The disclosure relates to the field of spraying, and more particularly to a spray gun and a trigger for the same.
The spray gun is a tool commonly used in industry, for instance, it may be used to spray paint to surfaces of various articles such as furniture, machines and particularly vehicles (corresponding automobile bodies). The spray gun can comprise a material container for receiving a paint material and a spray gun body for spraying the paint material.
When the trigger 11 is pressed in excess of a certain point, the paint needle 10 is moved backwards, leaves the seat in the paint nozzle 6, then the paint nozzle 6 is opened. The paint in the paint channel 42 can flow out of the paint nozzle 6. The compressed air that is blown out of the air nozzle 5 generates a vacuum that sucks the paint out of the paint nozzle 6. Additionally, the paint is pressed out of the nozzle by the following paint.
The trigger 11 still can rotate around the axis of borehole 13. When the trigger 11 is actuated, the trigger roller 16 is moved into the window 14. As shown in
When the trigger 11 is actuated, the trigger roller 16 is moved backward in a direction toward the puller 17. After some millimetres of movement, during which the air piston head 12 in
The disadvantages of the prior art disclosed above include the following: It is necessary to remove the paint needle 10 and other parts out of the spray gun 1, e.g. when the spray gun 1 or parts thereof need to be cleaned or repaired. The spray gun 1 should be re-assembled after the cleaning or repair. When the paint needle 10 is arranged through the borehole in the trigger roller 16, the trigger roller 16 must have a certain orientation. This is because the axis of the borehole 16b may not have a too big angle to the axis of the paint needle 10. If the both axes coincide, it is easy to arrange the paint needle 10 in the borehole 16b, because the borehole 16b directs into the direction of the paint needle 10. However, if the trigger roller 16 is turned and the borehole 16b directs up- or downwards, it is not possible to arrange the paint needle 10 in the borehole 16b.
In the last case, the trigger roller 16 has to be partially pulled out of the trigger's holes, turned into the right position and then pushed into the trigger's holes without further turning the trigger roller 16.
This is time-consuming and can be frustrating for a user of the spray gun. Further, when the trigger roller 16 has a wrong orientation, it can happen that the user pushes the paint needle 10 against the outer surface of the trigger roller 16 or scratches it against an inner wall of the borehole 16b, by what the paint needle 10 can easily be damaged. As the paint needle is a very exactly and precisely manufactured part and critical for the spray quality of the spray gun, small damages can have a very bad effect to the spraying result. Further, as the paint needle acts as a sealing of the paint nozzle when the spray gun is not operated, a damaged paint needle can be the reason for a bad sealing effect. In that case, the paint can drop out of the paint nozzle.
In view of this, a patent document (CN 203508251 C) proposes an anti-rotation mechanism provided on a spray gun and used for orienting and locking a trigger roller, so as to solve the above-mentioned problems that the trigger roller needs to be oriented and it is not easy to install the trigger roller.
However, in the above patent document (CN 203508251 C), in the process of assembling the trigger to the spray gun body, before the trigger bolt 15 is inserted through the upper holes of the trigger arms 11a, 11b and the borehole 13, the upper holes of the two trigger arms 11a, 11b should be aligned to the borehole 13 in the spray gun body 2, and the lower holes of the trigger arms 11a, 11b should be aligned to the window 14 in the upper spray gun body 2, thus there is a problem that it is not easy for the user to detach and install the trigger.
In order to address the above-identified issues, the disclosure relates to a spray gun and a trigger for the same, wherein the trigger can be more easily and reliably assembled onto a spray gun body and reduce the possibility of damaging parts of the spray gun.
A first aspect of the disclosure provides a one-armed trigger for a spray gun, comprising a single connecting arm, secured to a left side or a right side of a spray gun body of the spray gun; an operating portion, provided at a lower end of the connecting arm; and an actuating component, provided on the connecting arm.
By providing the connecting arm of the trigger as a single arm, the installation can be completed just by aligning an installation component (for example, installation sleeve) provided on the single arm to the single installation hole on the spray gun body, thus it is easier to carry out the operation compared with the prior art in which the orifices on two arms of the U-shaped arm should be aligned to the orifices at both sides of the spray gun body for assembling, moreover, one side (a left side or a right side) of the spray gun body can be manufactured into a bigger flat surface, so that a sign marking the spray gun can be arranged on this bigger surface, i.e. the spray gun is made more pleasing.
In one preferable embodiment according to the disclosure, the one-armed trigger further comprises: an installation sleeve, provided at an upper end of the connecting arm; and a fastening means, passing through the installation sleeve, used to pivotably secure the one-armed trigger onto the spray gun body.
In one preferable embodiment according to the disclosure, the fastening means is a fastening screw, the fastening screw comprising: a rod portion; a head portion located at one end of the rod portion and having a diameter bigger than the rod portion; and a threaded portion located at the other end of the rod portion and having a diameter smaller than the rod portion.
In one preferable embodiment according to the disclosure, the fastening means comprises: a first fastening element, having a circumferential collar and a threaded portion used to be fastened to the spray gun body; a second fastening element, the second fastening element being co-axially fixed and connected with the first fastening element; and the installation sleeve, sleeved outside the first fastening element and the second fastening element, and arranged between the head portion of the second fastening element and the circumferential collar with a clearance along an axial direction.
In one preferable embodiment according to the disclosure, the circumferential collar and the threaded portion of the first fastening element are located at a first end of the first fastening element, the first fastening element internally has a threaded hole opened towards a second end of the first fastening element; the second fastening element has a rod portion and a head portion, the rod portion of the second fastening element matches the threaded hole of the first fastening element, and the head portion of the second fastening element presses against the second end of the first fastening element.
In one preferable embodiment according to the disclosure, the fastening means further comprises a ring, the head portion of the second second fastening element presses against the second end of the first fastening element in a manner of the ring being sandwiched between the head portion of the second fastening element and the second end of the first fastening element.
In one preferable embodiment according to the disclosure, the installation sleeve has a first end provided on the connecting arm and a second end against which the circumferential collar abuts, and a distance from the second end of the first fastening element to the second end of the installation sleeve is bigger than a distance from the first end of the installation sleeve to the second end of the installation sleeve.
In one preferable embodiment according to the disclosure, the connecting arm is provided with a recess to receive a head portion of the second fastening element.
In one preferable embodiment according to the disclosure, the installation sleeve and the connecting arm are formed in one piece.
In one preferable embodiment according to the disclosure, the first fastening element, the second fastening element and the ring are fixed against each other, and the installation sleeve is rotatable with respect to these components as a whole.
In one preferable embodiment according to the disclosure, the actuating component comprises a first extension element and a second extension element extending from the connecting arm, and a gap is defined between the first extension element and the second extension element.
In one preferable embodiment according to the disclosure, the first extension element and the second extension element extending from the connecting arm in a manner of non-parallel to each other.
In one preferable embodiment according to the disclosure, a width of the first extension element is different from an extending width of the second extension element.
In one preferable embodiment according to the disclosure, an extension element of the first extension element and the second extension element close to the operating portion of the trigger has a smaller width.
In one preferable embodiment according to the disclosure, the connecting arm has a recess in a lateral surface.
A second aspect of the disclosure provides a spray gun, comprising a spray gun body, a paint needle, a puller secured to the paint needle and a trigger, the paint needle being movably arranged inside the spray gun body, and the trigger comprising an actuating component configured to be capable of pushing the puller so as to make the paint needle to be moved, characterized in that the trigger is a one-armed trigger, the trigger has a single connecting arm secured to a left side or a right side of the spray gun body, and the actuating component is provided on the connecting arm of the trigger.
In one preferable embodiment according to the disclosure, the trigger further comprises: an installation sleeve, provided at an upper end of the connecting arm; and a fastening means, passing through the installation sleeve, used to pivotably secure the one-armed trigger onto the spray gun body.
In one preferable embodiment according to the disclosure, the spray gun body is provided with an installation hole for the installation sleeve and the fastening means to be inserted thereinto so as to pivotably secure the one-armed trigger onto the spray gun body.
In one preferable embodiment according to the disclosure, the installation hole comprises a first section having a first diameter and a second section having a second diameter smaller than the first diameter.
In one preferable embodiment according to the disclosure, the fastening means is a fastening screw, the fastening screw comprising: a rod portion, received in the installation sleeve; a head portion located at one end of the rod portion and having a diameter bigger than the rod portion; and a threaded portion located at the other end of the rod portion and having a diameter smaller than the rod portion, the threaded portion being fastened into the second section of the installation hole.
In one preferable embodiment according to the disclosure, the fastening means comprises: a first fastening element, having a circumferential collar and a threaded portion used to be fastened into the second section of the installation hole; a second fastening element, the second fastening element being co-axially fixed and connected with the first fastening element; and the installation sleeve, sleeved outside the first fastening element and the second fastening element, and arranged between a head portion of the second fastening element and the circumferential collar with a clearance along an axial direction.
In one preferable embodiment according to the disclosure, the circumferential collar and the threaded portion of the first fastening element are located at a first end of the first fastening element, the first fastening element internally has a threaded hole opened towards a second end of the first fastening element; the second fastening element has a rod portion and a head portion, the rod portion of the second fastening element matches the threaded hole of the first fastening element, and the head portion of the second fastening element presses against the second end of the first fastening element.
In one preferable embodiment according to the disclosure, the fastening means further comprises a ring, the head portion of the second fastening element presses against the second end of the first fastening element in a manner of the ring being sandwiched between the head portion of the second fastening element and the second end of the first fastening element.
In one preferable embodiment according to the disclosure, the installation sleeve has a first end provided on the connecting arm and a second end against which the circumferential collar abuts, and a distance from the second end of the first fastening element to the second end of the installation sleeve is bigger than a distance from the first end of the installation sleeve to the second end of the installation sleeve.
In one preferable embodiment according to the disclosure, the connecting arm is provided with a recess so that the rod portion of the second fastening element passes through the recess to be thereby fastened into the threaded hole of the first fastening element, and the head portion of the second fastening element is arranged in the recess.
In one preferable embodiment according to the disclosure, the first fastening element, the second fastening element and the ring are fixed against each other, and the installation sleeve is rotatable with respect to these components as a whole.
In one preferable embodiment according to the disclosure, there is a gap between the first end of the installation sleeve provided on the connecting arm and an end of the ring abutting against the second end of the first fastening element.
In one preferable embodiment according to the disclosure, the installation sleeve and the connecting arm are formed in one piece.
In one preferable embodiment according to the disclosure, the actuating component comprises a first extension element and a second extension element extending from the connecting arm, and a gap is defined between the first extension element and the second extension element so as to make the paint needle pass therethrough.
In one preferable embodiment according to the disclosure, the gap defined between the first extension element and the second extension element is increased as far away from the puller.
In one preferable embodiment according to the disclosure, a width of the first extension element is different from an extending width of the second extension element.
In one preferable embodiment according to the disclosure, an extension element of the first extension element and the second extension element close to an operating portion of the trigger has a smaller width.
In one preferable embodiment according to the disclosure, the spray gun further comprises a protective element, and the protective element is sleeve-connected on the actuating component so as to push the puller.
In one preferable embodiment according to the disclosure, a left side or a right side of the spray gun body is provide with a window so as to expose the paint needle and the puller, and the connecting arm is assembled to the spray gun body in a manner of covering the window.
In one preferable embodiment according to the disclosure, the connecting arm has a recess in a lateral surface.
The trigger and the spray gun according to the disclosure provide convenience of disassembling between the trigger and the spray gun, and can make the appearance of the spray gun more pleasing, meanwhile also can avoid damage to parts such as the paint needle.
The drawings constitute a portion of the description for further understanding of the disclosure. These drawings illustrate the embodiments of the disclosure and explain the principle of the disclosure together with the description. In the drawings, the same part is represented by the same reference sign. In the drawings,
In the detailed description below, reference is made to the figures which constitute a portion of the present description, wherein embodiments which can implement the disclosure are illustratively shown. With regard to the figures, directional terms such as “top”, “bottom”, “inner”, “outer” and so on are used with reference to directions in the described figures. Since components in the examples of the disclosure can be placed in many different directions, the directional terms are merely used for illustration without any restrictions. It should be understood that other examples can be used, and structural or logical changes can be made without departing from the scope of the disclosure. Therefore, the following detailed description should not be construed as limiting, and the disclosure is defined by the attached claims.
It should be understood that features in different exemplary examples described herein can be combined with each other unless otherwise specified.
Reference will be made to
As shown in
Further, the handle 21 comprises a first portion 21a having a first end connected to the spray gun body 2; a second portion 21b separated from the first portion 21a by a distance; and a connecting portion 21c connecting a second end of the first portion 21a with a first end of the second portion 21b. The second end of the second portion 21b is provided with a blocking portion 21d, and this blocking portion 21d is used to prevent the fingers gripping the second portion 21b from sliding upwards. Gun body 2, handle 21 and handle parts 21a, 21b, 21c and 21d are preferably made in one piece, particularly the part can be manufactured by forging.
Since the trigger 11 having a single connecting arm 30 is used, during the process of assembling the trigger 11 to the spray gun body 2, the installation inconvenience in the prior art that two arm portions of the U-shaped arm should be aligned to two installation holes on the spray gun body and meanwhile the hole of the actuating component should be aligned to the paint needle so that the installation can be completed is overcome, that is, the installation and dismantling convenience is improved.
Besides, the spray gun body 2 of the spray gun 1 has a first surface 2a for installing the connecting arm and a second surface 2b opposite to the first surface 2a, wherein the first surface 2a is provided with a window 14 so as to expose the paint needle 10 and the puller 17, and the second surface 2b is in an integral bulk-shape so as to sign corresponding picture, character and so on, for example, Logo or trademark and the like of a company, so that the spray gun seems more pleasing.
Specifically, as shown in
Further as shown in
Besides, although
The trigger 11, particularly the connecting arm 30, may have a recess 31 in its lateral surface, preferably on an inner surface and preferable around the first extension element 35a and the second extension element 35b. By that, material can be saved and the trigger 11 becomes lighter.
Preferably, a width of the first extension element 35a is different from an extending width of the second extension element 35b, as shown in
Besides, the spray gun body 2 is provided with an installation hole 38 (as shown in
Next, various examples of composition of the fastening means used for assembling the trigger 11 onto the spray gun body 2 is described with reference to
As shown in
Alternatively, the fastening means further can comprise a ring 64, and the ring 64 is sandwiched between the head portion 61 of the second fastening element 60 and the second end of the first fastening element 50 and presses against the second end of the first fastening element 50, as shown in
Besides, the installation sleeve 37 has a first end provided on the connecting arm 30 and a second end against which the circumferential collar 54 abuts, and a distance L2 from the second end of the first fastening element 50 to the second end of the installation sleeve 37 is bigger than a distance L1 from the first end of the installation sleeve 37 to the second end of the installation sleeve 37. Or in other words, a distance L2 from the second end of the first fastening element 50 to the circumferential collar 54 of the first fastening element 50 is bigger than a distance L1 from the first end of the installation sleeve 37 to the second end of the installation sleeve 37.
A recess 37a is provided on the connecting arm 30 so that the rod portion 62 of the second fastening element 60 passes through the recess 37a to be thereby fastened into the threaded hole 53 of the first fastening element 50, and the head portion 61 of the second fastening element 60 is arranged in the recess 37a.
Besides, the first fastening element 50, the second fastening element 60 and the ring 64 are fixed against each other, and the installation sleeve 37 is rotatable with respect to these components as a whole.
There is a gap between the first end of the installation sleeve 37 provided on the connecting arm 30 and an end of the ring 64 abutting against the second end of the first fastening element 50.
Through the above-mentioned structure, the second end of the first fastening element 50 is enabled to protrude into the recess 37a of the connecting arm 30, thus a gap 66 can be established between a surface 62 of the first end of the installation sleeve 37 and the head portion 61 or the ring 64, so as to allow the first fastening element 50, the second fastening element 60 and the ring 64 to act as a whole to be rotatable with respect to the installation sleeve 37, or, as the the first fastening element 50, the second fastening element 60 and the ring 64 as a whole are fixed in the gun body, the installation sleeve 37 and the trigger 11, to which the installation sleeve 37 is attached, are rotatable with respect to these components as a whole.
The installation sleeve 37 can be formed in one piece with the operating portion 47 and the connecting arm 30 of the trigger 11, and the circumferential collar of the first fastening element 50 abuts against a surface 56 of the second end of the installation sleeve 37.
For the above-mentioned structure, in the situation that the threaded portion 52 of the fastening means is screwed into the second section 38b of the installation hole 38 of the spray gun body 2, meanwhile the installation sleeve 37 is received in the first section 38a, when the trigger 11 is actuated, the connecting arm 30 having the installation sleeve 37 and the operating portion 47 are rotatable with respect to the first fastening element 50 and the second fastening element 60, so that the first extension element 35a and the second extension element 35b can push the puller 17 to move towards a direction away from the paint nozzle, so that the paint is sprayed out of the paint nozzle.
As shown in
When the trigger 11 is mounted onto the spray gun body 2, the first extension element 35a and the second extension element 35b are located in front of the puller 17, so that when the trigger 11 is actuated, the first extension element 35a and the second extension element 35b push the puller 17 backwards to open the nozzle.
Besides, in the above-mentioned example, the first extension element 35a and the second extension element 35b can be covered by a protective element 300 so as to push the puller through the protective element 300, as shown in
Further, as it can be seen in
It is noted that in Example 1 and Example 2 provided above, when the trigger 11 is actuated to spray the paint, the blocking portion 47b of the trigger 11 and the blocking portion 21b of the handle are aligned to each other, so that the trigger 11 can be conveniently and easily operated so as to spray the paint.
Although the trigger described above is described taking the structure of the spray gun (
For the descriptive purpose, a plurality of improvements on the disclosure are described through several embodiments above. However, those skilled in the art should understand that various above improvements on the disclosure absolutely can be independently applied to the spray gun, and it is unnecessary to combine all the features to use.
The descriptions above are only preferable examples of the application, which are not used to restrict the disclosure. For those skilled in the art, the disclosure may have various changes and variations. Any modifications, equivalent substitutions, improvements etc. within the spirit and principle of the disclosure shall all be included in the scope of protection of the disclosure.
Number | Date | Country | Kind |
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2016 2 0913023 U | Aug 2016 | CN | national |
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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. |
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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 (Exhibit 1023 in IPR 2013-0111). |
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 (Exhibit 1024 in IPR 2013-0111). |
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, (Exhibit 1025 in IPR 2013-0111). |
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 (Exhibit 1026 in IPR 2013-0111). |
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., (Exhibit 1027 in IPR 2013-0111). |
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SATA News, vol. 21, 2009 (Exhibit 2010 in IPR 2013-0111). |
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MyRielsMe.com document from press release printed Oct. 9, 2013 (Exhibit 2012 in IPR 2013-0111). |
How to set Air pressure, Utube screenshot printed Oct. 9, 2013 (Exhibit 2013 in IPR 2013-0111). |
Ohio EPA Letty to Tony Larimer, response to letter dated Aug. 2006 (Exhibit 2014 in IPR 2013-0111). |
Pinahs Ben-Tzvi et al, A conceptual design . . . , Mechatrronics 17 (2007) p. 1-13 (Exhibit 2015 in IPR 2013-0111). |
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Canadian Office Action dated Nov. 21, 2012 for related application CA2741703. |
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German Search Report for DE 20 2008 014 389.6 completed Jul. 13, 2009. |
Response to Final Office Action and RCE dated Nov. 29, 2016 in U.S. Appl. No. 14/113,649. |
Response to Office Action filed Feb. 16, 2016 for U.S. Appl. No. 13/698,417. |
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Final Office Action in U.S. Appl. No. 14/113,649 dated Jun. 22, 2017. |
Response filed in U.S. Appl. No. 15/143,698 dated Jul. 3, 2017. |
U.S. Appl. No. 14/815,210 Office Action dated Apr. 3, 2018. |
U.S. Appl. No. 14/113,649 Response filed Mar. 3, 2018. |
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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. |
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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. |
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Notice of Allowance dated Jan. 15, 2015 for Design U.S. Appl. No. 29/490,620. |
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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>. |
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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. |
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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 dated Jan. 13, 2015 for Japanese Patent Application No. 2012/518769. |
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. |
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Application filed Dec. 17, 2014 for U.S. Appl. No. 14/572,998. |
German Search Report dated Mar. 25, 2014 for German Application No. 202013105779-7. |
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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. |
Final Office Action dated Jul. 20, 2015 for U.S. Appl. No. 14/113,649. |
Notification of the First Office Action with search report dated Aug. 24, 2015 for Chinese Application No. 201280020519.5 (related to U.S. Appl. No. 14/113,649), 13 pages. |
Notification of the Second Office Action dated May 16, 2016, for Chinese Application No. 201280020519.5 (related to U.S. Appl. No. 14/113,649), 5 pages. |
Japanese Office Action for JP2014-517485 (related to U.S. Appl. No. 14/113,649), dated Jul. 5, 2016, 16 pages. |
German Search Report for Application No. 10 2016 009 957.7 dated Apr. 21, 2017. |
European Search Report dated May 8, 2017 for Application No. EP16203544. |
“Spray Guns/sata.com”, Oct. 18, 2015, XP055364928 URL:http://web.archive.org/web/20151018205307/http://www.sata.com/index.php?id=lackierpistolen&L=11 [gefunden am Apr. 13, 2017]; reprinted on Dec. 8, 2017. |
“SATAjet 5000 B Lackierpistolen | Bechersysteme | Atemschutz | Filtertechnik | Zubehor So flexibel wie Ihre Aufgaben” Apr. 11, 2017, XP055364477 Gefunden im Internet: URL:https/www.sata.com/uploads/tx_pxspecialcontent/00_SATAjet_5000_B.pdf [gefunden am Apr. 12, 2017]; English translation of full brochure attached. |
Amendments submitted to European Patent Office dated Dec. 3, 2017 for Application No. EP16203544 (with English translation of chart on p. 3). |
German Search Report dated Apr. 21, 2017 for application No. 10 2016 009 957.7. |
Written Opinion dated Sep. 8, 2016 for International Application No. PCT/EP2016/061057 filed May 18, 2016. |
Office Action from U.S. Appl. No. 15/143,698 dated Jan. 5, 2017. |
German Search Report for German Application No. 10 2015 016 474.0 dated Aug. 9, 2016, 14 pages. |
Notice of Allowance in U.S. Appl. No. 29/556,463, filed Mar. 1, 2016, 9 pages. |
Notice of Allowance in U.S. Appl. No. 29/555,656, filed Feb. 24, 2016, 5 pages. |
Notice of Allowance dated Apr. 18, 2016 for U.S. Appl. No. 14/572,998. |
Response filed Apr. 27, 2016 to Office Action dated Jan. 29, 2016 for U.S. Appl. No. 13/380,949. |
German Search Report dated Apr. 12, 2016 for related German Application No. 10 2015 008 735.5. |
Final Office Action dated Dec. 7, 2017 for U.S. Appl. No. 14/815,210. |
Response to Office Action dated Jun. 25, 2018 for U.S. Appl. No. 14/815,210. |
Response to Final Office Action dated Aug. 22, 2018 for U.S. Appl. No. 14/113,649. |
Office Action dated Jun. 30, 2017 for U.S. Appl. No. 14/815,210. |
Second Chinese Office Action dated Jun. 24, 2015 for Chinese Application No. 2011800266029. |
Third Chinese Office Action dated Nov. 30, 2015 for Chinese Application No. 2011800266029. |
Final Office Action dated Aug. 29, 2016 for U.S. Appl. No. 14/113,649. |
Office Action dated Nov. 2, 2016 for U.S. Appl. No. 11/949,122. |
May 22, 2018 Final Office Action for U.S. Appl. No. 14/113,649. |
Office Action dated Dec. 31, 2015 for U.S. Appl. No. 14/572,998. |
Notice of Allowance dated Jan. 19, 2016 for Design U.S. Appl. No. 29/539,615. |
Notice of Allowance dated Jan. 22, 2016 for U.S. Appl. No. 13/991,285. |
Restriction Requirement Office Action dated Aug. 28, 2018 in U.S. Appl. No. 15/679,533. |
Notice of Allowance dated Sep. 14, 2018 in U.S. Appl. No. 29/618,945. |
Notice of Allowance dated Sep. 14, 2018 in U.S. Appl. No. 14/113,649. |
Final Office Action dated Sep. 12, 2018 in U.S. Appl. No. 14/815,210. |
European Search Report dated Jan. 24, 2018 for Application No. 17186905. |
Office Action dated Jan. 25, 2019 for U.S. Appl. No. 15/379,972. |
Restriction Requirement dated Mar. 18, 2019, for U.S. Appl. No. 29/596,869. |
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Office Action, dated Jan. 15, 2019, for U.S. Appl. No. 15/679,533. |
Reply to Office Action filed Oct. 11, 2019 for U.S. Appl. No. 15/679,461. |
Search Report dated Feb. 22, 2019 for German Patent Application No. 10 2018 118 738.6. |
Search Report dated Feb. 8, 2019 for German Patent Application No. 10 2018 118 737.8. |
Notice of Allowance dated Jul. 1, 2019 for U.S. Appl. No. 15/379,972. |
Notice of Allowance dated Jul. 9, 2019 for U.S. Appl. No. 15/679,482. |
European Search Report, dated Jan. 20, 2020, for European Application No. 19183380. |
Final Office Action dated Aug. 12, 2019 from U.S. Appl. No. 14/815,210. |
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Final Office Action for U.S. Appl. No. 15/679,461 dated Jun. 11, 2019. |
Final Office Action for U.S. Appl. No. 15/679,533 dated Jul. 12, 2019. |
Japanese Office Action dated Sep. 25, 2019, for Japanese Publication No. 2015-149405, 4 pages. |
Response to Final Office Action, dated Nov. 11, 2019, for U.S. Appl. No. 14/815,210, 20 pages. |
Office Action, dated Nov. 20, 2019, for U.S. Appl. No. 15/575,549, 12 pages. |
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Response to Office Action dated Apr. 9, 2019 for U.S. Appl. No. 15/679,533 (22 pages). |
European Search Report dated Feb. 21, 2020 for Application No. 19183382.1. |
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Final Office Action dated Feb. 27, 2020 for U.S. Appl. No. 15/575,549. |
German Search Report dated Mar. 18, 2016 for Application No. 20 2015 003 664.3, 5 pages. |
Chinese Search Report dated Feb. 21, 2019 for Application No. 2016800293781, 3 pages. |
Response to Office Action dated Mar. 9, 2020 for U.S. Appl. No. 14/815,210. |
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Number | Date | Country | |
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20180050362 A1 | Feb 2018 | US |