Jadhav Rajashree, Bhide S V, Prabhudesai P S
Department of Prosthodontic and Implantology, Bharati Vidyapeeth Dental College and Hospital, Pune, India.
Indian J Dent Res. 2013 Jan-Feb;24(1):19-25. doi: 10.4103/0970-9290.114926.
To measure the impact strength of denture base resins polymerized using short and long curing cycles by water bath, pressure cooker and microwave techniques.
For impact strength testing, 60 samples were made. The sample dimensions were 60 mm × 12 mm × 3 mm, as standardized by the American Standards for Testing and Materials (ASTM). A digital caliper was used to locate the midpoint of sample. The impact strength was measured in IZOD type of impact tester using CEAST Impact tester. The pendulum struck the sample and it broke. The energy required to break the sample was measured in Joules. Data were analyzed using Student's " t" test.
There was statistically significant difference in the impact strength of denture base resins polymerized by long curing cycle and short curing cycle in each technique, with the long curing processing being the best.
The polymerization technique plays an important role in the influence of impact strength in the denture base resin. This research demonstrates that the denture base resin polymerized by microwave processing technique possessed the highest impact strength.
通过水浴、高压锅和微波技术测量采用短固化周期和长固化周期聚合的义齿基托树脂的冲击强度。
为进行冲击强度测试,制作了60个样本。样本尺寸为60毫米×12毫米×3毫米,这是由美国材料与试验协会(ASTM)标准化的。使用数字卡尺确定样本的中点。使用CEAST冲击试验机在艾氏冲击试验机上测量冲击强度。摆锤撞击样本,样本断裂。以焦耳为单位测量使样本断裂所需的能量。使用学生“t”检验分析数据。
在每种技术中,采用长固化周期和短固化周期聚合的义齿基托树脂的冲击强度存在统计学显著差异,长固化工艺效果最佳。
聚合技术在义齿基托树脂冲击强度的影响中起着重要作用。本研究表明,通过微波加工技术聚合的义齿基托树脂具有最高的冲击强度。