Explosion resistance of 3D printing ultra-high performance concrete based on contact explosion tests

[1]  Scott Z. Jones,et al.  Technology readiness: A global snapshot of 3D concrete printing and the frontiers for development , 2022, Cement and Concrete Research.

[2]  N. Martys,et al.  Pumping of concrete: Understanding a common placement method with lots of challenges , 2022, Cement and Concrete Research.

[3]  Yu Yang,et al.  Interfacial bonding properties of 3D printed permanent formwork with the post-casted concrete , 2022, Cement and Concrete Composites.

[4]  Kai Wu,et al.  Effect of directionally distributed steel fiber on static and dynamic properties of 3D printed cementitious composite , 2022, Construction and Building Materials.

[5]  Li Wang,et al.  In-process reinforcing method: dual 3D printing procedure for ultra-high performance concrete reinforced cementitious composites , 2021 .

[6]  Z. Ge,et al.  Influence of an extrusion approach on the fiber orientation and mechanical properties of engineering cementitious composite , 2021, Construction and Building Materials.

[7]  Chengqing Wu,et al.  Hybrid fibre reinforced ultra-high performance concrete beams under static and impact loads , 2021 .

[8]  Jianzhong Lai,et al.  Dynamic behavior of functional graded cementitious composite under the coupling of high speed penetration and explosion , 2021 .

[9]  M. Akiyama,et al.  A novel casting procedure for SFRC piles without shear reinforcement using the centrifugal forming technique to manipulate the fiber orientation and distribution , 2021 .

[10]  Chengqing Wu,et al.  Mechanical anisotropy of ultra-high performance fibre-reinforced concrete for 3D printing , 2021, Cement and Concrete Composites.

[11]  J. Sanjayan,et al.  Expansive cementitious materials to improve micro-cable reinforcement bond in 3D concrete printing , 2021, Cement and Concrete Composites.

[12]  Guoji Xu,et al.  Determination and evaluation of Holmquist-Johnson-Cook constitutive model parameters for ultra-high-performance concrete with steel fibers , 2021 .

[13]  Li Wang,et al.  Cementitious composites blending with high belite sulfoaluminate and medium-heat Portland cements for largescale 3D printing , 2021 .

[14]  K. Khayat,et al.  Prediction of fiber orientation and flexural performance of UHPC based on suspending mortar rheology and casting method , 2021 .

[15]  J. Sanjayan,et al.  Technologies for improving buildability in 3D concrete printing , 2021 .

[16]  T. Ding,et al.  Large-scale 3D printing concrete technology: Current status and future opportunities , 2021 .

[17]  Huanghuang Huang,et al.  Fiber alignment and its effect on mechanical properties of UHPC: An overview , 2021 .

[18]  Y. Bao,et al.  New development of ultra-high-performance concrete (UHPC) , 2021, Composites Part B: Engineering.

[19]  K. Khayat,et al.  Contribution of fiber orientation to enhancing dynamic properties of UHPC under impact loading , 2021 .

[20]  K. Khayat,et al.  Influence of fiber alignment and length on flexural properties of UHPC , 2021, Construction and Building Materials.

[21]  J. Sanjayan,et al.  Fiber orientation effects on ultra-high performance concrete formed by 3D printing , 2021 .

[22]  Jian-chao Yang,et al.  Experimental investigation of polyisocyanate-oxazodone coated square reinforced concrete slab under contact explosions , 2021 .

[23]  R. Mu,et al.  Design, preparation and mechanical properties of full-field aligned steel fiber reinforced cementitious composite , 2021 .

[24]  Q. Fang,et al.  Experimental and numerical studies on dynamic behavior of reinforced UHPC panel under medium-range explosions , 2021 .

[25]  Jianzhuang Xiao,et al.  Fresh and anisotropic-mechanical properties of 3D printable ultra-high ductile concrete with crumb rubber , 2021 .

[26]  K. Khayat,et al.  Effect of flow behavior and process-induced variations on shape stability of 3D printed elements – A review , 2021 .

[27]  I. Hakeem,et al.  UHPC evolution, development, and utilization in construction: a review , 2021 .

[28]  G. de Schutter,et al.  Rheological and pumping behaviour of 3D printable cementitious materials with varying aggregate content , 2021 .

[29]  Jingquan Wang,et al.  The role of bond strength in structural behaviors of UHPC-NC composite beams: Experimental investigation and finite element modeling , 2021 .

[30]  T. Tong,et al.  Investigation of over-nonlocal damage and interface cohesive models for simulating structural behaviors of composite UHPC-NC members , 2020 .

[31]  Thomas Juul Andersen,et al.  Modelling of 3D concrete printing based on computational fluid dynamics , 2020 .

[32]  Jay G. Sanjayan,et al.  Development of 3D-printable ultra-high performance fiber-reinforced concrete for digital construction , 2020 .

[33]  Wei Zhang,et al.  Experimental investigation of basalt fiber-reinforced polymer (BFRP) bar reinforced concrete slabs under contact explosions , 2020 .

[34]  Q. Yuan,et al.  Durability of ultra-high performance concrete – A review , 2020, Construction and Building Materials.

[35]  Chunwei Zhang,et al.  Blast loads induced responses of RC structural members: State-of-the-art review , 2020 .

[36]  Jay G. Sanjayan,et al.  Steel fibres reinforced 3D printed concrete: Influence of fibre sizes on mechanical performance , 2020 .

[37]  Janet M. Lees,et al.  Functionally graded concrete: Design objectives, production techniques and analysis methods for layered and continuously graded elements , 2020, Construction and Building Materials.

[38]  Guowei Ma,et al.  Mechanical improvement of continuous steel microcable reinforced geopolymer composites for 3D printing subjected to different loading conditions , 2020 .

[39]  K. Tan,et al.  An analytical model to predict the compressive damage of concrete plates under contact detonation , 2019, International Journal of Impact Engineering.

[40]  Chengqing Wu,et al.  Mesoscale analysis on ultra-high performance steel fibre reinforced concrete slabs under contact explosions , 2019, Composite Structures.

[41]  Changyu Deng,et al.  Numerical study on equilibrium stability of objects in fluid flow — A case study on constructal law , 2019, Case Studies in Thermal Engineering.

[42]  Avinash Gautam,et al.  Experimental and numerical investigation of steel-concrete (SC) slabs under contact blast loading , 2019, Engineering Structures.

[43]  D. Chakraborty,et al.  Static and dynamic analyses of cracked functionally graded structural components: A review , 2019, Composites Part B: Engineering.

[44]  K. Shirai,et al.  Numerical model for predicting the structural response of composite UHPC–concrete members considering the bond strength at the interface , 2019, Composite Structures.

[45]  Abhiroop Goswami,et al.  Retrofitting materials for enhanced blast performance of Structures: Recent advancement and challenges ahead , 2019, Construction and Building Materials.

[46]  Fang Wang,et al.  Mechanical anisotropy of aligned fiber reinforced composite for extrusion-based 3D printing , 2019, Construction and Building Materials.

[47]  H. Draganić,et al.  Experimental investigation of design and retrofit methods for blast load mitigation – A state-of-the-art review , 2019, Engineering Structures.

[48]  T. Ngo,et al.  Breach diameter analysis of concrete panels subjected to contact charge detonations , 2018, International Journal of Impact Engineering.

[49]  N. Banthia,et al.  Mechanical and structural behaviors of ultra-high-performance fiber-reinforced concrete subjected to impact and blast , 2017 .

[50]  Jianzhong Lai,et al.  Dynamic properties and SPH simulation of functionally graded cementitious composite subjected to repeated penetration , 2017 .

[51]  N. Banthia,et al.  Effect of fiber orientation on the rate-dependent flexural behavior of ultra-high-performance fiber-reinforced concrete , 2016 .

[52]  H. Hao,et al.  Experimental investigation of ultra-high performance concrete slabs under contact explosions , 2016 .

[53]  Hong Hao,et al.  Investigation of ultra-high performance concrete slab and normal strength concrete slab under contact explosion , 2015 .

[54]  Hong Hao,et al.  An experimental and numerical study of reinforced ultra-high performance concrete slabs under blast loads , 2015 .