In situ X-ray computed tomography (CT) investigation of crack damage evolution for cemented paste backfill with marble waste block admixture under uniaxial deformation

Author:

Wang Yu,Xiao Yonggang,Hou Zhiqiang,Li Changhong,Wei Xiaoming

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference38 articles.

1. Babak K, Ahmed K, Tiko B, Bruno B, Hassan B (2016) Experimental investigation of mechanical and microstructural properties of cemented paste backfill containing maple-wood filler. Constr Build Mater 121:222–228

2. Belem T, Benzaazoua M (2004) An overview on the use of paste backfill technology as a ground support method in cut-and-fill mines. In Proceedings of the 5th Int. Symp. on Ground support in Mining and Underground Construction. Villaescusa & Potvin (eds.) (pp. 28-30).

3. Chen C, Zhuo YL, Cao SR, Feng X, Wang XJ (2016) Research on the influence of stone content on damage evolution of filling body in the residual bearing stage. Gold Sci Technol 26(4):92–95

4. Ercikdi B, Külekci G, Yılmaz T (2015) Utilization of granulated marble wastes and waste bricks as mineral admixture in cemented paste backfill of sulphide-rich tailings. Constr Build Mater 93:573–583

5. Fall M, Benzaazoua M (2005) Modeling the effect of sulphate on strength development of paste backfill and binder mixture optimization. Cem Concr Res 35(2):301–314

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