Mechanical Properties Of Tensile And Bending Strength Analysis In Biocomposite [SAGOO/PMMA] Material
Abstract
Biocomposite material is a common material used in biomedical application. One of medical problems related to bone restoration which caused by accidents and injuries resulted in fracture bone parts. Biocomposite (Sagoo/PMMA) is being developed as a solution to solve that particular problem. In current research, tensile and flexural strength of sagoo/PMMA is tested and examined. There are correlation between value of tensile strength, value of bending strength, and curing time, with maximum tensile strength and bending strength were achieved by curing the specimen for 12 hours, with the maximum value of tensile strength is 3,337 MPa, and the maximum flexural is 2,653 MPa. The minimum tensile strength was achieved by curing the specimen for 6 hours with minimum value of tensile strength is 1,502 MPa, while the minimum flexural was acquired at curing time for 24 hours with minimum of bending strength is 0,536 MPa
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Taufik, A., Zuhan, A., & Kusdaryono, S. (2017). Karakterisasi hydroxyapatite alami yang dibuat dari tulang sapi dan cangkang telur sebagai bahan untuk donor tulang (bone graft). Jurnal Kedokteran UNRAM, 6(1), 9–13.
Putra, Ikbal Rizki and Tontowi, Alva Edy, (2019), Properti Mekanik Material [Sagu/PMMA] “3D-Printabel”, In Conference SENIATI 2019.
Widhiarta, I Gede, Sari, Nasmi Herlina, and Sujita, (2012), Study Kekuatan Bending Dan Struktur Mikro Komposit Polyethylene Yang Diperkuat Oleh Hybrid Serat Sisal Dan Karung Goni, Dinamika Teknik Mesin, 2(2), 92-99.
Kurniawan, Ary Setya, Solichin, Puspitasari, Rr. Poppy, (2014), Analisis Kekuatan Tarik Dan Struktur Mikro Pada Baja St.41 Akibat Perbedaan Ayunan Elektroda Pengelasan SMAW, Jurnal Teknik Mesin, 22(2), 1-12.
Lesmanah, Unung, Masyahyo, Eko, and Vitasari, Prima, (2013), Optimasi Sifat Mekanis Kekuatan Tarik Baja St 50 Dengan Perlakuan Gas Carburizing Variasi Holding Time Untuk Peningkatan Mutu Baja Standar Uji Astm A370, Jurnal Mekanikal, 4(2), 366-375.
DOI: http://dx.doi.org/10.28989/senatik.v5i0.371
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Conference SENATIK P-ISSN :2337-3881 and E-ISSN : 2528-1666
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