首页> 外文会议>EPD(Extraction and Processing Division) Congress 2006 vol.1 >LOCAL THERMAL PROPERTY ANALYSIS BY SCANNING THERMAL MICROSCOPY OF ULTRAFINE-GRAINED SURFACE LAYER IN COPPER AND IN TITANIUM PRODUCED BY SURFACE MECHANICAL ATTRITION TREATMENT
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LOCAL THERMAL PROPERTY ANALYSIS BY SCANNING THERMAL MICROSCOPY OF ULTRAFINE-GRAINED SURFACE LAYER IN COPPER AND IN TITANIUM PRODUCED BY SURFACE MECHANICAL ATTRITION TREATMENT

机译:扫描表面机械吸附处理制得的铜和钛中超细颗粒表面层的热显微镜对局部热性能的分析

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摘要

Ultrafine-grained surface layers were obtained by surface mechanical attrition treatment (SMAT) in copper and titanium samples. The thermal properties of the deformed layers were characterized using a scanning thermal microscopy (SThM) that allows thermal conductivity to be mapped down to the submicrometer scale. A theoretical approach, based on this investigation, was used to calculate the heat flow from the probe tip to the sample and then estimate the thermal conductivities at different scanning positions. Experimental results and theoretical calculation demonstrate that SThM can be used as a powerful tool for the thermal property and microstructural analysis of ultrafine-grained microstructures.
机译:通过对铜和钛样品进行表面机械磨损处理(SMAT)获得超细颗粒表面层。使用扫描热显微镜(SThM)对变形层的热性能进行了表征,该扫描热显微镜可将热导率映射到亚微米级别。基于这种研究,一种理论方法被用于计算从探针尖端到样品的热流,然后估算在不同扫描位置的热导率。实验结果和理论计算表明,SThM可以用作超细晶粒微结构热性能和微结构分析的有力工具。

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