GAS VEHICLE INJECTOR HAVING IMPROVED LUBRICATION CHARACTERISTICS
20190136814 ยท 2019-05-09
Inventors
Cpc classification
F02M51/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M55/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M61/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Disclosed is a gas vehicle injector having improved lubrication characteristics. The injector is provided with a housing installed at a fuel supply pipe of an engine, a needle valve installed at a lower portion of the housing and having an injection nozzle, a coil installed inside the housing and generating a magnetomotive force by receiving electric power, a solenoid having a core generating an attractive force by the magnetomotive force, and a plunger reciprocating and installed below the solenoid, and the injector includes: a depression groove circumferentially formed on an inner circumferential surface of the housing; and a communication groove formed on the inner circumferential surface of the housing, and communicating with the depression groove.
Claims
1. A gas vehicle injector having improved lubrication characteristics, the gas vehicle injector including a housing installed at a fuel supply pipe of an engine, a needle valve installed at a lower portion of the housing and having an injection nozzle, a coil installed inside the housing and generating a magnetomotive force by receiving electric power, a solenoid having a core generating an attractive force by the magnetomotive force, and a plunger reciprocating and installed below the solenoid, the gas vehicle injector comprising: a depression groove circumferentially formed on an inner circumferential surface of the housing; and a communication groove formed on the inner circumferential surface of the housing, and communicating with the depression groove.
2. The gas vehicle injector of claim 1, wherein the communication groove is inclinedly formed at a predetermined inclination angle with respect to the depression groove.
3. The gas vehicle injector of claim 1, wherein the communication groove extends downward from the depression groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The above and other objects, features and other advantages of the present invention will be more clearly understood from the following detailed description when taken in conjunction with the accompanying drawings, in which:
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE INVENTION
[0018] However, the drawings are provided as example for those skilled in the art to be able to more clearly understand the spirit of the present invention. Accordingly, the present invention is not limited to the drawings and may be achieved in other ways.
[0019] In the following description, it is to be noted that, when the functions of conventional elements and the detailed description of elements related with the present invention may make the gist of the present invention unclear, a detailed description of those elements will be omitted.
[0020]
[0021] A gas vehicle injector 1000 having improved lubrication characteristics according to the present invention is provided with a housing 10 installed at a fuel supply pipe of an engine, a needle valve 20 installed at a lower portion of the housing 10 and having an injection nozzle 21, a coil 31 installed inside the housing 10 and generating a magnetomotive force by receiving electric power, a solenoid 30 having a core 32 generating an attractive force by the magnetomotive force, and a plunger 40 reciprocating and installed below the solenoid 30, and the injector includes: a depression groove 100 circumferentially formed on an inner circumferential surface of the housing 10; and a communication groove (not shown) formed on the inner circumferential surface of the housing 10 and communicating with the depression groove 100.
[0022] Both the depression groove 100 and the communication groove are spaces for accommodating lubricating oil or gaseous fuel. The lubricating oil or gaseous fuel accommodated in the depression groove 100 and the communication groove 200 comes in contact with an outer surface of the plunger 40 during a reciprocation motion of the plunger 40, and forms an oil film on the outer surface of the plunger 40.
[0023] Further, the communication groove is inclinedly formed with respect to the depression groove 100, so that the lubricating oil can efficiently flow in the communication groove and the depression groove 100.
[0024] In addition, the communication groove extends downward from the depression groove 100 so that a contact area with the outer surface of the plunger 40 can be increased, and the oil film can be efficiently formed on the outer surface of the plunger 40. Moreover, the abraded particles formed due to frequent friction of the reciprocating plunger 40 can be discharged to the outside of the injector together with the lubricating oil or gaseous fuel accommodated in the communication groove.
[0025] Further, the housing 10 has a dual structure in which an lower housing 11 and a upper housing 12 are coupled to each other. The dual-structured housing 10 facilitates easy inspection and replacement of the solenoid 30 and the plunger 40.
[0026] The needle valve 20, the solenoid 30, and the plunger 40 remain the same as those of the conventional injector for a gas vehicle, so that detailed descriptions of their structure and operation principle will be omitted.
[0027] Further, the depression groove 100 is circumferentially formed on the inner circumferential surface of the housing 10, and a plurality of depression grooves 100 are formed to be distanced from the depression groove 100 at a predetermined interval whereby lubrication performance can be improved.
[0028] In addition, the depression groove 100 is formed at an upper portion of an inner circumferential surface of the lower housing 11 to be vertically distanced from a lower portion of an outer surface of the plunger 40. The depression groove 100 is formed at a lower portion of an inner circumferential surface of the upper housing 12 to be vertically distanced from an upper portion of the outer surface of the plunger 40.
[0029]
[0030] As shown
[0031] The depression groove 100 is circumferentially formed on the inner circumferential surface of the housing 10 and has a rectangular shape in cross section as shown in
[0032] Next, the communication groove 200 is formed on the inner circumferential surface of the housing 10 to communicate with the depression groove 100, and is inclinedly formed at a predetermined inclination angle with respect to the depression groove 100 in the lengthwise direction of the housing 10.
[0033] In addition, the communication groove 200 communicates with the depression groove 100 and extends to an upper surface of the lower housing 11. A plurality of communication grooves 200 are formed to be distanced from each other at a predetermined interval on the inner circumferential surface of the housing 10, whereby an oil film can be formed on the entire outer surface of the plunger 40.
[0034]
[0035] As shown in
[0036] In addition, the communication groove 200 extends downward from the depression groove 100 and may extend to a lower portion of the plunger 40. Even though the lubrication performance is improved on the inner surface of the housing 10 and on the outer surface of the plunger 40, abraded particles are generated by the continuous friction. At this time, the communication groove 200 allows the abraded particles to flow down and to be discharged.
[0037] According to the gas vehicle injector 1000 having improved lubrication characteristics according to the present invention, the depression groove 100 and the communication groove 200 are formed on the inner circumferential surface of the housing 10. Thus, even when the gas vehicle injector 1000 having improved lubrication characteristics is installed parallel to the ground rather than being installed vertically at the fuel supply pipe of the engine of the gas vehicle, the lubricating oil or gaseous fuel can remain in the housing 10, whereby an oil film can be efficiently formed on the plunger 40.
[0038] Although a preferred embodiment of the present invention has been described for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.