Comparative analysis of the experimental dilation of some materials used in the manufacture of physiognomic fixed prosthetic restorations

Q4 Dentistry Revista Romana de Stomatologie Pub Date : 2022-09-30 DOI:10.37897/rjs.2022.3.3
Mirel Stoian-Albulescu, D. Ghergic, Costin Coman, R. Comăneanu, Oana Botoacǎ, D. Pătroi
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Abstract

Aim of the study was the comparative analysis of the experimental dilation of some materials used in the fabrication of physiognomic fixed prosthetic restorations. Material and methods. 3 biomaterials used in the fabrication of physiognomic fixed prosthetic restorations, pressed ceramic IPS e.max Press Ivoclar Vivadent, WhitePeaks Copra Smile (ZrO2, 600 MPa) and WhitePeaks Copra Supreme (ZrO2, 1100 MPa) were comparatively analyzed. The temperature increase was carried out from 20OC to 400OC, with the speed of 2 degrees/minute in a dilatometer. The repetition of the heating was done 2 times, with a 30-minute break between attempts. Results. The smallest expansion occurred for the e.max sample, followed by Zr600 and Zr1100. Conclusions. The present study demonstrated the production of a thermal expansion at the level of pressed ceramics and biomaterials based on zirconium dioxide upon experimental heating in the range of 20-400OC in dilatometer. Subjecting pressed ceramic or zirconium dioxide prosthetic restorations to high temperatures during the clinical-technical phases of occlusal processing/adaptation without adequate cooling may introduce residual thermal stresses into the material structure, which may subsequently lead to cracking of the prosthetic restorations under stress conditions determined by masticatory forces.
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面相固定修复体中几种材料实验膨胀的比较分析
本研究的目的是比较分析几种面相固定修复体材料的实验扩张。材料和方法。对比分析了3种用于面相固定修复体的生物材料:压型陶瓷IPS e.max Press Ivoclar Vivadent、WhitePeaks Copra Smile (ZrO2, 600 MPa)和WhitePeaks Copra Supreme (ZrO2, 1100 MPa)。在膨胀计中以2度/分钟的速度从20℃升温至400℃。重复加热2次,每次间隔30分钟。结果。e.max试样膨胀最小,Zr600和Zr1100次之。结论。本研究证明了二氧化锆在膨胀计20-400℃的实验加热下,在压制陶瓷和生物材料的水平上产生热膨胀。在咬合处理/适应的临床技术阶段,将压制陶瓷或二氧化锆修复体置于高温下,没有适当的冷却可能会在材料结构中引入残余的热应力,这可能随后导致修复体在咀嚼力决定的应力条件下开裂。
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0.10
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发文量
21
审稿时长
4 weeks
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