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The influence of pulse duration on the stress levels in ablation of ceramics: A finite element study

机译:脉冲持续时间对陶瓷烧蚀应力水平的影响:有限元研究

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We present a finite element model to investigate the dynamic thermal and mechanical response of ceramic materials to pulsed infrared radiation. The model was applied to the specific problem of determining the influence of the pulse duration on the stress levels reached in human dental enamel irradiated by a CO2 laser at 10.6 mu m with pulse durations between 0.1 and 100 mu s and sub-ablative fluence. Our results indicate that short pulses with durations much larger than the characteristic acoustic relaxation time of the material can still cause high stress transients at the irradiated site, and indicate that pulse durations of the order of 10 mu s may be more adequate both for enamel surface modification and for ablation than pulse durations up to 1 mu s. The model presented here can easily be modified to investigate the dynamic response of ceramic materials to mid-infrared radiation and help determine optimal pulse durations for specific procedures. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们提出了一个有限元模型来研究陶瓷材料对脉冲红外辐射的动态热和机械响应。该模型应用于确定脉冲持续时间对用CO2激光在10.6μm,脉冲持续时间在0.1至100μs和亚烧蚀通量下照射的人牙釉质中达到的应力水平的影响的特定问题。我们的结果表明,持续时间比材料的特征声弛豫时间长得多的短脉冲仍会在被照射的位置引起高应力瞬变,并且表明10μs量级的脉冲持续时间对于搪瓷表面而言可能更为合适。修改和消融比脉冲持续时间长达1毫秒。可以轻松修改此处介绍的模型,以研究陶瓷材料对中红外辐射的动态响应,并帮助确定特定程序的最佳脉冲持续时间。 (c)2005 Elsevier B.V.保留所有权利。

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