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DAFTAR PUSTAKA Pengaruh Penambahan E-Glass Fiber Terhadap Kekuatan Kompresi Resin Komposit Nanofil.

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45 DAFTAR PUSTAKA

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Aryanto, M., Milly A., dan Dudi A., 2013, Compressive Strength Resin Komposit Hybrid Post Curing dengan Ligth Emitting Diode Menggunakan Tiga Ukuran Ligth Box yang Berbeda, Dental Journal, 46(2):101-106.

Bona, A.D., Paula B., Marcia B., dan Dileta C., 2007, Flexural and Diametral Tensile Strength of Composite Resins, Braz Oral Res, 22(1):84-9.

Endo, T., Werner J.F., Masafumi K., Andreas U., dan Masashi K., 2010, Surface Texture and Roughness of Polished Nanofill and Nanohybrid Resin Composites, Dental Materials Journal, 29(2):213-223.

F., Sharafeddin, Alavi A.A., dan Talei Z., 2013, Flexural Strength of Glass and Polyethylene Fiber Combined with Three Different Composites, J Dent Shiraz Univ Med Scien, 14(1):13-19.

Garoushi, Sufyan, Muhammad K., Akikazu S., Pekka K.V., Julian D.S., David C.W., dan Lippo V.J.L., 2012, Creep of Experimental Short Fiber-Reinforced Composite Resin, Dental Material Journal, 31(5):731-74

Hambire, U.V. dan Vipin, K.T., 2012, Experimental Evaluation of Different Fillers in Dental Composites in Terms of Mechanical Properties, ARPN Journal of Engineering and Applied Sciences, 2(7):147-151.

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46 Han, J.M., Hong L., Gang Z., Akiyoshi Z.,Harunori G., Akikazu S., dan Jie L.,

2012, Effect of Nanofiller on Wear Resistance and Surface Roughness of Resin Composite, The Chinese Journal of Dental Research, 15(1):41-47.

Hyer MW., 1998, Stress Analysis of Fiber-Reinforces Composite Material. Singapore : McGraw Hill Book Co. 203, 205

ISO 10477., 2004, Dentistry-Polymer-Based Crown and Bridge Materials 2nded. International Organization for Standarization, Geneva, Zwitzerland.

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Jun, Soo K., Dong-Ae K., Hyo-Jin G., dan Hae-Hyoung L., 2013, Investigation of Correlation Between the Different Mchanical Properties of Resin Composite, Dental Materials Journal, 32(1): 48–57.

Kanie T., Fujii K., dan Arikawa H., 2000, Flexural Propesties and Impact Strength of Denture base Polymer Reinforced With Woven Glass Fibers. Dental material, 16: 150-158.

Khan, A.S., Maria T.A., Maria K., Salman A.M., dan Ihtesham Ur R., 2015, An Update On Glass Fiber Dental Restorative Composite: A Systematic Review, Materials Science and Engineering C, 47:26-39.

Kiran, K.V., Aravind T., Kapil J., Seema R., Himani L., Divya K., dan Rose K.K., 2014, In Vitro Evaluation of the Compressive Strength of Microhybrid and Nanocomposite, OHDM, 13(4):1171-1173.

Kivanc, B.H., Tayfun A., dan Guliz G., 2010, Fracture Resistance of Premolars with One Remaining Cavity Wall Rrestored Using Different Techniques, Dental Materials Journal, 29(3): 262–267.

Kumar, N., Khoso, N.A., Shangi, L., dan Bhangar, F., 2012, Dental Resin Based Composite : A Transition From Macrofilled to Nanofilled, J Pakistan Dent Association, 21(1) : 39-44.

Lassila, Lippo V.J., dan P.K. Vallitu, 2004, The Effect of Fiber Position and Polymerization Condition on the Flexural Properties of Fiber-Reinforced Composite, Journal of Contemporary Dental Practice, 5(2):1-12.

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47 Manhart, Jurgen, 2009, Fiberglass Reinforced Composite Endodontic Posts,

Endodontic Practice, 9:16-20.

Mc Cabe, J.F. dan Angus W. G. W., 2014, Applied Dental Material, 9th Ed, Jakarta, EGC. Hal. 9, 37, 277, 284, 301.

Mosharraf, R., Z. Hashemi, dan S. Torkan, 2011, In Vitro Study of Transverse Strength of Fiber Reinforced Composites, Journal of Dentistry, 8(3):101-106.

Mozartha, Martha, Ellyza Herda, dan Andi Soufyan, 2010, Pemilihan Resin Komposit dan Fiber untuk Meningkatkan Kekuatan Fleksural Fiber Reinforced Composite(FRC), Jurnal PDGI, 59(1):29-34.

Murthy, H. B. Mallikarjuna, Sharaz S., Harleen S., Sumit K., Satheesh B.H., dan K.T. Roopa, 2015, Effect of Reinforcement Using Stainless Steel Mesh, Glass Fibers, and Polyethylene on the Impact Strength of Heat Cure Denture Base Resin - An In Vitro Study, Journal of International Oral Health, 7(6):71-79.

Natarajan, P. dan Thulasingam C., 2013, The Effect of Glass and Polyethylene Fiber Reinforcement on Flexural Strength of Provisional Restorative Resins: An In Vitro Study, J Indian Prosthodont Soc, 13(4):421–427.

Obukuro, M., Takahashi Y., dan Shimizu H., 2008, Effect of Diameter of Glass Fibers on Flexural Properties of Fiber-Reinforced Composites. Dental Materias Journal, 27(4):541-548.

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Park, Jeong K., Geun-Ho L., Jong-Hwa K., Mi-Gyoung P., Ching-Chang K., Hyung-Il K., dan Yong H.K., 2014, Polymerization Shrinkage, Flexural and Compression Properties of Low-Shrinkage Dental Resin Composites,

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Powers, John M., Sakaguchi, Ronal L., dan Craig, Robert G., 2009, Craig’s Restorative Dental Materials ed. 12thEd, London:Elsevier Mosby. 225, 226, 229.

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48 Rosatto, Camila M.P., Marina G.R., Veridiana R.N., Murilo S.M., dan Carlos J.S.,

2014, Effect of Silane Type and Air-Drying Temperature on Bonding Fiber Post to Composite Core and Resin Cement, Brazilian Dental Journal, 25(3):217-224.

Rosyida, Niswati F., Siti Sunarintyas, dan Pinandi Sri P., 2015, The Effect of Silanated and Impregnated Fiber On the Tensile Strength of E-Glass Fiber Reinforced Composite Retainer, Dental Journal, 48(1):22-25

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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.

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Spyrides, S.M.M., Maria do P., Renata A.S., dan Fernando L.B., 2015, Effect of Plasma and Fiber Position on Flexural Properties of a Polyethylene Fiber-Reinforced Composite, Brazilian Dental Journal, 26(5): 490-496.

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Suzuki, T., Hideki K., Werner J.F., Masafumi K., Tatsuo E., Andreas U., Hisashi H., dan Masashi K., 2009, Resistance of Nanofill and Nanohybrid Resin Composite to Toothbrush Abrasion with Calcium Carbonate Slurry,

Dental Materials Journal, 28(6):708-716.

Uzun G, dan Keyf F., 2001, Effect of Woven, Chopped and Longitudinal Glass Fibers Reinforcement on the Transverse Strength of a Repair Resin.

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