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Effect of Strain Rate on Compression Behavior of Vinyl Ester Resin Casting

Effect of Strain Rate on Compression Behavior of Vinyl Ester Resin Casting
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摘要 Quasi-static and high strain rate compressive experiments on vinyl ester casting were carried out by means of MTS (Material Test System) and Hopkinson bar. The behaviors of the compressed unstable and fracture of the resin casting at different strain rates were investigated.The results indicate that the response behavior of the resin casting is controlled by different mechanisms at different strain rate, and some mechanical properties of vinyl ester casting are rate-dependent: the casting are destroyed in toughness model under strain rate 3.3×10 -4~6.6×10 -3/s, while the casting are destroyed in brittleness model under strain rate 950~5800/s. The yield stress, yield strain energy density are all increased with the increasing strain rates at quasi-static as well as at high strain rates. What is interesting is that the yield strain decreased with the strain rates increasing at quasi-static while increased at high strain rates. It is considered that the casting occurred forcing high elastic deformation at high strain rates. The damage of the specimens is mainly controlled by axial stress before unstable deformation, while mainly controlled by shear stress after unstable deformation, and then developed to fracture finally. This progress is rate-dependent: the development of the cracks inside the castings increased with the strain rate increasing. Quasi-static and high strain rate compressive experiments on vinyl ester casting were carried out by means of MTS (Material Test System) and Hopkinson bar. The behaviors of the compressed unstable and fracture of the resin casting at different strain rates were investigated. The results indicate that the response behavior of the resin casting is controlled by different mechanisms at different strain rate, and some mechanical properties of vinyl ester casting are rate- dependent: the casting are destroyed in toughness model under strain rate 3.3 × 10^-4 -6.6 × 10^-3/s, while the casting are destroyed in brittleness model under strain rate 950-5800/s. The yield stress, yield strain energy density are all increased with the increasing strain rates at quasi-static as well as at high strain rates. What is interesting is that the yield strain decreased with the strain rates increasing at quasi-static while increased at high strain rates. It is considered that the casting occurred forcing high elastic deformation at high strain rates. The damage of the specimens is mainly controlled by axial stress before unstable deformation, while mainly controlled by shear stress after unstable deformation, and then developed to fracture finally. This progress is rate-dependent., the development of the cracks inside the castings increased with the strain rate increasing.
出处 《材料工程》 EI CAS CSCD 北大核心 2006年第5期63-67,72,共6页 Journal of Materials Engineering
关键词 vinyl ester resin QUASI-STATIC high strain rate strain rate response and crack development vinyl ester resin quasi-static high strain rate strain rate response and crack development
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  • 1周润培,盛勤,王正东,张保昌.丁腈橡胶对乙烯基酯树脂的改性研究[J].玻璃钢/复合材料,1995(3):15-19. 被引量:6
  • 2Robert L Sierakowski. Strain rate behavior of composites: Issues[A]. In: High Strain Rate Effects on Polymer, Metal and Ceramic Matrix Composites and Other Advanced Materials[C]. AD-Vol 48, ASME, 1995. 1-5.
  • 3Hsiao H M, Daniel I M, Cordes R D. Dynamic compressive behavior of thick composite materials[J]. Experimental Mechanics,1998, 38(3): 172-180.
  • 4Xia Yuanming, Wang Xin, Yang Baochang. Constitutive equation for unidirectional composites under tensile impact[J]. Composites Science and Technology, 1996, 56(2): 155-160.
  • 5Xia Yuanming, Wang Xin, Yang Baochang. Brittle-ductilebr-ittle transition of glass fiber reinforced epoxy under tensile impact[J]. Journal of Material Science Letters, 1993, 12(18): 1481-1484.
  • 6Morais A Balaco de. Prediction of the layer longitudinal compression strength[J]. Journal of Composite Materials, 2000, 34(21): 1808-1819.
  • 7Barbero E J. Prediction of compression strength of unidirectional polymer matrix composites[J]. Journal of Composite Materials, 1998, 32(5): 483-502.
  • 8Weeks C A, Sun C T. Nonlinear rate dependent response of thick-section composite laminates[A]. In: High Strain Rate Effects on Polymer, Metal and Ceramic Matrix Composites and Other Advanced Materials[C]. AD-Vol 48, ASME, 1995. 81-95.
  • 9Vinson J R, Woldesenbet E. Fiber orientation effects on high strain rate properties of graphite/epoxy composites[J]. Journal of Composite Materials, 2001, 35(6): 509-521.
  • 10江辉.国外航天结构新材料发展简述[J].宇航材料工艺,1998,28(4):1-8. 被引量:21

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