SOLENOID VALVE FOR IRRIGATION SYSTEM
20200400246 ยท 2020-12-24
Assignee
Inventors
Cpc classification
F16K31/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/404
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K7/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A solenoid valve for irrigation system may include a gardening tube, a rubber valve piece, a cover, and a valve column. The gardening tube has a water inlet channel and a water outlet channel which are communicated, and a valve tube vertically extends from the gardening tube. A vertical first connecting tube is formed inside the valve tube. The valve piece is movable in the valve tube to abut against the first connecting tube. The cover comprises a second connecting tube vertically protruding from the cover, and the second connecting tube has a valve chamber formed at a first end thereof which is communicated with the valve tube. The valve column arranged in the valve chamber of the second connecting tube has a tapered end faced to the valve piece.
Claims
1. A solenoid valve for irrigation system comprising a gardening tube, a rubber valve piece, a cover, and a valve column; wherein the gardening tube has a water inlet channel and a water outlet channel which are communicated with each other, and a valve tube vertically extending from the gardening tube comprises an opening, and a connecting annular groove is formed at an edge of the opening of the valve tube, and a vertical first connecting tube is formed inside the valve tube; the water inlet channel and the water outlet channel are respectively communicated with an outside and an inside of the first connecting tube, and the water inlet channel and the water outlet channel are communicated through the valve tube; a first annular groove is formed on an inner wall of the valve tube; wherein the valve piece coupled with the valve tube through the first annular groove is movable in the valve tube to abut against the first connecting tube; wherein the cover comprises an annular first protruding edge and an annular second protruding edge which respectively protrude from a lower surface of the cover, and the second protruding edge is located farther from the center of the cover than the first protruding edge; the cover is coupled on the valve tube so as to enable the second protruding edge downwardly abut against an outer periphery of the valve piece; the first protruding edge coupled in the connecting annular groove is secured with the connecting annular groove through high-frequency adhesive process to form sealing; the cover comprises a second connecting tube vertically protruding from the cover, and the second connecting tube has a valve chamber formed at a first end thereof which is communicated with the valve tube; a housing formed at a second end of the second connecting tube is adapted to accommodate a magnetic member, and a cap is configured to couple with the second end of the second connecting tube to block an opening of the housing; a solenoid coil is disposed on an outer periphery of the second connecting tube; and wherein the valve column arranged in the valve chamber of the second connecting tube has a tapered end faced to the valve piece; the solenoid coil is energized to generate a magnetic field in one direction or in an opposed direction so as to move the valve column downwardly or upwardly in the valve chamber such that the tapered end of the valve column is configured to abut against the valve piece to block water or to move away from the valve piece to enable water to pass through the first connecting tube.
2. The solenoid valve for irrigation system of claim 1, wherein the valve piece comprises a water stopper, a flexible ring, and a first locating ring which are formed radially from the center of the valve piece, and the valve piece is connected to the first annular groove through the first locating ring, and the flexibility of the flexible ring enables the water stopper to flexibly abut against the first connecting tube.
3. The solenoid valve for irrigation system of claim 2, wherein a through hole axially penetrates through the water stopper, and the tapered end of the valve column is configured to abut against the through hole to block water; when the tapered end is detached from the through hole, the through hole is adapted to enable water to pass therethrough.
4. The solenoid valve for irrigation system of claim 1, wherein an end of the valve column, which is faced to the magnetic member, has a slot, and a coiled compression spring is disposed in the slot, and the compression spring is coupled between the valve column and the second connecting tube so as to increase the downward force of the valve column exerted on the valve piece.
5. The solenoid valve for irrigation system of claim 1, wherein the depth of the slot is longer than half length of the compression spring so as to avoid the deformation of the compression spring and improve the performance of the compression spring.
6. The solenoid valve for irrigation system of claim 1, wherein a non-metal ring is coupled with the water stopper to improve the hardness of the water stopper so as to enable the water stopper to evenly abut against the first connecting tube.
7. The solenoid valve for irrigation system of claim 6, wherein the non-metal ring is made of plastic, ceramic, glass or acrylic.
8. The solenoid valve for irrigation system of claim 1, wherein an annular beveled edge formed at an opening of the first connecting tube is cooperated with the water stopper to form sealing, thereby improving the water sealing effect.
9. The solenoid valve for irrigation system of claim 1, wherein the cover and the cap are secured together through high-frequency adhesive process.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0021] The detailed description set forth below is intended as a description of the presently exemplary device provided in accordance with aspects of the present invention and is not intended to represent the only forms in which the present invention may be prepared or utilized. It is to be understood, rather, that the same or equivalent functions and components may be accomplished by different embodiments that are also intended to be encompassed within the spirit and scope of the invention.
[0022] Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this invention belongs. Although any methods, devices and materials similar or equivalent to those described can be used in the practice or testing of the invention, the exemplary methods, devices and materials are now described.
[0023] All publications mentioned are incorporated by reference for the purpose of describing and disclosing, for example, the designs and methodologies that are described in the publications that might be used in connection with the presently described invention. The publications listed or discussed above, below and throughout the text are provided solely for their disclosure prior to the filing date of the present application. Nothing herein is to be construed as an admission that the inventors are not entitled to antedate such disclosure by virtue of prior invention.
[0024] In order to further understand the goal, characteristics and effect of the present invention, a number of embodiments along with the drawings are illustrated as following:
[0025] Referring to
[0026] Structurally, referring to
[0027] In actual application, referring to
[0028] In case that the gardening tube (10) needs to be turned on, the solenoid coil (36) is adapted to be energized to move the valve column (40) upwardly, and the valve column (40) is adapted to overcome the elastic force of the compression spring (43) and move toward the magnetic member (34). Thereafter, the valve piece (20) is configured to be pushed by the water pressure from the water inlet channel (11) and be detached from the first connecting tube (14), and water is adapted to flow from the water inlet channel (11) through the valve tube (13), the first connecting tube (14) and out of the water outlet channel (12), thereby achieving the irrigation effect. After that, when the solenoid coil (36) returns to non-energized status, the magnetic force of the magnetic member (34) is adapted to overcome the elastic force of the compression spring and magnetically attract the valve column (40) at a position that enables the gardening tube (10) to keep turn-on, thereby saving power.
[0029] Comparing with conventional solenoid valve for irrigation system, the present invention is advantageous because: (i) the slot (42) of the valve column (40) is adapted to receive the compression spring (43), and the valve column (40) is positioned in the valve chamber (331) of the second connecting tube (33), and the compression spring (43) is coupled between the valve column (40) and the second connecting tube (33), so that the elastic force of the compression spring (43) can cooperate the magnetic force generated from the solenoid coil (36) to move the valve column (40) toward the valve piece (20); and (ii) the depth of the slot (42) is longer than half length of the compression spring (43) so as to avoid the deformation of the compression spring (43) and improve the performance of the compression spring (43).
[0030] Having described the invention by the description and illustrations above, it should be understood that these are exemplary of the invention and are not to be considered as limiting. Accordingly, the invention is not to be considered as limited by the foregoing description, but includes any equivalents.