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document
Xu, Y. (author), Meng, Z. (author), Bol, R.J.M. (author), Šavija, B. (author)
A novel highly compressible auxetic cementitious composite (ACC) is developed in this work. Contrary to conventional cementitious materials, such as plain concrete and fiber reinforced concrete, the ACC shows strain-hardening behavior under uniaxial compression: the stress continuously increases with strain up to approximately 40 % strain. On...
journal article 2024
document
Xu, Y. (author), Schlangen, E. (author), Šavija, B. (author)
Mechanical behavior of cementitious cellular composites (CCC) with auxetic behavior was investigated under uniaxial compression and cyclic loading. Three cellular structures with different geometrical parameters are designed and prepared by 3D printing technique. Meanwhile, plain mortar and fiber reinforced mortar are used as constituent...
book chapter 2020
document
Safai, Lauren (author), Cuellar Lopez, J.S. (author), Smit, G. (author), Zadpoor, A.A. (author)
As additive manufacturing of polymeric materials is becoming more prevalent throughout industry and research communities, it is important to ensure that 3D printed parts are able to withstand mechanical and environmental stresses that occur when in use, including the sub-critical cyclic loads that could result in fatigue crack propagation and...
review 2019