Electronic painting frame and scent release method for electronic painting frame
US-2020093291-A1 · Mar 26, 2020 · US
US11980302B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11980302-B2 |
| Application number | US-202017106780-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 30, 2020 |
| Priority date | Jun 1, 2018 |
| Publication date | May 14, 2024 |
| Grant date | May 14, 2024 |
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An air blower includes: a panel ( 3 ); a frame member ( 5 ) arranged to surround the panel ( 3 ) and having a blowout port ( 13 a, 13 b, 13 c, 13 d, 13 e, 13 f, 13 g ) of air formed therein; and a fan ( 11 a, 11 b, 11 c, 11 d, 11 e, 11 f, 30 ) that sends air to the blowout port ( 13 a, 13 b, 13 c, 13 d, 13 e, 13 f, 13 g ). The frame member ( 5 ) produces airflows that are blown out from at least three directions and collide with each other, thereby producing an air current going forward to the panel ( 3 ).
Opening claim text (preview).
The invention claimed is: 1. An air blower comprising: a panel ( 3 ); a frame member ( 5 ) that is arranged to surround the panel ( 3 ) and has four blowout ports ( 13 a , 13 b , 13 c , 13 d ) of air formed therein; and a fan ( 11 a , 11 b , 11 c , 11 d ) that sends air to the four blowout ports ( 13 a , 13 b , 13 c , 13 d ), respectively, the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) of the frame member ( 5 ) including a first blowout port ( 13 a ), a second blowout port ( 13 b ), a third blowout port ( 13 c ), and a fourth blowout port ( 13 d ), the first blowout port ( 13 a ) being arranged across the panel ( 3 ) from the second blowout port ( 13 b ), the third blowout port ( 13 c ) being arranged across the panel ( 3 ) from the fourth blowout port ( 13 d ), the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) causing airflows to be blown out in mutually different directions, the frame member ( 5 ) causing the airflows respectively blown out from the first blowout port ( 13 a ), the second blowout port ( 13 b ), the third blowout port ( 13 c ), and the fourth blowout port ( 13 d ) to collide with each other, thereby producing an air current going forward relative to the panel ( 3 ). 2. The air blower of claim 1 , wherein the panel ( 3 ) is formed in a rectangular shape, and each of the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) is formed at a position corresponding to an associated one of sides of the panel ( 3 ). 3. The air blower of claim 1 , wherein the panel ( 3 ) is formed in a round shape, and the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) are formed along an outer periphery of the panel ( 3 ). 4. The air blower of claim 1 , wherein The fan ( 11 a , 11 b , 11 c , 11 d ) is provided for each of the four blowout ports ( 13 a , 13 b , 13 c , 13 d ). 5. The air blower of claim 4 , wherein the fans ( 11 a , 11 b , 11 c , 11 d ) are cross-flow fans. 6. The air blower of claim 4 , further comprising: a controller ( 7 ) that adjusts at least one of a flow velocity, flow rate, and direction of the airflows blown out from each of the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) to change a direction of the air current, wherein the controller ( 7 ) adjusts rotational speeds of the fans ( 11 a , 11 b , 11 c , 11 d ). 7. The air blower of claim 1 , wherein the frame member ( 5 ) includes an air passage ( 14 ) that guides the air blown out from the fan ( 11 a , 11 b , 11 c , 11 d ) to the four blowout ports ( 13 a , 13 b , 13 c , 13 d ). 8. The air blower of claim 1 , wherein the frame member ( 5 ) blows out the airflows that go toward a center of the panel ( 3 ) along a surface of the panel ( 3 ) so that the airflows collide with each other in front of the center of the panel ( 3 ). 9. The air blower of claim 1 , wherein the panel ( 3 ) is a painting, a photograph, or a display that displays an image. 10. The air blower of claim 1 , further comprising: a controller ( 7 ) that adjusts at least one of a flow velocity, flow rate, and direction of the airflows blown out from the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) to change a direction of the air current. 11. The air blower of claim 10 , wherein the controller ( 7 ) is able to adjust the flow rate of each of the airflows blown out from the different directions so that the sum of the flow rates of the airflows blown out from the four blowout ports ( 13 a , 13 b , 13 c , 13 d ) is kept constant. 12. The air blower of claim 1 , further comprising a controller ( 7 ) that adjusts a flow velocity and/or a flow rate of each of the airflows blown out from the first blowout port ( 13 a ), the second blowout port ( 13 b ), the third blowout port ( 13 c ), and the fourth blowout port ( 13 d ) individually to change a direction of the air current going forward relative to the panel ( 3 ). 13. The air blower of claim 12 , wherein the controller ( 7 ) adjusts the flow velocity and the flow rate of each of the airflows blown out from the first blowout port ( 13 a ), the second blowout port ( 13 b ), the third blowout port ( 13 c ), and the fourth blowout port ( 13 d ) individually such that: an airflow from one of the four blowout ports that is located opposite to a target direction of the air current going forward from the panel ( 3 ) comes at a relatively higher flow rate than the airflows blown out from rest of the four blowout ports; and the airflow from the one of the four blowout ports that is located opposite to the target direction of the air current going forward from the panel ( 3 ) comes at a relatively higher flow velocity than the airflows blown out from the rest of the four blowout ports.
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