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首页> 外文期刊>Acta biomaterialia >In vitro rapid intraoral adjustment of porcelain prostheses using a high-speed dental handpiece.
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In vitro rapid intraoral adjustment of porcelain prostheses using a high-speed dental handpiece.

机译:使用高速牙科手机进行瓷器假体的体外快速口内调节。

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In vitro rapid intraoral adjustment of porcelain prostheses was conducted using a high-speed dental handpiece and diamond bur. The adjustment process was characterized by measurement of removal forces and energy, with scanning electron microscopic (SEM) observation of porcelain debris, surfaces and subsurface damage produced as a function of operational feed rate. Finite element analysis (FEA) was applied to evaluate subsurface stress distributions and degrees of subsurface damage. The results show that an increase in feed rate resulted in increases in both tangential and normal forces (analysis of variance (ANOVA), P<0.01). When the feed rate approached the highest rate of 60mm min(-1) at a fixed depth of cut of 100microm, the tangential force was nearly seven times that at the lowest feed rate of 15mm min(-1). Consequently, the specific removal energy increased significantly (ANOVA, P<0.01), and the maximum depth of subsurface damage obtained was approximately 110 and 120microm at the highest feed rate of 60mm min(-1) using SEM and FEA, respectively. The topographies of both the adjusted porcelain surfaces and the debris demonstrate microscopically that porcelain was removed via brittle fracture and plastic deformation. Clinicians must be cautious when pursuing rapid dental adjustments, because high operational energy, larger forces and severe surface and subsurface damage can be induced.
机译:使用高速牙科手机和金刚石车针进行瓷器假体的体外快速口内调节。调整过程的特征是通过测量去除力和能量,并通过扫描电子显微镜(SEM)观察到的陶瓷碎屑,表面和亚表面损伤随操作进给速度的变化而变化。应用有限元分析(FEA)来评估地下应力分布和地下破坏程度。结果表明,进给速度的增加导致切向力和法向力均增加(方差分析(ANOVA),P <0.01)。当固定切削深度为100微米时,进给速度达到最高60mm min(-1)时,切向力几乎是最低进给速度15mm min(-1)的7倍。因此,使用SEM和FEA,在60mm min(-1)的最高进给速度下,比去除能显着增加(ANOVA,P <0.01),并且获得的亚表面损伤的最大深度分别约为110和120μm。调整后的瓷器表面和碎屑的形貌在微观上表明,瓷器是通过脆性断裂和塑性变形而去除的。在进行快速牙科调整时,临床医生必须谨慎,因为会引起高操作能量,更大的作用力以及严重的表面和亚表面损伤。

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