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Design and Development of 3D Printed Dental Drill Guide for Better Flow of Irrigant at Drilling Site

机译:3D印刷牙科钻杆的设计与开发,以便于钻井网站上更好地流动

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The aim of this study was to design and fabricate a dental drill guide with built-in external irrigation mechanism for improved flow of irrigant at the drilling site to restrict the bone temperature below the threshold of thermal necrosis i.e. 47 °C during implant site preparation. This guide was compared with the conventional type 3D printed drill guide (commercially available in the market) in terms of heat generated while drilling. Temperature was measured with K type thermocouple and data acquisition system using PPMA as a work piece instead of bone. Constant drilling load of 1.7 Kg was applied using a dedicated experimental setup. Drill speed was kept constant at 1200 rpm throughout the experimentation. Temperature was measured at the depths of 3, 7 and 11 mm with the help of thermocouples placed perpendicular to the drill axis. Incremental drilling as prescribed the drill manufacturer was performed. More than 10% improvement in maximum temperature was recorded at all the drilling locations when new drill guide was used.
机译:本研究的目的是设计和制造具有内置外部灌溉机制的牙科钻杆,可改善钻井部位的灌溉流量,以限制低于热坏死阈值的骨温度,即47°C在植入部位制备期间。将本指南与钻孔产生的热量方面的传统类型3D印刷钻杆(市场上市售)进行比较。用K型热电偶和数据采集系统测量温度,用PPMA作为工件而不是骨骼。使用专用的实验设置施加1.7千克的恒定钻孔载荷。在整个实验过程中,钻速在1200 rpm处保持恒定。在垂直于钻孔轴的热电偶的帮助下,在3,7和11mm的深度下测量温度。按规定的增量钻孔进行钻制造商。在使用新的钻头指南时,在所有钻孔位置记录最高温度超过10%。

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