Air nozzle closure for a spray gun

Information

  • Patent Grant
  • 9409197
  • Patent Number
    9,409,197
  • Date Filed
    Wednesday, December 17, 2014
    10 years ago
  • Date Issued
    Tuesday, August 9, 2016
    8 years ago
  • Inventors
  • Original Assignees
  • Examiners
    • Hwu; Davis
    Agents
    • Bianco; Paul D.
    • Winer; Gary
    • Fleit Gibbons Gutman Bongini & Bianco PL
Abstract
An air nozzle closure for a spray gun with an air cap, which has at least one axial borehole for the passage of exiting air and a first annular flange, which is radially directed outward, and an air nozzle ring surrounding the air cap, with a second annular flange radially directed inward, and an inside thread for the screwing on of the air nozzle closure with an outside thread of the spray gun. The air cap in the screwed state, with annular flanges adjacent to one another, is clamped in between the spray gun and the air nozzle ring, and a first annular groove with a locking ring, which secures the air nozzle ring in the unscrewed state against the loosening of the air cap. The locking ring has at least one elastic snap-in element projecting inward to snap into the annular groove.
Description
FIELD OF THE INVENTION

The invention concerns an air nozzle closure for a spray gun.


BACKGROUND OF THE INVENTION

In the area of varnishing and painting technology, so-called spray guns are used. These are devices that are supplied with both varnish or paint in liquid form as well as compressed air, and that distribute the varnish or the paint, with the addition of compressed air, in very small drops, the so-called spray jet with which the surface to be coated is covered. The addition of paint can, for example, take place with a paint hose, with so-called flow cups placed above, or with so-called siphon cups, suspended below. The paint is supplied from these cups or supply lines of a so-called paint nozzle, whose opening can be regulated by the user via a nozzle needle. The paint nozzle is surrounded by an air nozzle, which is designed as a ring nozzle and which is supplied with the compressed air. This leaves the ring nozzle at a high speed and thereby carries along the paint exiting from the paint nozzle, atomizes it, and in this way produces the fine spray jet. Such a varnishing or painting gun is the subject of EP 0710506 A1, whose disclosure content is made the subject of this description. The publication also shows, in FIG. 2, the precise structure of the paint nozzle and the ring nozzle, together with an air nozzle closure, which has an air cap.


With modern paint spray guns, the air nozzle closure is designed in such a way that it has an air cap, which has an axial borehole to hold the paint nozzle when screwed on, with the formation of an annular slot for the passage of exiting air and a first annular flange, directed radially outward. Furthermore, the air nozzle closure has an air nozzle ring surrounding the air cap, with a second annular flange directed radially inward and an inner thread for screwing on the air nozzle closure with an outer thread of the spray gun. The air cap, when screwed on, is snapped in, with annular flanges adjacent to one another, between the spray gun and the air nozzle ring. Furthermore, an annular groove with a locking ring is provided on the outside of the air cap; it locks the air nozzle ring against a loosening of the air cap when it is not screwed on wherein, therefore, the air nozzle ring is removed from the spray gun.


Such air nozzle closures have the disadvantage that the locking ring is hard to handle and thus, during the cleaning of the spray gun, it is hard to remove the air nozzle ring from the air cap.


SUMMARY OF THE INVENTION

One embodiment of the invention provides a more manageable and easier-to-clean air nozzle closure for a spray gun. Other embodiments are also disclosed.


If the locking ring has an elastic snapping element that projects inward to snap into the annular groove, it can be easily set and removed, so that a breakdown of the air nozzle closure can be carried out faster and more easily and thus the cleaning of the spray gun is facilitated.


The design of the locking ring as a continuous plastic ring with at least one elastic fastening lug projecting inward to snap into the annular groove is thereby particularly advantageous, since it can be removed and reset quickly and simply. Several surrounding fastening lugs can also be designed along the inside of the locking ring.


In order to make possibly an easy assembly and dismantling, the width of the annular groove should at least slightly exceed the thickness of the locking ring.


In another preferred embodiment, the width of the annular groove exceeds the thickness of the locking ring by approximately 20% or more, wherein the locking ring can be moved axially within the annular groove. The level of the locking ring can hereby be about three times the depth of the annular groove or more, wherein the locking ring can be clearly seen. The user can thus see at first glance that the air nozzle closure is secured with a locking ring, Moreover, with a suitable selection of color for this locking ring, a marking can be carried out at the same time, for example, an indication as to a certain spray gun or a spray gun with a specific nozzle size.


In another advantageous embodiment, the outside edge of the locking ring is designed so as to be enlarged axially in the direction of the air nozzle ring, and with this enlargement is firmly connected with the air nozzle ring. In this way, a particularly significant marking possibility is produced, in particular if the outside edge of the locking ring in the area of the air nozzle ring has an additional extension pointing radially inward and the air nozzle ring is connected with the locking ring in a tight fit, and if the locking ring has a surface that is optically different from the surface of the air nozzle ring and the air cap.





BRIEF DESCRIPTION OF THE DRAWINGS

An embodiment example of the invention is explained in more detail below, with reference to the accompanying drawings. The figures show the following:



FIG. 1, a perspective representation of an assembled spray gun according to the state of the art;



FIG. 2, the spray gun shown in FIG. 1, with the air nozzle closure shown in an exploded view;



FIG. 3, the spray gun shown in FIG. 1, in a longitudinal section;



FIG. 4, the detail Y shown in FIG. 3;



FIG. 5, a perspective representation of a first embodiment of a spray gun with an air nozzle closure in accordance with the invention;



FIG. 6, a representation of the spray gun in accordance with FIG. 5, with an exploded view of the air nozzle closure;



FIG. 7, the spray gun shown in FIG. 5, in a longitudinal section;



FIG. 8, the detail Y shown in FIG. 7;



FIG. 9, a perspective representation of a second embodiment of a spray gun in accordance with the invention;



FIG. 10, the spray gun in accordance with FIG. 9, with the air nozzle closure in an exploded view;



FIG. 11, the spray gun shown in FIG. 9, in a longitudinal section; and



FIG. 12, the detail Y designated in FIG. 11.





DETAILED DESCRIPTION


FIGS. 1-4 show a spray gun according to the state of the art, whereas FIGS. 5-8 show a first embodiment of a spray gun with an air nozzle closure in accordance with the invention, and FIGS. 9-12 show a second embodiment of a spray gun with an air nozzle closure in accordance with the invention.


In the following description, the details of a spray gun, which are, in fact, known, are not discussed, but rather the discussion deals only with its air nozzle closure, that is, first, the description of an air nozzle closure from the state of the art, in accordance with FIGS. 1-4. The air nozzle closure of a spray gun 1 shown there has an air nozzle ring 5, which can be screwed on an outside thread 8 of the spray gun. Within this air nozzle ring 5 and when screwed by this on the spray gun 1, there is an air cap 2 with an axial borehole 3 for the passage of exiting air during the operation of the spray gun 1. Within this axial borehole 3, there is the paint nozzle, which is not described and depicted in detail here and which is provided with the reference number 14 in the drawings. For the sake of completion, reference is made to the fact that the air exiting from the borehole 3 during the operation of the spray gun 1 draws out the paint exiting from the paint nozzle, produces a fine atomization, and thus creates the spray jet. In the example shown in FIGS. 1-4, according to the state of the art, the air cap 2 has, moreover, so-called lateral horns, which are not designated individually and which likewise have boreholes for the exiting of air, which, during the operation of the spray gun 1, serve to flatten the spray jet, which is, in fact, conical.


The air nozzle ring 5 has a second annular flange 6, which is directed radially inward, which works together with a first annular flange 4 of the air cap 2, directed radially outward. In the screwed-on state, as is depicted in detail in FIG. 4, this second annular flange 6 of the air nozzle ring 5 presses on the first annular flange 4 of the air cap 2 and thus presses the air cap 2 on the paint nozzle 14 when the air nozzle ring 5 is firmly screwed on the outside thread 8 of the spray gun 1. An automatic centering also takes place hereby, so that the air cap 2 lies right against the spray gun 1.


In order to prevent the unit consisting of the air nozzle ring 5 and air cap 2 from separating from one another in the unscrewed state of the air nozzle ring 5, the spray gun 1 has a locking ring 10 in accordance with the state of the art; it is fixed in an annular groove 9 of the air cap 2 and protrudes over the outside diameter of the air cap 2, so that the air nozzle ring 5 cannot fall off from the air cap 2, but rather is affixed by the locking ring 10. This locking ring can be an open snap-in ring made of spring steel.


In the first embodiment of the invention, in accordance with FIGS. 5-8, an air nozzle ring 5 is likewise provided, which presses a comparable air cap 2 against the spray gun 1 when it is screwed on the outside thread 8 of the spray gun 1. Furthermore, this embodiment has a locking ring 10, which likewise prevents the falling off of the air nozzle ring 5 from the air cap 2 in the unscrewed state. As can be seen from FIG. 6, this locking ring 10, however, has several elastic snap-in means, which protrude inward, in the shape of plastic lugs, since the entire locking ring 10 is made of plastic. In this way, the locking ring 10 can be brought into the position shown in FIG. 8 for every snap-in operation after the air nozzle ring 5 has been set on the air cap 2, and is affixed there by the fastening lugs 11 acting as snap-in means. As can be seen from FIG. 8, the locking ring 10 is equipped with a larger outside diameter, as is common in the state of the art according to FIGS. 1-4, wherein the level of the locking ring 10 in the embodiment example under consideration is approximately three times the depth of the annular groove 9 of the air cap 2. Moreover, the locking ring 10 advantageously differs in the area of its surface from the surface of the air nozzle ring 5 and the surface of the air cap 2.


In this way, a secure snapping-in of the locking ring 10 is made possible via the fastening lugs 11, and the locking ring 10 can simultaneously serve as a marking, for example, as a color ring, so as to distinguish different air nozzle closures or spray guns 1 from one another. In this respect, it fulfills a double function as a locking ring 10 and a marking ring.


With so-called HVLP guns, the locking ring 10 can be green and with so-called RP guns, it can be blue, and the surface of the air nozzle ring 5 can, for example, have a silver color. In every case, contrasting colors and/or patterns are selected for the locking ring and the air nozzle ring so that the presence of a locking ring can be recognized without any problem.


Another embodiment of this locking ring 10 is shown in FIGS. 9-12, wherein, in this case, the locking ring 10 has an outside edge 12, which is designed axially enlarged in the direction of the air nozzle ring 5 and, with this enlargement, is firmly connected with the air nozzle ring 5. Here, therefore, the air nozzle ring 5 and the air cap 2 form a unit, but in this way remain movable toward one another, so that the width of the annular groove 9 is larger than the width of the locking ring 10 in the area in which it engages in the annular groove. With this embodiment, the outside edge 12 of the locking ring 10, which can be seen well in FIG. 12, in the area of the air nozzle ring 5, has an additional extension 13 pointing radially inward, and the air nozzle ring 5 is connected with the locking ring 10 there in a tight fit. Thus, the locking ring 10 and the air nozzle ring 5 are rigidly connected with one another, and the locking ring 10 meshes, via the snap-in means or the fastening lug 11, in the annular groove 9 of the air cap 2.


With this embodiment also, the locking ring 10 advantageously has a surface that differs optically from the surface of the air nozzle ring 5 and the air cap 2, so that it can also be used, in addition to its function as the locking ring, as an optical identification, and thus fulfills a double function.


The locking ring 10 can be designed as a continuous or interrupted ring. It can be made of plastic or metal or another suitable, sufficiently elastic material. Material combinations are likewise conceivable with the locking ring 10; for example, metal/plastic in a type that the ring is made of a relatively nonelastic metal and has at least one elastic plastic nub or vice versa. It is essential that it is able, at least in areas, to enter into a locking connection, a snapping connection, a clamping connection, or the like, with the air nozzle ring 5.


The locking ring 10 can have only one elastic snap-in means, in the shape of a fastening lug 11, or a number of such fastening lugs 11, which are preferably situated at a distance to one another. In the embodiment example under consideration, the width of the annular groove 9 exceeds the thickness of the locking ring 10 by at least 20%, wherein the locking ring 10 can be moved axially within the annular groove 9 without any problems, which makes possible an exceedingly easy assembly and dismantling. On the other hand, a very slight, for example, 1% wider annular groove 9, or a very much, for example, 90% wider annular groove 9 makes possible a relatively good holding of the locking ring 10. Theoretically, there are no upper limits, except that there must still be material present to support the locking ring 10.


The level of the locking ring 10 must be at least twice to three times the depth of the annular groove 9 if the locking ring 10 is to simultaneously have a marking character.

Claims
  • 1. Air nozzle closure for a spray gun with an air cap, which has at least one axial borehole for the passage of exiting air and a first annular flange, which is radially directed outward, and an air nozzle ring surrounding the air cap, with a second annular flange radially directed inward, and an inside thread for the screwing on of the air nozzle closure with an outside thread of the spray gun, wherein the air cap in the screwed state, with annular flanges adjacent to one another, is clamped in between the spray gun and the air nozzle ring, and a first annular groove with a locking ring, which secures the air nozzle ring in the unscrewed state against the loosening of the air cap, wherein the locking ring has at least one elastic snap-in means projecting inward to snap into the annular groove.
  • 2. Air nozzle closure according to claim 1, wherein the locking ring is a continuous plastic ring.
  • 3. Air nozzle closure according to claim 1, wherein the elastic snap-in means is at least one fastening lug projecting inward.
  • 4. Air nozzle closure according to claim 3, wherein the fastening lug is a surrounding lug.
  • 5. Air nozzle closure according to claim 3, wherein a plurality of fastening lugs are located at a distance from one another.
  • 6. Air nozzle closure according to claim 1, wherein the width of the annular groove exceeds the thickness of the locking ring, wherein the locking ring can be moved axially within the annular groove, and the level of the locking ring is at least slightly greater than the depth of the annular groove.
  • 7. Air nozzle closure according to claim 6, wherein the width of the annular groove exceeds the thickness of the locking ring by approximately 20%.
  • 8. Air nozzle closure according to claim 5, wherein the level of the locking ring is approximately three times the depth of the annular groove.
  • 9. Air nozzle closure according to claim 1, wherein the outside edge of the locking ring is designed axially enlarged in the direction of the air nozzle ring, and with this enlargement, is firmly connected with the air nozzle ring.
  • 10. Air nozzle closure according to claim 1, wherein the outside edge of the locking ring in the range of the air nozzle ring has an additional extension pointing radially inward, and the air nozzle ring is connected with the locking ring in a tight fit.
  • 11. Air nozzle closure according to claim 1, wherein the locking ring has a surface which is optically different from the surface of the air nozzle ring and the air cap.
Priority Claims (1)
Number Date Country Kind
20 2013 105 779 U Dec 2013 DE national
US Referenced Citations (474)
Number Name Date Kind
40433 Sees Oct 1863 A
327260 Hart Sep 1885 A
459432 Anderson Sep 1891 A
459433 Avery Sep 1891 A
548816 Paul Oct 1895 A
552213 Troy Dec 1895 A
552715 Lugrin Jan 1896 A
563505 McCornack Jul 1896 A
581107 Emery Apr 1897 A
644803 Justi Mar 1900 A
672012 Ruper Apr 1901 A
574880 Schmidt et al. May 1901 A
1662496 Forsgard Mar 1928 A
1703383 Birkenmaier Feb 1929 A
1703384 Birkenmaier Feb 1929 A
1711221 Blakeslee Apr 1929 A
1751787 Binks Mar 1930 A
1889201 Holveck Nov 1932 A
2008381 Beeg Jul 1935 A
2049700 Gustafsson Aug 1936 A
2051210 Gustafsson Aug 1936 A
2070696 Tracy Feb 1937 A
2116036 Money May 1938 A
2125445 Holveck Aug 1938 A
2198441 Mollart Apr 1940 A
2204599 Jenkins Jun 1940 A
2269057 Jenkins Jan 1942 A
D133223 Tammen Jul 1942 S
2356865 Mason Aug 1944 A
2416856 Thomsen Mar 1947 A
2416923 Jenkins Mar 1947 A
2557593 Bjorkman Jun 1951 A
2557606 Liedberg Jun 1951 A
2559091 Reasenberg Jul 1951 A
2609961 Sapien Sep 1952 A
2612899 Webb Oct 1952 A
2646314 Peeps Jul 1953 A
2721004 Schultz Oct 1955 A
2844267 Petriccione Jul 1958 A
2886252 Ehrensperger May 1959 A
3090530 Peeps May 1963 A
3159472 Revell Dec 1964 A
D200594 Sass Mar 1965 S
3240398 Dalton, Jr. Mar 1966 A
D204306 Hamm Apr 1966 S
D205760 Hocutt et al. Sep 1966 S
D208903 Zadron et al. Oct 1967 S
3344992 Norris Oct 1967 A
3381845 MacDonald May 1968 A
3417650 Varrin Dec 1968 A
3420106 Keller et al. Jan 1969 A
3435683 Keller et al. Apr 1969 A
3482781 Sharpe Dec 1969 A
D217928 Felske Jun 1970 S
3524589 Pelton, Jr. Aug 1970 A
3527372 Manning Sep 1970 A
3583632 Schaffer Jun 1971 A
3622078 Gronert Nov 1971 A
3645562 Fandetti et al. Feb 1972 A
3656493 Black et al. Apr 1972 A
3714967 Zupan et al. Feb 1973 A
3746253 Walberg Jul 1973 A
3747850 Hastings et al. Jul 1973 A
3771539 De Santis Nov 1973 A
3840143 Davis et al. Oct 1974 A
3848807 Partida Nov 1974 A
3857511 Govindan Dec 1974 A
3870223 Wyant Mar 1975 A
3873023 Moss et al. Mar 1975 A
4000915 Strom Jan 1977 A
D245048 Pool Jul 1977 S
D252097 Probst et al. Jun 1979 S
4160525 Wagner Jul 1979 A
4210263 Bos Jul 1980 A
4273293 Hastings Jun 1981 A
4411387 Stern et al. Oct 1983 A
4478370 Hastings Oct 1984 A
D276472 Harrison Nov 1984 S
D278543 Gintz Apr 1985 S
4545536 Avidon Oct 1985 A
4562965 Ihmels et al. Jan 1986 A
4580035 Luscher Apr 1986 A
4585168 Even et al. Apr 1986 A
4614300 Falcoff Sep 1986 A
4643330 Kennedy Feb 1987 A
4653661 Buchner et al. Mar 1987 A
4667878 Behr May 1987 A
4713257 Luttermoller Dec 1987 A
D293950 Ogden et al. Jan 1988 S
4730753 Grime Mar 1988 A
D298372 Taylor, Jr. Nov 1988 S
4784184 Gates Nov 1988 A
4806736 Schirico Feb 1989 A
4826539 Harpold May 1989 A
4832232 Broccoli May 1989 A
4863781 Kronzer Sep 1989 A
4877144 Thanisch Oct 1989 A
D305057 Morgan Dec 1989 S
4887747 Ostrowsky et al. Dec 1989 A
4901761 Taylor Feb 1990 A
4906151 Kubis Mar 1990 A
4917300 Gloviak et al. Apr 1990 A
4946075 Lundback Aug 1990 A
4964361 Aebersold Oct 1990 A
4967600 Keller Nov 1990 A
4969603 Norman Nov 1990 A
4973184 La Salle Nov 1990 A
D314421 Tajima et al. Feb 1991 S
D314588 Denham Feb 1991 S
4989787 Nikkel et al. Feb 1991 A
5020700 Krzywdziak et al. Jun 1991 A
D318877 Miranda et al. Aug 1991 S
5042840 Rieple et al. Aug 1991 A
D321597 Cerny Nov 1991 S
5064119 Mellette Nov 1991 A
5071074 Lind Dec 1991 A
5074334 Onodera Dec 1991 A
5078323 Frank Jan 1992 A
5080285 Toth Jan 1992 A
5088648 Schmon Feb 1992 A
5090623 Burns et al. Feb 1992 A
5102045 Diana Apr 1992 A
5119992 Grime Jun 1992 A
5125391 Srivastava et al. Jun 1992 A
5135124 Wobser Aug 1992 A
5143102 Blaul Sep 1992 A
5165605 Morita et al. Nov 1992 A
5170941 Morita et al. Dec 1992 A
5190219 Copp, Jr. Mar 1993 A
5191797 Smith Mar 1993 A
5228488 Fletcher Jul 1993 A
5232299 Hiss Aug 1993 A
5236128 Morita et al. Aug 1993 A
5249746 Kaneko et al. Oct 1993 A
5289974 Grime et al. Mar 1994 A
5322221 Anderson Jun 1994 A
5325473 Monroe et al. Jun 1994 A
5332156 Wheeler Jul 1994 A
5333506 Smith et al. Aug 1994 A
5333908 Dorney et al. Aug 1994 A
5344078 Fritz et al. Sep 1994 A
5367148 Storch et al. Nov 1994 A
D353836 Carvelli et al. Dec 1994 S
5381962 Teague Jan 1995 A
5435491 Sakuma Jul 1995 A
5443642 Bienduga Aug 1995 A
5456414 Burns et al. Oct 1995 A
D365952 Gagnon et al. Jan 1996 S
5503439 LaJeunesse et al. Apr 1996 A
5533674 Feyrer et al. Jul 1996 A
5540385 Garlick Jul 1996 A
5540386 Roman Jul 1996 A
5582350 Kosmyna et al. Dec 1996 A
5584899 Shorts Dec 1996 A
5588562 Sander et al. Dec 1996 A
5592597 Kiss Jan 1997 A
5609302 Smith Mar 1997 A
5613637 Schmon Mar 1997 A
D380301 Kogutt Jul 1997 S
5655714 Kieffer et al. Aug 1997 A
5662444 Schmidt, Jr. Sep 1997 A
5695125 Kumar Dec 1997 A
5704381 Millan et al. Jan 1998 A
5718767 Crum et al. Feb 1998 A
D391403 Josephs Mar 1998 S
RE35769 Grime et al. Apr 1998 E
5762228 Morgan et al. Jun 1998 A
5803360 Spitznagel Sep 1998 A
5816501 LoPresti et al. Oct 1998 A
5836517 Burns et al. Nov 1998 A
D402820 Morison et al. Dec 1998 S
5843515 Crum et al. Dec 1998 A
5853014 Rosenauer Dec 1998 A
D405503 Edo Feb 1999 S
5874680 Moore Feb 1999 A
5884006 Frohlich et al. Mar 1999 A
D409719 Kaneko May 1999 S
5941461 Akin et al. Aug 1999 A
5951190 Wilson Sep 1999 A
5951296 Klein Sep 1999 A
5954268 Joshi et al. Sep 1999 A
D414636 Wiese Oct 1999 S
5979797 Castellano Nov 1999 A
5992763 Smith et al. Nov 1999 A
6006930 Dreyer et al. Dec 1999 A
6010082 Peterson Jan 2000 A
6017394 Crum et al. Jan 2000 A
6036109 DeYoung Mar 2000 A
6039218 Beck Mar 2000 A
6053429 Chang Apr 2000 A
6056213 Ruta et al. May 2000 A
6089471 Scholl Jul 2000 A
6089607 Keeney et al. Jul 2000 A
6091053 Aonuma Jul 2000 A
6092740 Liu Jul 2000 A
6132511 Crum et al. Oct 2000 A
D435379 Nguyen Dec 2000 S
6250567 Lewis et al. Jun 2001 B1
6276616 Jenkins Aug 2001 B1
D448451 Turnbull et al. Sep 2001 S
6308991 Royer Oct 2001 B1
D457599 Karwoski et al. May 2002 S
D459432 Schmon Jun 2002 S
D459433 Schmon Jun 2002 S
6402058 Kaneko et al. Jun 2002 B2
6402062 Bending et al. Jun 2002 B1
6431466 Kitajima Aug 2002 B1
6435426 Copp, Jr. Aug 2002 B1
6442276 Doljack Aug 2002 B1
6494387 Kaneko Dec 2002 B1
6536684 Wei Mar 2003 B1
6536687 Navis et al. Mar 2003 B1
D472730 Sparkowski Apr 2003 S
6540114 Popovich et al. Apr 2003 B1
6543632 McIntyre et al. Apr 2003 B1
6547884 Crum et al. Apr 2003 B1
6553712 Majerowski et al. Apr 2003 B1
6554009 Beijbom et al. Apr 2003 B1
D474528 Huang May 2003 S
6585173 Schmon et al. Jul 2003 B2
6595441 Petrie et al. Jul 2003 B2
6626382 Liu Sep 2003 B1
6626383 Campbell Sep 2003 B1
6647997 Mohn Nov 2003 B2
6661438 Shiraishi et al. Dec 2003 B1
D485685 Zupkofska et al. Jan 2004 S
6675845 Volpenheim et al. Jan 2004 B2
6692118 Michele et al. Feb 2004 B2
6712292 Gosis et al. Mar 2004 B1
6717584 Kulczycka Apr 2004 B2
6732751 Chiang May 2004 B2
6763964 Hurlbut et al. Jul 2004 B1
6766763 Crum et al. Jul 2004 B2
6786345 Richards Sep 2004 B2
6796514 Schwartz Sep 2004 B1
6801211 Forsline et al. Oct 2004 B2
6820824 Joseph et al. Nov 2004 B1
6843390 Bristor Jan 2005 B1
6845924 Schmon Jan 2005 B2
6855173 Ehrnsperger et al. Feb 2005 B2
6863310 Petkovsek Mar 2005 B1
6863920 Crum et al. Mar 2005 B2
6874656 Rohr et al. Apr 2005 B2
6874664 Montgomery Apr 2005 B1
6874708 Reetz, III Apr 2005 B2
6877677 Schmon et al. Apr 2005 B2
6929019 Weinmann et al. Aug 2005 B2
6945429 Gosis et al. Sep 2005 B2
6955180 Kocherlakota et al. Oct 2005 B2
6962432 Hofeldt Nov 2005 B2
6963331 Kobayashi et al. Nov 2005 B1
7017838 Schmon Mar 2006 B2
7018154 Schmon Mar 2006 B2
D519687 Zahav Apr 2006 S
7036752 Hsiang May 2006 B1
7083119 Bouic et al. Aug 2006 B2
7090148 Petrie et al. Aug 2006 B2
7097118 Huang Aug 2006 B1
D528192 Nicholson Sep 2006 S
7106343 Hickman Sep 2006 B1
7165732 Kosmyna et al. Jan 2007 B2
7172139 Bouic et al. Feb 2007 B2
7175110 Vicentini Feb 2007 B2
7182213 King Feb 2007 B2
D538050 Tardif Mar 2007 S
D538493 Zimmerle et al. Mar 2007 S
D538886 Huang Mar 2007 S
7194829 Boire et al. Mar 2007 B2
D541053 Sanders Apr 2007 S
D541088 Nesci Apr 2007 S
7201336 Blette et al. Apr 2007 B2
7216813 Rogers May 2007 B2
D545943 Rodgers et al. Jul 2007 S
7246713 King Jul 2007 B2
7249519 Rogers Jul 2007 B2
D548816 Schmon Aug 2007 S
7255293 Dodd Aug 2007 B2
7264131 Tsutsumi et al. Sep 2007 B2
D552213 Schmon Oct 2007 S
D552715 Schmon Oct 2007 S
D554703 Josephson Nov 2007 S
D563505 Schmon Mar 2008 S
7374111 Joseph et al. May 2008 B2
D571463 Chesnin Jun 2008 S
7384004 Rogers Jun 2008 B2
RE40433 Schmon Jul 2008 E
D573227 Mirazita et al. Jul 2008 S
D574926 Huang Aug 2008 S
D575374 Huang Aug 2008 S
7410106 Escoto, Jr. et al. Aug 2008 B2
7416140 Camilleri et al. Aug 2008 B2
7422164 Matsumoto Sep 2008 B2
D579213 Aipa Oct 2008 S
D581107 Schmon Nov 2008 S
D581483 Bass et al. Nov 2008 S
D583013 Wang Dec 2008 S
7458612 Bennett Dec 2008 B1
7533678 Rosa May 2009 B2
7540434 Gohring et al. Jun 2009 B2
7542032 Kruse Jun 2009 B2
7568638 Gehrung Aug 2009 B2
D604394 Wang Nov 2009 S
7614571 Camilleri et al. Nov 2009 B2
D607086 Kosaka Dec 2009 S
7624869 Primer Dec 2009 B2
D607972 Wang Jan 2010 S
D608858 Baltz et al. Jan 2010 S
D614731 Wang Apr 2010 S
7694893 Zittel Apr 2010 B2
7694896 Turnbull et al. Apr 2010 B2
D615586 Kudimi May 2010 S
D616022 Kudimi May 2010 S
D616527 Anderson et al. May 2010 S
7765876 Chen Aug 2010 B1
D624668 Noppe Sep 2010 S
7810744 Schmon et al. Oct 2010 B2
7819341 Schmon et al. Oct 2010 B2
D627039 Yu Nov 2010 S
D627432 Escoto et al. Nov 2010 S
7823806 Schmon Nov 2010 B2
D629623 Lampe Dec 2010 S
7913938 Cooper Mar 2011 B2
7922107 Fox Apr 2011 B2
D637269 Wang May 2011 S
D638121 Villasana May 2011 S
D639863 Langan Jun 2011 S
D641067 Wang Jul 2011 S
D644716 Gehrung Sep 2011 S
D644803 Schmon Sep 2011 S
D645094 Langan Sep 2011 S
8042402 Brown et al. Oct 2011 B2
D649196 Langan Nov 2011 S
8052071 Kruse Nov 2011 B2
D655347 Gehrung Mar 2012 S
8127963 Gerson et al. Mar 2012 B2
D657276 Brose Apr 2012 S
D661742 Clark Jun 2012 S
D663960 Jeronimo Jul 2012 S
8225892 Ben-Tzvi Jul 2012 B2
8240579 Bennett Aug 2012 B1
8297536 Ruda Oct 2012 B2
D670085 Brookman et al. Nov 2012 S
D671988 Leipold Dec 2012 S
D672012 Brose Dec 2012 S
D674880 Schmon Jan 2013 S
8352744 Kruse Jan 2013 B2
D681162 Kruse Apr 2013 S
8444067 Schmon et al. May 2013 B2
8454759 Selsvik Jun 2013 B2
8481124 Nolte et al. Jul 2013 B2
D689590 Brose Sep 2013 S
D689593 Schmon Sep 2013 S
D690799 Maier Oct 2013 S
D692530 Gehrung Oct 2013 S
D692532 Li et al. Oct 2013 S
8616434 Wilen Dec 2013 B2
D698008 Schmon et al. Jan 2014 S
8626674 Whitehouse Jan 2014 B2
8642131 Nolte et al. Feb 2014 B2
D704300 Li et al. May 2014 S
8757182 Schmon Jun 2014 B2
8807460 Charpie et al. Aug 2014 B2
8857732 Brose Oct 2014 B2
D720015 Kruse Dec 2014 S
8899501 Fox et al. Dec 2014 B2
D721785 Gehrung Jan 2015 S
8925836 Dettlaff Jan 2015 B2
D733369 Tschan Jun 2015 S
D733453 Tschan Jul 2015 S
D734571 Tschan Jul 2015 S
9073068 Krayer et al. Jul 2015 B2
D737126 Tschan Aug 2015 S
D740393 Gehrung Oct 2015 S
D757216 Gehrung May 2016 S
D758533 Dettlaff Jun 2016 S
D758537 Gehrung Jun 2016 S
20010004996 Schmon Jun 2001 A1
20010040192 Kaneko et al. Nov 2001 A1
20020134861 Petrie et al. Sep 2002 A1
20020148501 Shieh Oct 2002 A1
20020170978 Mohn Nov 2002 A1
20030025000 Schmon et al. Feb 2003 A1
20030066218 Schweikert Apr 2003 A1
20030121476 McIntyre et al. Jul 2003 A1
20030127046 Zehner et al. Jul 2003 A1
20030164408 Schmon Sep 2003 A1
20030177979 Crum et al. Sep 2003 A1
20030189105 Schmon Oct 2003 A1
20030209568 Douglas et al. Nov 2003 A1
20030213857 Schmon et al. Nov 2003 A1
20030218596 Eschler Nov 2003 A1
20030230636 Rogers Dec 2003 A1
20040046051 Santa Cruz et al. Mar 2004 A1
20040050432 Breda Mar 2004 A1
20040104194 Dennison Jun 2004 A1
20040129738 Stukas Jul 2004 A1
20040140373 Joseph et al. Jul 2004 A1
20040155063 Hofeldt Aug 2004 A1
20040177890 Weinmann Sep 2004 A1
20040191406 Crum et al. Sep 2004 A1
20040217201 Ruda Nov 2004 A1
20040233223 Schkolne et al. Nov 2004 A1
20040245208 Dennison Dec 2004 A1
20050056613 King Mar 2005 A1
20050082249 King Apr 2005 A1
20050127201 Matsumoto Jun 2005 A1
20050145723 Blette et al. Jul 2005 A1
20050145724 Blette et al. Jul 2005 A1
20050178854 Dodd Aug 2005 A1
20050220943 Abrams et al. Oct 2005 A1
20050248148 Schenck et al. Nov 2005 A1
20050252993 Rogers Nov 2005 A1
20050252994 Rogers Nov 2005 A1
20050268949 Rosa Dec 2005 A1
20050284963 Reedy Dec 2005 A1
20060000927 Ruda Jan 2006 A1
20060007123 Wilson et al. Jan 2006 A1
20060048803 Jessup et al. Mar 2006 A1
20060081060 Forster Apr 2006 A1
20060113409 Camilleri et al. Jun 2006 A1
20060171771 Kruse Aug 2006 A1
20060192377 Bauer et al. Aug 2006 A1
20060196891 Gerson et al. Sep 2006 A1
20070029788 Adler Feb 2007 A1
20070055883 Kruse Mar 2007 A1
20070131795 Abbate et al. Jun 2007 A1
20070158349 Schmon et al. Jul 2007 A1
20070205305 Vagedes Sep 2007 A1
20070221754 Gehrung Sep 2007 A1
20070252378 Chambers Nov 2007 A1
20080011879 Gerson et al. Jan 2008 A1
20080019789 Dunaway et al. Jan 2008 A1
20080029619 Gohring et al. Feb 2008 A1
20080128533 Gehrung Jun 2008 A1
20080179763 Schmon et al. Jul 2008 A1
20080251977 Naruse et al. Oct 2008 A1
20080264892 Nozawa Oct 2008 A1
20080272213 Ting Nov 2008 A1
20080296410 Carey et al. Dec 2008 A1
20090014557 Schmon et al. Jan 2009 A1
20090026290 Fox Jan 2009 A1
20090045623 Schmon Feb 2009 A1
20090072050 Ruda Mar 2009 A1
20090078789 Kruse Mar 2009 A1
20090078790 Camilleri et al. Mar 2009 A1
20090143745 Langan et al. Jun 2009 A1
20090183516 Appler et al. Jul 2009 A1
20090235864 Khoury et al. Sep 2009 A1
20090266915 Fedorov Oct 2009 A1
20100021646 Nolte et al. Jan 2010 A1
20100059533 Unger et al. Mar 2010 A1
20100084493 Troudt Apr 2010 A1
20100108783 Joseph et al. May 2010 A1
20100126541 Schmon May 2010 A1
20100206963 Huang Aug 2010 A1
20110024524 Fox Feb 2011 A1
20110121103 Carleton et al. May 2011 A1
20110125607 Wilen May 2011 A1
20110127767 Wicks et al. Jun 2011 A1
20110168811 Fox et al. Jul 2011 A1
20110174901 Dettlaff et al. Jul 2011 A1
20120012671 Brose et al. Jan 2012 A1
20120097762 Gehrung et al. Apr 2012 A1
20120132550 Gerson et al. May 2012 A1
20120160935 Krayer et al. Jun 2012 A1
20130056556 Schmon et al. Mar 2013 A1
20130074864 Nuzzo et al. Mar 2013 A1
20130266734 Nolte et al. Oct 2013 A1
20130320110 Brose et al. Dec 2013 A1
20140048627 Schmon et al. Feb 2014 A1
20140059905 Raming Mar 2014 A1
20140145003 Schmon et al. May 2014 A1
20140305962 Tschan Oct 2014 A1
20160030960 Gehrung Feb 2016 A1
Foreign Referenced Citations (220)
Number Date Country
153883 Jun 1997 AT
163577 Mar 1998 AT
250467 Oct 2003 AT
322645 Apr 2006 AT
383910 Feb 2008 AT
461752 Apr 2010 AT
461753 Apr 2010 AT
475488 Aug 2010 AT
637187 May 1993 AU
2002352235 Sep 2003 AU
2004315547 Aug 2005 AU
2005205899 Aug 2005 AU
2011257605 Nov 2012 AU
2011361295 May 2013 AU
521511 Feb 1956 CA
2126957 Jan 1995 CA
2277096 Jul 1998 CA
2445183 Oct 2002 CA
2552390 Aug 2005 CA
2555607 Aug 2005 CA
2690112 May 2009 CA
2797990 Dec 2011 CA
2812684 Sep 2012 CA
102917803 Feb 2013 CA
203 668 Jun 1939 CH
542104 Sep 1973 CH
676208 Dec 1990 CH
1902002 Jan 2007 CN
1909970 Feb 2007 CN
1909971 Feb 2007 CN
1917960 Feb 2007 CN
200954482 Oct 2007 CN
101125316 Feb 2008 CN
100430150 Nov 2008 CN
100455360 Jan 2009 CN
101367066 Feb 2009 CN
100478080 Apr 2009 CN
101646500 Feb 2010 CN
102211070 Apr 2011 CN
102211069 Oct 2011 CN
460381 May 1928 DE
510362 Oct 1930 DE
1425890 Nov 1968 DE
2559036 Sep 1976 DE
2653981 Jun 1978 DE
2950341 Jul 1980 DE
3016419 Nov 1981 DE
8024829.9 Sep 1982 DE
34 02 097 Aug 1985 DE
3402945 Aug 1985 DE
3517122 May 1986 DE
3505618 Aug 1986 DE
3526819 Feb 1987 DE
3016419 Aug 1987 DE
8702559 Oct 1987 DE
3708472 Oct 1988 DE
8902223 May 1989 DE
3742308 Jun 1989 DE
8905681 Nov 1989 DE
G 90 01 265 May 1990 DE
3906219 Aug 1990 DE
4302911 Aug 1993 DE
4230535 Mar 1994 DE
4321940 Jan 1995 DE
19516485 Nov 1996 DE
19727884 Feb 1999 DE
69505433 Apr 1999 DE
19807973 Jul 1999 DE
19824264 Dec 1999 DE
19832990 Jan 2000 DE
20000483 Aug 2000 DE
10004105 Oct 2000 DE
19958569 Feb 2001 DE
199 41 362 Mar 2001 DE
199 45 760 Mar 2001 DE
19945760 Mar 2001 DE
10031857 Jan 2002 DE
10031858 Jan 2002 DE
20114257 Feb 2002 DE
10059406 Jun 2002 DE
10135104 Sep 2002 DE
102 05 831 Aug 2003 DE
03069208 Aug 2003 DE
10205831 Aug 2003 DE
10311238 Oct 2004 DE
10 2004 027 789 Feb 2005 DE
10 2004 027789 Feb 2005 DE
29825120 Feb 2005 DE
2004027789 Feb 2005 DE
20320781 Jun 2005 DE
10 2004 014 646 Jul 2005 DE
10 2004 003 438 Aug 2005 DE
102004003439 Aug 2005 DE
10 2004 007 733 Sep 2005 DE
10 2004 021 298 Nov 2005 DE
69535077 Nov 2006 DE
202007001031 Mar 2007 DE
60200500 1173 Aug 2007 DE
60206956 Aug 2008 DE
102007006547 Aug 2008 DE
102007039106 Feb 2009 DE
102007052067 May 2009 DE
202010012449 Dec 2010 DE
102009053449 Feb 2011 DE
102010060086 Apr 2012 DE
102011106060 Jan 2013 DE
102011118120 May 2013 DE
0092392 Oct 1983 EP
524408 Jan 1993 EP
567325 Oct 1993 EP
0631821 Jan 1995 EP
0650766 May 1995 EP
678334 Oct 1995 EP
0706832 Apr 1996 EP
801002 Oct 1997 EP
987060 Mar 2000 EP
1081639 Mar 2001 EP
1106262 Jun 2001 EP
1247586 Oct 2002 EP
1277519 Jan 2003 EP
1294490 Mar 2003 EP
1299194 Apr 2003 EP
1366823 Dec 2003 EP
1412669 Apr 2004 EP
1424135 Jun 2004 EP
1477232 Nov 2004 EP
1479447 Nov 2004 EP
1504823 Feb 2005 EP
1563913 Aug 2005 EP
1574262 Sep 2005 EP
1602412 Dec 2005 EP
1708822 Oct 2006 EP
1708823 Oct 2006 EP
1718415 Nov 2006 EP
1880771 Jan 2008 EP
1902766 Mar 2008 EP
1902786 Mar 2008 EP
1902876 Mar 2008 EP
1930084 Jun 2008 EP
1964616 Sep 2008 EP
1964616 Sep 2008 EP
2027931 Feb 2009 EP
2106298 Oct 2009 EP
2111920 Oct 2009 EP
2490819 Aug 2012 EP
2576079 Apr 2013 EP
2608890 Jul 2013 EP
398333 Jun 1909 FR
789762 Nov 1935 FR
1410519 Sep 1964 FR
2444501 Jul 1980 FR
2462200 Feb 1981 FR
2 570 140 Mar 1986 FR
2 774 928 Aug 1999 FR
2927824 Aug 2009 FR
190900523 Jun 1909 GB
2 132 916 Jul 1984 GB
2153260 Aug 1985 GB
2372465 Aug 2002 GB
2411235 Aug 2005 GB
1100405 Jun 2009 HK
1096057 Jul 2009 HK
1125067 Aug 2012 HK
1138533 Nov 2012 HK
S5654328 May 1981 JP
S57-75246 May 1982 JP
58-119862 May 1983 JP
S5998757 Jun 1984 JP
S601722 Jan 1985 JP
H01-87805 Jun 1989 JP
H0530749 Apr 1993 JP
H05172678 Jul 1993 JP
674850 Mar 1994 JP
H06215741 Aug 1994 JP
H08196950 Aug 1996 JP
H09117697 May 1997 JP
2001259487 Sep 2001 JP
2003042882 Feb 2002 JP
2003088780 Mar 2003 JP
2004017044 Jan 2004 JP
2005138885 Jun 2005 JP
2007516831 Jun 2007 JP
491092 Jun 2002 TW
I220392 Aug 2004 TW
I303587 Dec 2008 TW
I309584 May 2009 TW
9008456 Aug 1990 WO
9116610 Oct 1991 WO
9207346 Apr 1992 WO
9522409 Aug 1995 WO
9832539 Jul 1998 WO
0112337 Feb 2001 WO
0166261 Sep 2001 WO
0199062 Dec 2001 WO
0200355 Jan 2002 WO
0202242 Jan 2002 WO
0218061 Mar 2002 WO
02085533 Oct 2002 WO
03007252 Jan 2003 WO
03045575 Jun 2003 WO
03069208 Aug 2003 WO
2004037433 May 2004 WO
2004052552 Jun 2004 WO
2005018815 Mar 2005 WO
2005068220 Jul 2005 WO
2005070557 Aug 2005 WO
2005070558 Aug 2005 WO
2005077543 Aug 2005 WO
2005115631 Dec 2005 WO
2006065850 Jun 2006 WO
2007128127 Nov 2007 WO
2007133386 Nov 2007 WO
2007149760 Dec 2007 WO
2009015260 Jan 2009 WO
2009056424 May 2009 WO
2011047876 Apr 2011 WO
2011147555 Dec 2011 WO
2012119664 Sep 2012 WO
2013000524 Jan 2013 WO
2013016474 Jan 2013 WO
Non-Patent Literature Citations (102)
Entry
International Search Report (dated Jun. 20, 2008), Written Opinion (dated Jun. 20, 2008), and International Preliminary Report on Patentability (dated Sep. 14, 2010) from PCT/US2008/03318 filed Mar. 12, 2008.
Response filed Dec. 7, 2015 to Office Action dated Aug. 7, 2015 for U.S. Appl. No. 13/991,285.
Printout from Internet www.ehow.com explaining how to choose a spray gun and stating in item 2 “Nozzle sizes vary between about 1 mm and 2 mm.”, printed Sep. 7, 2012.
Printout from Internet www.bodyshopbusiness.com explaining how to choose nozzle setup in paragraph bridging pp. 1 and 2, giving general rule of thumb of nozzle sizes from 1.3 mm to 2.2 mm, depending on material being sprayed, printed Sep. 7, 2012.
Printout from Internet of pages from brochure of Walther Pilot showing nozzle sizes for spray guns ranging from 0.3 mm to 2.5 mm, dated 2007.
Printout from Internet www.alsacorp.com showing in the paragraph bridging pp. 2 and 3, Model VS-7200 Saber LVLP spray gun with nozzle size 1.3 mm with sizes 1.3 to 2.0 available, printed Aug. 26, 2012.
Printout from Internet of p. 28 from current 3Mtm brochure showing Tip/Nozzle/Air Cap Selection Guide with nozzle sizes from 0.5 mm to 3.0 mm.
Decision by EPO regarding opposition proceedings to revoke patent No. 99926841.0-2425/1108476, corresponding to '387 patent, 2012.
SATA News Publication Dan-Am Jul.-Sep. 1996.
SATA News Publication Dan-Am Oct.-Dec. 1996.
SATA News Publication Dan-Am Apr.-Jun. 1998.
Dan-Am SATA Catalog 6 for spray guns 1991.
Dan-Am SATA Catalog 8 for spray guns 1994.
Dan-Am Catalog 6—51pp published 1991.
Japanese Industrial Standards B 9809 English translation.
Japanese Industrial Standards B 9809 revised Mar. 1, 1991.
SATA News, vol. 21, 2009.
Collision Hub TV Document (image from video clip) printed Oct. 9, 2013.
MyRielsMe.com document from press release printed Oct. 9, 2013.
How to set Air pressure, Utube screenshot printed Oct. 9, 2013.
Ohio EPA Letty to Tony Larimer, response to letter dated Aug. 2006.
Pinahs Ben-Tzvi et al, A conceptual design . . . , Mechatrronics 17 (2007) p. 1-13.
On line ad from Amazon.com printed Oct. 14, 2013.
Rone et al, MEMS-Baed Microdroplet Generation with Integrated Sensing, COMSOL, 2011.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2004/005381 file May 19, 2004.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2004/011998 filed Oct. 23, 2004.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2005/000435 filed Jan. 18, 2005.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2005/00437 filed Jan. 18, 2005.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2008/063344, filed Oct. 6, 2008.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2010/002392 filed Apr. 20, 2010.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2011/002544 filed May 21, 2011.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2011/066665 filed Sep. 26, 2011.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2010/003399 filed Jun. 7, 2010.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2011/5842 filed Dec. 2, 2010.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2012/01939 filed May 5, 2012.
International Search Report, Written Opinion and International Preliminary Report on Patentability for PCT/EP2009/06992 filed Sep. 29, 2009.
Internet Archive Wayback Machine [online] [captured Sep. 25, 2012] [retrieved on Sep. 8, 2014] retrieved from the Internet URL:http://web.archive.org/web/20120925210554/http://www.sata.com/index.php?id=sal-check&no cache=1&L=11.
JP Office Action issued agains JP Patent App. 2012-508926 on Feb. 25, 2014 with English translation.
Canadian Office Action dated Nov. 21, 2012 for related application CA2741703.
Chinese Search Report dated Dec. 5, 2012 for related application CN200980135429.9.
Chinese Office Action dated Dec. 13, 2012 for related application CN200980135429.9.
German Search Report for DE 20 2008 014 389.6 completed Jul. 13, 2009.
Office Action dated Nov. 18, 2014 for U.S. Appl. No. 14/113,649.
Notice of Allowance dated Nov. 19, 2014 for U.S. Appl. No. 29/486,223.
Office Action dated Dec. 31, 2014 for U.S. Appl. No. 13/380,949.
Restriction Requirement dated Jan. 9, 2015 for Design U.S. Appl. No. 29/469,049.
Response to Office Action filed Dec. 2, 2014 for U.S. Appl. No. 29/487,679.
Notice of Allowance dated Jan. 15, 2015 for Design U.S. Appl. No. 29/490,620.
Office Action dated Jan. 14, 2015 for Design U.S. Appl. No. 29/447,887.
Hercules Paint Gun Washers brochure publish date Jan. 2012, [online], [site visited Jan. 7, 2015], <http://www.herkules.us/pdfs/L00761-Hercules-Gun—Washers-4-page-brochure.pdf>.
Jetclean GUn Cleaner Terry's Auto Supply, google publish date Aug. 4, 2011, [online], [site visited Jan. 7, 2015], <http://secure.terrys.net/viewProduct.php?productID=FT.FHAZ1005>.
Restriction Requirement dated Feb. 6, 2015 for Design U.S. Appl. No. 29/486,232.
Office Action dated Mar. 30, 2015 for U.S. Appl. No. 13/698,417.
Responde to Office Action filed Apr. 14, 2015 to Office Action dated Jan. 14, 2015 for U.S. Appl. No. 29/447,887.
Response filed Jul. 20, 2015 for Office Action dated Mar. 30, 2015 for U.S. Appl. No. 13/698,417.
Notice of Allowance dated Apr. 30, 2015 for U.S. Appl. No. 29/447,887.
Chinese Office Action dated Oct. 28, 2014 and Search Report dared Oct. 15, 2014 for Chinese Application No. 2011800266029.
Australian Examination Report dated Oct. 30, 2012 for Australian Application No. 2010268870.
Notice of Allowance dated Apr. 24, 2015 for Design U.S. Appl. No. 29/486,232.
Restriction Requirement dated Jan. 22, 2015 for U.S. Appl. No. 13/698,417.
Response filed Mar. 23, 2015 to Restriction Requirement dated Jan. 22, 2015 for U.S. Appl. No. 13/698,417.
Response filed Apr. 6, 2015 to Office Action dated Feb. 6, 2015 for Design U.S. Appl. No. 29/486,232.
Response filed Mar. 31, 2015 to Office Action dated Dec. 31, 2014 for U.S. Appl. No. 13/380,949.
Japanese Office Action dated Jun. 11, 2014 for Japanese Patent Application No. 2012-518769.
Australian Examination Report dated Nov. 11, 2014 for Australian patent Application No. 2011257605.
Japanese Notice of Allowance mailed Jan. 13, 2015 for Japanese Patent Application No. 20121518769.
Application filed Dec. 11, 2011 for U.S. Appl. No. 13/380,949.
Chinese Office Action dated Jan. 28, 2014 and Search Report dated Jan. 21, 2014 for Chinese Application No. 201080030935.4.
Search Report dated Apr. 24, 2010 for German Application No. 10 2009 032 399.6-51.
Application filed Oct. 24, 2013 for U.S. Appl. No. 14/113,649.
Response filed May 18, 2015 to Office Action dated Nov. 18, 2014 for U.S. Appl. No. 14/113,649.
Final Office Action dated Jul. 20, 2015 for U.S. Appl. No. 14/113,649.
German Search Report dated Mar. 25, 2014 for German Application No. 202013105779-7.
Application filed Nov. 16, 2012 for U.S. Appl. No. 13/698,417.
Application filed Jun. 2, 2013 for U.S. Appl. No. 13/991,285.
English translation of application filed Aug. 13, 2013 for Application filed Jun. 2, 2013 for U.S. Appl. No. 13/991,285.
Restriction Requirement dated May 27, 2015 for U.S. Appl. No. 13/991,285.
Application filed Jan. 29, 2015 for Design U.S. Appl. No. 29/516,073.
Application filed Jan. 29, 2015 for Design U.S. Appl. No. 29/516,082.
Application filed Mar. 3, 2015, 2015 for Design U.S. Appl. No. 29/519,198.
Response to Restriction Requirement filed Jul. 27, 2015 to Restriction Requirement dated May 27, 2015 for U.S. Appl. No. 13/991,285.
Application filed Jul. 31, 2015 for U.S. Appl. No. 14/815,210.
Final Office Action dated Aug. 4, 2015 for U.S. Appl. No. 13/380,949.
Notice of Allowance dated Aug. 3, 2015 for U.S. Appl. No. 29/486,232.
Office Action dated Aug. 7, 2015 for U.S. Appl. No. 13/991,285.
Response filed Dec. 21, 2015 to Office Action dated Jul. 20, 2015 for U.S. Appl. No. 14/113,649 (36).
Response filed Oct. 6, 2015 to Notice of Non-Compliant Amendment for U.S. Appl. No. 13/698,417.
Notice of Non-Compliant Amendment dated Aug. 10, 2015 for U.S. Appl. No. 13/698,417.
Final Office Action dated Oct. 16, 2015 for U.S. Appl. No. 13/698,417.
Extended European Search Report dated Apr. 17, 2015 for European Application No. 14004167.4.
Office Action dated Feb. 19, 2016 for U.S. Appl. No. 14/113,649.
Final Office Action dated Feb. 25, 2016 for U.S. Appl. No. 13/698,417.
Restriction Requirement dated Mar. 25, 2016 for Design U.S. Appl. No. 29/516,082.
Notice of Allowance dated Jan. 22, 2016 for U.S. Appl. No. 13/991,285.
Notice of Allowance dated Jan. 19, 2016 for Design U.S. Appl. No. 29/539,615.
Notice of Allowance dated Jan. 27, 2016 for Design U.S. Appl. No. 29/510,723.
Response to Office Action filed Feb. 16, 2016 for U.S. Appl. No. 13/698,417.
Screen shot of a SATA product (SATAjet B) description retrieved on Feb. 12, 2016 from www.sata.com/index.php.
“The Hot Rolling Process;” California Steel; retrieved on Feb. 12, 2016 from http://www.californiasteel.com/GetPublicFile.aspx?id=53.
Response restriction requirement filed May 23, 2015 for Design U.S. Appl. No. 29/516,082.
German Search Report dated Apr. 12, 2016 for related German Application No. 10 2015 008 735.5.
Response filed Apr. 27, 2016 to Office Action dated Jan. 29, 2016 for U.S. Appl. No. 13/380,949.
Related Publications (1)
Number Date Country
20150165463 A1 Jun 2015 US