of water in a fanned-out configuration to reduce overlapping between the first flow of water and the second flow of water.
  • 5. The water attraction of claim 1 wherein the at least one water channel positioned between the first flow of water and the second flow of water to reduce flow turbulence includes only one water channel between the first flow of water and the second flow of water.
  • 6. The water attraction of claim 1 wherein at least one water channel comprises a plurality of the water channels that are non-parallel and extend along a radius of the at least partial circle of the ride surface.
  • 7. The water attraction of claim 6 wherein the plurality of segments each define a wedge shaped to create the at least partial circle of the ride surface.
  • 8. A method of riding a surfing attraction comprising: providing a ride surface defining a surface area shaped in at least a partial circle wherein the ride surface is at least partially inflatable, the ride surface constructed by connecting a plurality of segments defining a portion of the ride surface;providing a water delivery section comprising a first water nozzle configured to provide a first flow of water upon the ride surface, and a second water nozzle configured to provide a second flow of water upon the ride surface, wherein the first water nozzle and the second water nozzle are configured to direct the first flow of water in a fanned-out configuration to reduce overlapping between the first flow of water and the second flow of water; and the ride surface includes at least one water channel positioned between adjacent segments of the plurality of segments and between the first flow of water and the second flow of water to reduce flow turbulence; andproviding a recovery section.
CROSS REFERENCE TO RELATED APPLICATION

This application claims the benefit of priority under 35 U.S.C. § 119(e) to Provisional Application No. 62/255,054, filed on Nov. 13, 2015, which is incorporated by reference in its entirety.

US Referenced Citations (193)
Number Name Date Kind
490484 Mackaye Jan 1893 A
586718 Wharton, Jr. Jul 1897 A
586983 Wharton, Jr. Jul 1897 A
799708 Boyce Sep 1905 A
1392533 Smyth Oct 1921 A
1536875 Bowen May 1925 A
1655498 Fisch Jan 1928 A
1701842 Fisch Feb 1928 A
1871215 Keller Aug 1932 A
1884075 Meyers Oct 1932 A
2117982 Prince, Jr. May 1938 A
2558759 Johnson Jul 1951 A
3005207 Matrai Oct 1961 A
3038760 Crooke Jun 1962 A
3085404 Smith Apr 1963 A
3120385 Hall Feb 1964 A
3216455 Cornell Nov 1965 A
3363583 Greenberg Jan 1968 A
3473334 Dexter Oct 1969 A
3477233 Andersen Nov 1969 A
3478444 Presnell Nov 1969 A
3497211 Nagin Feb 1970 A
3547749 White Dec 1970 A
3557559 Barr Jan 1971 A
3562823 Koster Feb 1971 A
3565491 Fraizer Feb 1971 A
3598402 Frenzl Aug 1971 A
3611727 Blandford Oct 1971 A
3613377 Zaugg Oct 1971 A
3757370 Seno Sep 1973 A
3789612 Richard Feb 1974 A
3802697 Le Mehaute Apr 1974 A
3845510 Baker Nov 1974 A
3850373 Grolitsch Nov 1974 A
3851476 Edwards Dec 1974 A
3853067 Bacon Dec 1974 A
3913332 Forsman Oct 1975 A
2815951 Baldanza Dec 1975 A
3981612 Bunger Sep 1976 A
4062192 Biewer Dec 1977 A
4087088 Kelso May 1978 A
4122560 Baker Oct 1978 A
4147844 Babinky Apr 1979 A
4149710 Rouchard Apr 1979 A
4196900 Becker Apr 1980 A
4197815 Brazelton Apr 1980 A
4198043 Tirnbes Apr 1980 A
4201496 Andersen May 1980 A
4244768 Wiechowski et al. Jan 1981 A
4246980 Miller Jan 1981 A
4276664 Baker Jul 1981 A
4278247 Joppe Jul 1981 A
4339122 Croul Jul 1982 A
4374169 Gryskiewicz et al. Feb 1983 A
4429867 Barber Feb 1984 A
4474369 Gordon Oct 1984 A
4522535 Bastenhof Jun 1985 A
4539719 Schuster Sep 1985 A
4557475 Donovan Dec 1985 A
4561133 Laing Dec 1985 A
4564190 Frenzyl Jan 1986 A
4574107 Ferrari Mar 1986 A
4662781 Tinkler May 1987 A
4707869 Ray Nov 1987 A
4736912 Loebert Apr 1988 A
4790155 Daniel Dec 1988 A
4790685 Scott Dec 1988 A
4792260 Sauerbier Dec 1988 A
4805897 Dubeta Feb 1989 A
4806048 Ito Feb 1989 A
4836521 Barber Jun 1989 A
4903959 Barber Feb 1990 A
4905987 Frenzi Mar 1990 A
4954014 Sauerbier Sep 1990 A
4976422 Shimamura Dec 1990 A
4988364 Perusich et al. Jan 1991 A
5020465 Langford Jun 1991 A
5061211 Barber Oct 1991 A
5125577 Frankel Jun 1992 A
5170901 Bersani Dec 1992 A
5171101 Sauerbier Dec 1992 A
5183438 Blom Feb 1993 A
5213547 Lochtefeld May 1993 A
5219315 Fuller Jun 1993 A
5236280 Lochtefeld Aug 1993 A
5236404 Maclennan Aug 1993 A
RE34407 Frenszl Oct 1993 E
5267812 Suzuki Dec 1993 A
5271692 Lochtefeld Dec 1993 A
5288536 Long Feb 1994 A
5314383 Fabbi May 1994 A
5342145 Cohen Aug 1994 A
5370591 Jewell Dec 1994 A
5378197 Briggs Jan 1995 A
5384019 Keating Jan 1995 A
5385518 Turner Jan 1995 A
5387159 Hilgart Feb 1995 A
5393170 Lochtefeld Feb 1995 A
5401117 Lochtefeld Mar 1995 A
5421782 Loehtefeid Jun 1995 A
5427574 Donnelly-Weide Jun 1995 A
5453054 Lochtefeld Sep 1995 A
5503597 Lochtefeld Apr 1996 A
5524310 Farnen Jun 1996 A
5540662 Gold Jul 1996 A
5564859 Lochtefeld Oct 1996 A
5621925 Bastenhof Apr 1997 A
5628584 Lochtefeld May 1997 A
5638556 Kipers Jun 1997 A
5667445 Lochtefeld Sep 1997 A
5676601 Saunders Oct 1997 A
5738590 Lochtefeld Apr 1998 A
5779553 Langford Jul 1998 A
5827608 Rinehart et al. Oct 1998 A
5899633 Lochtefeld May 1999 A
5899634 Lochtefeld May 1999 A
5937586 Scherba Aug 1999 A
6019547 Hill Feb 2000 A
6112489 Zweig Sep 2000 A
61322317 Lochtefeld Oct 2000
6312341 Healy Nov 2001 B1
6319137 Lochtefeld Nov 2001 B1
6336771 Hill Jan 2002 B1
6345791 McClure Feb 2002 B1
6363677 Chen Apr 2002 B1
6375578 Briggs Apr 2002 B1
6491589 Lochtefeld Dec 2002 B1
6527646 Briggs Mar 2003 B1
6616542 Reddick Sep 2003 B1
6676530 Lochtefeld Jan 2004 B2
6716107 Lochtefeld Apr 2004 B2
6726403 Kriticos Apr 2004 B1
6758231 Lochtefeld Jul 2004 B1
6796096 Heath Sep 2004 B1
6920651 Roberts Jul 2005 B2
7547255 Lochtefeld Jun 2009 B2
7607271 Griffin Oct 2009 B2
7666104 Lochtefeld Feb 2010 B2
7717645 McLaughlin May 2010 B2
7775895 Henry Aug 2010 B2
7789804 Phillips Sep 2010 B1
7951011 Lochtefeld May 2011 B2
8042200 Webber Oct 2011 B2
8056295 Cappelle Nov 2011 B2
8088016 Murphy Jan 2012 B2
8550926 Lochtefeld Oct 2013 B2
8641532 Lochtefeld Feb 2014 B2
8784224 Schafer Jul 2014 B1
8882604 Lochtefeld Nov 2014 B2
9072927 Sammann Jul 2015 B2
9194146 Murphy Nov 2015 B2
9254428 Kriticos Feb 2016 B2
9463390 Vicente Oct 2016 B2
9550127 Loechtefeld Jan 2017 B2
9878255 Kriticos Jan 2018 B2
20030004003 Lochtefeld Jan 2003 A1
20030029109 Hellberg Feb 2003 A1
20030153221 Weir Aug 2003 A1
20030154681 Pletzer Aug 2003 A1
20040216226 Demarateau Nov 2004 A1
20040244636 Meadow Dec 2004 A1
20040245780 Roberts Dec 2004 A1
20050148389 Ma et al. Jul 2005 A1
20050148398 Lochtefeld Jul 2005 A1
20060009343 Unterweger May 2006 A1
20060093435 Unterweger May 2006 A1
20070167246 McKee Jul 2007 A1
20080044621 Strauss Feb 2008 A1
20080216427 Lochtefeld Sep 2008 A1
20080262666 Manning Oct 2008 A1
20080286048 Carnahan Nov 2008 A1
20080293505 Northam Nov 2008 A1
20090029785 McKee Jan 2009 A1
20090137330 Sefchick May 2009 A1
20090169305 Lochtefeld Jul 2009 A1
20110045916 Casimaty Feb 2011 A1
20110314589 Vito et al. Dec 2011 A1
20120037198 Cantin Feb 2012 A1
20130074254 Payne Mar 2013 A1
20130130815 Lochtefeld May 2013 A1
20130130615 Lochtefeld Jul 2013 A1
20130281221 Bowen Oct 2013 A1
20140357387 Murphy Dec 2014 A1
20150057093 Murphy Feb 2015 A1
20150065261 Lochtefeld Mar 2015 A1
20150119155 Vicente Apr 2015 A1
20150273353 Coleman Oct 2015 A1
20160076267 Murphy Mar 2016 A1
20160354700 Vicente Dec 2016 A1
20170136368 Koide May 2017 A1
20170136371 Vicente May 2017 A1
20170136372 Koide May 2017 A1
20170136373 Vicente May 2017 A1
Foreign Referenced Citations (62)
Number Date Country
668713 May 1996 AU
703850 Oct 1996 AU
774900 Jul 2004 AU
2002307400 Mar 2007 AU
2007201135 Apr 2007 AU
2008321385 May 2009 AU
2009202257 Jul 2009 AU
2011349052 Dec 2011 AU
PI0721429-4 Mar 2014 BR
2090878 Mar 1992 CA
2444510 Oct 2002 CA
2680562 Apr 2009 CA
2705677 May 2009 CA
2824789 Dec 2011 CA
02856807 May 2013 CA
PCTCA1400644 Aug 2014 CA
2852868 Nov 2014 CA
2869343 Apr 2015 CA
2922576 Feb 2016 CA
176562 Apr 1935 CH
1377291 Oct 1978 CN
101965147 Oct 2002 CN
10411244 Oct 2014 CN
159793 Aug 1903 DE
271412 Nov 1912 DE
373684 Apr 1932 DE
1210155 Feb 1966 DE
2222594 Nov 1973 DE
2714223 Oct 1978 DE
96216 Feb 1983 DE
3445976 Dec 1984 DE
69114013 Apr 2002 DE
0096216 Dec 1983 EP
0298853 Jan 1989 EP
0547117 Oct 1995 EP
0629139 May 1997 EP
02762145.7 Nov 2003 EP
1381435 Sep 2012 EP
2219504 Feb 2013 EP
2219504 Feb 2001 ES
1019527 Jan 1953 FR
1300144 Aug 1962 FR
1539959 Sep 1968 FR
2671977 Jul 1992 FR
375684 Jun 1932 GB
1090262 Nov 1967 GB
1118083 Jun 1968 GB
1159269 Jul 1969 GB
1204629 Sep 1970 GB
1210155 Oct 1970 GB
2219504 Dec 1989 GB
2223414 Apr 1990 GB
3018707 Apr 1996 GR
52-41392 Mar 1977 JP
3258280 Jan 2000 JP
5371152 Jan 2011 JP
2913834 Apr 2011 JP
310138 Dec 1992 NO
2219504 Aug 2010 PT
682238 Aug 1979 SU
953075 Aug 1982 SU
PCTUS0212250 Feb 2002 WO
Non-Patent Literature Citations (1)
Entry
ISR and Written Opinion for PCT/US2014/031322, 2014 dated Aug. 20, 2014.
Related Publications (1)
Number Date Country
20170136371 A1 May 2017 US
Provisional Applications (1)
Number Date Country
62255054 Nov 2015 US