Sprinkler Water Flow Switching Device
20240035587 ยท 2024-02-01
Inventors
Cpc classification
B05B3/0431
PERFORMING OPERATIONS; TRANSPORTING
F16K31/52416
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A sprinkler water flow switching device is assembled in a movable seat of the water sprinkler with a partition dividing into an impeller chamber and a gear chamber. The partition is provided with a first water channel and a second water channel for directing water from the gear chamber to the impeller chamber, so as to control the direction of rotation of the impeller in the impeller chamber. The water flow switching device includes a projection member, a seesaw plate and a driving lever in the gear chamber; the driving lever can oscillate and actuate the seesaw plate to move on the projection member, then the seesaw plate can move as a seesaw to selectively close the water inlet of the first water channel or the second water channel, thereby changing the rotation direction of the impeller and the water spray direction.
Claims
1. A sprinkler water flow switching device, is assembled in a movable seat of a water sprinkler, the movable seat is internally divided by a partition into an impeller chamber and a gear chamber, the partition is provided with a first water channel and a second water channel connecting the impeller chamber and the gear chamber; including: a projection member, provided on the partition and located between the first water channel and the second water channel; a seesaw plate, with a pivot at the middle of two lateral sides, the seesaw plate is located at the position corresponding to the inlet sections of the first water channel and the second water channel, and the surface of the seesaw plate in relation to that inlet sections being defined as a blocking surface, the blocking surface having a groove at the middle comprising a first sidewall, a second sidewall and a bottom wall which is connected between the first sidewall and the second sidewall; a top end of the projection member is positioned in the groove; and a driving lever, comprising a rod and a pivot portion, the rod is oscillatablly extended and restricted in the gear chamber, the pivot portion is disposed on the rod corresponding to the end of the seesaw plate, the pivot portion is provided with two pivot holes, and the two pivots of the seesaw plate are separately pivoted in the two pivot holes; the oscillation of the driving lever could actuate the movement of the seesaw plate to displace its groove on the projecting member; when the first side wall or the second side wall is leaned against the top end of the projection member, the top end of the projection member will be supported at the eccentric position of the seesaw plate, so that the seesaw plate can selectively close the inlet section of the first water channel or the second water channel with the blocking surface.
2. The sprinkler water flow switching device according to claim 1, wherein a rib is provided in the middle of the bottom wall and a pivot tip is formed on the top end of the projection member, and the diameter of the pivot hole is larger than the outer diameter of the pivot, so that there is a gap between the pivot and the inner wall of the pivot hole.
3. The sprinkler water flow switching device according to claim 1, wherein the pivot portion comprises a base and two pivot lugs which are symmetrically connected with the two sides of the base, and each of the pivot lugs has a pivot hole.
4. The sprinkler water flow switching device according to claim 3, further comprises a first receiving seat and a second receiving seat, which are provided on the partition, and symmetrically installed on the two sides of the first water channel and the second water channel; the first receiving seat has a receiving groove, and the second receiving seat has a supporting surface in a rounded concave shape; one of the pivoting lugs is extended into the receiving groove, and the other is supported by the supporting surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0037] In order to facilitate the illustration of the idea of the present invention expressed in the above-mentioned Summary of the Invention, it is hereby expressed by specific embodiments. The various objects in the embodiments are depicted in the proportions, dimensions, deformations, or displacements applicable to the description, rather than in the proportions of the actual components, as indicated. The same and symmetrical configuration of the components in the remaining embodiments are represented by the same number. In addition, the directional terms in the description of each embodiment listed below are in accordance with the specified direction of the view, and cannot be used as an explanation of the restrictions of the invention.
[0038] The water flow switching device of the present invention is assembled in a movable seat 10 of a sprinkler control unit of a water sprinkler to switch the direction of the water flow. The movable seat 10 of the present invention is shown in
[0039] As shown in
[0040] The water flow switching device of the present invention includes a first receiving seat 21, a second receiving seat 22, a first pivot seat 23, a second pivot seat 24, a projection member a seesaw plate 26, and a driving lever 30.
[0041] The first receiving seat 21 and the second receiving seat 22, as shown in
[0042] The first pivot seat 23 and the second pivot seat 24, as shown in
[0043] The projection member 25, as shown in
[0044] The seesaw plate 26, as shown in
[0045] The driving lever 30, as shown in
[0046] The features of the above-mentioned water flow switching device are further explained as follows:
[0047] The movable seat 10 can be assembled with the water inlet connector at one end to connect with the water source, and its other end can be connected with the sprinkler pipe. So, when the water enters the gear chamber 13 through the first water channel 14 or the second water channel 15, continuously enters the impeller chamber 12, which can drive the impeller housed therein to rotate, synchronously actuate the gear assembly housed in the gear chamber 13 to act, further draw the movable seat 10 to rotate. For better understanding the structures, please refer to the prior art and
[0048] The outer end 311 of the driving lever 30 which is exposed outside the movable seat 10, is toggled when the movable base 10 is rotated to a predetermined angle (described in the prior art previously), causing the pivot portion 32 of the driving lever 30 to generate a slight oscillation, which in turn drives the seesaw plate 26 to seesaw and selectively close the water inlet sections 141,151 of the first water channel 14 or the second water channel 15 to achieve the purpose of switching the water flow.
[0049] As shown in
[0050] As shown in
[0051] As shown in
[0052] As shown in
[0053] As in
[0054] In summary, when the driving lever 30 is toggled, the seesaw plate 26 will be displaced along with the oscillation of the pivot portion 32, and the corresponding position of the pivot tip 251 will be changed accordingly, resulting in the change of the pivot point and the length of the lever arm, thus causing the seesaw plate 26 to generate a seesaw movement. In comparison with the driving lever 30, Changing the direction of the seesaw plate 26 saves much energy and it will closely seal the inlet section of one of the water channels, in other words, the inlet section of the other water channel will be completely open, therefore, there will be no flow disturbance of the inlet section for the first water channel 14 and the second water channel 15 that caused by a semi-opening status of two inlet sections at the same time.