Zitieren

Senhadji, Y., Escadeillas, G., Mouli, M., Khelafi, H., & Benosman, S. (2014). Influence of natural pozzolan, silica fume and limestone fine on strength, acid resistance and microstructure of mortar. Powder Technology. Elsevier, 254, 314–323. Senhadji Y. Escadeillas G. Mouli M. Khelafi H. Benosman S. 2014 Influence of natural pozzolan, silica fume and limestone fine on strength, acid resistance and microstructure of mortar Powder Technology. Elsevier 254 314 323 10.1016/j.powtec.2014.01.046 Search in Google Scholar

Hebhoub, H., & Belachia, M. (2011). Introduction of marble waste sand into hydraulic concrete. Nature and Technology. 41–46. Hebhoub H. Belachia M. 2011 Introduction of marble waste sand into hydraulic concrete Nature and Technology 41 46 Search in Google Scholar

Wang, Y., Wu, H.C., Li,V.C. (2000). Concrete reinforcement with recycled fibers, J. Mater. Civil Eng. 12(4) 314–319. Wang Y. Wu H.C. Li V.C. 2000 Concrete reinforcement with recycled fibers J. Mater. Civil Eng. 12 4 314 319 10.1061/(ASCE)0899-1561(2000)12:4(314) Search in Google Scholar

Saikia, N., & de Brito, J. (2012). Use of plastic waste as aggregate in cement mortar and concrete. Construction and Building Materials, 34, 385–401. Saikia N. de Brito J. 2012 Use of plastic waste as aggregate in cement mortar and concrete Construction and Building Materials 34 385 401 10.1016/j.conbuildmat.2012.02.066 Search in Google Scholar

Abdulrahman, S., Mohammed, T., Mohammed Ali, Kh., Noor, A., Rajab, c., & Nahla, H. (2020). Mechanical Properties of Concrete and Mortar Containing Low Density Polyethylene Waste Particles as Fine Aggregate. Journal of Materials and Engineering Structures, 7, 57–72. Abdulrahman S. Mohammed T. Mohammed Ali Kh. Noor A. Rajab c. Nahla H. 2020 Mechanical Properties of Concrete and Mortar Containing Low Density Polyethylene Waste Particles as Fine Aggregate Journal of Materials and Engineering Structures 7 57 72 Search in Google Scholar

Azad, K., & Puneet, S. (2019). Use of Plastic Aggregates in Concrete. International Journal of Innovative Technology and Exploring Engineering (IJITEE), 9(1), 4406-4412. DOI: 10.35940/ijitee.A5088.119119. Azad K. Puneet S. 2019 Use of Plastic Aggregates in Concrete International Journal of Innovative Technology and Exploring Engineering (IJITEE) 9 1 4406 4412 DOI: 10.35940/ijitee.A5088.119119 Open DOISearch in Google Scholar

Yin, S., Rabin, T., Shi, F., Combe, M., Collister, T & Sivakugan, N. (2015). Use of macro plastic fibres in concrete: A review. Construction and Building Materials, 93, 180–188. Yin S. Rabin T. Shi F. Combe M. Collister T Sivakugan N. 2015 Use of macro plastic fibres in concrete: A review Construction and Building Materials 93 180 188 10.1016/j.conbuildmat.2015.05.105 Search in Google Scholar

Benosman, AS., Taïbi, H., Mouli.M., Senhadji, Y., Belbachir, M., Bahlouli, I.M., & Houivet, D. (2015). L’effet de l’ajout du PET sur les performances mécaniques des matériaux Composites Mortier-PET (Effect of addition of PET on the mechanical performance of PET-Mortar Composite materials). J. Mater. Environ. Sci. 6(2), 559–571. Benosman AS. Taïbi H. Mouli M. Senhadji Y. Belbachir M. Bahlouli I.M. Houivet D. 2015 L’effet de l’ajout du PET sur les performances mécaniques des matériaux Composites Mortier-PET (Effect of addition of PET on the mechanical performance of PET-Mortar Composite materials) J. Mater. Environ. Sci. 6 2 559 571 Search in Google Scholar

Sam, TD., & Tam, MN. (2002). Polymer concrete based on recycled polyethylene terephtalate (PET). NOCMAT/3, Vietnam International conférence on Non-conventional Matérial and technologies, 226–228. Sam TD. Tam MN. 2002 Polymer concrete based on recycled polyethylene terephtalate (PET) NOCMAT/3, Vietnam International conférence on Non-conventional Matérial and technologies 226 228 Search in Google Scholar

Ghernouti, Y., & Rabehi, B. (2012). Strength and Durability of Mortar Made with Plastics Bag Waste. (MPBW) International Journal of Concrete Structures and Materials, 6(3), 145–153, DOI 10.1007/s40069-012-0013-0. Ghernouti Y. Rabehi B. 2012 Strength and Durability of Mortar Made with Plastics Bag Waste. (MPBW) International Journal of Concrete Structures and Materials 6 3 145 153 DOI 10.1007/s40069-012-0013-0 10.1007/s40069-012-0013-0 Search in Google Scholar

Al-Tulaian, B.S., Al-Shannag, M.J., & Al-Hozaimy, A.R. (2016). Recycled plastic waste fibers for reinforcing Portland cement mortar. Construction and Building Materials 127, 102–110. Al-Tulaian B.S. Al-Shannag M.J. Al-Hozaimy A.R. 2016 Recycled plastic waste fibers for reinforcing Portland cement mortar Construction and Building Materials 127 102 110 10.1016/j.conbuildmat.2016.09.131 Search in Google Scholar

Jay Kim, J.H., Park, C.G., Lee, S-W, Lee,S-W., & Won, J.P. (2008). Effects of the geometry of recycled PET fiber reinforcement on shrinkage cracking of cement-based composites. Composites: Part B 39 442–450. Jay Kim J.H. Park C.G. Lee S-W Lee S-W. Won J.P. 2008 Effects of the geometry of recycled PET fiber reinforcement on shrinkage cracking of cement-based composites Composites: Part B 39 442 450 10.1016/j.compositesb.2007.05.001 Search in Google Scholar

Choi, YW., Moon, DJ., Kim, YJ., & Lachemi, M. (2009). Characteristics of mortar and concrete containing fine aggregate manufactured from recycled waste polyethylene terephthalate bottles. Constr Build Mater, 23, 2829–35. Choi YW. Moon DJ. Kim YJ. Lachemi M. 2009 Characteristics of mortar and concrete containing fine aggregate manufactured from recycled waste polyethylene terephthalate bottles Constr Build Mater 23 2829 35 10.1016/j.conbuildmat.2009.02.036 Search in Google Scholar

Marzouk, OY., Dheilly, RM., & Queneudec, M. (2007). Valorisation of post-consumer plastic waste in cementitious concrete composites. Waste Manage 27, 310–8. Marzouk OY. Dheilly RM. Queneudec M. 2007 Valorisation of post-consumer plastic waste in cementitious concrete composites Waste Manage 27 310 8 10.1016/j.wasman.2006.03.012 Search in Google Scholar

Al-Manaseer, AA., & Dalal TR. (1997). Concrete containing plastic aggregates. Concr Int, 19, 47–52. Al-Manaseer AA. Dalal TR 1997 Concrete containing plastic aggregates Concr Int 19 47 52 Search in Google Scholar

Luiz, A., de Oliveira João, P,. & Gomes, C. ( 2011). Physical and mechanical behaviour of recycled PET fibre reinforced mortar. C-MADE, Centre of Materials and Building Technologies, University of Beira Interior, Calçada Fonte do Lameiro, 6201-001 Covilh, Portugal. Construction and Building Materials, 25, 1712–1717. Luiz A. de Oliveira João P. Gomes C. 2011 Physical and mechanical behaviour of recycled PET fibre reinforced mortar. C-MADE, Centre of Materials and Building Technologies, University of Beira Interior, Calçada Fonte do Lameiro, 6201-001 Covilh, Portugal Construction and Building Materials 25 1712 1717 10.1016/j.conbuildmat.2010.11.044 Search in Google Scholar

Hannawi, K., Kamali-Bernard, S., & Prince, W. (2010). Physical and mechanical properties of mortars containing PET and PC waste aggregates. Waste Manage, 30, 2312–2320. Hannawi K. Kamali-Bernard S. Prince W. 2010 Physical and mechanical properties of mortars containing PET and PC waste aggregates Waste Manage 30 2312 2320 10.1016/j.wasman.2010.03.028 Search in Google Scholar

Hasan, M., Afroz, M., & Mahmud, H. (2011). An experimental investigation on mechanical behavior of macro synthetic fibre reinforced concrete. Int J Civil Environ Eng IJCEE-IJENS, 11(03), 18–23. Hasan M. Afroz M. Mahmud H. 2011 An experimental investigation on mechanical behavior of macro synthetic fibre reinforced concrete Int J Civil Environ Eng IJCEE-IJENS 11 03 18 23 Search in Google Scholar

Ismail, Z.Z., & Al-Hashmi, E.A. (2008). Use of plastic waste in concrete mixture as aggregate replacement. Waste Manage, 28, 2041–7. Ismail Z.Z. Al-Hashmi E.A. 2008 Use of plastic waste in concrete mixture as aggregate replacement Waste Manage 28 2041 7 10.1016/j.wasman.2007.08.023 Search in Google Scholar

Banthia, N,. & Gupta, R. (2006). Influence of polypropylene fiber geometry on plastic shrinkage cracking in concrete. Cement Concrete Res, 36(7), 1263–7. Banthia N. Gupta R. 2006 Influence of polypropylene fiber geometry on plastic shrinkage cracking in concrete Cement Concrete Res 36 7 1263 7 10.1016/j.cemconres.2006.01.010 Search in Google Scholar

Foti, D. (2011). Preliminary analysis of concrete reinforced with waste bottles PET fibers. Constr Build Mater. 25(4), 1906–15. Foti D. 2011 Preliminary analysis of concrete reinforced with waste bottles PET fibers Constr Build Mater. 25 4 1906 15 10.1016/j.conbuildmat.2010.11.066 Search in Google Scholar

Kou, SC,. Lee, G., Poon, CS., & Lai, WL. (2009). Properties of lightweight aggregate concreteprepared with PVC granules derived from scraped PVC pipes. Waste Manage, 29, 621–8. Kou SC. Lee G. Poon CS. Lai WL. 2009 Properties of lightweight aggregate concreteprepared with PVC granules derived from scraped PVC pipes Waste Manage 29 621 8 10.1016/j.wasman.2008.06.014 Search in Google Scholar

eISSN:
2720-6947
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Architektur und Design, Architektur, Architekten, Gebäude