Dual-fuel integrated switch
11008958 · 2021-05-18
Assignee
Inventors
Cpc classification
Y02T10/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F02D19/0676
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D19/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/0836
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02D19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A dual-fuel integrated switch includes a bracket. A valve body is provided on one side of the bracket. The inside of the valve body is provided with a spool adapted to the valve body. The spool rotates in the valve body. The first flow passage and the second flow passage communicating with the first flow passage are provided in the spool, an arc-shaped groove is provided on the outer wall of the spool, and the third flow passage adapted to the groove is provided on the side wall of the valve body. The number of the third flow passages is two, and the arc formed by the third flow passage on the side wall of the valve body is the same as the arc at the outer end of the side wall of the groove.
Claims
1. A dual-fuel integrated switch, comprising a bracket, wherein a valve body is provided on a first side of the bracket, an inside of the valve body is provided with a spool adapted to the valve body, the spool rotates in the valve body, a first flow passage and a second flow passage are provided in the spool, the first flow passage communicates with the second flow passage, an arc-shaped groove is provided on an outer wall of the spool, and a plurality of third flow passages adapted to the arc-shaped groove are provided on a side wall of the valve body.
2. The dual-fuel integrated switch according to claim 1, wherein a number of the plurality of third flow passages is two, and an arc formed by each third flow passage of the two third flow passages on the side wall of the valve body is the same as an arc at an outer end of the side wall of the groove, and an inside of the each third flow passage is provided with a connector, the connector is adapted to the each third flow passage.
3. The dual-fuel integrated switch according to claim 1, wherein a cylindrical diameter of the spool is gradually reduced from first end of the spool to second end of the spool, the first end of the spool is closer to the bracket than the second end of the spool the first flow passage is radially arranged on the spool, the second flow passage is coaxially provided with the spool, and an end of the first flow passage communicates with an end of the second flow passage near the bracket.
4. The dual-fuel integrated switch according to claim 1, wherein the groove is provided on an outside of the second flow passage, the first flow passage is provided on a side close to the bracket, and both the first flow passage and the groove are provided on an upper half of the spool.
5. The dual-fuel integrated switch according to claim 1, wherein second side of the bracket is provided with a rotary disk connected to the bracket, and the rotary disk is connected to the spool and drives the spool to rotate.
6. The dual-fuel integrated switch according to claim 5, wherein three inching switches are provided on the second side of the bracket, and a triggering portion adapted to the three inching switches is provided on an edge of a side of the rotary disk near the bracket.
7. The dual-fuel integrated switch according to claim 5, wherein the rotary disk is provided with a connecting column connected to the spool, the bracket is provided with a sleeve adapted to the connecting column, and the connecting column passes through the sleeve.
8. The dual-fuel integrated switch according to claim 5, wherein a limit column is provided on the second side of the bracket, a compression spring and a steel ball provided above the compression spring are provided in the limit column, the steel ball moves up and down in the limit column, an inner wall of an upper end of the limit column is provided with a retaining ring, a cylindrical diameter of the retaining ring is smaller than a cylindrical diameter of the steel ball, a stroke section is provided on a side of the rotary disk close to the bracket, a hand feel groove adapted to the steel ball is provided on the stroke section, and a limit groove adapted to a thickness of the stroke section is provided on the upper end of the limit column.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6) The names of the parts indicated by the numerals in the figures are as follows: 1—bracket, 2—valve body, 3—spool, 4—the first flow passage, 5—the second flow passage, 6—groove, 7—the third flow passage, 8—connector, 9—hand feel groove, 10—limit groove, 11—steel ball, 12—retaining ring, 13—connecting column, 14—sleeve, 15—limit column, 16—rotary disk, 17—stroke section, 18—inching switch, 19—triggering portion, 20—opening, 181—the first inching switch, 182—the second inching switch, 183—the third inching switch.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(7) The present utility model will be described in further detail below with reference to the appended figures and embodiments.
Embodiment 1
(8) The dual-fuel integrated switch, as shown in
(9) The number of the third flow passages 7 is two, and the arc formed by the third flow passage 7 on the side wall of the valve body 2 is the same as the arc at the outer end of the side wall of the groove 6, and the inside of the third flow passage 7 is provided with a connector 8 adapted to the third flow passage 7. The third flow passage 7 on the valve body 2 cooperates with the groove 6 on the outer side wall of the spool 3, which facilitates the groove 6 to communicate with the third flow passage 7 when the spool 3 rotates, thus ensuring stable flow of gasoline, reducing the matching precision requirements for the groove 6 and the third flow passage 7, and improving the use safety of the art.
(10) The cylindrical diameter of the spool 3 is gradually reduced from the end of the spool 3 near the bracket 1 to the other end of the spool 3. The first flow passage 4 is radially arranged on the spool 3, the second flow passage 5 is coaxially provided with the spool 3, and the end of the first flow passage 4 communicates with the end of the second flow passage 5. The second fuel flows through the first flow passage 4 and the second flow passage 5 and flows out from the end of the spool 3 far from the bracket 1, which facilitates the circulation of the second fuel, simplifies the structure of the art and facilitates the installation.
(11) The groove 6 is provided on the outside of the second flow passage 5, the first flow passage 4 is provided on the side close to the bracket 1, the spool 3 is divided into an upper half and a lower half based on the horizontal plane where the axle of the spool 3 is located, both the first flow passage 4 and the groove 6 are provided on the upper half of the spool 3, and the first flow passage 4 is provided on the extension line extending in the direction of the first flow passage 4 at both ends of the groove 6. It is convenient to control the first flow passage 4 to circulate the second fuel or the groove 6 to circulate gasoline when the spool 3 rotates at different angles, so as to realize fuel switching.
(12) The other side of the bracket 1 is provided with a rotary disk 16 connected to the bracket 1, and the rotary disk 16 is connected to the spool 3 and drives the spool 3 to rotate. By rotating the rotary disk 16 to drive the spool 3 to rotate, switching between gasoline and the second fuel is achieved, which simplifies the operation of this art.
Embodiment 2
(13) The dual-fuel integrated switch, as shown in
Embodiment 3
(14) The dual-fuel integrated switch, as shown in
(15) In summary, the above embodiments are only preferred ones of the present utility model. Any equivalent changes and modifications made according to the scope of the present utility model patent shall fall within the scope of the present utility model patent.