Unfired Bricks Mixed with Para Rubber Latex for Sustainable Construction Materials

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 296

فایل این مقاله در 19 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_CEJ-10-12_005

تاریخ نمایه سازی: 11 بهمن 1403

چکیده مقاله:

This paper aims to study the development of bricks without burning, mixing para rubber latex, and compressing them with the technology of interlocking block production. The ratio of cement, lateritic soil, and water used in the mix was ۱:۶:۱۱, while the percentage of para rubber latex (PRL) added was ۲.۵, ۵, ۷.۵, ۱۰, and ۱۲.۵% of the cement weight. The optimal PRL content (۲.۵%–۷.۵% by cement weight) enhances compressive strength, reduces water absorption, and improves durability, meeting the Thai industrial standard (TIS ۷۷-۲۵۴۵). The PRL۷.۵ mixture achieved the highest performance, with a compressive strength of ۲۱.۴۲ MPa and a water absorption rate of ۷.۵۵%. These advancements are credited to the polymer film network formed from PRL during the hydration process, which strengthens particle bonds and reduces porosity. However, PRL content exceeding ۷.۵% leads to performance reductions, attributed to thicker polymer films and particle aggregation, which create larger voids within the material. Furthermore, the modified unfired bricks demonstrated enhanced crack resistance, increased ductility, and superior thermal insulation properties. Thermal tests of masonry walls confirmed that unfired bricks provide better thermal insulation. Temperature measurements revealed that houses constructed with unfired bricks consistently maintained cooler indoor temperatures compared to those made with fired bricks, indicating improved thermal efficiency. Environmentally, unfired bricks eliminate carbon emissions from firing processes and offer simpler, more energy-efficient production methods. These bricks provide sustainable alternatives to fired bricks, promoting both environmental and economic benefits for brick-making communities. Doi: ۱۰.۲۸۹۹۱/CEJ-۲۰۲۴-۰۱۰-۱۲-۰۵ Full Text: PDF

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • IEA. (2019). Perspectives for the Clean Energy Transition. The Critical ...
  • UN Environment Program. (2020). Global status report for buildings and ...
  • Sizirici, B., Fseha, Y., Cho, C. S., Yildiz, I., & ...
  • Gursel, A. P., Shehabi, A., & Horvath, A. (2023). Embodied ...
  • Intergovernmental Panel on Climate Change. (2001). Climate change 2007: Impacts, ...
  • Pervaiz, S., Shirazi, S. A., & Ahamad, M. I. (2023). ...
  • Kumbhar, S., Kulkarni, N., Rao, A. B., & Rao, B. ...
  • Lechheb, M., Harrou, A., El Boukili, G., Azrour, M., Lahmar, ...
  • Jannat, N., Hussien, A., Abdullah, B., & Cotgrave, A. (2020). ...
  • Niyomukiza, J. B., Nabitaka, K. C., Kiwanuka, M., Tiboti, P., ...
  • Ftaikhan, A. K., & Al-Sharrad, M. A. (2024). Effect of ...
  • Zhang, Y., Jiang, S., Quan, D., Fang, K., Wang, B., ...
  • Junaid, M. F., ur Rehman, Z., Kuruc, M., Medveď, I., ...
  • Walker, P. J. (1995). Strength, durability and shrinkage characteristics of ...
  • Muñoz, S., Rojas, M., Villena, L., Tepe, V., Garcia, J., ...
  • Abdeldjebar, R., Idder, A., Ali, A. M., Hamouine, A., Lahmar, ...
  • Kererat, C., Kroehong, W., Thaipum, S., & Chindaprasirt, P. (2022). ...
  • Chynoweth, G. L. (1984). Properties of Latex-Modified Shotcrete Beneficial to ...
  • Lachheb, M., Youssef, N., & Younsi, Z. (2023). A Comprehensive ...
  • Zhuang, C., Tao, R., Liu, X., Zhang, L., Cui, Y., ...
  • Li, J., Zhao, X., Wu, W., Zhang, Z., Xian, Y., ...
  • Cheng, S., Duan, X., Zhang, Z., An, D., Zhao, G., ...
  • Khamput, P., & Suweero, K. (2014). Using of para-rubber to ...
  • Rath, B., Debnath, R., Praveenkumar, T. R., & Sakhlecha, M. ...
  • Abdel Kader, M. M., Abdel-wehab, S. M., Helal, M. A., ...
  • Janpetch, N., & Kokkamhaeng, W. (2016). The test of the ...
  • George, U. U., Andy, J. A., & Joseph, A. (2014). ...
  • Tolsma, J., & Johnson, A. N. (1972). Use of latex ...
  • Veena, U., & James, N. (2023). Application of Natural Rubber ...
  • Veena, U., & James, N. (2024). Natural Rubber Latex for ...
  • Sasui, S., Watcharin, J., & Sirimas, H. (2017). Variation in ...
  • Zami, M. S., & Lee, A. (2010). Stabilised or unstabilised ...
  • Pacheco-Torgal, F., & Jalali, S. (2012). Earth construction: Lessons from ...
  • Intaboot, N. (2020). Innovation of interlocking block mixing with biomass ...
  • Tuffrey, J., Siwseng, P., Laksanakit, C., & Chusilp, N. (2024). ...
  • TIS 1746-2545 (2002) Ammonium nitrate for anfo explosive. Thai Industrial ...
  • ASTM C1314-18. (2018). Standard Test Method for Compressive Strength of ...
  • ASTM Standard C140 (2014). Standard Test Method for Sampling and ...
  • ASTM C20-00. (2022). Standard Test Methods for Apparent Porosity, Water ...
  • ASTM C138/C138M-17a. (2023). Standard Test Method for Density (Unit Weight), ...
  • ASTM C518-21. (2021). Standard Test Method for Steady-State Thermal Transmission ...
  • TIS 109-2517. (1974). Standard specification for sampling and testing concrete ...
  • Khamput, P. (2006). A-23 Using Latex from Para-Rubber for Developing ...
  • Weeranukul, P. (2014). A study of the physical, mechanical, and ...
  • Wongpa, J., Koslanant, S., Thongsanitgarn, P., & Chalee, W. (2021). ...
  • Fan, L., Xu, F., Wang, S., Yu, Y., Zhang, J., ...
  • Chaikaew, C., Nokkaew, N., Sua-iam, G., & Songkhla, W. N. ...
  • Guo, L., Jia, Z., Zhong, L., & Chen, S. (2023). ...
  • Yin, Y., Ren, Q., & Shen, L. (2020). Study on ...
  • Mathew, L. A., & Joseph, G. (2024). Natural rubber latex ...
  • Sukmak, G., Sukmak, P., Horpibulsuk, S., Yaowarat, T., Kunchariyakun, K., ...
  • Yaowarat, T., Suddeepong, A., Hoy, M., Horpibulsuk, S., Takaikaew, T., ...
  • Abdul Kadir, A., Detho, A., Hashim, A. A., & Mat ...
  • Llorente-Alvarez, A., Camino-Olea, M. S., Cabeza-Prieto, A., Saez-Perez, M. P., ...
  • Ashour, T., Korjenic, A., Korjenic, S., & Wu, W. (2015). ...
  • Johra, H. (2021). Thermal properties of building materials-Review and database. ...
  • Nandipati, S., GVR, S. R., Dora, N., & Bahij, S. ...
  • Pitak, I., Baltušnikas, A., Kalpokaitė-Dičkuvienė, R., Kriukiene, R., & Denafas, ...
  • Santha Kumar, G., Saini, P. K., Deoliya, R., Mishra, A. ...
  • Jose, A., & Kasthurba, A. K. (2021). Laterite soil-cement blocks ...
  • Bruno, A. W., Gallipoli, D., Perlot, C., & Kallel, H. ...
  • Huy, N. S., Tan, N. N., & Hang, M. T. ...
  • Abid, R., Kamoun, N., Jamoussi, F., & El Feki, H. ...
  • نمایش کامل مراجع