1. Field of the Invention
The present invention relates to a dispenser, and more particularly to a dispenser for adjusting rationing liquid.
2. Description of Related Art
A conventional dispenser provides a double pistons structure for dispensing emulsion. The conventional dispenser includes a pump and an inductor received in the pump. The inductor has a top connected with a saddle head. The pump has an actuating groove defined therein for receiving the inductor. An elastomer is located in the actuating groove and connected with a bottom of the inductor. A valve is positioned in a bottom of the actuating groove. A piston set is assembled with the inductor. The piston set includes a first piston and a second piston connected with the first piston. The first piston includes a first tube for assembling with the inductor and a first flange for abutting against an inner periphery of the actuating groove. The second piston includes a second tube for assembling with the first piston and a second flange for abutting against the inner periphery of the actuating groove. The conventional dispenser is strengthened due to the double pistons structure for providing a long-wearing effect.
However, the conventional dispenser is not able to provide quantitatively rationing. The rationing of the conventional dispenser is decided by a pressure on the saddle head. This is inconvenient and is not able to provide a precise ration. When the pressure is over the expected value, the overflow dose will cause waste.
The present invention has arisen to obviate/mitigate the disadvantages of the conventional dispenser.
The main objective of the present invention is to provide an improved dispenser for adjusting rationing liquid.
To achieve the objective, a dispenser for adjusting rationing liquid in accordance with the present invention comprises a base adapted to assemble with a bottle, a saddle head movably sleeved on the base, an upper valve set mounted in the saddle head, and a lower valve set mounted in the base. The base has a space defined therein and passing therethrough. The saddle head has a pathway defined therein and passing therethrough. The saddle head has a piston movably received in the space. The piston has an outer periphery abutting against an inner periphery of the space. The saddle head has a seat mounted in interior thereof for receiving the upper valve set. The saddle head has a skirt downwardly formed thereon. The base has a dove-tail flange annularly and outwardly extending therefrom. The skirt has a dove-tail flange annularly and inwardly extending therefrom for corresponding to the dove-tail flange of the base such that the dove-tail flange of the base and the dove-tail flange of the skirt are buckled to each other for preventing the saddle head detaching from the base. A spring is sleeved on the base for providing a restitution force. The upper valve set is mounted in the pathway and the lower valve set is mounted in the space in the base. The upper valve set has a same structure with the lower valve set. Each of the upper valve set and the lower valve set has an outer ring and an inner ring received in the outer ring. Each outer ring has a plunger disposed therein and a plurality of ribs connected with the plunger and an inner periphery of the outer ring. Each inner ring has a guiding path defined therein. The plunger of the outer ring is able to selectively seal the guiding path of the corresponding inner ring. Each guiding path has a downwardly tapered structure. The part of each guiding path contacted with the plunger has a rounded structure for preventing the plunger from damaging.
In accordance with another aspect of the present invention, the saddle head has a flange annularly and outwardly extending therefrom. The two ends of the spring are respectively abutted against the base and the flange.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
The base 1 has a tubular structure. The base 1 has a space 11 defined therein and passing therethrough. The base 1 has a lower end adapted to connect with the bottle and the lower valve set 4 is mounted in the lower end of the base 1 for communicating the bottle and the space 11.
The saddle head 2 has a pathway 25 defined therein and passing therethrough. The saddle head 2 has a piston 21 movably received in the space 11. The piston 21 has an outer periphery abutting against an inner periphery of the space 11. As shown in
As shown in
In the preferred embodiment of the present invention, each plunger 311, 411 has a hemispherical shaped structure for tightly plunging into the guiding path 321, 421. Each guiding path has a downwardly tapered structure. The part of each guiding path 321, 421 contacted with the corresponding plunger 311, 411 has a rounded structure for preventing the plunger 311, 411 from damaging.
With reference to
As above described, the saddle head 2 is pressed in a first time, the air in the space 11 is exhausted outside. When the saddle head 2 is restored, the liquid in the bottle is drained into the space 11. Later, the space 11 is refilled with the liquid when the saddle head 2 is pressed in every time. The dose of the liquid drained from the saddle head 2 is the same with that refilled in the space 11. Therefore, the dose of the liquid is stable in every time for providing the rationing liquid.
With reference to
Although the invention has been explained in relations to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.