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DAFTAR PUSTAKA

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(2013). Standard test method for compressive strength of hydraulic cement mortars (using 2-in. or [50-mm] cube specimens). ASTM International.

Amin, M., & Tayeh, B. A. (2020). Investigating the mechanical and microstructure properties of fibre-reinforced lightweight concrete under elevated temperatures. Case Studies in Construction Materials, 13, e00459.

ASTM, C. (2002). Standard test method for static modulus of elasticity and Poisson’s ratio of concrete in compression. Annual book of ASTM standards, 4, 469.

ASTM, C. (2007). Standard test method for flow of hydraulic cement mortar. C1437.

ASTM International Committee C09 on Concrete and Concrete Aggregates.

(2014). Standard Test Method for Compressive Strength of Cylindrical Concrete Specimens. ASTM International.

Basri, D. R., & Mubarak, H. (2021). Beton Ringan dengan Bahan Plastik sebagai Agregat Kasar untuk Konstruksi di Atas Lahan Gambut. Jurnal Teknik Sipil Institut Teknologi Padang, 8(1), 2-2.

Bejan, G., Bărbuță, M., Vizitiu, R. Ș., & Burlacu, A. (2020). Lightweight concrete with waste-review. Procedia Manufacturing, 46, 136-143.

Domagała, L. (2020). Durability of structural lightweight concrete with sintered fly ash aggregate. Materials, 13(20), 4565.

Fu, Y., Wang, X., Wang, L., & Li, Y. (2020). Foam concrete: A state-of-the-art and state-of-the-practice review. Advances in Materials Science and Engineering, 2020.

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Universitas Sriwijaya Giovany, J. (2020). Sifat Fisik dan Mekanik Lightweight Concrete dengan Variasi

Komposisi Expanded Polystyrene (EPS). Skripsi. Teknik Sipil. Universitas Sriwijaya, Sumatera Selatan.

Hu, Y., & Ma, L. (2021). Effect of surface treatment of polypropylene (PP) fiber on the sulfate corrosion resistance of cement mortar. Materials, 14(13), 3690.

Huynh, T. P., Pham, V. H., Lam, T. K., & Ho, N. T. (2020). Experimental research on the performance of polypropylene fiber foamed ultra-lightweight composites. Civil Engineering and Architecture, 8(4), 654-661.

Idris, Y. (2019, April). Characteristics Foam Concrete with Polypropylene Fiber and Styrofoam. In Journal of Physics: Conference Series (Vol. 1198, No. 8, p.

082020). IOP Publishing.

Inozemtcev, A., & Duong, T. Q. (2020, June). High-strength lightweight concrete with internal curing for 3D-printing in construction. In IOP Conference Series:

Materials Science and Engineering (Vol. 869, No. 3, p. 032003). IOP Publishing.

Kavitha, D., & Mallikarjunrao, K. V. N. (2018). Design and analysis of foam concrete. Int. J. Eng. Trends Appl, 5, 113-128.

Lubis, M., Suryani, A., Kartika, I. A., & Hambali, E. (2019). PEMANFAATAN FOAMING AGENT DARI MINYAK SAWIT PADA BETON RINGAN. Jurnal Teknologi Industri Pertanian, 29(3).

Lussy, C. L., & Sugiarto, H. (2020). Pengaruh Penggunaan Polypropylene Fibre Terhadap Karakteristik Self Compacting Concrete. Jurnal Dimensi Pratama Teknik Sipil, 9(1), 49-55.

Newman, J., & Choo, B. S. (2003). Advanced Concrete Technology Processes.

Pratama, R. R. (2019). Pengaruh Variasi Panjang Serat Plastik Terhadap Kuat Tekan, Kuat Tarik Belah, Dan Modulus Elastisitas Beton Ringan (Doctoral dissertation, Universitas Brawijaya).

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Universitas Sriwijaya Purnawirati, I. N. (2020). Pengaruh Faktor Air Semen Terhadap Sifat Mekanik Beton

Ringan Styrofoam. Jurnal Kacapuri: Jurnal Keilmuan Teknik Sipil, 3(2), 59-70.

Raupit, F., Saggaff, A., Tan, C. S., Lee, Y. L., & Md Tahir, M. (2017). Splitting tensile strength of lightweight foamed concrete with polypropylene fiber. International Journal on Advanced Science, Engineering and Information Technology, 7(2), 424.

Sikora, P., Rucinska, T., Stephan, D., Chung, S. Y., & Abd Elrahman, M. (2020).

Evaluating the effects of nanosilica on the material properties of lightweight and ultra-lightweight concrete using image-based approaches. Construction and Building Materials, 264, 120241.

Steel, I., Fiber, F. P., & Fiber, P.C. (n.d.). Synthetic Macrofiber MAF25. 25, 100.

Thienel, K. C., Haller, T., & Beuntner, N. (2020). Lightweight concrete—From basics to innovations. Materials, 13(5), 1120.

Zeyad, A. M., Khan, A. H., & Tayeh, B. A. (2020). Durability and strength characteristics of high-strength concrete incorporated with volcanic pumice powder and polypropylene fibers. Journal of Materials Research and Technology, 9(1), 806-818.

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