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2019 Month : March Volume : 8 Issue : 12 Page : 872-878

EFFECT OF E-GLASS FIBER ADDITION ON MECHANICAL PROPERTIES OF HEAT-POLYMERIZED ACRYLIC RESIN DENTURE BASE.

Sri Yuliharsini1, Ismet Danial Nasution2, Harry Agusnar3, Putri Welda Utami Ritonga4

1Postgraduate Program in Prosthodontics, Faculty of Dentistry, Universitas Sumatera Utara, Medan, Indonesia.
2Lecturer, Department of Prosthodontics, Faculty of Dentistry, Universitas Sumatera Utara, Medan, Indonesia.
3Lecturer, Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Sumatera Utara, Medan, Indonesia.
4Lecturer, Department of Prosthodontics, Faculty of Dentistry, Universitas Sumatera Utara, Medan, Indonesia.

References :

1

McCabe JF, Walls AWG. Applied dental materials. 9th edn. London: Blackwell Publishing Ltd., 2008: p. 110-23.

2

Powers JM, Sakaguchi RL. Craig’s restorative dental materials. 12th edn. Mosby Elsevier 2006.

3

Alla RK, Sajjan S, Alluri VR, et al. Influence of fiber reinforcement on the properties of denture base resins. Journal of Biomaterials and Nanobiotechnology 2013;4:91-7.       

CrossRef | Google Scholar |
4

Narva KK, Lassila LV, Vallittu PK. The static strength and modulus of fiber reinforced denture base polymer. Dent Mater 2005;21(5):421-8.             

Google Scholar | PubMed
5

Raszewski Z, Nowakowska D. Mechanical properties of hot curing acrylic resin after reinforced with different kinds of fibers. International Journal of Biomedical Materials Research 2013;1(1):9-13.                     

CrossRef | Google Scholar |
6

Unalan F, Dikbas I, Gurbuz O. Transverse strength of polymethylmethacrylate reinforced with different forms and concentrations of E-glass fibres. OHDMBSC 2010;9(3):144-7.               

CrossRef | Google Scholar |
7

Mowade TK, Dange SP, Thakre MB, et al. Effect of fiber reinforcement on impact strength of heat polymerized polymethyl methacrylate denture base resin: in vitro study and SEM analysis. J Adv Prosthodont 2012;4(1):30-6.            

CrossRef | Google Scholar | PubMed
8

Yu SH, Ahn DH, Park JS, et al. Comparison of denture base resin reinforced with polyaromatic polyamide fibers of different orientations. Dental Materials Journal 2013;32(2):332-40.               

CrossRef | Google Scholar | PubMed
9

Prasad AH, Kalavathy, Mohammed HS. Effect of glass fiber and silane treated glass fiber reinforcement on impact strength of maxillary complete denture. Annals and Essences of Dentistry 2011;4(3):7-12.

10

Yöndem I, Yücel M, Aykent F, et al. Flexural strength of denture base resin reinforced with different fibers. SÜ Dişhek Fak Derg 2011;20:15-20.

11

Vojdani M, Khaledi AAR. Transverse strength of reinforced denture base resin with metal wire and e-glass fibers. J Dent, Tehran University of Med Sci 2006;3(4):167-72.                  

CrossRef | Google Scholar |
12

Monaco C. Clinical and scientific aspect of inlay fixed partial denture. Thesis, Italia, University of Siena. 2005: p. 1-39.

13

Goguta L, Marsavina L, Bratu D, et al. Impact strength of acrylic heat curing denture base resin reinforced with e-glass fibers. TMJ 2006;56(1):88-92.         

CrossRef | Google Scholar |
14

Jaber MA. Effect of metal wire and glass fibers on the impact strength of acrylic denture-base resin. Iraqi National Journal of Nursing Specialities 2011;24(2):26-32.

CrossRef | Google Scholar |
15

Sitorus Z, Dahar E. Perbaikan sifat fisis dan mekanis resin akrilik polimerisasi panas dengan penambahan serat kaca. Dentika Dental Journal 2012;17(1):24-9.

16

Nirwana I. Kekuatan transversal resin akrilik hybrid setelah penambahan glass fiber dengan metode berbeda. (The transverse strength of the hybrid acrylic resin after glass fiber reinforcement with different method). Majalah Kedokteran Gigi (Dent J) 2005;38(1):16-9.           

Google Scholar |
17

Vojvodic D, Matejicek F, Schauperl Z, et al. Flexural strength of e-glass fiber reinforced dental polymer and dental high impact strength resin. Strojarstvo 2008;50(4):221-30.                            

CrossRef | Google Scholar |
18

Watri D. Pengaruh penambahan serat kaca pada bahan basis gigitiruan resin akrilik polimerisasi panas terhadap kekuatan impak dan transversal. Skripsi Medan Universitas Sumatera Utara 2010: p. 42-53.            

CrossRef |
19

Lee SI, Kim CW, Kim YS. Strength of chopped glass fiber on the strength of heat-cured PMMA resin. J Korean Acad Prosthodont 2001;39(6)589-98.

20

Uzun G, Keyf F. The effect of woven, chopped and longitudinal glass fibers reinforcement on the transverse strength of a repair resin. J of Biomaterial Application 2001;15(4):351-8.               

CrossRef | Google Scholar | PubMed
21

Orsi IA, Soares RG, Villabona CA, et al. Evaluation of the flexural strengh and elastic modulus of resins used for temporary restorations reinforced with particulate glass fibre. Gerodontology 2012;29(2):e63-e8.                          

CrossRef | Google Scholar | PubMed
22

Polat TN, Dogan DO, Topcuoglu S, et al. Effect of different glass fibers on the transverse strength and elastic modulus of repairing acrylic resin. Cumhuriyet Dent J 2013;16(3):1-9.  

Google Scholar |
23

Mareti D. Pengaruh penambahan serat kaca terhadap kekuatan transversal dan modulus elastisitas bahan basis gigitiruan resin akrilik polimerasasi panas. Skripsi, Medan, Universitas Sumatera Utara, 2014: p. 7-56.

24

Memon MS, Yunus N, Razak AA. Some mechanical properties of a highly cross-linked, microwave –polymerized, injection-molded denture base polymer. Int J Prosthodont 2001;14(3):214-8.                      

Google Scholar | PubMed
25

Jain T, Yadav NS, Pandita S, et al. A comparative evaluation of flexural strength of commercially available acrylic and modified polymethylmethacrylate: an invitro study. J Contemp Dent Pract 2013;14(1):80-3.        

Google Scholar | PubMed
26

Khalaf HAR. Effect of Siwak on certain mechanical properties of acrylic resin. J Oral Research 2013;1(1):39-49.                  

CrossRef | Google Scholar |
27

Stipho HD. Repair of acrylic resin denture base reinforced with glass fiber. J Prosthet Dent 1998;80(5):546-50.             

CrossRef | Google Scholar | PubMed
28

Tacir IH, Kama JD, Zortuk M, et al. Flexural properties of glass fibre reinforced acrylic resin polymers. J Aust Dent 2006;51(1):52-6.         

CrossRef | Google Scholar | PubMed
29

Vallittu PK, Bodont DT, Lassila VP, et al. Acrylic resin-fibre composite-part I: the effect of fiber concentration on fracture resistance. J Prosthet Dent 1994;71(6):607-12.

CrossRef | Google Scholar | PubMed
30

Tandon R, Gupt S, Agarwal SK. Denture base materials: from past to future. Indian Journal of Dental Sciences 2010;2(2):33-9.

31

Lee HH, Lee CJ, Asaoka K. Correlation in the mechanical properties of acrylic denture base resins. Dent Mater J 2012;31(1):157-64.       

CrossRef | Google Scholar | PubMed