[Development of new type plastics air turbine handpiece for dental use].

M Kusano
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Abstract

The noise generated by the metal air turbine handpiece employed in dental practice is considerable and attended with predominant high frequency components. Therefore, investigation of the noise generation mechanism and development of a silent air turbine handpiece was only a matter of course. In addition, the metal air turbine hardpiece is comparatively heavy and its production cost is high. From this point of view as well, production of a light air turbine handpiece at low cost is also desirable. In order to overcome the objections to the metal air turbine handpiece, appropriate plastics materials were employed wherever possible. In this study, the number of revolutions, noise level, frequency analysis, start pressure and weight of newly produced plastics handpieces and metal handpieces were examined and compared. The following results were obtained: 1. The number of revolutions of single-nozzle type air turbine handpieces encased in plastics housings and fitted with metal turbine rotors was higher than that of all-metal air turbine handpieces. The noise level of the former tended to be lower. 2. The number of revolutions of multi-nozzle type air turbine handpieces encased in plastics housings and fitted with turbine rotors with plastics turbine blades was almost equal to that of similar metal handpieces, with the noise level tending to be lower. 3. In the case of handpieces fitted with turbine rotors with dynamic balance, the number of revolutions was high and the noise level was low. This indicated that dynamic balance was a factor affecting the number of revolutions and noise level. 4. Narrow band sound frequency analysis of single-nozzle type air turbine handpieces showed a sharp peak at the fundamental frequency which was the same as the number of revolutions multiplied by the number of rotor turbine blades. It is thought that the noise from air turbine handpieces was aerodynamic in origin, being generated by the periodical interruption of steady air flow by rotor turbine blades. 5. The start pressure of plastics handpieces was almost equal to that of metal handpieces. 6. The weight of plastics handpieces was 20%-50% of that of metal handpieces. The present results indicate that it is possible to produce a new type of light, silent and aesthetical air turbine handpiece.

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[新型牙科用塑料空气涡轮手机的研制]。
牙科诊所使用的金属空气涡轮机头所产生的噪音相当大,并以高频成分为主。因此,研究静音空气涡轮手机的噪声产生机理和开发静音空气涡轮手机是理所当然的事情。此外,金属空气涡轮硬件重量较大,生产成本较高。从这个角度来看,生产轻型空气涡轮手机在低成本也是可取的。为了克服对金属空气涡轮机头的反对意见,尽可能使用适当的塑料材料。在本研究中,对新生产的塑料手机和金属手机的转数、噪声水平、频率分析、启动压力和重量进行了检测和比较。得到了以下结果:1。采用塑料外壳并安装金属涡轮转子的单喷嘴式空气涡轮手机的转数高于全金属空气涡轮手机。前者的噪声水平趋于较低。2. 采用塑料外壳和塑料叶片涡轮转子的多喷嘴式空气涡轮机芯的转数与同类金属机芯的转数基本相等,噪声水平趋于较低。3.在配有动平衡涡轮转子的手机中,转数高,噪音水平低。这表明动平衡是影响转数和噪声水平的一个因素。4. 单喷嘴式空气涡轮手机窄带声频分析表明,在转数乘以转子涡轮叶片数的基频处有一个尖峰。认为空气涡轮机头的噪声来源于空气动力学,是由转子涡轮叶片对稳定气流的周期性中断所产生的。5. 塑料机芯的启动压力与金属机芯的启动压力几乎相等。6. 塑料手机的重量是金属手机的20%-50%。目前的研究结果表明,生产一种新型的轻、静音、美观的空气涡轮手机是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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