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1. Field of the Invention
The present invention relates generally to a pneumatic impact hammer, and more particularly to an innovative one which is configured with a two-section pre-pressing rear damper.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98
The impact hammer referred to in the present invention is a heavy-duty pneumatic tool, which allows a tapered or flat tool head to be assembled onto its hammering end to form an auxiliary tool for drilling, chiseling and refitting of concrete structurea in a construction project.
According to the structural configuration of conventional impact hammers, a heavy main body of the impact hammer is generally configured to maintain the operational stability and prevent its jumping arising from strong vibration. Yet, given the function of power and anti-power, the main body of the heavy-duty impact hammer may not jump in the operation, but the anti-power when hammering the object with the tool head will generate violent vibration, making it difficult for users to manually hold the tool and even resulting in fatigue or personal injury, etc.
For the aforementioned reasons, breakthrough improvement has to be made for the damping and buffering structure of said impact hammer; in order to strengthen the absorbing power for the vibration of rear seat during hammering of the impact hammer. A double-damping suspension mechanism has been configured in a manner that a damper is assembled correspondingly at front and rear ends of the inner casing and outer barrel. It is found from actual applications that, the conventional single-sided damping structure can realize good shock-absorbing and buffering effect for the rear seat, but the impact force of the internal piston of the impact hammer is excessively absorbed, leading to obvious decline of the impact force of the impact hammer.
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 structural configuration of the two-section pre-pressing rear damper, its elastic force is pre-pressed to ensure that it is constantly larger than that of the front damper (without the same elastic force balance of front/rear damper arising from free floatation of the internal slide). When the internal slide of the impact hammer yields recoil force under the impaction of the piston, the two-section pre-pressing rear damper is employed to realize stronger buffering effect, so that the impact force of the piston is not much affected, thereby improving the impact efficiency and yielding excellent buffering effect 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.
The impact hammer A includes a main body 10, comprising of an outer barrel 11, an air inlet 12, an internal slide 13, an actuating cylinder 14 and an air flow switching module 15. The air inlet 12 is placed at rear end of the outer barrel 11. The internal slide 13 is slidably accommodated between front end wall 111 and rear end wall 112 of a holding space 110 within the outer barrel 11. The actuating cylinder 14 is arranged at front end of the internal slide 13, and the front end of the actuating cylinder 14 is protruded from the front end of the outer barrel 11 to form a tool head coupling portion 16. The air flow switching module 15 is assembled at the rear end of the actuating cylinder 14 to control the movement of the piston 17 within the actuating cylinder 14. Moreover, the rear end of the actuating cylinder 14 is provided with an air inlet duct 18 that can be slidably extended and inserted into the air inlet 12.
A front damper 20 is assembled between the front end of the internal slide 13 of the main body 10 and the front end wall 111 of the holding space 110.
A two-section pre-pressing rear damper 30 is assembled between the rear end of the internal slide 13 of the main body 10 and the rear end wall 112 of the holding space 110. Said two-section pre-pressing rear damper 30 comprises: superposed upper elastic buffer 31 and lower elastic buffer 32, of which at least the lower elastic buffer 32 is pressed by a pre-pressing member 33 to the preset degree. Referring to
Of which, the upper elastic buffer 31 of the two-section pre-pressing rear damper 30 is a cylindrical block made of elastic material (e.g. rubber and silica gel). Referring to
Referring to
Of which, said main body 10 also comprises of a handle 19, which is set at rear end of the outer barrel 11 of the main body 10 with C-shaped extension. Moreover, a rear-set air inlet coupling portion 50 is assembled at rear end of the handle 19 for guiding of air pressure.
Based upon above-specified structural configuration, the present invention is operated as follows:
Referring to
The core configuration of the impact hammer A of the present invention lies in the technical characteristic of said two-section pre-pressing rear damper 30. When the piston 17 within the actuating cylinder 14 generates impact movement to make the internal slide 13 yield a recoil force, the lower elastic buffer 32 of the two-section pre-pressing rear damper 30 is pre-pressed by the pre-pressing member 33 into a preset state, so the elastic force of the two-section pre-pressing rear damper 30 is constantly larger than that of the front damper 20, preventing the same elastic force balance of front/rear damper arising from free floatation of the internal slide 13. That is to say, when the internal slide 13 of the impact hammer yields recoil force under the impaction of the piston 17, the two-section pre-pressing rear damper 30 is employed to realize stronger buffering effect, so that the impact force of the piston 17 is not much affected, thereby improving the impact efficiency and yielding excellent buffering effect.
Number | Name | Date | Kind |
---|---|---|---|
2019964 | Hamerly | Nov 1935 | A |
2187502 | Shaff | Jan 1940 | A |
4388972 | Gidlund | Jun 1983 | A |
5322131 | Pressley et al. | Jun 1994 | A |
5697456 | Radle et al. | Dec 1997 | A |
5921327 | Henriksson et al. | Jul 1999 | A |
6421880 | Prajapati et al. | Jul 2002 | B1 |
6755260 | Allan | Jun 2004 | B1 |
7322428 | Bacila | Jan 2008 | B2 |
7523790 | Arakawa et al. | Apr 2009 | B2 |
7527107 | Berger et al. | May 2009 | B2 |
Number | Date | Country | |
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20110232929 A1 | Sep 2011 | US |