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首页> 外文期刊>The Journal of oral implantology >Improved Dental Implant Drill Durability and Performance Using Heat and Wear Resistant Protective Coatings
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Improved Dental Implant Drill Durability and Performance Using Heat and Wear Resistant Protective Coatings

机译:使用热量和耐磨保护涂层改善牙科植入钻孔耐久性和性能

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摘要

The dental implant drilling procedure is an essential step for implant surgery, and frictional heat in bone during drilling is a key factor affecting the success of an implant. The aim of this study was to increase the dental implant drill lifetime and performance by using heat- and wear-resistant protective coatings to decrease the alveolar bone temperature caused by the dental implant drilling procedure. Commercially obtained stainless steel drills were coated with titanium aluminum nitride, diamond-like carbon, titanium boron nitride, and boron nitride coatings via magnetron-sputter deposition. Drilling was performed on bovine femoral cortical bone under the conditions mimicking clinical practice. Tests were performed under water-assisted cooling and under the conditions when no cooling was applied. Coated drill performances and durabilities were compared with those of three commonly used commercial drills with surfaces made from zirconia, black diamond. and stainless steel. Protective coatings with boron nitride, titanium boron nitride, and diamond-like carbon have significantly improved drill performance and durability. In particular, boron nitride-coated drills have performed within safe bone temperature limits for 50 drillings even when no cooling is applied. Titanium aluminium nitride coated drills did not show any improvement over commercially obtained stainless steel drills. Surface modification using heat-and wear-resistant coatings is an easy and highly effective way to improve implant drill performance and durability, which can improve the surgical procedure and the postsurgical healing period. The noteworthy success of different types of coatings is novel and likely to be applicable to various other medical systems.
机译:牙科植入物钻探程序是植入手术的基本步骤,钻井过程中骨骼中的摩擦热是影响植入物成功的关键因素。本研究的目的是通过使用热和耐磨的保护涂层来增加牙科植入钻寿命和性能,以降低由牙科植入钻探过程引起的肺泡骨温。通过磁控溅射沉积涂覆有氮化铝,金刚石碳,氮化硼和氮化硼涂层的商业上所得的不锈钢钻。在模仿临床实践的条件下对牛股皮质骨进行钻孔。在水辅助冷却和在不施加冷却的情况下进行测试。将涂层演唱表演和耐用性与三种常用的商业钻头进行比较,其中有由氧化锆,黑钻石制成的表面。和不锈钢。具有氮化硼,氮化钛和金刚石碳的保护涂层具有显着提高的钻孔性能和耐用性。特别地,即使在不施加冷却时,氮化硼涂覆的钻头已经在50钻井中进行的50钻孔。氮化钛氮化铝涂层钻头没有在商业上获得的不锈钢钻头上显示任何改进。使用热耐磨涂层的表面改性是一种简单且高效的方法来提高植入式钻探性能和耐久性,可以改善外科手术和后勤愈合期。不值得注意的不同类型的涂料是新颖的,可能适用于各种其他医疗系统。

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