Fuel filling device
10759271 ยท 2020-09-01
Assignee
Inventors
Cpc classification
B60K2015/049
PERFORMING OPERATIONS; TRANSPORTING
B60K2015/0461
PERFORMING OPERATIONS; TRANSPORTING
B60K2015/0538
PERFORMING OPERATIONS; TRANSPORTING
F02M37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A closing member includes a pair of flap members, and an urging device urging each flap member to be positioned at a closed position closing a near-side pass-through opening for a fuel filling nozzle. Each flap member includes a turning assembly portion which becomes a center of turning, and an abutment portion relative to the other of the flap members. A far-side pass-through opening for the fuel filling nozzle, and a guide slope face for the fuel filling nozzle, which is a slope face having an opening edge of the far-side pass-through opening as a slope lower end and a vicinity of the near-side pass-through opening as a slope upper end and formed on both sides of a directly underneath position including the directly underneath position of the abutment portion of the flap member located at the closed position, are formed on a far side of the closing member.
Claims
1. A fuel filling aperture device, comprising: a closing member turned to an open position by an insertion of a fuel filling nozzle to open a fuel filling aperture, and a guide member disposed under the closing member, wherein the closing member includes a pair of flap members, and urging devices urging each of the pair of flap members to be positioned to a closed position closing a near-side pass-through opening of the fuel filling nozzle, each of the pair of flap members includes a turning assembly portion which becomes a center of turning, and an abutment portion relative to another of the flap members, and the guide member includes, a peripheral wall, an inner portion extending inwardly from the peripheral wall, a far-side pass-through opening for the fuel filling nozzle formed in the inner portion on a far side, and a guide slope face for the fuel filling nozzle, which is a slope face formed on the inner portion and having an opening edge of the far-side pass-through opening as a slope lower end and a slope upper end at a vicinity of the near-side pass-through opening, the slope face being formed on two sides of a directly underneath position including the abutment portion of the flap member located at the closed position, and wherein the guide slope face includes a slope, as approaching the slope upper end, gradually increasing a distance from a virtual center axis of the far-side pass-through opening, the slope having a width gradually reducing in a direction orthogonal to the virtual center axis, the guide slope face forming a space outside the guide slope face, allowing the flap member located at the closed position to move to the open position.
2. The fuel filling aperture device according to claim 1, wherein the fuel filling aperture device is installed in such a way so as to obliquely intersect the virtual center axis of the far-side pass-through opening relative to a vertical line, and the guide slope face is formed at a portion positioned on an upper side of the virtual center axis.
3. The fuel filling apparatus device according to claim 1, wherein the guide slope face is located at one side of the far-side pass-through opening inside the peripheral wall of the guide member so that the guide face extends from the opening edge of the far-side pass-through opening laterally and upwardly to the slope upper end at the outer periphery of the guide member.
4. The fuel filling apparatus device according to claim 3, wherein the far-side pass-through opening is located to deviate from a center of the peripheral wall of the guide member.
5. The fuel filling apparatus device according to claim 4, further comprising a seal member having a pass-through opening, the guide member being disposed in the seal member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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BEST MODES OF CARRYING OUT THE INVENTION
(16) Hereinafter, based on
(17) Namely, when the fuel filling nozzle N (see
(18) Such fuel filling aperture device is attached to an upper end portion of the filler pipe (a fuel injection pipe) (not shown in the drawings).
(19) In an illustrated example, as shown in
(20) The holder member 4 is attached to the filler pipe, is integrated with the filler pipe, and is located on a filler pipe side relative to the cover member 1, the guide member 2, and the seal member 3. The seal member 3 is fitted into such holder member 4, and the guide member 2 is fitted into the seal member 3. The cover member 1 houses an upper end 42 side of the holder member 4, wherein the seal member 3 and the guide member 2 are incorporated, inside the cover member 1 so as to be attached to the holder member 4.
(21) In the illustrated example, the seal member 3 fitted in the holder member 4 engages engagement projecting portions shown by reference numeral 32 in
(22) Also, in the illustrated example, the guide member 2 fitted in the seal member 3 engages engagement pieces 33 formed inside the seal member 3 with engagement step portions shown by reference numeral 21 in
(23) Also, in the illustrated example, the cover member attached to the holder member 4 engages engagement projecting portions 41 formed outside the holder member 4 with window holes shown by reference numeral 12 in
(24) Namely, in the embodiment, on a far side of the later-described closing member 11 provided in the cover member 1, there is provided the guide member 2 for the fuel filling nozzle N, and on a far side of the guide member 2, there is provided the seal member 3 provided with the far-side closing member 31 opened and closed by the fuel filling nozzle N. Also, the guide member 2 can be removed by removing the guide member 2 from the filler pipe side by releasing an engagement of the cover member 1, and the seal member 3 can be removed by removing the guide member 2.
(25) (Holder Member 4)
(26) The holder member 4 has a substantially cylindrical shape, and opens both of an upper end 42 and a lower end 43 (see
(27) (Seal Member 3)
(28) As shown in
(29) In the partition wall 35, there is formed a circular pass-through opening 36 allowing the fuel filling nozzle N to pass through. In the closed position, the far-side closing member 31 presses the partition wall 35 from a lower side by urging of an urging device (omitted in the drawings) to close the pass-through opening 36, thereby maintaining a closed state of the fuel filling aperture 5 unless the fuel filling nozzle N is inserted.
(30) (Cover Member 1)
(31) As shown in
(32) In the illustrated example, such cylindrical main member 13 has a substantially cylindrical shape. An inner diameter of the cylindrical main member 13 is substantially equal to an outer diameter of the holder member 4 on the upper end 42 side.
(33) As shown in
(34) The pair of flap members 14 and 14 is respectively provided with turning assembly portions 141 which become a center of the turning; and abutment portions 142 relative to the other of the flap members 14.
(35) In the illustrated example, as shown in
(36) In the illustrated example, as shown in
(37) In the illustrated example, the urging devices 15 are torsion coil springs 15a placed between the pair of arm portions 145 and 145 by passing the turning shafts 144 into spring winding portions 15b, and one spring end of the torsion coil spring 15a abuts against a back surface portion 146 of the flap member 14, and the other spring end of the torsion coil spring 15a is fixed on the cylindrical main member 13 side.
(38) As shown in
(39) In the embodiment, the seal projecting piece 148 is formed in such a way so as to form an edge around the whole arc-shaped portion 143b of the main member portion 143 of the flap member 14. Then, in the closed position, the flap member 14 abuts the seal projecting piece 148 against the inner face 13b of the inner flange 13a without a gap so as to seal between the arc-shaped portion 143b of the main member portion 143 and the cylindrical main member 13.
(40) Thereby, in the embodiment, even in a case wherein both of the pair of flap members 14 and 14 or one of the pair of flap members 14 and 14 slightly shift or shifts to a position in a shaft center line direction of the turning shaft 144 thereof from a predetermined position (see
(41) Also, in the embodiment, on the surface portions 147 of the flap members 14, there are formed groove-shaped recessed portions 143c wherein a cross-sectional shape in a direction parallel to a center axis of the turning, i.e., the shaft center line of the turning shafts 144 has an arc shape (see
(42) (Guide Member 2)
(43) As shown in
(44) In the illustrated example, on a far side of the closing member 11, there is formed a far-side pass-through opening 7 for the fuel filling nozzle N by the pass-through opening 36 of the seal member 3 and the pass-through opening 22 of the guide member 2.
(45) As shown in
(46) The guide slope face 23 includes a slope gradually increasing a distance from a virtual center axis y of the far-side pass-through opening 7, and gradually reducing a width in a direction orthogonal to the virtual center axis y as approaching the slope upper end 23b (see
(47) Also, in the embodiment, the fuel filling aperture device is installed in such a way so as to obliquely intersect the virtual center axis y of the far-side pass-through opening 7 relative to a vertical line z (see
(48) More specifically, the guide slope face 23 is formed by an assembly of a virtual straight line which is the virtual straight line in a direction orthogonal to the turning shaft 144 of the flap member 14, and passes the directly underneath position x. In a state of a plan view, the guide slope face 23 has a triangle shape wherein the far-side pass-through opening 7 is a base 23c (see
(49) Also, as shown in
(50) When an insertion operation into the fuel filling aperture 5 of the fuel filling nozzle N of the fuel filling gun is carried out, first, the pair of flap members 14 and 14 forming the closing member 11 turns to the open position so as to allow the fuel filling nozzle N to enter far from the near-side pass-through opening 6. When the fuel filling nozzle N enters far from the near-side pass-through opening 6, the fuel filling nozzle N can be guided to the far-side pass-through opening 7 by abutting the tip of the fuel filling nozzle N against the guide slope faces 23 having the opening edge of the far-side pass-through opening 7 as the slope lower end 23a and having the vicinity of the near-side pass-through opening 6 as the slope upper end 23b, and formed on both sides of the directly underneath position x including the directly underneath position x of the abutment portion 142 of the flap member 14 located in the closed position.
(51) In the embodiment, the fuel filling aperture device is installed in such a way so as to obliquely intersect the virtual center axis y of the far-side pass-through opening 7 relative to the vertical line z, so that the guide slope face 23 positioned on the upper side of the virtual center axis y is positioned in front of the fuel filling nozzle N entering in the aforementioned manner, and the fuel filling nozzle N is smoothly guided to the far-side pass-through opening 7 positioned on a lower side of the guide slope face 23 by the guide slope face 23.
(52) Incidentally, obviously, the present invention is not limited to the embodiment explained hereinabove, and includes all embodiments which can obtain the object of the present invention.
EXPLANATION OF SYMBOLS
(53) N a fuel filling nozzle
(54) 11 a closing member
(55) 14 flap members
(56) 141 turning assembly portions
(57) 142 abutment portions
(58) 147 surface portions
(59) 148 seal projecting pieces
(60) 148a terminals
(61) 149 edge projecting pieces
(62) 15 urging devices
(63) 5 a fuel filling aperture
(64) Incidentally, all contents of the specification, claims, drawings, and abstract of Japanese Patent Application No. 2015-200984 filed on Oct. 9, 2015 are cited in their entireties herein and are incorporated as a disclosure of the specification of the present invention.