摘要
在传统的瞬态平面热源法导热系数测定仪的基础上,改进设计了新型加热与温度测量探头,研究了半无限大平面在被加热时的瞬态热传导问题,建立了平面热源法的数学修正模型,并采用数学迭代与回归分析的数据处理方法,实现了采用修正型平面热源法的导热仪对材料吸热系数和导热系数的同时测定。测试实验数据表明:仪器测量精度可达5%,测量范围为0.003~40 W/(m.K),并且可以对单试件等不具备传统瞬态平面源法测定条件的材料进行测定和试件的在线测定。
Abstract: On the basis of traditional theory and instrument of transient plane source for thermal conductivity measurement, a new pattern of heating and temperature sensing probe are designed and developed, problem of transient heat conduction of half-infinite plane while being heated is studied, a modified mathematical model of transient plane source method is established, data processing method of mathematical iteration and regression analysis is used and the modified transient plane source probe is used to achieve the measurement of both thermal effusivity and thermal conductivity coefficient of material. According to the data of experiments, the instrument which this paper designed has a high precision of 5 % and a wide range of 0. 003 -40 W/( m · K) , and achieves the measurement of single sample which can not be tested by traditional transient plane source method and also in- situ measurement.
出处
《传感器与微系统》
CSCD
北大核心
2012年第7期84-87,共4页
Transducer and Microsystem Technologies
基金
天津市科技支撑计划重点资助项目(09ZCKFSF01600)
天津市应用基础及前沿技术研究计划资助项目(11JCYBJC06300)
关键词
传感器
平面热源
导热系数
吸热系数
单试件
在线测量
sensor
transient plane source
thermal conductivity
thermal effusivity
single sample
in-situ measurement
作者简介
张立雄(1987-),河北衡水人,硕士研究生,主要研究方向为传感器开发应用、材料热物性检测仪器设计。