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1. Field of the Invention
The present invention relates generally to a pneumatic tool, and more particularly to an innovative one which is configured with a buffer structure.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98.
Reciprocating pneumatic tools, such as: pneumatic saws, pneumatic hammers and pneumatic cutters, are available with different functions depending on the patterns of the tool end. In the present invention, said reciprocating pneumatic tool is also provided with such patterns.
According to the operating principle of a reciprocating pneumatic tool, pneumatic supply is guided into the tool, then controlled by a control valve for its on/off state, and activated by an actuator module for automatic guide and switching. Meanwhile a piston rod along with the tool end (e.g., saw and hammer) generates reciprocating movement.
In view of the existing strong vibration of conventional reciprocating pneumatic tool, a buffer structure has been developed to address such problems. The major concern of the present invention is focused on said buffer structure.
For the relevant buffer structure of typical reciprocating pneumatic tool, refer to Taiwan patent No. 471377: “A Suspension Damping Mechanism of Handheld Pneumatic Tool”, wherein a suspension bushing is used to assemble the actuator module into an independent unit, so the bushing can slide in the bore of the casing. A front damping spring is assembled between the bushing and the front end of the bore, while a rear damping spring is assembled between the bushing and air guide support for damping purpose. However, it is found from actual applications that, the double-spring damping mechanism is structurally designed in a manner wherein it is elastically supported by the front and rear damping springs to enable bi-directional suspension damping of the bushing. Yet, as the front and rear damping springs are in a normal compression state of different degrees, they cannot be fully released, leading to shorter service life. Moreover, both the front and rear damping springs are physical elements, friction or bigger noise may occur during instantaneous compression or release process, making it necessary to address these problems.
Thus, to overcome the aforementioned problems of the prior art, it would be an advancement if the art to provide an improved structure that can significantly improve the efficacy.
Therefore, the inventor has provided the present invention of practicability after deliberate experimentation and evaluation based on years of experience in the production and development of related products.
Based on the unique structural configuration of present invention wherein the “reciprocating pneumatic tool” mainly comprises a front buffer air chamber and a by-pass air supply passage, air pressure passing through air control valve chamber of the air pressure control module is fed via air guide passage to the actuator module and piston of the suspension internal slider for reciprocating movement. On the other hand, air pressure is guided through by-pass air supply passage, so the front buffer air chamber accumulates air pressure to generate a damping effect on the front end of the suspension internal slider. Thus, the reciprocating pneumatic tool of the present invention is of a rear spring-loaded and front air-pressure type buffer structure, enabling simplification of the components, extension the service life of rear damping spring and reduction of the noise level with better applicability.
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.
A suspension internal slider 20 is slidably set into the hollow chamber 14 of the main tool body 10. The suspension internal slider 20 includes an actuator module 21 and an actuating cylinder 23 with a piston 22. The front end 24 of the suspension internal slider 20 is provided with a forward flange tube 25, and the rear end 26 is provided with a backward flange tube 27. Of which, the forward flange tube 25 is penetrated into the through-hole 120 on the front end 12 of the main tool body 10, and the backward flange tube 27 is mated with air guide passage 153 of the air pressure control module 15. One end of the piston 22 is provided with an extension bar 221 that protrudes out of the forward flange tube 25. At one end of the extension bar 221, a tool joint 222 is set for assembly and locating of the tool 223 (e.g. saw).
A rear damping spring 30 is supported between the air pressure control module 15 and the rear end 26 of the suspension internal slider 20.
A front buffer air chamber 40 is formed between inner wall of the front end 12 of the main tool body 10 and the front end 24 of the suspension internal slider 20.
A by-pass air supply passage 50 is set into the cylinder wall 11 of the main tool body 10. The by-pass air supply passage 50 is arranged at interval with the hollow chamber 14 along its extension. Moreover, both ends of the by-pass air supply passage 50 are provided with a first venting end 51 and a second venting end 52, of which the first venting end 51 is linked to the air control valve chamber 152 of the air pressure control module 15, and the second venting end 52 linked to the front buffer air chamber 40.
Based on above-specified structural configuration, as shown in
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Additionally, the detailed structure of the actuator module 21 of the suspension internal slider 20, the actuating mode of the air passage and the driving mode of the piston 22 are covered by the prior art, making it unnecessary to describe them in the present invention.