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      https://www.riss.kr/link?id=A99905235

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      다국어 초록 (Multilingual Abstract)

      The fracture of denture base resin occurs due to repeated loading caused by masticatory forces or accidental dropping. One method strengthening denture base resin is the addition of reinforcing fibers to resin. The aim of this study was to evaluate th...

      The fracture of denture base resin occurs due to repeated loading caused by masticatory forces or accidental dropping. One method strengthening denture base resin is the addition of reinforcing fibers to resin. The aim of this study was to evaluate the effect of glass and aramid fibers according to the fiber orientation on maxillary complete denture.
      In the study of denture model, maxillary complete denture was fabricated with auto-polymerized resin(Vertex SC). Glass fiber and polyaromatic polyamide fiber (aramid) were used in unidirectional and bidirectional orientation to reinforce the maxillary complete denture. The maxillary complete denture without fibers was used as a control. The flexural strengths, moduli and toughness of the denture were measured with and without silicone maxillary cast, respectively. The specimens of each group were stored in distilled water at 37℃ for 50 hours before test, The flexural strengths, moduli and toughness were measured with a universal testing machine at a crosshead speed of 5 ㎜/min in a three-point bending mode.
      For flexural strengths, there were no significant differences according to the fiber type and orientation. The flexural strength of bidirectional glass fiber and unidirectional aramid fiber with silicone cast denture were significantly higher than those without silicone cast denture. However, the flexural modulus of unidirectional aramid fiber was significantly higher than those of other experimental groups and the control at test without silicone cast. The flexural modulus of unidirectional aramid fiber and bidirectional glass fiber without silicone cast denture were significantly higher than those without silicone cast denture. For the toughness, the bidirectional glass fiber with silicone cast were significantly higher than those of other experimental groups and the control, with the exception of unidirectional aramid fiber. The toughness of control, bidirectional glass fiber and unidirectional aramid fiber with silicone cast denture were significantly higher than those without silicone cast denture.
      In this study, bidirectional glass fiber and unidirectional aramid fiber showed the significant reinforcing effect on maxillary complete denture in terms of flexural modulus and toughness.

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      참고문헌 (Reference)

      1 한국치과재료학 교수협의회, "치과재료학" 군자출판사 45-, 2008

      2 Carroll CE, "Wire reinforcement of acrylic resin prostheses" 52 : 639-641, 1984

      3 Vallittu PK, "Transverse strength and fatique of denture acrylic- glass fiber composite" 10 : 116-121, 1994

      4 Narva KK, "The static strength and modulus of fiber reinforced denture base polymer" 21 : 421-428, 2005

      5 Hargreaves AS, "The prevalence of fractured dentures-a survey" 126 : 451-455, 1969

      6 Doğan OM, "The evaluation of some flexural propertiesof a denture base resin reinforced with variousaesthetic fibers" 19 : 2343-2349, 2008

      7 Matthews E, "Stresses in denture bases" 100 : 167-171, 1956

      8 Tsue F, "Reinforcing effect of glass-fiber-reinforced composite on flexural strength at the proportional limit of denture base resin" 65 : 141-148, 2007

      9 Karacaer O, "Reinforcement of maxillary dentures with silane- treated ultra high modulus polyethylene fibers" 43 : 103-107, 2001

      10 Nakamura M, "Reinforcement of denture base resin with short-rod glass fiber" 26 : 733-738, 2007

      1 한국치과재료학 교수협의회, "치과재료학" 군자출판사 45-, 2008

      2 Carroll CE, "Wire reinforcement of acrylic resin prostheses" 52 : 639-641, 1984

      3 Vallittu PK, "Transverse strength and fatique of denture acrylic- glass fiber composite" 10 : 116-121, 1994

      4 Narva KK, "The static strength and modulus of fiber reinforced denture base polymer" 21 : 421-428, 2005

      5 Hargreaves AS, "The prevalence of fractured dentures-a survey" 126 : 451-455, 1969

      6 Doğan OM, "The evaluation of some flexural propertiesof a denture base resin reinforced with variousaesthetic fibers" 19 : 2343-2349, 2008

      7 Matthews E, "Stresses in denture bases" 100 : 167-171, 1956

      8 Tsue F, "Reinforcing effect of glass-fiber-reinforced composite on flexural strength at the proportional limit of denture base resin" 65 : 141-148, 2007

      9 Karacaer O, "Reinforcement of maxillary dentures with silane- treated ultra high modulus polyethylene fibers" 43 : 103-107, 2001

      10 Nakamura M, "Reinforcement of denture base resin with short-rod glass fiber" 26 : 733-738, 2007

      11 Uchida H, "Measurement in vivo of masticatory mucosal thickness with 20 MHz B-mode ultrasonic diagnostic equipment" 68 : 95-100, 1989

      12 Callister WD, "Materials science and engineering: an introduction. Wiley Asia student edition,7th ed" John Wily & Son 595-607, 2007

      13 Kanie T, "Light-curing reinforcement for denture base resin using a glass fiber cloth pre-impregnated with various urethane oligomers" 23 : 291-296, 2004

      14 Hirajima Y, "Influence of a denture strengthener on the deformation of a maxillary complete denture" 28 : 507-512, 2009

      15 Vallittu PK, "In vitro cytotoxicity of fiber-polymethyl methacrylate composite used in dentures" 26 : 666-671, 1999

      16 Vallittu PK, "Impact strength of a modified continuous glass fiber-poly(methyl methacrylate)" 10 : 142-148, 1997

      17 International Organization for standardization, "ISO 20795-1. Dentistry - Base polymers-Part 1: Denture Base Polymers"

      18 Berrong JM, "Fracture resistance of Kevlar- reinforced poly(methyl methacrylate) resin: a preliminary study" 3 : 391-395, 1990

      19 John J, "Flexural strength of heat-polymerized polymethyl methacrylate denture resin reinforced with glass, aramid, or nylon fibers" 86 : 424-427, 2001

      20 Vallittu PK, "Flexural properties of acrylic polymers reinforced with unidirectional and woven glass fibers" 81 : 318-326, 1999

      21 Kanie T, "Flexural properties and impact strength of denture base polymer reinforced with woven glass fibers" 16 : 150-158, 2000

      22 Mallick PK, "Fiber-reinforced composites. 2nd ed" Marcel Dekker 6-84, 1993

      23 Bae JM, "Fatigue strengths of particulate filler composites reinforced with fibers" 23 : 166-174, 2004

      24 Ruffino AR, "Effect of steel strengtheners on fracture resistance of the acrylic resin complete denture base" 54 : 75-78, 1985

      25 Takahashi Y, "Effect of location of glass fiber-reinforced composite reinforcement on the flexural properties of a maxillary complete denture in vitro" 69 : 215-221, 2011

      26 Uzun G, "Effect of five woven fiber reinforcements on the impact and transverse strength of a denture base resin" 81 : 616-620, 1999

      27 Dyer SR, "Effect of fiber position and orientation on fracture load of fiber-reinforced composite" 20 : 947-955, 2004

      28 Beyli MS, "An analysis of causes of fracture of acrylic resin dentures" 46 : 238-241, 1981

      29 Ladizesky NH, "Acrylic resin reinforced with chopped high performance polyethylene fiber--properties and denture construction" 9 : 128-135, 1993

      30 Vallittu PK, "A review of methods used to reinforce polymethyl methacrylate resin" 4 : 183-187, 1995

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2014-11-11 학회명변경 한글명 : 대한치과기재학회 -> 대한치과재료학회
      영문명 : The Korea Research Society For Dental Materials -> Korean Society For Dental Materials
      KCI등재
      2014-11-11 학술지명변경 한글명 : 대한치과기재학회지 -> 대한치과재료학회지
      외국어명 : J. Korea Res. Soc. Dent. Mater. -> Korean Journal of Dental Materials
      KCI등재
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.33 0.33 0.25
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.2 0.18 0.408 0.07
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