Assesing compressive strength variations of galam wood in construction: A study of different sections and ratios
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Guiles, J. (2014). Evaluating the environmental performance of wood building materials,’ ESF, 2014. http://www.esf.edu/ecenter/eis/woodmaterials.htm (accessed August. 19, 2023).
Ma’ruf, M. A., Arifin, Y. F., & Asy’ari, M. (2023, May). Gelam Wood (Melaleuca cajuputi Powell) as a Substructure Construction Material. In IOP Conference Series: Earth and Environmental Science (Vol. 1184, No. 1, p. 012004). IOP Publishing. https://iopscience.iop.org/article/10.1088/1755-1315/1184/1/012004.
Asnan, M. N., Vebrian, Sunaryo, Sahlan, Ramadhan, R. F. F. (2022). Analisis Hubungan Antara Tinggi dan Diameter Benda Uji Kayu Galam Terhadap Kuat Tekan. Konferensi Nasional Teknik Sipil (KonTeks) Ke – 16 At Universitas Warmadewa. https://www.researchgate.net/publication/369266666_ANALISIS_HUBUNGAN_ANTARA_TINGGI_DAN_DIAMETER_BENDA_UJI_KAYU_GALAM_TERHADAP_KUAT_TEKAN.
Ridwan, M., Samang, L., Tjaronge, W., & Ramli, M. (2016). Experimental study on bearing capacity of micro grid galam wood pile on soft soil. Int. J. Innov. Res. Adv. Eng, 1. https://www.citefactor.org/article/index/95621/experimental-study-on-bearing-capacity-of-micro-grid-galam-wood-pile-on-soft-soil.
Supriyati, W., Prayitno, T. A., Soemardi, S., & Marsoem, S. N. (2015). Sifat Fisika-mekanika Kayu Gelam yang Ditimbun di Rawa Gambut pada Tiga Kelas Diameter. Bionatura, 22(1), pp. 94 - 95. https://doi.org/10.22146/jml.18729.
Rafik, A., & Cahyani, R. F. (2018). Analisis Perbandingan Biaya Penggunaan Perancah Kayu Galam Dan Perancah Besi (Scaffolding). Jurnal Gradasi Teknik Sipil, 2(1), 20-32. https://doi.org/10.31961/gradasi.v2i1.512.
Asnan, M. N., Arha, A. A., Yatnikasari, S., Agustina, F., & Vebrian. (2023). The analysis study of strength on concrete formwork wood construction. Annales de Chimie - Science des Matériaux, Vol. 47, No. 1, pp. 17-23. https://doi.org/10.18280/acsm.470103.
Arha, A. A., Atfhin, A., & Asnan, M. N. (2021). Tinjauan Sifat Fisik Dan Mekanis Kayu Galam (Maleluca Cajuputi) Sebagai Balok Perancah Pengecoran Beton. 2, 20–21. Konferensi Nasional Teknik Sipil (KonTeks) ke – 15 At UNIKA Soegijapranata. https://www.researchgate.net/publication/369385974_TINJAUAN_SIFAT_FISIK_DAN_MEKANIS_KAYU_GALAM_MALELUCA_CAJUPUTI_SEBAGAI_BALOK_PERANCAH_PENGECORAN_BETON.
Susilo, E. (2019). Analisis Biaya Bekisting Konvensional Dan Bekisting Semi- Sistem Pada kolom Bangunan Gedung. Tesis Universitas Islam Indonesia. https://dspace.uii.ac.id/handle/123456789/15989?show=full.
Siregar, A. C., Asnan, M. N., Vebrian, V., Zulkarnain, I., & Pitoyo, P. (2022). Kualitas Kayu Galam Hasil Budidaya Kabupaten Paser. Prosiding Seminar Nasional Teknik Sipil UMS, 43–46. https://proceedings.ums.ac.id/index.php/sipil/article/view/1202.
Persyaratan Umum Bahan Bangunan di Indonesia (PUBI), (1982). “Direktorat Penyelidikan Masalah Bangunan” in Direktorat Jendral Cipta Karya, Bandung.
Basyaruddin, B., & Awali, J. (2019). Potensi Pemanfaatan Kayu Gelam Dan Kayu Sengon Dalam Dunia Konstruksi Berdasarkan Uji Kuat Lentur. Rekayasa Sipil, 13(3), 193-198. https://doi.org/10.21776/ub.rekayasasipil.2019.013.03.6.
ASTM D 143 - 94 (Reapproved 2000). Standard Test Methods for Small Clear Specimens of Timber.
Badan Standarisasi Nasional, (1995). SNI 03-3959-1995 tentang Metode Pengujian Kuat Lentur Kayu Di Laboratorium.
Badan Standar Nasional, (1995). Metode Pengujian Kuat Tekan Kayu di Laboratorium SNI 03-3958-1995. https://fdokumen.com/document/sni-03-3958-1995-kuat-tekan.html?page=1.
American Society for Testing and Materials, (2008). Annual Book of ASTM Standart 2008 – Section 4 Volume 04.10 Wood D143, American Society for Testing and Materials.
Luhan, G., Damiri, M., Joni, H., & Mujaffar, A. (2019). Pengaruh Bagian Kayu dan Ketebalan Stiker pada Pengeringan Alami terhadap Sifat Fisika Kayu Gerunggang (Cratoxylon arborescens Bl.). Jurnal Hutan Tropika, 14(1), 60–70. https://doi.org/10.36873/jht.v14i1.333.
Badan Standar Nasional, (2002). Metode Pengujian Berat Jenis Batang Kayu Dan Kayu Struktur Bangunan SNI 03-6848-2002. https://www.scribd.com/document/347800696/SNI-Berat-Jenis-Kayu.
American Society for Testing and Materials, (2014). Standard Test Methods for Density and Specific Gravity (Relative Density) of Wood and Wood-Based Materials, ASTM D 2395 – 14,. West Conshohocken, United States.
American Society for Testing and Materials, (2003). Standard Test Methods for Direct Moisture Content Measurement of Wood and Wood-Base Materials, ASTM D 4442 – 92, West Conshohocken. United States.
Badan Standar Nasional, (2011). Cara Uji Kuat Tekan Beton Dengan Benda Uji Silinder SNI 1974:2011. https://staffnew.uny.ac.id/upload/132256207/pendidikan/sni-1974-2011.pdf.
Badan Standarisasi Nasional, (2013). “SNI 7973-2013 tentang Spesifikasi Desain Untuk Konstruksi Kayu.,” in Badan Standarisasi Nasional.
Hidayatullah, R. (2019). Faktor Tekuk Kolom Kayu Mahoni Dan Pinus Pada Berbagai Angka Kelangsingan. Skripsi Institute Pertanian Bogor. http://repository.ipb.ac.id/handle/123456789/98305
Neville, A. M. (1995). Properties of concrete (Vol. 4, p. 1995). London: Longman. https://scholar.google.com/scholar?q=Properties%20of%20concrete.
DOI: http://dx.doi.org/10.36055/tjst.v19i2.21934
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