1. Field of the Invention
The present invention relates generally to a pneumatic tool and more specifically, to an air cylinder for reciprocating pneumatic tool.
2. Description of the Related Art
The air cylinder of a conventional reciprocating pneumatic tool is a single member made of metal in integrity. This integrated design of metal air cylinder is difficult to manufacture, not suitable for mass production. Further, it is difficult to control the precision of this integrated design of metal air cylinder. A less precision of this integrated design of metal air cylinder may result in an installation failure.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide an air cylinder, which can be formed of a plurality of parts to lower processing difficulty and to accelerate manufacturing speed. It is another object of the present invention to provide an air cylinder, which can be conveniently and selectively arranged into one of a variety of forms to fit different requirements. It is still another object of the present invention to provide an air cylinder, which assures positive connection between parts for durable use.
To achieve these and other objects of the present invention, the air cylinder is installed in a reciprocating pneumatic tool for working with an air valve assembly and a piston to reciprocate a tool bit, comprises a piston tube having a piston hole axially extended through two distal ends thereof for receiving the piston, a first coupling portion at one end thereof, an air inlet, and an exhaust hole; a outer barrel has a receiving hole axially extended through two distal ends thereof, an air intake passage in air communication between the receiving hole of the outer barrel and the air inlet of the piston tube, and an air outlet passage in air communication between the receiving hole of the outer barrel and the exhaust hole of the piston tube; and a connector disposed at one end for holding the tool bit for striking by the piston.
Referring to
Referring to
The piston tube 10 has a tubular body 11, a piston hole 12 axially extended through the two distal ends of the tubular body 11 within which the piston 50 is moved, a first coupling portion 13, which is an outer thread extended around the periphery of one end of the tubular body 11, a second coupling portion 15 at the other end of the tubular body 11 around the periphery, an air inlet 17, and a plurality of exhaust holes 18.
The outer barrel 20 has a barrel body 21, a receiving hole 22 axially extended through the two distal ends of the barrel body 21 for accommodating the piston tube 10, a handle mounting portion 23, for example, an outer thread extended around the periphery of the barrel body 21 near one end, a stop edge 24 at the front end of the barrel body 21, a coupling portion 25 at the other end of the barrel body 21 within the receiving hole 22 for receiving the second coupling portion 15 of the piston tube 10, an air inlet 26, an air intake passage 27 and two air outlet passages 28 arranged in parallel in the barrel body 21 in air communication with the receiving hole 22, and two exhaust holes 29 respectively disposed in communication between the air outlet passages 28 and the outside of the barrel body 21.
The connector 30 has a connector body 31, a coupling portion 33, for example, an inner thread formed in one end for threading onto the first coupling portion 13 of the piston tube 10, a stop edge 34 for stopping against the stop edge 24 of the outer barrel 20, a receiving hole 36 axially extended through the two distal ends, and a threaded neck 37 for the mounting of a tool adaptor to hold the tool bit C.
During operation of the pneumatic tool T, compressed air passes through the air valve assembly 60 and the air intake passage 27 of the outer barrel 20 into the air inlet 17 and the piston hole 12 to move the piston 50 backwards. When the piston 50 reached the air valve assembly 60 during return (backward) stroke, compressed air passes directly from the air valve assembly 60 into the piston hole 12 instead to move the piston 50 forwards, thereby causing the piston 50 to strike against the tool bit C. This reciprocating motion is repeatedly again and again.
Further, latching, grinding, or punching technique can make the second coupling portion of the piston tube.
Further, gasket rings or sealing rubbers may be used to seal gaps between the parts of the air cylinder.
As indicated above, the invention has the following advantages:
1. The air cylinder can be formed of a plurality of parts to lower processing difficulty and to accelerate manufacturing speed.
2. The combination design of the air cylinder can be conveniently and selectively arranged into one of a variety of forms to fit different requirements.
3. The combination design of the air cylinder assures positive connection between parts for durable use.
Number | Date | Country | Kind |
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93213111 | Aug 2004 | TW | national |