(1) Field of the Invention
The present invention relates to a spray device, and more particularly, the material is sprayed continuously as a result of controlling the trigger within a period of time.
(2) Description of the Prior Art
In general, a conventional spray includes a container in which liquid is received and a cap seals the open top of the container, a spray head is connected to the cap and a dip tube is connected to the spray head and inserted into the liquid. When pull the spray head of a trigger, the liquid is sprayed via a pressure, sucked into the dip tube, and ejected from the nozzle of the pray head.
Additionally, some dip tubes are connected to a weight that keeps the dip tube to be vertical and can suck the liquid even when the container is titled. The cap includes a safety design that employs its flexibility to lock across threads on the container so that the kids cannot open the cap easily.
The above mentioned spray are focused on the method that the liquid is sucked and the safety cap, the method that the spray is generated is the same which is that when pulling the trigger, the liquid is sucked and sprayed from the nozzle of the spray head. In other words, someone pull the trigger to generate a spray, when the trigger pivots back, no spray is generated. If the user needs more spray, it must pull the trigger repeatedly.
The present invention intends to provide a spray that uses mechanical method to generate continuous sprays according to the trigger is pulling and the trigger pivots back to its original position.
The primary object of the present invention is to provide a spray, which comprises a spray unit, a restored unit, a plurality of joysticks, and a plurality of pumps. The spray unit has pipe base to connect to a container and a trigger is connected with a nozzle. A restored unit is connected to the spray unit and it restores the trigger to an original position of the trigger. A plurality of joysticks generating a reciprocated force via a mechanical method between pull and restore said trigger. A plurality of pumps is configured to a fluid channel of the spray unit, corresponded to the joysticks. The restored unit restores the plurality of joystick to control the trigger so as to the spray generate continuously sprays during movement of the trigger.
The present invention further provides a method for controlling a spray; the step of the method includes a spray unit having a nozzle and a trigger, and a restored unit controlling the trigger to move to its original position of the trigger. The method includes step 1: the trigger being pivoted back and forth by mechanical method to drive a plurality of joysticks to generate reciprocated forces; step 2: the plurality of joysticks applying the reciprocated forces to fluid channel in the plurality of pumps, and step 3: the plurality of pumps connected with the nozzle and configured to provide a continuous spray via said trigger.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings that show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
The present invention is illustrated by way of example and won't intend to be limited by the figures of the accompanying drawing, in which like notations indicate similar elements.
As follows, the invention has been described with reference to specific embodiments. However, it will be appreciated that various modifications and changes can be made without departing from the scope of the present invention. The specification and figures are to be regarded in an illustrative manner, rather than a restrictive one, and all such modifications are intended to be included within the scope of present invention. Benefits, other advantages, and solutions to problems have been described above with regard to specific embodiments.
Referring to
The trigger 12 includes a rack 15 and a shaft 2 which has a gear 25 and at least one spiral disk 22 mounted thereto. The rack 15 and the gear 25 are engaged with each other so as to drive the shaft 2 and at least one of the spiral disk 22 which drives the joysticks 41 alternatively.
As shown in
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On the contrary, 2, the push rod 5 moves forward y the springs 54 and the rack 15 drives the gear 25 so that the shaft 2 and the spiral disk 22 are rotated to operate the joysticks 41 to such and push the liquid alternatively when releasing the trigger 1. Accordingly, the spray generates continuous spray when the trigger 12 is pulled and released.
As shown in
Step 1: the trigger 12 being pivoted back and forth by mechanical way to drive multiple joysticks 41 to generate reciprocate forces;
Step 2: multiple joysticks 41 applying the reciprocate forces to fluid ways 49 in said plurality of pumps 4, and
Step 3: plurality of pumps 4 connected with the nozzle 11 from which a continuous spray is generated.
The method of the mechanical way uses a rack 15 and a gear 25 to drive a shaft 2 and a spiral disk 22 on the shaft 2, the spiral disk 22 drives the multiple rods 41.
Furthermore, a trigger 12 is used to drive a push rod 5 which has the rack 15 connected thereon. The shaft 2 has the gear 25 at one end thereof and the rack 15 is driven by the push rod 5 so as to rotate the gear 25 and the shaft 2. The shaft 2 rotates in clockwise and counter clock-wise directions when the trigger 12 is pulled and released.
The multiple pumps 4 mentioned in the method are defined by chambers 405 defined in a body 40 and each chamber 405 has an inlet 404 and an outlet 406, the joysticks 41 are operated in the chambers 405.
Further, the method may be limited to use two pumps 4 so that the body 40 has two chambers 405, each chamber 405 has an inlet 404 and an outlet 406, the joysticks 41 are operated in the chambers 405.
The method further includes a second valve 80 is located corresponding to the inlet 404. The nozzle 11 has a signal pipe 407 connected to the pump 4 and the signal pipe 407 has a first valve 70 received therein. The first valve 70 in the signal pipe 407 is composed of two inlets 71 cooperated with a pivotal member 72 which seals and opens the two inlets 71 alternatively.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Date | Country | Kind |
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097201008 | Jan 2008 | TW | national |