1. Field of the Invention
The present invention relates to a normally open solenoid valve having a valve element that opens and closes a hydraulic fluid channel.
2. Background Art
Conventionally, as a solenoid valve that opens and closes a hydraulic fluid channel, a normally open valve that opens in normal conditions and closes in response to excitation of a fixed core due to energization of a coil is available. Such a normally open valve has a valve seat that opens and forms a hydraulic fluid channel and a valve element that can come into contact with and separate from the valve seat. The valve element can shield the hydraulic fluid channel by contact with the valve seat, and makes communication to the hydraulic fluid channel by separating from the valve seat. Generally, the valve element of the normally open solenoid valve is swaged and fixed to the front end of a retainer that has a spherical, thin and long columnar shape.
Recently, a normally open solenoid valve formed by integrally forming a valve element and a retainer is available (for example, refer to JP-A-2002-347597). The integrally formed valve element 300 includes a valve part 340 and a shaft part 240 as roughly shown in
Therefore, the inventors of the present invention set about developing a normally open solenoid valve that had a valve element using a magnetic material with a high hardness and formed integrally with a retainer. Although the valve element formed of a magnetic material was hard, when it was excited, the valve element was attracted by the inner surface of the through hole of the fixed core and so-called wobble of the valve element was caused, and the sliding friction between the attracted valve element and the through hole increased. Such wobble of the valve element is also caused to some extent in a generally-known retainer that is not formed of a magnetic material due to a clearance of a through hole, and this influences the seating performance (sealing performance) of the valve element onto the valve seat and working performance of the valve element although the influence is not so great as in the valve element made of a magnetic material. In order to prevent the wobble of the valve element, the clearance between the valve element and the inner surface of the through hole was reduced by way of trial, and although this prevented wobble, the sliding friction of the valve element increased, and in particular, when the fluid pressure of the hydraulic fluid increased, the hydraulic fluid hardly flowed, and this further obstructed sliding of the valve element.
An object of the invention is to provide a normally open solenoid valve including a valve element that is integrally formed with a retainer and has a sufficient hardness for being in contact with a valve seat.
The invention provides a normally open solenoid valve, including: a coil; a fixed core that is excited when the coil is energized, the fixed core having a through hole and an opening formed at an end of the through hole; a valve seat disposed at the opening; a valve element inserted through the through hole, the valve element including a valve part for coming into contact with the valve seat and a roughly columnar shaft part extending from the valve part; and a movable core that pushes and moves the valve element; wherein the shaft part has a plurality of sliding portions that are slidable on the inner surface of the through hole and are formed to be spaced in an axial direction of the shaft part and a narrowed portion having an outer diameter smaller than the sliding portions between the plurality of sliding portions.
According to the invention, even while the clearance between the shaft part of the valve element and the inner surface of the through hole of the normally open solenoid valve is reduced to prevent wobble of the shaft part, the sliding friction of the valve element can be reduced since the sliding area is reduced by the narrowed portions of the shaft part. Furthermore, since the narrowed portions of the shaft part allow the hydraulic fluid to flow, even when the clearance between the shaft part and the inner surface of the through hole is reduced and this causes a high fluid pressure of the hydraulic fluid, the valve element can smoothly move.
Preferably, the valve element includes a magnetic material.
According to the invention, while the valve element is integrally formed, a sufficiently high hardness for being in contact with the valve seat can be obtained. Furthermore, the influence of the magnetic force that causes attraction toward the fixed core side is reduced by the narrowed-portions of the shaft part, whereby the sliding friction between the through hole and the shaft part can be reduced even when the valve element is formed of a magnetic material.
Preferably, the plurality of sliding portions includes two sliding portions; the two sliding portions are formed near a portion where the shaft part is connected to the valve part and near an end portion of the shaft part that comes into contact with the movable core; and the two sliding portions are formed within a range slidable on the inner surface of the through hole.
According to the invention, since the valve part can be guided on the inner surface of the through hole by the two sliding portions in the vicinity of both ends of the shaft part slidable on the inner surface of the through hole, the inclination of the valve element to the through hole can be minimized, and the lowering in sealing performance can be prevented. Furthermore, even when the clearance between the sliding portions and the through hole is reduced to increase the accuracy of the position of the valve element, the sliding friction can be suppressed since the sliding area is small, so that the working performance of the valve element is prevented from lowering.
Preferably, the valve element has a sealing portion that has an arc longitudinal sectional shape to come into contact with the valve seat, and an expanding diameter portion whose diameter gradually increases from the sealing portion.
According to the invention, the sealing portion can have stable seating performance on to the valve seat, and the expanding diameter portion can prevent working noise that is caused by fluid separation of the hydraulic fluid.
The present invention may be more readily described with reference to the accompanying drawings:
Hereinafter, an embodiment of the invention is described in detail with reference to the drawings.
The normally open solenoid valve 10 relating to an embodiment of the invention is, for example, the normally open solenoid valve 10 shown in
The fixed core 20 is a roughly cylindrical member formed of a magnetic material, for example, iron or an iron alloy, etc. The fixed core 20 has a flow inlet 21 and a flow outlet 23 which opens to the hydraulic fluid channel 2 formed in the base material 1, and the flow inlet 21 is attached with a first filter member F1. To the flow inlet 21 side of the opening end on one side of the valve bore 22 of the fixed core 20, a cylindrical valve seat element 40 is fitted and fixed. To the fixed core 20 projecting from the upper surface of the base material 1, a guide cylinder 18 with a bottomed cylindrical form is welded and fixed, and a coil 12 wound around a resin-made bobbin 14 and a coil case 16 covering the outside of the coil 12 are attached.
The valve element 30 is formed of a magnetic material, for example, stainless steel having a roughly columnar shaft part 24 and a roughly conic valve part 34, and is disposed within the valve bore 22 opened through the fixed core 20 in its axial direction in a manner enabling the valve element to freely advance and retreat. On the opposite end of the valve part 34 formed at the tip end of the valve element 30, the movable core 28 made of, for example, iron-based metal provided within the guide cylinder 18 is disposed in contact. A detailed structure of the valve element 30 is shown in
The valve part 34 formed at the tip end of the valve element 30 comprises an expanding diameter portion 35 that is formed to be conic trapezoid and has an outer diameter thinner than the first sliding portion 31, and a roughly semispherical sealing portion 36 formed at the tip end of this expanding diameter portion. The end face 37 of the first sliding portion 31 stepped so as to reduce its diameter from the first sliding portion 31 toward the valve part 34 serves as a contact portion of the seat spring 50 that is a pressing member.
As shown in
The sealing portion 36 of the valve element 30 is semispherical as shown in
Describing the operation of the normally open solenoid valve 10 relating to this embodiment, in a condition where the coil 12 is not energized, the valve element 30 is pressed toward the movable core 28 side by the seat spring 50 and separated to dispose from the valve seat 42 as shown in
The present invention is not limited to this embodiment, and can be variously modified within the scope of the essence of the invention.
For example, a seat spring 50 and a spring member 66 are used as a pressing member, however, the pressing member is not limited to these, and any member can be used as appropriate as long as the member is elastic.
Furthermore, in the above-described embodiment, the circulation grooves 25 formed in the first sliding portion 31 and the second sliding portion 33 are narrower in width than the sliding surfaces, however, to the contrary, it is also possible that the circulation grooves 25 may be formed to be wider.
Furthermore, sliding portions 31 and 33 are formed at two points of the shaft part 24 of the valve element 30, however, it is also possible that other sliding portions may be formed as appropriate between the sliding portions 31 and 33.
Number | Date | Country | Kind |
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2003-157909 | Jun 2003 | JP | national |