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[1] Lai Jianzhong, Sun Wei, Lin Wei, Jin Zuquan, et al. Static and dynamic mechanical behaviour of ECO-RPC [J]. Journal of Southeast University (English Edition), 2005, 21 (2): 197-202. [doi:10.3969/j.issn.1003-7985.2005.02.016]
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Static and dynamic mechanical behaviour of ECO-RPC()
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Journal of Southeast University (English Edition)[ISSN:1003-7985/CN:32-1325/N]

Volumn:
21
Issue:
2005 2
Page:
197-202
Research Field:
Materials Sciences and Engineering
Publishing date:
2005-06-30

Info

Title:
Static and dynamic mechanical behaviour of ECO-RPC
Author(s):
Lai Jianzhong Sun Wei Lin Wei Jin Zuquan
Department of Materials Science and Engineering, Southeast University, Nanjing 210096, China
Keywords:
ecological reactive powder concrete(ECO-RPC) industrial waste powder interfacial bond strength fracture energy static and dynamic mechanical behaviour high strain rate
PACS:
TU52
DOI:
10.3969/j.issn.1003-7985.2005.02.016
Abstract:
Ecological reactive powder concrete(ECO-RPC)with small sized and different volume fraction steel fibers was prepared by substitution of ultra-fine industrial waste powder for 50% to 60% cement by weight and replacement of ground fine quartz sand with natural fine aggregate.The effect of steel fiber volume fraction and curing ages on the static mechanical behaviour of ECO-RPC was studied.Using the split Hopkinson pressure bar technique, the dynamic mechanical behaviour of ECO-RPC was investigated under different strain rates.The results show that the static mechanical behaviour of ECO-RPC increases with the increase of steel fiber volume fraction and curing ages.The type of ECO-RPC with the substitution of 25% ultra-fine slag, 25% ultra-fine fly ash and 10% silica fume is better than the others with compressive strength, flexural strength, and fracture energy more than 200 MPa, 60 MPa and 30 kJ/m2, respectively.ECO-RPC has excellent strain rate stiffening effects under dynamic load.Its peak stress, peak strain and the area under strain-stress curve increase with the increase of strain rate.Its fracture pattern changes from brittleness to toughness under high strain rates.

References:

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Memo

Memo:
Biographies: Lai Jianzhong(1978—), male, graduate;Sun Wei(corresponding author), female, professor, sunwei@seu.edu.cn.
Last Update: 2005-06-20