1. Field of Invention
The present invention relates to a pneumatic tool and, more particularly, to a durable pneumatic tool.
2. Related Prior Art
Referring to
The conventional pneumatic tool encounters a serious problem. When the ends of the rotor 92 are fit in the bearings 95, a clamping device is used to provide an appropriate gap between the rotor 92 and one of the covers 94 and another appropriate gap between the rotor 92 and the pad 93. However, in the operation of the pneumatic tool, intense impacts are exerted on the rotor 92 so that the rotor 92 moves axially in the cylinder 91. The appropriate gaps are gone. The gap between the rotor 92 and the pad 93 might become excessively small so that they wear against each other and, in the worst case, stick to each other. The gap between the rotor 92 and one of the covers 94 however become excessively large so that there is leak between the rotor 92 and the cylinder 91. The leak jeopardizes the performance of the conventional pneumatic tool.
The friction between the rotor 92 and the pad 93 generates a lot of heat that comprises the efficiency of the conventional pneumatic tool. The lives of the parts may be shortened.
The present invention is therefore intended to obviate or at least alleviate the problems encountered in prior art.
It is an objective of the present invention to provide a reliable pneumatic tool.
It is another objective of the present invention to provide an efficient pneumatic tool.
It is another objective of the present invention to provide a durable pneumatic tool.
According to the present invention, a pneumatic tool includes a rotor, a cylinder, two pads, two covers, two bearings and a collar. The rotor includes a first axle formed thereon and a second axle opposite to the first axle. The cylinder includes a central space for receiving the rotor. Each of the pads is attached to an end of the cylinder and includes an aperture through which one of the first and second axles is inserted. Each of the covers includes an aperture through which a related one of the first and second axles is inserted. Each of the bearings is attached to a related one of the covers to support a related one of the first and second axles. The collar is provided on the second axle and between the rotor and a related one of the bearings.
Other objectives, advantages and features of the present invention will become apparent from the following description referring to the attached drawings.
The present invention will be described via detailed illustration of two embodiments in view of the prior art referring to the drawings.
Referring to
The cylinder 10 includes a space 11 eccentrically defined therein so that the cylinder 10 includes a thick portion 12 and a thin portion 16 opposite to the thick portion 12. The cylinder 10 is open at two ends. A recess 13 is longitudinally defined in each of the ends of the thick portion 12 of the cylinder 11. Apertures 15 are defined transversely in the thin portion 16 of the cylinder 11. The apertures 15 are in communication with the space 11.
The rotor 20 includes a body 21, two axles 22 oppositely extended from the body 21, grooves 25 longitudinally defined in the body 21 and fins 26 each movably disposed in a related one of the grooves 25. One of the axles 22 (the “first axle 22”) is formed with teeth. The other axle 22 (the “second axle 22”) includes a groove 24 annularly defined therein. A collar 23 and a washer 27 are provided on the second axle 22. The washer 27 includes a retroflex configuration for resiliently pressing the collar 23. A C-clip 28 is fit in the groove 24.
Each of the pads 30 includes an opening 31 centrally defined therein, two slots 32 defined around the opening 31 and an aperture 34 defined therein corresponding to the recesses 13.
Each of the cover sets 40 includes a cover 41 and a bearing 42. The cover 41 includes a first section 411 for receiving a related one of the pads 30 and a related one of the ends of the cylinder 10 and a second section 412 for receiving the bearing 42. The cover 41 includes an opening 413 defined therein corresponding to the openings 31 and a recess 415 defined therein corresponding to the apertures 34.
A pin 14 is inserted through the aperture 34 of each of the pads 31 and includes an end fit in a related one of the recesses 13 and another end fit in the recess 415 of a related one of the covers 41. Therefore, the cylinder 10, the pads 30 and the covers 41 are joined together.
As best shown in
Referring to
The pneumatic tool according to the present invention exhibits several advantages over the conventional pneumatic tool addressed in the RELATED PRIOR ART. Firstly, its performance is stable since the gap between the body 21 of the rotor 20 and each of the pads 30 is retained. Secondly, its efficiency is stable since the gap between the body 21 of the rotor 20 and each of the pads 30 is retained. Thirdly, it is durable because the rotor 20 do not wear against the pads 30 due to the constant gap between the body 21 of the rotor 20 and each of the pads 30.