FUEL TANK CAP WITH CHARCOAL CANISTER
20180369738 ยท 2018-12-27
Assignee
Inventors
Cpc classification
B60K2015/0496
PERFORMING OPERATIONS; TRANSPORTING
B01D53/0407
PERFORMING OPERATIONS; TRANSPORTING
B60K15/035
PERFORMING OPERATIONS; TRANSPORTING
B60K15/03504
PERFORMING OPERATIONS; TRANSPORTING
B60K2015/0451
PERFORMING OPERATIONS; TRANSPORTING
B01D2259/4516
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The fuel tank cap with charcoal canister includes a fuel tank inner cap and a fuel tank outer cap. A filling chamber is disposed in the fuel tank inner cap. The fuel tank outer cap wraps up the upper port of the filling chamber. The fuel tank inner cap has a volume chamber having an upper vent cap. Between the side wall of the upper vent cap and the inner wall of the volume chamber, there is an air gap. The filling chamber has a lower breathing panel. Between the lower breathing panel and the bottom of the filling chamber, there is a welding ring. The upper port is on the inner side of the welding ring. The lower surface of the lower breathing panel is fixed and connected with the filling chamber via the welding ring. The bottom surface of the volume chamber has an air inlet/outlet.
Claims
1. A fuel tank cap with charcoal canister, the cap comprising: a fuel tank outer cap, and a fuel tank inner cap, wherein a filling chamber with upper opening is disposed in the center of said fuel tank inner cap, wherein said fuel tank outer cap is above said fuel tank inner cap, wherein said fuel tank outer cap wraps up the upper port of said filling chamber, wherein said fuel tank inner cap is comprised of a volume chamber at the bottom, wherein an upper end of said volume chamber is connected with the said filling chamber, wherein said volume chamber has an upper vent cap at the upper port, wherein, between the side wall of said upper vent cap and the inner wall of said volume chamber, an air gap guides fuel in said volume chamber into said filling chamber, wherein said filling chamber has a lower breathing panel at the bottom, covering the upper port of said volume chamber (13), wherein, between said lower breathing panel and the bottom of said filling chamber, a welding ring has an inner side configured on the upper port of said volume chamber, wherein said lower surface of said lower breathing panel is fixed and connected with said filling chamber via the welding ring, wherein said bottom surface of said volume chamber is comprised of air inlet/outlet, via which the volatilized fuel in the fuel tank is guided into the said volume chamber, and wherein said filling chamber is provided with fuel-adsorbing filler.
2. The fuel tank cap with charcoal canister according to claim 1, wherein said welding ring is comprised of an ultrasonic welding ring.
3. The fuel tank cap with charcoal canister according to claim 1, further comprising: an upper breathing panel covering the top of said fuel-adsorbing filler, wherein said upper breathing panel is set at the upper port of said filling chamber.
4. The fuel tank cap with charcoal canister according to claim 3, further comprising: an inner deck covering the upper port of said filling chamber, wherein said inner deck is between said fuel tank outer cap and said upper breathing panel.
5. The fuel tank cap with charcoal canister according to claim 4, wherein said inner deck is comprised of several upper vent holes while said upper vent cap is comprised of several lower vent holes, wherein a number of said upper vent holes is the same with the number of said lower vent holes, wherein said lower vent holes are set right above said air inlet/outlet while said upper vent holes are set right above said lower vent holes in one-to-one correspondence.
6. The fuel tank cap with charcoal canister according to claim 1, wherein said volume chamber is comprised of a lower vent cap inside said volume chamber, and wherein said lower vent cap has a through-hole in the center and said through-hole is comprised of a breathing valve inside said through-hole.
7. The fuel tank cap with charcoal canister according to claim 6, wherein said volume chamber is enclosed by funnel-shaped side wall, wherein the side wall of said volume chamber is at the upper end with an installation base that extends towards the inside of the container chamber and that is used to install the said lower vent cap.
8. The fuel tank cap with charcoal canister according to claim 1, wherein said fuel tank inner cap is installed at the bottom with a removable hook.
9. The fuel tank cap with charcoal canister according to claim 1, wherein said lower breathing panel has a smooth lower surface.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
[0045] The components represented by figures in the drawings are listed below: [0046] 1: fuel tank outer cap; 2: inner deck; 3: lower breathing panel; 4: upper vent cap; 5: breathing valve; 6: lower vent cap; 7: fuel tank inner cap; 8: O ring; 9: hook; 10: fuel-adsorbing filler; 11: breathing film; 12: filling chamber; 13: volume chamber; 14: air gap; 15: welding ring; 16: vent hole; 17: upper breathing panel; 18: upper vent hole; 19: lower vent hole; 20: through-hole; 21: installation base; 22: slot.
DETAILED DESCRIPTION OF THE INVENTION
[0047] Drawings are used in combination to describe the principles and characteristics of the utility model; the embodiment cited is intended only to illustrate and not to limit the scope of the present invention.
[0048] As shown in
[0049] Between the lower breathing panel 3 and the bottom of the filling chamber 12 there is a welding ring 15, designed on the outer side of the upper port of the volume chamber 13; the welding ring 15 is used to fix the lower breathing panel 3 at the bottom of the filing chamber 12, so that there would be no gap between the filling chamber 12 and the lower breathing panel 3. In this way, the present invention prevents the fuel-adsorbing filler 10 from first entering the volume chamber 13 and then entering the fuel tank through the gap between the filling chamber 12 and the lower breathing panel 3, and thus avoids both the contamination of fuel in the fuel tank and the clogging of the carburetor by the fuel-adsorbing filler 10. Thus, it is safer and more environment-friendly.
[0050] As shown in
[0051] As shown in
[0052] In the embodiment of the present invention, the said lower breathing panel 3 has a smooth lower surface. The smooth lower surface of the lower breathing panel 3 can prevent the lower breathing panel 3 from passing through the welding between the ultrasonic welding ring 15 and the bottom of the filling chamber 12. By virtue of the higher sealing performance of the smooth surface after welding, there is no gap between the lower breathing panel 3 and the bottom of the filling chamber 12, which further avoids the passage of the fuel-adsorbing filler 10.
[0053] As shown in
[0054] As shown in
[0055] As shown in
[0056] Between the lower breathing panel 3 and the bottom of the filling chamber 12 there is a welding ring 15, designed on the outer side of the upper port of the volume chamber 13; the welding ring 15 is used to fix the lower breathing panel 3 at the bottom of the filling chamber 12, so that there would be no gap between the filling chamber 12 and the lower breathing panel 3. In this way, when the gasoline engine stops and the fuel tank produces a negative pressure, the setting of ultrasonic welding ring 15 of the present invention prevents the carbon powder in the fuel tank cap from falling into the fuel tank through this channel, and thus avoids both the contamination of fuel in the fuel tank and the clogging of the carburetor by the carbon powder. Thus, compared with prior art, it is safer and more environment-friendly.
[0057] Described above is only one preferred embodiment of the present invention, which is not intended to limit the present invention. Any and all amendments, adoption by equation, improvements and so forth made in the spirit or principles of the present invention shall be covered by the scope of protection of the present invention.