EFFECT OF DIAMETRAL TENSILE STRENGTH OF BULK FILL COMPOSITE RESIN WITH THE ADDITION OF SUGARCANE WASTE FIBER

Isyana Erlita, Yusuf M. Hernandi, Muhammad Yanuar Ichrom Nahzi

Abstract


Backgrounds: Bulk fill composite resin is a composite resin type which can be polymerized as deep as 4 mm and is indicated for posterior tooth restoration. Most posterior tooth restorations become fractured because of the composite resins that are not able to withstand the tensile stress that happens. Efforts to increase diametral tensile strength is by adding fiber. The use of natural fibers can be an alternative because it is environmentally friendly and inexpensive. One of the natural fibers is fiber bagasse (Saccharum Officinarum L.). Purpose: To know the influence of composite resin diametral tensile strength value in bulk fill  with the addition of bagasse fiber. Methods: Experimental laboratory studies with post-test designs only with control group designs. The experiment of consist 36 samples which divided into 3 groups. Group I non-fiber bulk fill resin composite, group II filling composite with bagasse fibers and group III filling composite resins with glass fibers as a control group. The sample are immersed in saline solution and incubated for 24 hours at 37° C. Then sample tested its diametrically tensile strength using a Universal Testing Machine. Data analysis used One Way Anova test with significance value of 0,001 (p<0,05), followed by Post Hoc Bonferroni. Results: Post Hoc Bonfferoni test obtained p value= 0.001 (p<0.05), which means there are significant differences between the three groups where the group with the addition of glass fiber obtained the highest diametral tensile strength value. Conclusion: the addition of bagasse fiber affects the diametral tensile strength and can increase the diametral tensile strength of the bulk fill composite resin.

Keywords


Bulk Fill composite resin; Diametral Tensile Strenght; Bagasse Fiber (Saccharum Officinarum L.)

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Nurhapsari, N. 2016. Perbandingan Kebocoran Tepi Antara Restorasi Resin Komposit Tipe Bulk-Fill Dan Tipe Packable Dengan Penggunaan Sistem Adhesif Total Etch Dan Self Etch. ODONTO Dental Journal. Vol 3. Hlm. 8-9 2. Kwong, W. 2012. How to Complete Bulk Fill Restoration, Dental Product Report. http://www.dentalproductsreport.com/dental/a rticle/how-complete-bulk-fillrestorations.html. 3. Widyapramana, Widjijono, Sunarintyas, S., 2013. Pengaruh Kombinasi Posisi Fiber Terhadap Kekuatan Fleksural dan Ketangguhan Retak Fiber Reinforced Composite Polyethylene. IDJ, Vol. 2 No. 2: 5. 4. Kumar, A., Tekriwal, S., et al. 2016. A Review on Fibre Reinforced Composite Resins. Annals of Prosthodontics and Restorative Dentistry. Vol 2(1). p. 11-16. 5. Neorati, et al. 2013. Bahan Ajar Pendidikan dan Latihan Profesi Guru (PLPG) Teknologi Tekstil. Yogyakarta: Sekolah Tinggi Tekhnologi Tekstil. 6. Mohan, K.S.R. 2012. Properties of Fly Ash Based Coconut Fiber Composite. American J. of Engineering and Applied Sciences. Vol 5 (1). Hlm. 29-34. 7. Begum MK, MR Alam, and MS Islam. 2013. Adaptive mechanism of sugarcanegenotypes under flood stress condition. World. J. Agric. Vol.1 (2). Hlm. 056-064. 8. Purnawan, C., Hilmiyana, D., Wantini., dan Fatmawati, E., 2012. Pemanfaatan Limbah Ampas Tebu Untuk Pembuatan Kertas Dekorasi Dengan Metode Organosolv, Jurnal EKOSAINS, 4(2): 1-6. 9. Clareyna, E.D. & L.J. Mawarani. 2013. Pembuatan dan Karakteristik Komposit Polimer Berpenguat Bagasse. Jurnal Teknik Pomits. Vol. 2, No. 2, ISSN: 2337-3539 10. Tewari, M., Singh, V.K., Gope, P.C., Chaudhary, A.K., 2012. Evaluation Of Mechanical Properties Of Bagasse-Glass Fiber Reinforced Composite, J. Mater. Environ. Sci., 3(1): 171-184. 11. Wona H, Boimau K, Erich. 2015. Pengaruh variasi fraksi volume serat terhadap kekuatan bending dan impak komposit polyester berpenguat serat agave cantula. LONTAR Jurnal Teknik Mesin Undana. Vol.2(1): 39-49. 12. Mishra, S., Misra M, Tripathy S S, Nayak S K, dan Mohanty A K. 2001. Graft copolymerization of acrynolitrile on chemically modifiedsisal fibers. Macro. Mat. Hal. 107-133

Suryanto, H., 2016. Review Serat Alam: Komposisi, Struktur, dan Sifat Mekanis. ReseachGate. Oktober 14. Mozartha, M., Herda, E., Soufyan, A., 2010. Pemilihan resin komposit dan fiber untuk meningkatkan kekuatan fleksural Fiber Reinforced Composite. Jurnal PDGI. 59 (1): 29-34. 15. Steptommy, Catur., Widjijono, Dharmastiti, R., 2014. Pengaruh posisi dan fraksi volumetrik fiber polyethylene terhadap kekuatan fleksural fiber reinforced composite. Research Report. 47(1): 52-56 16. Bona AD, Benetti P, Borba M, et al. Flexural and diametral tensile strength of composite resins. Braz Oral 84, 22(1):84-9,2008. 17. Hestiawan, H., Fauzi, A., 2014. Studi Pengaruh Fraksi Volume dan Susunan Serat Terhadap Kekuatan Tarik dan Bending Komposit Resin Berpenguat Serat Rotan (Calamus Trachycoleus). Jurnal Mechanical. 5(1). 18. Sari, Widya P., Dedi Sumantri, Dian Novianti A. I., dan Siti Sunarintyas, 2014, Pemeriksaan Komposisi Glass Fiber Komersial dengan Teknik X-Ray Fluorescence Spectrometer (XRF), Jurnal B-Dent, 1(2):155-160.




DOI: http://dx.doi.org/10.20527/dentino.v3i1.4599

DOI (PDF): http://dx.doi.org/10.20527/dentino.v3i1.4599.g4004

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