Research on Compound and the Best Proportion of Phase Change Materials Using in Clothes

Article Preview

Abstract:

The desired phase-transition temperature and enthalpy of phase change materials are different in different application fields. When the composite way is reasonable, the phase-transition temperature and enthalpy of phase change can satisfy the demand of PCMs using in clothes. Based on The theory of eutectic system and the Schroeder Formula, the lowest eutectic point was computed by using MATLAB software in this paper, and then the enthalpy of phase change was also compared in order to get the best proportion of PCMs.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 399-401)

Pages:

1596-1599

Citation:

Online since:

November 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Hua Li, Xiaoguang Ma,& Journal of Textile Research. 2007,28(1):68-80. In chinese

Google Scholar

[2] Yongchen Ji. 2010, 39(2): 48-50. in chinese

Google Scholar

[3] S. Mondal.Phase. Applied Thermal Engineering 28 (2008) 1536-1550.

Google Scholar

[4] Peiyi Qin, Shiquan Zhou. Energy Conservation. 2002(5): 5-7. in chinese

Google Scholar

[5] Taiqi Liu, Xi Chen, Jianxiang Yu, &. New Technique and New Technology·Research on Heat Processing Technology and Materials. 2010(6): 85~88. in chinese

Google Scholar

[6] B. Pause, Textiles with improved thermal capabilities through the application of phase change material (PCM) microcapsules, Melliand Textilberichte 81 (9) (2000) 753-754.

Google Scholar

[7] Zheng-guo Zhang, Lei Wen, Xiaoming Fang,&.Chemical Industry and engineering Progress, 2003,22(5):462-465 in chinese

Google Scholar

[8] Anthony R. West . Solid chemical and its applicationare[M]. Fudan university press, 1989 : 284-290,298.

Google Scholar

[9] Yoshioka kinoene,Ogino ichi zen.The physical chemistry[M]. ZhenZhou: science and technology press of Henan. 1981 :171-172,431.

Google Scholar

[10] Renzhi Qui. Hot Environment and Thermal Injury[M]. Chapter 1,Beijing: Military Medical Sciences Publisher.(2000). in chinese

Google Scholar