Gasoline direct injection rail
To obtain a gasoline direct injection rail provided with an inlet capable of reducing pressure pulsation without increasing the inner diameter of a high-pressure pipe even when the pressure of a system is increased. A gasoline direct injection rail comprises an inlet 2, 21 at a first end 15, 34 of a rail body 1, 20 , wherein an orifice 12, 31 is provided inside the rail body 1, 20 , the inlet 2, 21 has a fuel flow passage 4, 23 , and a hollow part 8, 27 is provided between the fuel flow passage 4, 23 and the orifice 12, 31.
1. A gasoline direct injection rail, comprising:
a rail body; and
an inlet that is provided between the rail body and a high-pressure pump, the inlet being connected to an end of the rail body, wherein
the inlet has a fuel flow passage and an insertion part inserted into the rail body,
an orifice is provided on a distal end surface of a downstream side of the insertion part, the downstream side being a side farther from the high-pressure pump,
an orifice hole having a diameter smaller than a diameter of the fuel flow passage is formed to penetrate a center of the orifice,
the orifice hole is provided on a plane, which is on the same plane as the distal end surface of the downstream side of the insertion part, the same plane is vertical to a flowing direction of a fuel,
the insertion part of the inlet has a hollow part to increase an inner volume of the fuel flow passage from the high-pressure pump to the orifice, and
the hollow part is positioned in the fuel flow passage from the high-pressure pump to the orifice.
2. The gasoline direct injection rail according to claim 1 , wherein the orifice is integrally provided in the insertion part of the inlet.
3. The gasoline direct injection rail according to claim 1 , wherein the orifice is provided as a component separate from the inlet and the rail body.
4. The gasoline direct injection rail according to claim 1 , wherein
an engagement step is provided on an inner circumference of the rail body, and
the orifice and the orifice hole are provided between the engagement step and an opening of the inlet.
5. The gasoline direct injection rail according to claim 1 , wherein
a distance between the orifice hole and the end of the surface of the rail body in the flowing direction of the fuel is the same as the distance between the distal end surface of the downstream side of the insertion part and the end surface of the rail body in the flowing direction of the fuel.