By Daizhong Su, Kai Xue, Shifan Zhu
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5 Nephogram of strain on the accompanying tube during the impact process Fig. 6 The varying curves of stress flowing with time Conclusions In this paper, a new kind of firing device of pneumatic cannon is introduced, and its detail structure is also designed. Then dynamic analysis is carried out with its working process. Using the finite element software ANSYS, the strength is calculated and to the dynamic impact process is analyzed. The results show that the pneumatic firing device designed can effectively solve the problem of the time of the pneumatic valve’s open and close and the pneumatic cannon’s recoiling movement becomes much more stable.
We can ignore the air resistance in front of the fire-extinguish bomb. And the opening of the air inlet has little effect on the feasibility of the design. Therefore, we can ignore it as well. According to the mechanical analysis of the control pin, the rate equation of the fire-extinguish bomb firing process can be Fig. 3 A sketch map of stress on the control pin deduced. During the firing process, the accompanying tube and the fire-extinguish projectile move forward under the action of propulsive force which is large enough.
Dagilis, L. Vaitkus, and D. Kirejchick: Slider-link driven compressor (I). 6(62) (2006)  T. C. Lim, and R. Singh: Vibration Transmission Through Rolling Element Bearings, Part V: Effect of Distributed Contact Load on Roller Bearing Stiffness Matrix, Journal of Sound and Vibration, Vol. 169 (1994)  Arthur G. Erdman, and George N. Sandor: Mechanism Design, Analysis and Synthesis Vol. 1, Chapter 5 (Prentice Hall, United States of America 1991)  Claus Borgnakke, Richard E. Sonntag, and Gordon J Van Wylen: Fundamentals of Thermodynamics, Chapter 8 (Wiley, United States of America 2003)  W.
Advanced design and manufacture IV by Daizhong Su, Kai Xue, Shifan Zhu