À propos de cet article

Citez

Węglorz, M. (2014). Selected Aspects of Sustainable Civil Engineering in research works of professor Andrzej Ajdukiewicz. Architecture Civil Engineering Environment, 7(1), 41–47. Węglorz M. ( 2014 ). Selected Aspects of Sustainable Civil Engineering in research works of professor Andrzej Ajdukiewicz . Architecture Civil Engineering Environment , 7 ( 1 ), 41 47 . Search in Google Scholar

Miloševič, P. (2012). Sustainable Eco Planning Strategies in East Europe (Case Study of Belgrade). Architecture Civil Engineering Environment, 5(4), 29–42. Miloševič P. ( 2012 ). Sustainable Eco Planning Strategies in East Europe (Case Study of Belgrade) . Architecture Civil Engineering Environment , 5 ( 4 ), 29 42 . Search in Google Scholar

Heim, D., Mrowiec, A., Prałat, K., and Mucha, M. (2018). Influence of Tylose MH1000 content on gypsum thermal conductivity. J. Mater. Civ. Eng., 30(3), March. Heim D. Mrowiec A. Prałat K. , and Mucha M. ( 2018 ). Influence of Tylose MH1000 content on gypsum thermal conductivity . J. Mater. Civ. Eng. , 30 ( 3 ), March. 10.1061/(ASCE)MT.1943-5533.0002177 Search in Google Scholar

Arpe, H. J. (1984). Ullmann’s Encyclopedia of Industrial Chemistry. Calcium Sulfate. Vol.A4, Wiley-VCH, Verlag, Germany, 555–584. Arpe H. J. ( 1984 ). Ullmann’s Encyclopedia of Industrial Chemistry . Calcium Sulfate . Vol. A4 , Wiley-VCH, Verlag , Germany , 555 584 . Search in Google Scholar

Duggal, S. K., Building Materials, A.A. Balkema Publishers, Rotterdam, 1998. Duggal S. K. , Building Materials , A.A. Balkema Publishers , Rotterdam , 1998 . Search in Google Scholar

Ragsdale, L. A., Raynham, E. A., Building Materials Technology, Edward Arnold, London, 1972. Ragsdale L. A. Raynham E. A. , Building Materials Technology , Edward Arnold , London , 1972 . Search in Google Scholar

Arikan, M., and Sobolev, K. (2002). The optimization of a gypsum-based composite material. Cem. Concr. Res., 32(11), 1725–1728. Arikan M. , and Sobolev K. ( 2002 ). The optimization of a gypsum-based composite material . Cem. Concr. Res. , 32 ( 11 ), 1725 1728 . 10.1016/S0008-8846(02)00858-X Search in Google Scholar

De Sensale, G. M. (2010). Effect of rice – husk ash on durability of cementitious materials. Cem. Concr. Compos., 32, 718–725. De Sensale G. M. ( 2010 ). Effect of rice – husk ash on durability of cementitious materials . Cem. Concr. Compos. , 32 , 718 725 . 10.1016/j.cemconcomp.2010.07.008 Search in Google Scholar

Kim, S. (2009). Incombustibility, physic-mechanical properties and TVOC emission behavior of the gypsum-rice husk boards for wall and ceiling materials for construction. Ind. Crops. Prod., 29, 381–387. Kim S. ( 2009 ). Incombustibility, physic-mechanical properties and TVOC emission behavior of the gypsum-rice husk boards for wall and ceiling materials for construction . Ind. Crops. Prod. , 29 , 381 387 . 10.1016/j.indcrop.2008.07.006 Search in Google Scholar

Khali, A. A., Tawfik, A., Hegazy, A. A., and El-Shahat, M. F. (2013). Effect of different modes of silica on the physical and mechanical properties of plaster composites. J. Mater. Constr., 63(312), 529–537. Khali A. A. Tawfik A. Hegazy A. A. , and El-Shahat M. F. ( 2013 ). Effect of different modes of silica on the physical and mechanical properties of plaster composites . J. Mater. Constr. , 63 ( 312 ), 529 537 . 10.3989/mc.2013.04312 Search in Google Scholar

Maghsoudi, K., and Motahari, S. (2018). Mechanical, thermal, and hydrophobic properties of silica aerogelepoxy composites. J. Appl. Polym. Sci., 135(3), 45706–45714. Maghsoudi K. , and Motahari S. ( 2018 ). Mechanical, thermal, and hydrophobic properties of silica aerogelepoxy composites . J. Appl. Polym. Sci. , 135 ( 3 ), 45706 45714 . 10.1002/app.45706 Search in Google Scholar

Sletnes, M., Jelle, B. P., and Risholt, B. (2017). Feasibility study of novel integrated aerogel solutions. Energy Procedia, 132, 327–332. Sletnes M. Jelle B. P. , and Risholt B. ( 2017 ). Feasibility study of novel integrated aerogel solutions . Energy Procedia , 132 , 327 332 . 10.1016/j.egypro.2017.09.740 Search in Google Scholar

Chen, J. J., Ng, P. L., Li, L. G., and Kwan, A. K. H. (2017). Production of high-performance concrete by addition of fly ash microsphere and condensed silica fume. Procedia Eng., 172, 165–171. Chen J. J. Ng P. L. Li L. G. , and Kwan A. K. H. ( 2017 ). Production of high-performance concrete by addition of fly ash microsphere and condensed silica fume . Procedia Eng. , 172 , 165 171 . 10.1016/j.proeng.2017.02.045 Search in Google Scholar

Kwan, A. K. H., and Li, Y. (2013). Effects of fly ash microsphere on rheology, adhesiveness and strength of mortar. Constr. Build. Mater., 42, 137-145. Kwan A. K. H. , and Li Y. ( 2013 ). Effects of fly ash microsphere on rheology, adhesiveness and strength of mortar . Constr. Build. Mater. , 42 , 137 - 145 . 10.1016/j.conbuildmat.2013.01.015 Search in Google Scholar

Kwan, A. K. H., and Chen, J. J. (2013). Adding fly ash microsphere to improve packing density, flowability and strength of cement paste. Powder Technol., 234, 19–25. Kwan A. K. H. , and Chen J. J. ( 2013 ). Adding fly ash microsphere to improve packing density, flowability and strength of cement paste . Powder Technol. , 234 , 19 25 . 10.1016/j.powtec.2012.09.016 Search in Google Scholar

Hewit, G. F., Shires, G. L., and Bott, T. R. (1994). Process heat transfer. CRC Press LCC, New York, 16–18. Hewit G. F. Shires G. L. , and Bott T. R. ( 1994 ). Process heat transfer . CRC Press LCC , New York , 16 18 . Search in Google Scholar

Adrien, J., Meille, S., Tadier, S., Maire, E., and Sasaki, L. (2016). In-situ X-ray tomographic monitoring of gypsum plaster setting. Cem. Concr. Res., 82, 107–116. Adrien J. Meille S. Tadier S. Maire E. , and Sasaki L. ( 2016 ). In-situ X-ray tomographic monitoring of gypsum plaster setting . Cem. Concr. Res. , 82 , 107 116 . 10.1016/j.cemconres.2015.12.011 Search in Google Scholar

Karni, J., and Karni, E. (1995). Gypsum in construction: Origin and properties. Mater. Struct., 28(2), 92–100. Karni J. , and Karni E. ( 1995 ). Gypsum in construction: Origin and properties . Mater. Struct. , 28 ( 2 ), 92 100 . 10.1007/BF02473176 Search in Google Scholar

Yu, Q. L., and Brouwers, H. J. H. (2012). Thermal properties and microstructure of gypsum board and its dehydration products: A theoretical and experimental investigation. Fire Mater., 36(7), 575–589. Yu Q. L. , and Brouwers H. J. H. ( 2012 ). Thermal properties and microstructure of gypsum board and its dehydration products: A theoretical and experimental investigation . Fire Mater. , 36 ( 7 ), 575 589 . 10.1002/fam.1117 Search in Google Scholar

Carson, J. K., Lovatt, S. J., Tanner, D. J., and Cleland, A. C. (2005). Thermal conductivity bounds for isotropic, porous materials. Int. J. Heat Mass Transfer, 48(11), 2150–2158. Carson J. K. Lovatt S. J. Tanner D. J. , and Cleland A. C. ( 2005 ). Thermal conductivity bounds for isotropic, porous materials . Int. J. Heat Mass Transfer , 48 ( 11 ), 2150 2158 . 10.1016/j.ijheatmasstransfer.2004.12.032 Search in Google Scholar

Martias, C., Joliff, Y., Nait-Ali, B., Rogez, J., and Favotto, C. (2013). A new composite based on gypsum matrix and mineral additives: Hydration process of the matrix and thermal properties at room temperature. Thermochimica Acta, 567, 15–26. Martias C. Joliff Y. Nait-Ali B. Rogez J. , and Favotto C. ( 2013 ). A new composite based on gypsum matrix and mineral additives: Hydration process of the matrix and thermal properties at room temperature . Thermochimica Acta , 567 , 15 26 . 10.1016/j.tca.2013.03.001 Search in Google Scholar

Gruescu, C., Giraud, A., Homand, F., Kondo, D., and Do, D. P. (2007). Effective thermal conductivity of partially saturated porous rocks. Int. J. Solids Struct., 44(3–4), 811–833. Gruescu C. Giraud A. Homand F. Kondo D. , and Do D. P. ( 2007 ). Effective thermal conductivity of partially saturated porous rocks . Int. J. Solids Struct. , 44 ( 3–4 ), 811 833 . 10.1016/j.ijsolstr.2006.05.023 Search in Google Scholar

Kamseu, E., Bignozzi, M. C., Melo, U. C., Leonelli, C., and Sglavo, V. M. (2013). Design of inorganic polymer cements: Effects of matrix strengthening on microstructure. Constr. Build. Mater., 38, 1135–1145. Kamseu E. Bignozzi M. C. Melo U. C. Leonelli C. , and Sglavo V. M. ( 2013 ). Design of inorganic polymer cements: Effects of matrix strengthening on microstructure . Constr. Build. Mater. , 38 , 1135 1145 . 10.1016/j.conbuildmat.2012.09.033 Search in Google Scholar

Kamseu, E., Nait-Ali, B., Bignozzi, M. C., Leonelli, C., Rossignol, S., and Smith, D. S. (2012). Bulk composition and microstructure dependence of effective thermal conductivity of porous inorganic polymer cements. J. Eur. Ceram. Soc., 32(8), 1593–1603. Kamseu E. Nait-Ali B. Bignozzi M. C. Leonelli C. Rossignol S. , and Smith D. S. ( 2012 ). Bulk composition and microstructure dependence of effective thermal conductivity of porous inorganic polymer cements . J. Eur. Ceram. Soc. , 32 ( 8 ), 1593 1603 . 10.1016/j.jeurceramsoc.2011.12.030 Search in Google Scholar

Ru, W., Xin-Gui, L., and Pei-Ming, W. (2006). Influence of polymer on cement hydration in SBR-modified cement pastes. Cem. Concr. Res., 36(9), 1744–1751. Ru W. Xin-Gui L. , and Pei-Ming W. ( 2006 ). Influence of polymer on cement hydration in SBR-modified cement pastes . Cem. Concr. Res. , 36 ( 9 ), 1744 1751 . 10.1016/j.cemconres.2006.05.020 Search in Google Scholar

Choi, H., and Noguchi, T. (2015). Modeling of mechanical properties of concrete mixed with expansive additive. Int. J. Concr. Struct. Mater., 9(4), 391–399. Choi H. , and Noguchi T. ( 2015 ). Modeling of mechanical properties of concrete mixed with expansive additive . Int. J. Concr. Struct. Mater. , 9 ( 4 ), 391 399 . 10.1007/s40069-015-0113-8 Search in Google Scholar

Yan, Y., Yu, Z., and Yingzi, Y. (2012). Incorporation superabsorbent polymer (SAP) particles as controlling pre-existing flaws to improve the performance of engineered cementitious composites (ECC). Constr. Build. Mater., 28(1), 139–145. Yan Y. Yu Z. , and Yingzi Y. ( 2012 ). Incorporation superabsorbent polymer (SAP) particles as controlling pre-existing flaws to improve the performance of engineered cementitious composites (ECC) . Constr. Build. Mater. , 28 ( 1 ), 139 145 . 10.1016/j.conbuildmat.2011.08.032 Search in Google Scholar

Knapen, E., and Van Gemert, D. (2009). Cement hydration and microstructure formation in the presence of water-soluble polymers. Cem. Concr. Res., 39(1), 6–13. Knapen E. , and Van Gemert D. ( 2009 ). Cement hydration and microstructure formation in the presence of water-soluble polymers . Cem. Concr. Res. , 39 ( 1 ), 6 13 . 10.1016/j.cemconres.2008.10.003 Search in Google Scholar

Garbalińska, H., and Strzałkowski, J. (2016). Thermal and strength properties of lightweight concretes with the addition of aerogel particles. Adv. Cem. Res., 28(9), 567–575. Garbalińska H. , and Strzałkowski J. ( 2016 ). Thermal and strength properties of lightweight concretes with the addition of aerogel particles . Adv. Cem. Res. , 28 ( 9 ), 567 575 . 10.1680/jadcr.16.00032 Search in Google Scholar

Schiavoni, S., D’Alessandro, F., Bianchi, F., and Astrubali, F. (2016). Insulation materials for the building sector: A review and comparative analysis. Renew. Sust. Energ. Rev., 62, 988–1011. Schiavoni S. D’Alessandro F. Bianchi F. , and Astrubali F. ( 2016 ). Insulation materials for the building sector: A review and comparative analysis . Renew. Sust. Energ. Rev ., 62 , 988 1011 . 10.1016/j.rser.2016.05.045 Search in Google Scholar

Pichór, W. (2009). Properties of fiber reinforced cement composites with cenospheres from coal ash. Proc. Int. Symp. Brittle Matrix Composites 9, Editors: Brandt, A. M., Olek, J., Marshall, I. H., 245–254. Pichór W. ( 2009 ). Properties of fiber reinforced cement composites with cenospheres from coal ash . Proc. Int. Symp. Brittle Matrix Composites 9 , Editors: Brandt A. M. Olek J. Marshall I. H. , 245 254 . 10.1533/9781845697754.245 Search in Google Scholar

Baspinar, M. S., and Kahraman, E. (2011). Modifications in the properties of gypsum construction element via addition of expanded macroporous silica granules. Constr. Build. Mater., 25, 3327–3333. Baspinar M. S. , and Kahraman E. ( 2011 ). Modifications in the properties of gypsum construction element via addition of expanded macroporous silica granules . Constr. Build. Mater ., 25 , 3327 3333 . 10.1016/j.conbuildmat.2011.03.022 Search in Google Scholar

Hand, R. J. (1997). Calcium sulphate hydrates. Brit. Ceram. Trans., 96(3), 116–120. Hand R. J. ( 1997 ). Calcium sulphate hydrates . Brit. Ceram. Trans. , 96 ( 3 ), 116 120 . Search in Google Scholar

Dudek, E., Mosiadz, M., and Orzepowski, M. (2007). Uncertainties of resistors temperature coefficients. Meas. Sci. Rev., 7(3), 23–26. Dudek E. Mosiadz M. , and Orzepowski M. ( 2007 ). Uncertainties of resistors temperature coefficients . Meas. Sci. Rev. , 7 ( 3 ), 23 26 . Search in Google Scholar

Glinicki, M. A., Jaskulski, R., Pichór, W., Dąbrowski, M., and Sobczak, M. (2015). Investigation of thermal properties of shielding concrete. Proc. Int. Symp. Brittle Matrix Composites 9, Editors: Brandt, A. M., Olek, J., Glinicki, M. A., Leung, C. K. Y., Lis, J., 371–380. Glinicki M. A. Jaskulski R. Pichór W. Dąbrowski M. , and Sobczak M. ( 2015 ). Investigation of thermal properties of shielding concrete . Proc. Int. Symp. Brittle Matrix Composites 9 , Editors: Brandt A. M. Olek J. Glinicki M. A. Leung C. K. Y. Lis J. , 371 380 . Search in Google Scholar

Kušnerová, M., Valíček, J., Harničárová, M., Hryniewicz, T., Rokosz, K., Palková, Z., Václavík, V., Řepka, M., and Bendová, M. (2013). A proposal for simplifying the method of evaluation of uncertainties in measurement results. Meas. Sci. Rev., 13(1), 1–6. Kušnerová M. Valíček J. Harničárová M. Hryniewicz T. Rokosz K. Palková Z. Václavík V. Řepka M. , and Bendová M. ( 2013 ). A proposal for simplifying the method of evaluation of uncertainties in measurement results . Meas. Sci. Rev. , 13 ( 1 ), 1 6 . 10.2478/msr-2013-0007 Search in Google Scholar

Mróz, P., and Mucha, M. (2017). Hydration kinetics of calcium sulphate hemihydrate modified by water soluble polymer. Int. J. Eng. Res. Sci., 3(6), 5–13. Mróz P. , and Mucha M. ( 2017 ). Hydration kinetics of calcium sulphate hemihydrate modified by water soluble polymer . Int. J. Eng. Res. Sci. , 3 ( 6 ), 5 13 . 10.25125/engineering-journal-IJOER-MAY-2017-25 Search in Google Scholar

eISSN:
1899-0142
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Architecture and Design, Architecture, Architects, Buildings