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Exploitation and applicating research on surveying system of pyromagnetic effect during rupture process of PVC sheet with defects

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
Second International Conference on Engineering Rheology ICER 2003
Języki publikacji
EN
Abstrakty
EN
The paper introduces the exploitation of a surveying system which automatically follows the peak value of pyromagnetic effect, including the hardware of a single chip processor, a set of servo-mechanism etc., and the system software of data collecting program, data handler etc. Using it, breaking tension test under various strain-rate on PVC sheet samples with distributed micro-bores is conducted. The magnetic induction sensor automatically follows the peak value of magnetic induction density. The experimental results show that the exploitation of the surveying system is successful. During the rapture process of rheological material PVC sheet with defects, owing to the existence of internal temperature gradient leads to the occurrence of pyromagnetic effect in the fracture process zone at crack tip.
Rocznik
Strony
277--282
Opis fizyczny
Bibliogr. 12 poz., fot., rys., wykr.
Twórcy
autor
  • Institute of Fundamental Mechanics and Material Engineering Xiangtan University, 411105 Hunan, CHINA
autor
  • Institute of Fundamental Mechanics and Material Engineering Xiangtan University, 411105 Hunan, CHINA
autor
  • Institute of Fundamental Mechanics and Material Engineering Xiangtan University, 411105 Hunan, CHINA
autor
  • Institute of Fundamental Mechanics and Material Engineering Xiangtan University, 411105 Hunan, CHINA
Bibliografia
  • [1] Liang W., Shen Y.P. and Fang D.N. (2001): Coupling field in an infinite soft ferromagnetic elastic plane with a through crack. - J. Acta Mechanica Sinica, vol.33, No.6, pp.758-767.
  • [2] Liang Z.H. and Liang Z.W. (1995): Variational principles and generalized variational principles of boundary value problems of electromagnetic field theory. - J. Haerbin Institute of Technology, vol.27, No.2, pp.68-74.
  • [3] Moon F.C. (1984): Magneto Solid Mechanics. - New York: John Wiley and Sons.
  • [4] Nowiński J.L. (1978): Theory of Thermoelasticity with Application. - Netherlands: Sijthoff and Nordhoff.
  • [5] Pak Y.E. and Herrmann G. (1986): Conservation laws and the material momentum tensor for the elastic dielectric. - J. Eng. Sci., vol.24, pp.1365-1374.
  • [6] Pao Y.H. and Yeh C.S. (1973): A linear theory for soft ferromagnetic elastic solids. - J. Eng. Sci., vol.l 1, pp.415-436,
  • [7] Wan Y.P. and Fang D.N. (2001): Nonlinear constitutive relations for magnetostrictive materials. - J. Acta Mechanicu Sinica, vol.33, No.6, pp.749-757.
  • [8] Wang X.M. and Shen Y.P. (1994): Some basie theory on electromagnetic thermo-elasticity medium-electromagnetic thermodynamic theory. - J. Applied Mechanic, vol.l 1, No.3, pp.42-49 .
  • [9] Yang J.Y., Zhu P.C. and Zhuang L. (1992): The study of magnetism on the Fe-material under the action of a force. - J, Mechanics and Practice, vol.l4, No.5, pp.66-67.
  • [10] Yuan L.W. (1994): Rheology of Bodies with Defects. - Beijing: Pub. House of Nat. Def. Ind.
  • [11] Yuan L.W. (1997): Thermodynamic character and electromagnetic nature of the fracture process zone at crack tip In rheological material with defects. - Natural Sci. J. Xiangtan Uni, vol.l9, No.3, pp.29-37.
  • [12] Zhang H.Q. (1995): On the magnetic field excited by displacement current. - J. Jilin Institute of Chemical Technology, vol.l2, No.4, pp.79-81.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0005-0054
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