Garment closure system

Information

  • Patent Grant
  • 8336116
  • Patent Number
    8,336,116
  • Date Filed
    Monday, April 28, 2008
    16 years ago
  • Date Issued
    Tuesday, December 25, 2012
    12 years ago
Abstract
A garment having a ventilated garment closure system including a vented zipper is provided. A first flap is disposed on a first side of a vented zipper, and a second flap disposed on a second side of the vented zipper.
Description
BACKGROUND

The present disclosure relates generally to a garment and more specifically to a garment having a closure system which allows for ventilation and protection from the elements.


It is common in the garment industry, particularly in garments that are used by motorcycle riders, to have vent openings to cool the body of the rider in hot weather conditions. Consequently, garments and coats with provisions for ventilation have been developed. Examples of such garments are seen in U.S. Pat. No. 4,608,715, issued Sep. 2, 1986 to Miller et al.; U.S. Pat. No. 5,105,477, issued Apr. 21, 1992 to Golde; and U.S. Pat. No. 5,704,064, issued Jan. 6, 1998 to van der Slessen, which are all incorporated herein by reference.


The garments, however do not provide protection from wet weather conditions, such as rain or sleet, or an otherwise wet environment because the moisture-resistant feature would require a sacrifice of the ventilation feature. For motorcyclists, the windy conditions or normal high-speed motorcycle use make the inclusion of elaborate external protective rain gear or hot, bulky layers undesirable. To open the front closure of the weather resistant garment to provide the ventilation impacts the overall function of the garment because it will flap in the wind behind the motorcyclist and substantially reduce the protection offered by the garment. Accordingly, there is a need for a streamlined system to allow for protection from wet weather conditions and to allow for maximized ventilation.


SUMMARY

In accordance with the present invention, a garment having a ventilated garment closure system including a vented zipper is provided. In another aspect, a first flap is disposed on a first side of a vented zipper, and a second flap disposed on a second side of the vented zipper. In various embodiments, a motorcycle jacket having a ventilated garment closure system is provided. A further aspect of the present disclosure employs a vented zipper having a vented region and a vented zipper width greater than the front zipper width; this advantageously causes the vented region to have a compressed length when the front zipper is in an open position and a relaxed length when the front zipper is in a closed position.


Yet another aspect of the present disclosure includes a motorcycle jacket further including a first flap disposed on a first side of a vented zipper and a second flap disposed on a second side of the vented zipper. The first and second flaps are advantageously operable to be overlapped along the vented region on the interior of the garment to provide a barrier to deter passage of air through the vented region.


In yet another aspect of the present disclosure, a garment includes a vented zipper having a vented mesh region to allow passage of air therethrough and creating a channel on a side of the vented zipper. The channel advantageously displaces the water.


Further areas of applicability will become apparent from the description provided herein. It should be understood that the description and specific examples are intended for purposes of illustration only and are not intended to limit the scope of the present disclosure.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 depicts a perspective view of a garment according to the present teachings, used by a rider on a motorcycle;



FIG. 2 depicts a front elevational view of the garment according to the present teachings, shown in an open condition;



FIG. 3 depicts a fragmentary elevational view forward from the inside of the garment according to the present teachings, showing the vented regions in a compressed condition and the rain flaps secured in an open condition; and



FIGS. 4
a-4c depict cross-sectional views of the garment according to the present disclosure, taken along line 4-4 of FIG. 1, showing different use conditions.





DETAILED DESCRIPTION

Referring to FIG. 1, a motorcycle rider 10 is shown riding a motorcycle 12 and is subjected to a moving air stream indicated by arrows 14 against the front of the rider's body. Rider 10 is wearing a garment 16 having a weather-resistant and ventilated front closure system 18. Garment 16 is depicted as a jacket 20 which covers the arms and torso of rider 10. It is understood that garment 16 can also be a combined jacket/pant suit and can be useful for a user on other motorized vehicles such as an all-terrain vehicle or a snowmobile, and related motorsports, as non-limiting examples.


Turning to FIGS. 2 and 3, garment 16 includes an outer shell 22 having an exterior 24 and an interior 26 and a midliner 28. The midliner 28 is preferably a mesh liner, sewn to interior 26 of outer shell 22. Outer shell 22 is made of a textile, such as a woven or knit material. The woven or knit materials are selected from synthetic fibers or natural fibers, such as cotton, including organic cotton. Other materials can be incorporated into outer shell 22, such as a block copolymer of polyurethane and polyethylene glycol (such as LYCRA) or a para-aramid synthetic fiber (such as KEVLAR), as non-limiting examples, to add to the fit, comfort, performance, or style of garment 16. Garment 16 optionally includes three-dimensional body armor 29 as shown in phantom. Exemplary body armor is similar to that disclosed in U.S. Pat. No. 6,263,510, issued Jul. 24, 2001 to Bay et al. and U.S. Pat. No. 7,111,328, issued Sep. 26, 2006 to Bay et al., which are incorporated herein, in their entirety, by reference.


Front closure system 18 extends substantially or entirely from a neck 30 of garment 16 to a waistband 32 of garment 16. Front closure system 18 provides weather-resistance, such as rain- or snow-resistance, to the torso of rider 10 and is easily converted to provide ventilation to rider 10 without detracting from the external appearance and overall function of the garment while securely maintaining garment 16 on the rider's body. Front closure system 18 optimizes the riding experience by providing versatility for different weather conditions without the bulkiness, heat, and inconvenience of other weather-resistant systems.


As shown in FIGS. 2 and 4a-4c, front closure system 18 includes a front zipper 34, a vented zipper 36, a first flap 38, and a second flap 40. Front zipper 34 provides the exterior-most closure or front closure of garment 16 and generally extends from neck 30 to waistband 32 of garment 16. Front zipper 34 includes a front zipper closure mechanism 42 and lateral portions 44a and 44b on either side of front zipper closure mechanism 42. In various aspects, front zipper 34 is an “invisible zipper” whereby portions of closure mechanism 42 remain hidden to simulate the appearance of a continuous front garment material which is not interrupted by a zipper.


Vented zipper 36 is disposed on interior surface 26 of garment 16 at attachment sites 46a and 46b. Vented zipper 36 extends about front zipper lateral sides 44a and 44b. Vented zipper 36 includes a vented zipper closure mechanism 48 and a vented region 50 which includes lateral sides 52a and 52b. Vented region 50 is formed of a mesh material or other material having openings or perforations to facilitate passage of air therethrough.


Vented region 50 has a greater width than front zipper lateral sides 44a and 44b. Front closure lateral sides 44a and 44b have a width of a first dimension while vented zipper lateral sides 52a and 52b have a width of multiple times the width of front closure lateral sides 44a and 44b. As a non-limiting example, in an embodiment where front closure lateral sides 44a and 44b have a width of 3 centimeters when front closure mechanism 48 is engaged, vented zipper lateral sides 52a and 52b have a fully-expanded width of 7 centimeters when vented zipper closure mechanism 48 is engaged and front closure mechanism 48 is not engaged. Thus, vented region 50 is at least twice as wide as front closure lateral sides 44a and 44b. It is understood that the dimensions of lateral sides 44a, 44b and 52a, 52b can be varied and the ratio between the sets of lateral sides can also be varied within the scope of the present teachings although various advantages may not be fully achieved.


As illustrated by the folds in vented region 50 shown in FIGS. 4a and 4b, vented region 50 is in a compressed position when front zipper 34 is in the closed position because front zipper lateral sides 44a and 44b are of a smaller width than vented zipper lateral sides 52a and 52b. As shown in FIG. 4c, when front zipper 34 is disengaged as to separate front closure mechanism 42, vented region 50 is able to extend to its full length, and accordingly, the overall diameter or size of garment 16 is increased across the torso of rider 10.


As shown in FIGS. 3 and 4a-4c, front closure system 18 further includes first flap 38 and second flap 40 which provide the water-proof, water-barrier, or weather-proofing features. Flaps 38 and 40 extend along an interior surface 26 of garment 16 and are located laterally to attachment sites 46a and 46b for vented zipper 36. First flap 38 is attached at point 54a, and second flap 40 is attached at point 54b. Flaps 38 and 40 are able to extend entirely or substantially from neck 30 to waistband 32 of garment 16. Flaps 38 and 40 are made of any suitable textile or polymer material or include a polymer coating, such as a PVC coating. In a preferred embodiment, flaps 38 and 40 include a facing or other stiffening material to enhance the rigidity of the flaps to facilitate placement of the flaps. The facing helps flaps 38 and 40 retain their position is a cost-effective alternative to additional hardware or fasteners within garment 16.


First flap 38 and second flap 40 also include channels 56a and 56b, respectively which serve as “gutters” to prevent water from wetting rider 10. Should any water permeate front zipper 34 when it is in the closed position, channels 56a and 56b direct the water away from the rider's body and facilitate removal of the water from garment 16. Channels 56a and 56b form an obstacle-type, multiple step water removal where any water which engaged but still bypassed channel 56a would then engage channel 56b for removal from garment 16. This system provides beneficial, multiple-level weather-proofing without burdening the rider with bulky and stuffy weather-protective garments.


As shown in FIGS. 4a and 4b, respectively, first flap 38 and second flap 40 are secured together so that they overlap and are in a closed position, or first flap 38 and second flap 40 are removably secured to the interior of the jacket at open position attachment points 58a and 58b, respectively via mateable securing elements 60 to provide an open position. In a preferred embodiment, mateable securing elements 60 are zipper halves such as those depicted as elements 62a-62e. Mateable securing elements 60 also include combinations such as male and female snaps, buttons and opening, and the like to provide security and ease of use.


In use, the user can choose to have garment 16 in a closed position to provide the weather-resistance or in an open position to provide ventilation. To start, with front zipper 34, vented zipper 36, first flap 38, and second flap 40 in the open positions, the user puts on garment 16. If needed, the user can disengage first flap 38 or second flap 40 from the zippers or snaps at open position attachment points 58a and 58b.


The user then advances first flap 38 over vented zipper 36 and secures first flap 38 to second flap 40 via zipper halves 62b and 62c. Next, the user advances second flap 40 behind first flap 38 and secures zipper half 62d to mated zipper half 62a. The pressure from the user's chest bearing against overlapped flaps 38 and 40 additionally maintains first flap 38 and second flap 40 in the appropriate position to provide the weather-resistance.


Next, the user engages vented zipper closure mechanism 48 to secure vented zipper lateral sides 52a and 52b together. The user then will fold, compress, or otherwise manipulate vented zipper lateral sides 52a and 52b to provide sufficient room for front zipper 34 to close over vented zipper 36. The user engages front closure mechanism 42 to restrict vented zipper lateral sides 52a and 52b and completely close garment 16. Folded vented region 50 remains protected and compressed within the area between front closure zipper 34 and overlapped first and second flaps 38 and 40. The user is now protected from any wet conditions and should any water enter front zipper 34, channels 56a and 56b sequentially divert the water away from the body of the user.


To provide ventilation, the user first disengages front closure mechanism 42 to separate front lateral sides 44a and 44b. This reduces the restriction on vented zipper lateral sides 52a and 52b and will provide a more “relaxed” fit to garment 16. The user then disengages vented zipper closure mechanism 48 to allow access to first flap 38 and second flap 40. After unzipping or unsnapping the connections of first flap 38 and second flap 40. The user can rotate first and second flaps 38 and 40 to their respective “open positions” and removably secure first flap 38 and second flap 40 to the respective open position attachment points 58a and 58b as illustrated by arrows 64a and 64b in FIG. 4b.


The user then engages vented zipper closure mechanism 48 to secure garment 16 on the user's body. Vented zipper lateral sides 52a and 52b are fully-expanded and increase the diameter of garment 16 about the user's body and provide the relaxed fit. The relaxed fit and vented regions 50 provide maximum air flow, as indicated by arrows 60, into the vented region 50 and about the user's body for cooling. The force of the wind blowing at the user keeps vented regions 50 fully expanded.


The relaxed fit increases the amount of room available about the user's body without sacrificing the streamlined fit and related function of a motorcycle garment. Front closure system 18 is beneficial as it provides a center front ventilation of garment 16 and a center front weather protection. The center front placement provides maximum protection and cooling benefits through a single region of garment 16.


The description of the present teachings is merely exemplary in nature and, thus, variations that do not depart from the gist of the present teachings are intended to be within the scope of the present teachings. Such variations are not to be regarded as a departure from the spirit and scope of the present teachings.

Claims
  • 1. A garment having a ventilated garment closure system comprising: a. an outer shell layer having: i. an interior surface;ii. a front zipper defining a main closure; andiii. a vented zipper comprising a vented zipper closure mechanism and two vented zipper lateral sides, each lateral side having two opposing lateral edges, one lateral edge attached to the outer shell layer and the opposing lateral edge attached to the vented zipper closure mechanism, wherein the vented zipper is disposed on the interior surface and adjacent the front zipper and wherein the two vented lateral sides define a vented region to facilitate the passage of air from outside to inside the garment when the front zipper is disengaged and the vented zipper closure mechanism is engaged securing the vented zipper lateral sides, and having a vented zipper width greater than the main closure width to cause the vented region to have a relaxed length when the main closure is in an open position and a compressed length when the main closure is in a closed position; andb. a first flap disposed on a first side of the vented zipper.
  • 2. The garment of claim 1, further comprising a second flap disposed on a second side of the vented zipper.
  • 3. The garment of claim 1, further comprising an internal layer internally attached to the outer shell layer.
  • 4. The garment of claim 1, wherein the first flap further defines a rain channel.
  • 5. The garment of claim 1, wherein the front zipper is a center front zipper of the garment.
  • 6. The garment of claim 1, wherein the front zipper and the vented zipper have substantially the same length.
  • 7. The garment of claim 2, wherein the first and second flaps are operable to be secured in an open position to the interior surface of the garment with a securing element and facilitate passage of air through the vented region.
  • 8. The garment of claim 2, wherein the first and second flaps are operable to be overlapped along the vented region on the interior of the garment to provide a barrier to deter passage of air through the vented region.
  • 9. The garment of claim 1, wherein the first flap further comprises a facing to increase the rigidity thereof.
  • 10. The garment of claim 1, wherein the outer shell is selected from at least one of textiles, woven materials, and knit materials.
  • 11. The garment of claim 9, wherein the outer shell material includes a polymeric coating to increase water-resistance of the garment.
  • 12. A motorcycle jacket having a ventilated garment closure system comprising: a. an outer shell layer having: i. an interior and exterior surface defining a garment body diameter;ii. a main closure having a main closure width; andiii. a vented zipper disposed about the main closure, the vented zipper comprising a vented zipper closure mechanism and two vented zipper lateral sides, each lateral side having two opposing lateral edges, one lateral edge attached to the outer shell layer and the opposing lateral edge attached to the vented zipper closure mechanism, wherein the vented zipper is disposed on the interior surface and adjacent the main closure and wherein the two vented lateral sides define a vented region to facilitate the passage of air from outside to inside the motorcycle jacket when the main closure is disengaged and the vented zipper closure mechanism is engaged securing the vented zipper lateral sides, and having a vented zipper width greater than the main closure width to cause the vented region to have a relaxed length when the main closure is in an open position and a compressed length when the main closure is in a closed position;b. a first flap disposed on a first side of the vented zipper; andc. a second flap disposed on a second side of the vented zipper, wherein the first and second flaps are operable to be overlapped along the vented region of the garment to provide a barrier to deter passage of air through the vented region.
  • 13. The motorcycle jacket of claim 11, further comprising a securing element, the first and second flaps being operably secured in an open position with the securing element in order to facilitate passage of air through the vented region.
  • 14. The motorcycle jacket of claim 12, wherein the securing elements are selected from at least one of snaps, zippers, and buttons.
  • 15. The motorcycle jacket of claim 12, wherein the securing elements of the first flap can be attached to a mateable securing element on the second flap to cause the first flap and second flap to be fixed together.
  • 16. The motorcycle jacket of claim 11, wherein when the vented region expands to its relaxed width, the garment body diameter is increased.
  • 17. The motorcycle jacket of claim 11, wherein the main closure and the vented zipper extend substantially down a front length of the jacket.
  • 18. The motorcycle jacket of claim 11, wherein the vented region comprises a mesh extension extending from the vented zipper.
  • 19. A waterproof and ventilated closure for a garment comprising: a front zipper defining a main closure;an interior surface; anda vented zipper comprising a vented zipper closure mechanism and two vented zipper lateral sides, each lateral side having two opposing lateral edges, one lateral edge attached to an outer shell layer of the garment and the opposing lateral edge attached to the vented zipper closure mechanism, wherein the vented zipper is disposed on the interior surface and adjacent the front zipper, wherein the two vented lateral sides define a vented mesh region to allow passage of air from outside to inside the garment when the front zipper is disengaged and the vented zipper closure mechanism is engaged securing the vented zipper lateral sides, and having a vented zipper width greater than the main closure width to cause the vented mesh region to have a relaxed length when the main closure is in an open position and a compressed length when the main closure is in a closed position;a first flap defining a first channel disposed on a first side of the vented zipper having a first flap securing element; anda second flap defining a second channel disposed on a second side of the vented zipper having a second flap securing element, wherein the first and second flaps are operable to be overlapped behind the vented region to deter passage of air through the vented region and are secured together by the first flap securing element and the second flap securing element and the first channel and second channel are oriented to displace water.
  • 20. The waterproof and ventilated closure of claim 18, wherein the vented zipper is disposed about the front zipper only on a single side of the front zipper.
  • 21. The waterproof and ventilated closure of claim 18, wherein the first flap and the second flap are reinforced with a facing.
US Referenced Citations (214)
Number Name Date Kind
317711 Brinkmann May 1885 A
367921 Norton Aug 1887 A
375504 Norton Dec 1887 A
385306 Helwitz Jun 1888 A
984180 Barker Feb 1911 A
1015231 Jacobs Jan 1912 A
1164386 Nicholas Dec 1915 A
1223863 Freedman Apr 1917 A
1246274 Jelalian Nov 1917 A
1250004 Philip Dec 1917 A
1269019 Szmyt Jun 1918 A
1359999 McEvoy Nov 1920 A
1360390 Gilfillan Nov 1920 A
1363981 Jenkins et al. Dec 1920 A
1381373 Waterman Jun 1921 A
1518884 Weiner Dec 1924 A
1647656 Olsen Nov 1927 A
1648282 Schneider Nov 1927 A
1679102 Thompson Jul 1928 A
1693464 Quantz Nov 1928 A
1714491 Burr May 1929 A
1721403 Miller Jul 1929 A
1782000 Collins Nov 1930 A
1818811 Miller Aug 1931 A
1971622 Quackenbush Aug 1934 A
1973421 Wallace Sep 1934 A
2010328 Siebrandt Aug 1935 A
2010434 Langrock Aug 1935 A
2073711 Robinsohn Mar 1937 A
2078461 Siegel Apr 1937 A
2079980 Anders May 1937 A
2084173 Wexler Jun 1937 A
2114514 York Apr 1938 A
2119621 Ferrone Jun 1938 A
2148269 Koch Feb 1939 A
D115983 Bailey Aug 1939 S
2186918 Wolf Jan 1940 A
D119122 Bauer Feb 1940 S
2259560 Glidden Oct 1941 A
2271211 Stockton Jan 1942 A
2291861 Astrove Aug 1942 A
2391535 Zelano Dec 1945 A
2458004 Kerr Jan 1949 A
2469700 Petrucelli May 1949 A
2477989 Maida Aug 1949 A
2505451 Weinstock Apr 1950 A
D160800 Mandelbaum Nov 1950 S
2551245 Cook May 1951 A
2585840 Reynolds Feb 1952 A
2615224 Shur Oct 1952 A
2637086 Philips May 1953 A
2644946 Menz et al. Jul 1953 A
2690564 Kingston et al. Oct 1954 A
2700769 Polchinski Feb 1955 A
2713168 Bagnato Jul 1955 A
2715226 Weiner Aug 1955 A
2722694 Bryant Nov 1955 A
2800699 Armstrong Jul 1957 A
2989754 Bukspan Jun 1961 A
3045243 Lash et al. Jul 1962 A
3086215 Di Paola Apr 1963 A
3102570 Fairchilds Sep 1963 A
3153793 Lepore Oct 1964 A
3213465 Ludwikowski Oct 1965 A
3335425 Senser Aug 1967 A
3389407 Morrison Jun 1968 A
3448463 Milone Jun 1969 A
3449764 De Fazio et al. Jun 1969 A
3536083 Reynolds Oct 1970 A
D220822 De Wan May 1971 S
3638241 Holmes Feb 1972 A
3691564 La Marre et al. Sep 1972 A
3706102 Grenier Dec 1972 A
3761962 Myers Oct 1973 A
3771169 Edmund Nov 1973 A
3777309 Yeager Dec 1973 A
3801987 Thompson, Jr. Apr 1974 A
3878561 Winiecki Apr 1975 A
3921224 Ingram, III Nov 1975 A
3924273 Donovan Dec 1975 A
3969772 Pravaz Jul 1976 A
D248896 Hasday et al. Aug 1978 S
4112556 Flaum et al. Sep 1978 A
4122553 Pitkanen Oct 1978 A
4170793 O'Brein Oct 1979 A
4185327 Markve Jan 1980 A
4195362 Rolando Apr 1980 A
4286337 Malouf, Jr. Sep 1981 A
4384369 Prince May 1983 A
4390996 Read Jul 1983 A
4397043 Croteau Aug 1983 A
4408356 Abrams Oct 1983 A
4422186 Loney Dec 1983 A
4513451 Brown Apr 1985 A
4547904 Long et al. Oct 1985 A
4554682 Hillquist Nov 1985 A
4563777 Park Jan 1986 A
4569089 Nesse Feb 1986 A
4608715 Miller et al. Sep 1986 A
4665563 Harvey May 1987 A
4722099 Kratz Feb 1988 A
4731883 Foster Mar 1988 A
4783858 Chevalier Nov 1988 A
D306511 Jones Mar 1990 S
D308435 Kushitani Jun 1990 S
4995115 Ellis Feb 1991 A
4996723 Huhn et al. Mar 1991 A
5031244 Inagaki Jul 1991 A
5097535 Dye et al. Mar 1992 A
5105477 Golde Apr 1992 A
5105478 Pyc Apr 1992 A
5115516 Golde May 1992 A
5133086 Truitt et al. Jul 1992 A
5159719 Aumann Nov 1992 A
D332342 Dye et al. Jan 1993 S
5201075 Svetich Apr 1993 A
5303424 Cromartie Apr 1994 A
5398343 Kuracina Mar 1995 A
5444898 Norvell Aug 1995 A
5507042 van der Slessen Apr 1996 A
5529823 Aumann Jun 1996 A
5555562 Holt et al. Sep 1996 A
5592691 Ronald Jan 1997 A
5603646 Tobias Feb 1997 A
5640715 Adams Jun 1997 A
5642526 Thompson Jul 1997 A
5687423 Ross Nov 1997 A
5704064 van der Sleesen Jan 1998 A
5718000 Ost et al. Feb 1998 A
5752277 van der Sleesen May 1998 A
5774891 Boyer Jul 1998 A
5799330 O'Donoghue-Kitt Sep 1998 A
5829059 Covington, Jr. Nov 1998 A
5845336 Golde Dec 1998 A
5850634 Toombs Dec 1998 A
5884332 Snedeker Mar 1999 A
5890225 Marschall Apr 1999 A
5924135 Worth Jul 1999 A
5940879 Whitehouse Aug 1999 A
5978960 Wrightman Nov 1999 A
6018819 King et al. Feb 2000 A
6052826 Tolton Apr 2000 A
6070274 van der Sleesen Jun 2000 A
6085353 van der Sleesen Jul 2000 A
6092266 Lee Jul 2000 A
6105214 Press Aug 2000 A
6119270 Chou Sep 2000 A
6163883 Hong Dec 2000 A
D437673 DesJardins et al. Feb 2001 S
6223349 Roiser May 2001 B1
6237152 Gootrad May 2001 B1
6253379 Collier Jul 2001 B1
6260196 van der Sleesen Jul 2001 B1
6263510 Bay et al. Jul 2001 B1
6263511 Moretti Jul 2001 B1
6298485 Heller Oct 2001 B1
6339843 Grilliot et al. Jan 2002 B1
6339845 Burns et al. Jan 2002 B1
6360371 Davey Mar 2002 B1
6405377 Davis Jun 2002 B1
6421834 Kester Jul 2002 B2
6427242 Bush et al. Aug 2002 B1
6427294 Shibaike et al. Aug 2002 B1
6438757 Quinn Aug 2002 B1
6460185 Hardy Oct 2002 B1
6490734 Blauer et al. Dec 2002 B2
D479902 Brown Sep 2003 S
6651254 Chang Nov 2003 B1
6675389 Kublick Jan 2004 B1
6684408 Rindle et al. Feb 2004 B2
6691326 Hexels Feb 2004 B2
6745400 Paciorkowski Jun 2004 B1
6792621 Braun Sep 2004 B2
6792622 Graves Sep 2004 B2
6795976 van der Sleesen Sep 2004 B1
6802082 Watley Oct 2004 B2
D498037 Bay Nov 2004 S
6848119 Crye et al. Feb 2005 B2
6851128 Parrotte Feb 2005 B1
6854130 van der Sleesen Feb 2005 B2
6868557 van der Sleesen Mar 2005 B1
6883178 van der Sleesen Apr 2005 B2
6941584 Matthews Sep 2005 B1
6961962 Lewis Nov 2005 B1
6968573 Silver Nov 2005 B2
7017191 Golde Mar 2006 B2
7043767 Jaeger May 2006 B2
7062789 Blackwell Jun 2006 B1
7082648 Morioka et al. Aug 2006 B2
7111328 Bay Sep 2006 B2
7162779 MacHacek Jan 2007 B2
7171695 Braun Feb 2007 B2
7181810 Fernando Feb 2007 B2
7191497 Butz Mar 2007 B2
7197772 Crye et al. Apr 2007 B2
7284282 Bay Oct 2007 B2
D555878 Bay Nov 2007 S
20020130150 Stanley Sep 2002 A1
20030024028 van der Sleesen Feb 2003 A1
20030126667 Braun et al. Jul 2003 A1
20030140399 Golde Jul 2003 A1
20030140404 Golde Jul 2003 A1
20040055069 Clarke Fayle et al. Mar 2004 A1
20040158910 Bay Aug 2004 A1
20040199976 Hunt Oct 2004 A1
20040237168 Braun Dec 2004 A1
20050015843 Roux et al. Jan 2005 A1
20050072825 Barr Apr 2005 A1
20050235392 Bay Oct 2005 A1
20060176660 Amiri Aug 2006 A1
20070083973 Garniewicz Apr 2007 A1
20070094852 Wang May 2007 A1
20080040832 Bay Feb 2008 A1
20080060112 Driehorst Mar 2008 A1
Foreign Referenced Citations (40)
Number Date Country
494309 Mar 1950 BE
2344726 Oct 2002 CA
517523 Jan 1931 DE
0 000 095 Dec 1978 EP
0 034 518 Jan 1981 EP
0 071 226 Feb 1983 EP
0 161 564 Nov 1985 EP
0 412 450 Feb 1991 EP
0 643 929 Mar 1995 EP
0 819 389 Jan 1998 EP
0 870 745 Oct 1998 EP
0 913 170 Jun 1999 EP
0 974 277 Jan 2000 EP
1 329 167 Jul 2003 EP
1 029 851 Mar 1953 FR
1 220 511 Jan 1960 FR
2 094 362 Jan 1972 FR
2 127 140 Sep 1972 FR
2 413 052 Dec 1977 FR
2 460 634 Jul 1979 FR
2 546 759 Dec 1984 FR
2 783 138 Mar 2000 FR
461247 Feb 1937 GB
2 104 770 Mar 1983 GB
48-12006 Feb 1973 JP
49-9409 Jan 1974 JP
50-11703 Feb 1975 JP
53-155409 Dec 1978 JP
55-176314 Dec 1980 JP
56-15732 Feb 1981 JP
57-147212 Sep 1982 JP
58-105410 Jul 1983 JP
59-4722 Jan 1984 JP
61-94510 Jun 1986 JP
7-2417 Jan 1995 JP
08-284009 Oct 1996 JP
WO 9400036 Jan 1994 WO
WO 9639056 Dec 1996 WO
WO 0201977 Jan 2002 WO
WO 02060287 Aug 2002 WO
Related Publications (1)
Number Date Country
20090265829 A1 Oct 2009 US