Study of MgO-activated slag as a cementless material for sustainable spray-based 3D printing
暂无分享,去创建一个
K. Leong | M. Tan | T. Wong | B. Lu | E. Yang | Yiwei Weng | S. Qian | Zhixin Liu | Weiping Zhu
[1] Yiwei Weng,et al. Designing spray-based 3D printable cementitious materials with fly ash cenosphere and air entraining agent , 2019, Construction and Building Materials.
[2] Bing Lu,et al. A systematical review of 3D printable cementitious materials , 2019, Construction and Building Materials.
[3] Muhammad Jaffar Memon,et al. GGBS And Fly Ash Effects on Compressive Strength by Partial Replacement of Cement Concrete , 2019, Civil Engineering Journal.
[4] M. Karpuzcu,et al. Effect of Waste Marble Powder and Fly Ash on the Rheological Characteristics of Cement Based Grout , 2019, Civil Engineering Journal.
[5] Xingyang He,et al. Compressive strength and hydration process of wet-grinded granulated blast-furnace slag activated by sodium sulfate and sodium carbonate , 2019, Cement and Concrete Composites.
[6] Yiwei Weng,et al. Printability and fire performance of a developed 3D printable fibre reinforced cementitious composites under elevated temperatures , 2018, Virtual and Physical Prototyping.
[7] Yiwei Weng,et al. Empirical models to predict rheological properties of fiber reinforced cementitious composites for 3D printing , 2018, Construction and Building Materials.
[8] Annika Raatz,et al. Development of a Shotcrete 3D-Printing (SC3DP) Technology for Additive Manufacturing of Reinforced Freeform Concrete Structures , 2018, RILEM Bookseries.
[9] En-Hua Yang,et al. Characterization of calcium-containing phases in alkali-activated municipal solid waste incineration bottom ash binder through chemical extraction and deconvoluted Fourier transform infrared spectra , 2018, Journal of Cleaner Production.
[10] Tao Yang,et al. Effect of fly ash microsphere on the rheology and microstructure of alkali-activated fly ash/slag pastes , 2018, Cement and Concrete Research.
[11] Zhenguo Shi,et al. Alkali-silica reaction in waterglass-activated slag mortars incorporating fly ash and metakaolin , 2018, Cement and Concrete Research.
[12] Bo Pang,et al. Fresh properties of a novel 3D printing concrete ink , 2018, Construction and Building Materials.
[13] G. Ma,et al. Printable properties of cementitious material containing copper tailings for extrusion based 3D printing , 2018 .
[14] Qian Zhang,et al. Matrix tailoring of Engineered Cementitious Composites (ECC) with non-oil-coated, low tensile strength PVA fiber , 2018 .
[15] Ming Jen Tan,et al. Additive manufacturing of geopolymer for sustainable built environment , 2017 .
[16] Behrokh Khoshnevis,et al. Cementitious materials for construction-scale 3D printing: Laboratory testing of fresh printing mixture , 2017 .
[17] Ali Mokhtari,et al. Automatic Construction by Contour Crafting Technology , 2017 .
[18] M. R. Kavianpour,et al. Experimental investigation of parameters affecting the stability of articulated concrete block mattress under wave attack , 2017 .
[19] S. Ruan,et al. Comparative life cycle assessment of reactive MgO and Portland cement production , 2016 .
[20] C. Unluer,et al. Improving the performance of reactive MgO cement-based concrete mixes , 2016 .
[21] E. Yang,et al. Alkali-activated ground granulated blast-furnace slag incorporating incinerator fly ash as a potential binder , 2016 .
[22] Damien Rangeard,et al. Structural built-up of cement-based materials used for 3D-printing extrusion techniques , 2016 .
[23] H. A. Abdel-Gawwad. Retracted: Effect of Reactive Magnesium Oxide on Properties of Alkali-Activated Slag-Cement Pastes , 2015 .
[24] A. Al-Tabbaa,et al. Strength and hydration properties of reactive MgO-activated ground granulated blastfurnace slag paste , 2015 .
[25] A. Al-Tabbaa,et al. Evaluation of novel reactive MgO activated slag binder for the immobilisation of lead and zinc. , 2014, Chemosphere.
[26] Abir Al-Tabbaa,et al. Impact of hydrated magnesium carbonate additives on the carbonation of reactive MgO cements , 2013 .
[27] T. T. Le,et al. Mix design and fresh properties for high-performance printing concrete , 2012 .
[28] D. Macphee,et al. Effect of Alkalis on Fresh C-S-H Gels. FTIR Analysis , 2009 .
[29] R. P. Chhabra,et al. Non-Newtonian Flow and Applied Rheology: Engineering Applications , 2008 .
[30] Mark A. Shand,et al. The Chemistry and Technology of Magnesia: Shand/The Chemistry and Technology of Magnesia , 2006 .
[31] Mark A. Shand,et al. The Chemistry and Technology of Magnesia , 2006 .
[32] P. K. Mehta,et al. Concrete: Microstructure, Properties, and Materials , 2005 .
[33] Paul F. McMillan,et al. Structure of Calcium Silicate Hydrate (C‐S‐H): Near‐, Mid‐, and Far‐Infrared Spectroscopy , 2004 .
[34] Kamal H. Khayat,et al. Evaluation of static stability of self-consolidating concrete , 2004 .
[35] J. I. Escalante-García,et al. Hydration Products and Reactivity of Blast‐Furnace Slag Activated by Various Alkalis , 2003 .
[36] A. Neville. Properties of Concrete , 1968 .
[37] F. A. Miller,et al. Infrared Spectra and Characteristic Frequencies of Inorganic Ions , 1952 .
[38] K. Pandey,et al. Tribological behaviour of Magnesium Metal Matrix Composites reinforced with fly ash cenosphere , 2018 .
[39] Chee Kai Chua,et al. 3D Printing and Additive Manufacturing: Principles and ApplicationsFifth Edition of Rapid Prototyping , 2017 .
[40] Ye Qian. Characterization of structural rebuilding and shear migration in cementitious materials in consideration of thixotropy , 2017 .
[41] David Weinstein,et al. Determining the Applicability of 3D Concrete Construction (Contour Crafting) of Low Income Houses in Select Countries , 2015 .
[42] Chee Kai Chua,et al. 3D printing and additive manufacturing : principles and applications , 2015 .
[43] H. A. Abdel-Gawwad,et al. EFFECT OF REACTIVE MAGNESIUM OXIDE ON PROPERTIES OF ALKALI ACTIVATED SLAG GEOPOLYMER CEMENT PASTES , 2014 .
[44] Zhuojun Quanji. Thixotropic behavior of cement-based materials: effect of clay and cement types , 2010 .
[45] R. Cloots,et al. (Micro)-structural comparison between geopolymers, alkali-activated slag cement and Portland cement , 2006 .
[46] D. Beaupré,et al. Rheology of high performance shotcrete , 1994 .
[47] Phillip Frank Gower Banfill,et al. RHEOLOGICAL METHODS FOR ASSESSING THE FLOW PROPERTIES OF MORTAR AND RELATED MATERIALS , 1994 .