Porosity, specific surface area and effective thermal conductivity of anisotropic open cell lattice structures

被引:0
作者
Balantrapu, Kiran [1 ]
Sarde, Deepti Rao [1 ]
Herald, Christopher M. [1 ]
Wirtz, Richard A. [1 ]
机构
[1] Univ Nevada, Dept Engn Mech, Reno, NV 89557 USA
来源
ADVANCES IN ELECTRONIC PACKAGING 2005, PTS A-C | 2005年
关键词
anisotropic box lattice structures; porosity; specific surface area; effective thermal conductivity;
D O I
10.1115/IPACK2005-73191
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Open-cell box-lattice structures consisting of mutually orthogonal thermally conductive cylindrical ligaments can be configured to have wide ranging porosity, a large specific surface area and effective thermal conductivity in a particular direction together with specified structural characteristics. Thermal and mechanical properties can be tuned (and anisotropy introduced) by specification of different filament diameter and pitch for the vertical and horizontal filaments. Analytical models for porosity, specific surface area and effective thermal conductivity of lattice structures having different ligament diameters and pitches (anisotropy) are developed. The models show that all three of these quantities are functions of three dimensionless lengths.
引用
收藏
页码:267 / 275
页数:9
相关论文
共 50 条
[31]   Effective Thermal Conductivity Measurement of Additively Manufactured Lattice Structures by Application of Modified Temperature Profile Method [J].
Umemoto, Ryo ;
Ueno, Ai ;
Nagano, Hosei ;
Otsuki, Masatsugu ;
Ogushi, Tetsuro .
INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2023, 44 (06)
[32]   Effective Thermal Conductivity Measurement of Additively Manufactured Lattice Structures by Application of Modified Temperature Profile Method [J].
Ryo Umemoto ;
Ai Ueno ;
Hosei Nagano ;
Masatsugu Otsuki ;
Tetsuro Ogushi .
International Journal of Thermophysics, 2023, 44
[33]   Modeling and prediction of the effective thermal conductivity of random open-cell porous foams [J].
Wang, Moran ;
Pan, Ning .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2008, 51 (5-6) :1325-1331
[34]   Analytical Fractal Model for Effective Thermal Conductivity of Open-Cell Metallic Foams With Coated Hollow Ligaments [J].
Xiao, Tian ;
Lu, Liu ;
Yu, Chenlei ;
Boetcher, Sandra K. S. ;
Yang, Xiaohu ;
Li, Moxiao ;
Lu, Tian Jian .
ASME JOURNAL OF HEAT AND MASS TRANSFER, 2023, 145 (12)
[35]   Lattice Boltzmann modeling of the effective thermal conductivity for fibrous materials [J].
Wang, Moran ;
He, Jihuan ;
Yu, Jianyong ;
Pan, Ning .
INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2007, 46 (09) :848-855
[36]   Facile preparation of ZrCO composite aerogel with high specific surface area and low thermal conductivity [J].
Sheng Cui ;
Hao Suo ;
Feng Jing ;
Shuwen Yu ;
Jun Xue ;
Xiaodong Shen ;
Benlan Lin ;
Shengjun Jiang ;
Yu Liu .
Journal of Sol-Gel Science and Technology, 2018, 86 :383-390
[37]   Experimental and analytic investigations for effective thermal conductivity in high porosity metallic foams [J].
Yang, Xiaohu ;
Kuang, Jiujie ;
Bai, Jiaxi ;
Lu, Tianjian ;
Kim, Tongbeum .
Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2014, 48 (04) :79-84
[38]   Anisotropic Effective Thermal Conductivity of Particle Beds Under Uniaxial Compression [J].
Mo, Jingwen ;
Garrett, Daniel ;
Ban, Heng .
INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2015, 36 (10-11) :2621-2637
[39]   A generalized model for effective thermal conductivity of soils considering porosity and mineral composition [J].
Li, Kai-Qi ;
Li, Dian-Qing ;
Chen, Dar-Hao ;
Gu, Shi-Xiang ;
Liu, Yong .
ACTA GEOTECHNICA, 2021, 16 (11) :3455-3466
[40]   Compressive pressure dependent anisotropic effective thermal conductivity of granular beds [J].
Daniel Garrett ;
Heng Ban .
Granular Matter, 2011, 13 :685-696