Plastic filler neck for vehicles
A plastic filler neck for vehicles includes a fuel injection pipe, a retainer inserted and fastened into an internal space of a tip of the fuel injection pipe to support a refueling gun, a cap holder directly fastened to the tip of the fuel injection pipe by fusion, and an air drain casing mounted, by a mounting bracket, to an outer diameter portion of the cap holder fastened to the fuel injection pipe.
1. A plastic filler neck for vehicles, comprising:
a fuel injection pipe;
a retainer inserted and fastened into an internal space of a tip of the fuel injection pipe to support a refueling gun;
a cap holder directly fastened to the tip of the fuel injection pipe by fusion;
an air drain casing mounted to an outer diameter portion of the cap holder fastened to the fuel injection pipe, wherein the air drain casing includes a seating groove formed on its bottom to be pressed against an outer diameter surface of the cap holder, a locking protrusion formed on its front, and an air inlet formed on its rear surface and configured to communicate with outside air; and
a mounting bracket mounting the air drain casing, wherein the mounting bracket comprises a pair of tightening plates, each tightening plate having a tightening groove formed on its inner side to be pressed against the outer diameter surface of the cap holder and a locking groove formed at its upper end for fastening with the locking protrusion of the air drain casing.
2. The plastic filler neck of claim 1 , wherein the tip of the fuel injection pipe comprises a rectilinear tube having a predetermined length to function as a filler tube for insertion and mounting of the retainer, and a diagonal tube having a diameter reduced gradually from the rectilinear tube and integrally extending therefrom.
3. The plastic filler neck of claim 1 , wherein an inner diameter surface of a rear end of the cap holder and an outer diameter surface of the tip of the fuel injection pipe are integrally fused to each other by rotary fusion, in which heat is applied to the cap holder while the cap holder is rotated, such that the tip of the fuel injection pipe is pressed into an internal space of the rear end of the cap holder.
4. The plastic filler neck of claim 1 , wherein the mounting bracket further comprises a folding hinge integrally connected between lower ends of the pair of tightening plates.
5. The plastic filler neck of claim 1 , wherein the tightening groove has an arc shape so as to be pressed against an inner diameter of a rear end of the cap holder.
6. The plastic filler neck of claim 1 , wherein each of the tightening plates has a vehicle body mounting hole formed for mounting with a vehicle body.
7. The plastic filler neck of claim 1 , further comprising first and second bolting ends formed at sides of the mounting bracket and the air drain casing, the first and second bolting ends being pressed against and bolted to each other.
8. A vehicle comprising:
a vehicle body; and
a plastic filler neck mounted to the vehicle body, the plastic filler neck comprising:
a fuel injection pipe;
a retainer inserted and fastened into an internal space of a tip of the fuel injection pipe to support a refueling gun;
a cap holder directly fastened to the tip of the fuel injection pipe by fusion; and
an air drain casing mounted to an outer diameter portion of the cap holder fastened to the fuel injection pipe, wherein the air drain casing includes a seating groove formed on its bottom to be pressed against an outer diameter surface of the cap holder, a locking protrusion formed on its front, and an air inlet formed on its rear surface and configured to communicate with outside air; and
a mounting bracket mounting the air drain casing, wherein the mounting bracket comprises a pair of tightening plates, each tightening plate having a tightening groove formed on its inner side to be pressed against the outer diameter surface of the cap holder and a locking groove formed at its upper end for fastening with the locking protrusion of the air drain casing.
9. The vehicle of claim 8 , wherein the fuel injection pipe comprises a polyamide material containing nanoclay and has a single layer structure in cross-section.
10. The vehicle of claim 8 , wherein the tip of the fuel injection pipe comprises:
a rectilinear tube configured to function as a filler tube for insertion and mounting of the retainer; and
a diagonal tube having a diameter reduced gradually from the rectilinear tube and integrally extending therefrom.
11. The vehicle of claim 8 , wherein an inner diameter surface of a rear end of the cap holder and an outer diameter surface of the tip of the fuel injection pipe are integrally fused to each other by rotary fusion, in which heat is applied to the cap holder while the cap holder is rotated, such that the tip of the fuel injection pipe is pressed into an internal space of the rear end of the cap holder.
12. The vehicle of claim 8 , wherein the mounting bracket comprises a folding hinge integrally connected between lower ends of the pair of tightening plates.
13. The vehicle of claim 8 , wherein the tightening groove has an arc shape so as to be pressed against an inner diameter of a rear end of the cap holder.
14. The vehicle of claim 8 , wherein each of the tightening plates has a vehicle body mounting hole formed for mounting with the vehicle body.
15. The vehicle of claim 8 , further comprising first and second bolting ends formed at sides of the mounting bracket and the air drain casing, the first and second bolting ends being pressed against and bolted to each other.
16. A plastic filler neck for vehicles, comprising:
a fuel injection pipe comprising a polyamide material containing nanoclay and having a single layer structure in cross-section;
a retainer inserted and fastened into an internal space of a tip of the fuel injection pipe to support a refueling gun;
a cap holder directly fastened to the tip of the fuel injection pipe by fusion;
an air drain casing mounted to an outer diameter portion of the cap holder fastened to the fuel injection pipe, wherein the air drain casing includes a seating groove formed on its bottom to be pressed against an outer diameter surface of the cap holder, a locking protrusion formed on its front, and an air inlet formed on its rear surface and configured to communicate with outside air; and
a mounting bracket mounting the air drain casing, wherein the mounting bracket comprises a pair of tightening plates, each tightening plate having a tightening groove formed on its inner side to be pressed against the outer diameter surface of the cap holder and a locking groove formed at its upper end for fastening with the locking protrusion of the air drain casing.
17. The plastic filler neck of claim 16 , wherein the tip of the fuel injection pipe comprises a rectilinear tube having a predetermined length to function as a filler tube for insertion and mounting of the retainer, and a diagonal tube having a diameter reduced gradually from the rectilinear tube and integrally extending therefrom.
18. The plastic filler neck of claim 16 , wherein an inner diameter surface of a rear end of the cap holder and an outer diameter surface of the tip of the fuel injection pipe are integrally fused to each other by rotary fusion, in which heat is applied to the cap holder while the cap holder is rotated, such that the tip of the fuel injection pipe is pressed into an internal space of the rear end of the cap holder.
19. The plastic filler neck of claim 16 , wherein the mounting bracket further comprises a folding hinge integrally connected between lower ends of the pair of tightening plates.
20. The plastic filler neck of claim 16 , wherein the tightening groove has an arc shape so as to be pressed against an inner diameter of a rear end of the cap holder.