S Arjun, Babu Anna S, N Krishnapriya V, Ramanarayanan Venkitachalam, V Manju, Nair Vinod P
Prosthodontics and Implantology, Amrita School of Dentistry, Amrita Vishwa Vidyapeetham, Kochi, IND.
Public Health Dentistry, Amrita School of Dentistry, Amrita Vishwa Vidyapeetham, Kochi, IND.
Cureus. 2024 Dec 5;16(12):e75132. doi: 10.7759/cureus.75132. eCollection 2024 Dec.
Acrylic dentures fabricated using polymethyl methacrylate are subjected to either intraoral fatigue stress or extraoral impact stress, eventually forming microcracks and fractures. This limitation should be overcome by either modification in the acrylic resin material or in polymerization techniques. This study compares the impact strength and flexural strength of high-impact resin to conventional resin in short- and long-heat polymerization settings.
The in vitro study design adopted a comparison of two groups of acrylic resin specimens, conventional and high-impact resin groups, with two subgroups, each undergoing short and long curing cycles. Specimens' flexural strength and impact strength were tested using the three-point bending test and Charpy's impact test (notched), respectively. The comparative analysis between the outcomes of curing cycles for each material and between the materials for each curing cycle was performed using the Mann-Whitney U test.
The results of our study highlighted that the high-impact resin group with short cycles displayed statistically significant values on the flexural and impact strength. A comparison of flexural strength for the conventional resin group in different curing cycles showed that the short cycle had higher flexural strength than the long cycle, which was statistically significant. However, the difference in impact strength between curing cycles in the conventional resin group was not statistically significant.
High-impact denture base resin with short cycles will enhance denture properties with better flexural and impact strength.
使用聚甲基丙烯酸甲酯制作的丙烯酸义齿会受到口腔内疲劳应力或口腔外冲击应力的影响,最终形成微裂纹和骨折。这种局限性应通过对丙烯酸树脂材料或聚合技术进行改进来克服。本研究比较了高抗冲树脂与传统树脂在短时间和长时间热聚合环境下的抗冲击强度和弯曲强度。
体外研究设计采用比较两组丙烯酸树脂标本,即传统树脂组和高抗冲树脂组,每组又分为两个亚组,分别进行短时间和长时间固化周期。分别使用三点弯曲试验和夏比冲击试验(带缺口)测试标本的弯曲强度和冲击强度。使用曼-惠特尼U检验对每种材料的固化周期结果之间以及每个固化周期的材料之间进行比较分析。
我们的研究结果突出表明,短周期的高抗冲树脂组在弯曲强度和冲击强度方面显示出统计学上的显著值。对传统树脂组在不同固化周期的弯曲强度进行比较表明,短周期的弯曲强度高于长周期,具有统计学显著性。然而,传统树脂组固化周期之间的冲击强度差异没有统计学显著性。
短周期的高抗冲义齿基托树脂将通过更好的弯曲强度和冲击强度提高义齿性能。