• 제목/요약/키워드: Relining denture resin

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연성 의치상 이장재의 인장결합 강도와 탄성계수에 관한 연구 (THE TENSILE BOND STRENGTH AND ELASTIC MODULUS OF THE SOFT DENTURE LINING MATERIALS)

  • 김병진;고준원;이용근;조혜원
    • 대한치과보철학회지
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    • 제35권3호
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    • pp.458-469
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    • 1997
  • This study was to compare the tensile bond strength and flexibility of four different soft liners(Coe-Soft, Soft Relining, Soft-Liner, Dura Base Soft) before & after thermocycling. Each soft liner was bonded to denture base resin block, and measured the tensile bond strength and modulus of elasticity using Universal testing machine. The mean value of tensile bond strength and modulus of elasticity for each experimental groups were statistically processed by SPSS(Statistical Package of Social Science). The obtained results were as follows : 1. Dura Base Soft had the highest tensile bond strength and Coe-Soft had the lowest tensile bond strength. 2. Coe-Soft had the lowest modulus of elasticity, and Dura Base Soft had the highest modulus of elasticity. 3. Thermocycling had no effects on the tensile bond strength and modulus of elasticity of all the soft liners. 4. The failure modes of Coe-Soft, Soft Relining, Soft Liner were mainly cohesive failure, and that of Dura Base Soft were mainly adhesive failure.

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Thermocycling이 첨상용 레진과 금속 의치상간의 전단결합강도에 미치는 영향 (The Effects of Thermocycling on the Shear Bond Strength between Metal Denture Base and Relining Resin)

  • 이준석
    • 구강회복응용과학지
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    • 제21권2호
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    • pp.95-103
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    • 2005
  • Purpose: Recently, various metal primers have been developed, and these are known to increase the bond strength between metal and relining resin. In this study, the change in bond strength according to amount of thermocycling was evaluated. Materials and Methods: In this study, 216 specimens were fabricated. Tokuyama Rebase $II^{(R)}$(Tokuyama Corp., Japan) and $Kooliner^{(R)}$(GC America Inc., Japan) as relining material, and MR. $Bond^{(R)}$(Tokuyama Corp., Japan) and Alloy $Primer^{(R)}$(Kuraray Medical Inc., Japan) as a metal primers were used. Using Ni-Cr and various metal surface treatment methods, resin was bonded and the change in bond strength during thermocycling was measured. The data was analyzed by one-way ANOVA, t-test(p<.05 level of significance). Results: When comparing the groups with only sandblasting, rapid decrease in shear bond strength could be seen. In the groups using Tokuyama Rebase $II^{(R)}$, with the exception of the 1000 and 2000 cycle groups, each group showed statistically significant decrease in shear bond strength(p<0.05). In comparison according to relining materials, $Kooliner^{(R)}$ showed higher shear bond strength than Tokuyama Rebase $II^{(R)}$ in all groups. In groups using MR $bond^{(R)}$, $Kooliner^{(R)}$ had higher shear bond strength than Tokuyama Rebase $II^{(R)}$ but, there was no statistical significance(p<0.05). In the other groups, $Kooliner^{(R)}$ showed significantly higher shear bond strength(p<0.05). There was significant difference between groups with sandblasting and metal primer treatments(p<0.05). In comparison according to metal primer materials, Alloy $Primer^{(R)}$ showed the highest shear bond strength but there was no statistical significance(p>0.05). According to the number of thermocycling cycles, when using Tokuyama Rebase $II^{(R)}$, there were no significant differences between the 0, 1000 and 2000 cycle groups regardless of the type of metal primer. There were no differences between the 2000 and 3000 cycle groups. When using $Kooliner^{(R)}$, regardless of the type of metal primer, there were no significant differences between the 0, 1000, 2000 and 3000 cycle groups(p>0.05). Conclusion: The use of metal primers showed increase in bond strength, and the stability after to thermocycling has been authenticated. Thus, the use of metal primers in relining and rebasing of metal frameworks is essential. But when selecting the material various physical properties should be considered.

금속의치상과 의치이장재료 간의 결합력에 관한 연구 (A study on the shear bond strength between Co-Cr denture base and relining materials)

  • 이나영;김두용;이영수;박원희
    • 대한치과보철학회지
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    • 제49권1호
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    • pp.8-15
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    • 2011
  • 연구 목적: 본 연구의 목적은 금속 의치상 재료에 직접법으로 이장을 시행했을 때 표면처리와 시간에 따른 결합강도의 변화를 비교하는 것이다. 연구 재료 및 방법: Co-Cr 시편을 최대직경 9 mm의 육각기둥 형태로 절삭하여 제작하였으며, $110\;{\mu}m$$Al_2O_3$로 1분간 sandblasting 하였다. 시편을 18개씩 3군으로 나누어 A군은 화학적 처리 없이, B, C군은 금속표면처리제 (MR $bond^{(R)}$, Alloy $primer^{(R)}$)를 도포한 후 7 mm직경의 자가 중합형 이장용 레진 (Vertex $SC^{(R)}$) 기둥을 부착하였다. 각각의 그룹을 다시3군으로 나누어 수분 하에서 다른 기간 (0주, 1주, 2주)동안 저장한 다음 만능역학 실험기계 (Instron)를 이용하여 시편을 분리하였고, 분리되는 시점의 전단결합강도를 측정하였다. 통계처리는 two-way ANOVA와 Tukey 방법을 이용하여 5% 유의수준에서 분석하였다. 결과: 시편을 sandblasting한 실험에서는, 1분 동안 sandblasting 한 시편의 표면 거칠기가 가장 크게 나타났다. 전단결합강도 실험에서 결합강도는 B, C, A군의 순서로 낮아졌으며, 이 세 군 사이에 유의성 있는 차이를 보였다. 기간별로 봤을 때 결합강도는 수분에 저장하지 않은 군에서 가장 높았으며 2주 동안 수분에 저장한 군에서 가장 낮았으나 기간별로 유의성 있는 차이는 보이지 않았다. 기간과 군을 함께 고려했을 때 모든 군에서 침수 시간이 길어짐에 따라 결합강도가 낮아졌으나B군과C군에서 임상적인 유의성은 보이지 않았고, A군에서만 유의성 있게 결합강도가 낮아졌다. 결론:Co-Cr 금속 의치상에 진료실에서 직접법으로 이장을 할 경우 적절한 기계적 처리 (Sandblasting) 후 금속 표면 처리제를 도포하는 것이 유리할 것으로 사료된다.

A STUDY ON THE ADHESION OF A SOFT LINER CONTAINING 4-META TO THE BASE METAL ALLOY AND ITS VISCOELASTIC PROPERTY

  • Park Hyun-Joo;Kim Chang-Whe;Kim Yung-Soo
    • 대한치과보철학회지
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    • 제41권6호
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    • pp.732-746
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    • 2003
  • Statement of problem. Soft lining materials, also referred to as tissue conditioning materials, tissue heating materials, relining materials, soft liners or tissue conditioners, were first introduced to dentistry by a plastic manufacturer in 1959. Since the introduction of the materials to the dental field, their material properties have been continually improved through the effort of many researchers. Soft lining materials have become widely accepted, particularly by prosthodontists, because of their numerous clinical advantages and ease of manipulation. Unfortunately, few reports have been issued upon the topic of increasing the bond strength between the base metal alloy used in cast denture bases and PMMA soft liner modified with 4-META, nor upon the pattern of debonding and material change in wet environment like a intra oral situation. Purpose. The purposes of this study were comparing the bond strength between base metal alloy used for the cast denture bases and PMMA soft liner modified with 4-META, and describing the pattern of debonding and material property change in wet environment like the intraoral situation. Material and Methods. This study consisted of four experiments: 1. The in vitro measurement of shear bond strength of the adhesive soft liner. 2. The in vitro measurement of shear bond strength of the adhesive soft liner after 2 weeks of aging. 3. A comparison of debonding patterns. 4. An evaluation the Relation time of modified soft liner. The soft liner used in this study was commercially available as Coe-soft (GC America.IL.,USA), which is provided in forms of powder and liquid. This is a PMMA soft liner commonly used in dental clinics. The metal primer used in this study was 4-META containing primer packed in Meta fast denture base resin (Sun Medical Co., Osaka, Japan). The specimens were formed in a single lap joint desist which is useful for evaluating the apparent shear bond strength of adhesively bonded metal plate by tensile loading. Using the $20{\times}20mm$ transparent grid, percent area of adhesive soft liner remaining on the shear area was calculated to classify the debonding patterns. To evaluate the change of the initial flow of the modified adhesive soft liner, the gelation time was measured with an oscillating rheometer (Haake RS150W/ TC50, Haake Co., Germany). It was a stress control and parallel plate type with the diameter of 35mm. Conclusion. Within the conditions and limitations of this study, the following conclusions were drawn as follows. 1. There was significant increase of bond strength in the 5% 4-META, 10% 4-META containing groups and in the primer coated groups versus the control group(P<0.05). 2. After 2 weeks of aging, no significant increase in bond strength was found except for the group containing 10% 4-META (P<0.05). 3. The gelation times of the modified soft liner were 9.3 minutes for the 5% 4-META containing liner and 11.5 minutes for the 10% 4-META liner. 4. The debonding patterns of the 4-META containing group after 2 weeks of aging were similar to those of immediaely after preparation, but the debonding pattern of the primer group showed more adhesive failure after 2 weeks of aging.