Effect of Steel Inorganic Fiber on Mechanical Properties of Lightweight Aggregate Concrete

Authors

  • Jinjun Kang
  • Jianqiang Han
  • Zhiguo You
  • Hongyin Zhao

DOI:

https://doi.org/10.54691/fhss.v2i9.2102

Keywords:

Lightweight Aggregate Concrete; Hybrid Fiber; Mechanical Properties.

Abstract

In order to study the influence of steel-inorganic fiber on the mechanical properties of lightweight aggregate concrete, test parameters including single ceramic fiber and basalt fiber with different dosage and mixed steel-basalt fiber and steel-ceramic fiber reinforced lightweight aggregate concrete specimens with different doping methods were designed, and compared with the non-fiber reference group. The test results show that the compressive strength of cube is improved most obviously by steel-basalt fiber, with the maximum increase of 14.5%. Adding 1.35kg/m3 basalt fiber can increase the flexural strength of lightweight aggregate concrete by 62.2%. Adding ceramic fiber reduces the compressive strength of lightweight aggregate concrete, but improves the flexural strength.

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References

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Published

2022-09-21

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Section

Articles

How to Cite

Kang, J., Han, J., You, Z., & Zhao, H. (2022). Effect of Steel Inorganic Fiber on Mechanical Properties of Lightweight Aggregate Concrete. Frontiers in Humanities and Social Sciences, 2(9), 40-46. https://doi.org/10.54691/fhss.v2i9.2102