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人体牙本质热物理性质的测量:开孔率的影响。

Measurement of thermophysical properties of human dentin: effect of open porosity.

作者信息

Figueiredo de Magalhães Manoelita, Neto Ferreira Ricardo Alberto, Grossi Pablo Andrade, de Andrade Roberto Márcio

机构信息

Departamento de Engenharia Mecânica, Universidade Federal de Minas Gerais, Avenida Presidente Antônio Carlos 6627, Pampulha, Belo Horizonte, Minas Gerais, Brazil.

出版信息

J Dent. 2008 Aug;36(8):588-94. doi: 10.1016/j.jdent.2008.04.006. Epub 2008 Jun 10.

Abstract

UNLABELLED

In dentistry caries removal can be performed with rotatory instruments or high intensity laser. Both techniques can heat the tooth and harm the pulp. The literature review about the measurement of human dentin thermophysical properties revealed a great variation of the values obtained by several authors, and most of the studies are outdated. Most of these studies have not directly measured the thermal diffusivity of human dentin, and the reported values are calculated values based on measurements of conductivity, density and specific heat.

OBJECTIVE

The aim of the present study was to measure human dentin thermal diffusivity, density, open porosity and specific heat, and then to calculate its thermal conductivity and analyze the influence of open porosity in these properties.

METHOD

The methods used were: flash laser method for measuring thermal diffusivity, method of penetration and immersion with xylol for density and open porosity and differential scanning calorimetry for measuring specific heat. Calculated results of the thermal conductivity are shown as well.

RESULT

Results of diffusivity, density, open porosity, specific heat and thermal conductivity of measurements performed on five samples are presented and compared with results of other authors. The open porosity of the samples varied between 1.11% and 3.08% of the sample volume, corresponding to densities ranging between 2090 and 2400 kg m(-3), thermal diffusivity: 0.199 and 0.265 x 10(-6)m2 s(-1), specific heat: 872.5 and 1181.0 J kg(-1)K(-1), thermal conductivity: 0.363 and 0.666 W m(-1)K(-1).

CONCLUSION

It has been found that there exist a strong correlation between the open porosity of human dentin and its thermal conductivity and density. Both human dentin thermal conductivity and density decrease with the increasing of open porosity, with a confidence of at least 98% and 96.6%, respectively.

摘要

未标注

在牙科领域,龋洞去除可以使用旋转器械或高强度激光来进行。这两种技术都会使牙齿升温并损害牙髓。关于人类牙本质热物理性质测量的文献综述显示,不同作者获得的值存在很大差异,并且大多数研究都已过时。这些研究大多没有直接测量人类牙本质的热扩散率,所报告的值是基于电导率、密度和比热测量的计算值。

目的

本研究的目的是测量人类牙本质的热扩散率、密度、开孔率和比热,然后计算其热导率并分析开孔率对这些性质的影响。

方法

所使用的方法如下:用闪光激光法测量热扩散率,用二甲苯渗透和浸入法测量密度和开孔率,用差示扫描量热法测量比热。还展示了热导率的计算结果。

结果

给出了对五个样本进行测量得到的扩散率、密度、开孔率、比热和热导率的结果,并与其他作者的结果进行了比较。样本的开孔率在样本体积的1.11%至3.08%之间变化,对应的密度在2090至2400 kg·m⁻³之间,热扩散率:0.199至0.265×10⁻⁶ m²·s⁻¹,比热:872.5至1181.0 J·kg⁻¹·K⁻¹,热导率:0.363至0.666 W·m⁻¹·K⁻¹。

结论

已发现人类牙本质的开孔率与其热导率和密度之间存在强相关性。人类牙本质的热导率和密度均随开孔率的增加而降低,置信度分别至少为98%和96.6%。

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