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1. Field of the Invention
The present invention relates generally to an emulsion squeeze head, and more particularly to an innovative squeeze head with a double-piston mechanism mounted onto the suction pipe of an actuating cylinder.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98
The emulsion squeeze head is structurally designed in a manner that the pumping action is implemented by the lifting and sliding action of a piston in an actuating cylinder. The pumping quality and service life of the emulsion squeeze head is closely related to wear and tear of the piston.
In addition to the quality of the materials for the piston, the concentration of emulsion is also a crucial influential factor to the wear and tear of piston. As the emulsion with a higher concentration always contains fine articles, a close friction will occur between the sliding piston and the wall of the actuating cylinder, leading to possible wear and tear of the piston, failure of air-tightness, degraded pumping effect, poorer endurance and shorter service life of the emulsion squeeze head.
Thus, to overcome the aforementioned problems of the prior art, it would be an advancement in the art to provide an improved structure that can significantly improve efficacy.
Therefore, the inventor has provided the present invention of practicability after deliberate design and evaluation based on years of experience in the production, development and design of related products.
There is enhanced efficacy of the present invention.
Based on the present invention, the double-piston mechanism of the emulsion squeeze head is mainly composed of a first and a second piston. It is possible to improve the robustness and extend the life span of the piston mechanism of the emulsion squeeze head with better applicability.
The improvements brought about by this invention are as follows:
Based on the structure of the present invention, the first tube of the first piston and the second tube of the second piston can be set into different lengths. The first flange of the first piston and the second flange of the second piston are provided with space or without space, thus adapting itself to different suction spaces and strengths of the emulsion squeeze heads.
Although the invention has been explained in relation 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.
The features and the advantages of the present invention will be more readily understood upon a thoughtful deliberation of the following detailed description of a preferred embodiment of the present invention with reference to the accompanying drawings.
The emulsion squeeze head A comprises an actuating syringe 10 and a suction pipe 20 in the actuating groove 11 of the actuating syringe 10. The top of the suction pipe 20 is connected with a pressing head 30, while an elastic resetter 40 (a spring) is arranged between the bottom of the suction pipe 20 and the bottom wall of the actuating groove 11. Moreover, a stopper 50(a steel ball) is placed at the bottom of the actuating groove 11. The suction pipe 20 is also provided with a piston set 60.
The piston set includes a first piston 61, including a first connecting portion 611 and a first flange 612. The first connecting portion 611 is assembled onto the suction pipe 20, and the first flange 612 is abutted on the wall of the actuating groove 11. The piston set also includes a second piston 62, which is placed at one end of the first piston 61, including a second connecting portion 621 and a second flange 622. The second connecting portion 621 is assembled onto the first piston 61, and the second flange 622 is abutted on the wall of the actuating groove 11.
Based on the aforementioned structures, the key design of the present invention is that the piston set 60 is a double-piston mechanism composed of first piston 61 and second piston 62. When the sliding piston set 60 is lifted in the actuating groove 11 of the actuating syringe 10 (referring to
Referring to
Furthermore, the first tube 613 of the first piston 61 and the second tube 623 of the second piston 62 can be set into different lengths. The first flange 612 of the first piston 61 and the second flange 622 of the second piston 62 are provided with space or without space. In this preferred embodiment, the first tube 613 of the first piston 61 is shorter than the second tube 623 of the second piston 62. Referring to
The first piston 61 and second piston 62 can also be prefabricated.