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Research Article

Durability study of reinforced polyester composite used as pipe lining under artificial aging conditions

ORCID Icon & | (Reviewing editor)
Article: 1693719 | Received 23 Sep 2019, Accepted 12 Nov 2019, Published online: 22 Nov 2019

References

  • American Society for Testing and Materials (ASTM). (2014). ASTM E1356-08: Standard test method for assignment of glass transition temperatures by differential scanning calorimetry. ASTM International, West Conshohocken, PA.
  • American Society for Testing and Materials (ASTM). (2015). ASTM D7028 – 07: Standard test method for glass transition temperature (DMA Tg) of polymer matrix composites by Dynamic Mechanical Analysis (DMA). ASTM International, West Conshohocken, PA.
  • American Water Work Association. (2014). AWWA manual M28, rehabilitation of water main. Retrieved from https://www.awwa.org/Portals/0/files/publications/documents/M28LookInside.pdf
  • Boinard, E., Pethrick, R. A., Dazel-Job, J., & Macfarlane, C. J. (2000). Influence of resin chemistry on water uptake and environmental ageing in glass fiber reinforced composites-polyester and vinyl ester laminates. Journal of Material Science, 35(8), 1931–11. doi:10.1023/A:1004766418966
  • Carra, G., & Carvelli, V. (2015). Long-term bending performance and service life prediction of pultruded glass fibre reinforced polymer composites. Composite Structures, 127, 308–315. doi:10.1016/j.compstruct.2015.03.049
  • Perkin-Elmer Instruments. (2000). Thermal analysis application Note: PETech-19, a 2000. Norwalk, USA: Perkin-Elmer Inc.
  • International Standards, ISO 178. (2001). Plastics-determination of flexural properties (fourth ed.). The International Organization for Standardization. Geneva, Switzerland.
  • Jotun. (2016). Baltoflake technical data sheet, Proline method. Retrieved from https://www.jotun.com/Datasheets/Download?url=%2FTDS%2FTDS__388__Baltoflake__Euk__GB.pdf
  • Kharazmi, P. (2019a). Experimental assessment of the state of the lining materials used in the rehabilitation of sewers in residential buildings. Case Studies in Construction Materials, 11, e00291. doi:10.1016/j.cscm.2019
  • Kharazmi, P. (2019b). Monitoring the quality of sewer renewal using polymeric systems in Sweden. Water Practice and Technology, 14(3), 605–613. doi:10.2166/wpt.2019.046
  • Mazraeh, H., & Abdullahi, A. (2018). Värmeåtervinning ur spillvatten för flerbostadshus [Heat recovery from wastewater in multi-family houses]. Högskolan Dalarna. Dalarna, Sweden. Retrieved from http://www.diva-portal.org/smash/get/diva2:1232736/FULLTEXT01.pdf
  • Selvakumar, A., Morrison, R., Sangster, T., & Condit, W. (2013). State of technology for rehabilitation of water distribution systems. EPA report no. EPA/600/R-13/036. Edison, NJ: National Risk Management Research Laboratory (Water Supply and Water Resources Division).
  • Sterling, R., Wang, L., & Morrison, R. (2009). Rehabilitation of wastewater collection and water distribution systems – State of technology review report. EPA report no. EPA/600/R-09/048. U.S.
  • Steward, E. J., Allouche, E. N., Baumert, M. E., & Gordon, J. (2012). Testing of rigid spray-on lining under internal pressure, Pipeline specialty conference 2009, San Diego, CA. doi:10.1061/41069(360)70.
  • US Environmental Protection Agency. (2002). American Water Work Association, effects of water age on distribution system water quality. Retrieved from https://www.epa.gov/sites/production/files/2015-09/documents/2007_05_18_disinfection_tcr_whitepaper_tcr_waterdistribution.pdf
  • US Environmental Protection Agency. (2009). National risk management research laboratory- water supply and water resources division, innovation and research for water infrastructure for 21st century research plan. Retrieved from https://nepis.epa.gov/Exe/ZyPDF.cgi?Dockey=P100ECPB.txt
  • Vining, C., Jordan, W., & Hall, D. (2001). Long-term material characterization of a cured in place plastic (CIPP) sewer rehabilitation liner material. Durability 2000, Proceedings of the durability workshop (pp. 133–144), Berkeley, CA. doi:10.1016/B978-008043890-0/50013-4.
  • Wallin, J. (2015). Studie av effektivitet värmeväxlare avloppsåtervinning (Study of efficiency of sewerage system heat recovery). Swedish Energy Agency. Retrieved from http://belok.se/download/genomforda_projekt/Avlopps%C3%A5tervinningsv%C3%A4xlares%20effektivitet.pdf