[1]
Kuanli Yan: The development status and foresight of concrete block. New Building Materials Vol. 5 (1996), pp.8-12. (In Chinese).
Google Scholar
[2]
Zhenfang Yuan: Current development situation and prospects of concrete block building. Wall Materials Innovation and Energy Saving in Buildings Vol. 4 (1999), pp.25-29. (In Chinese).
Google Scholar
[3]
Chuxian Shi: Theory and design of masonry structures (China Architecture and Building Press, Beijing 2003). (In Chinese).
Google Scholar
[4]
Qingping Sun: Analysis on Hot, Crack and Seepage Defects in Block Masonry Building and Its Construction Technology. Architecture Technology Vol. 32 (2001), pp.323-325. (In Chinese).
Google Scholar
[5]
GB 50574-2010: Uinform technical code for wall materials used in buildings (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[6]
Binshou Tian, Yan Zhang, Shuxin Yang and Yuxi Li: 65% energy saving target and the self-heat-insulated concrete block. China Concrete and Cement Products Vol. 1 (2008), pp.49-52. (In Chinese).
Google Scholar
[7]
GB 50189-2005: Design standard for energy efficiency of public buildings (China Architecture and Building Press, Beijing 2005). (In Chinese).
Google Scholar
[8]
JGJ 26-2010: Design standard for energy efficiency of residential buildings in severe cold and cold zones (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[9]
JGJ 134-2010: Design standard for energy efficiency of residential buildings in hot summer and cold winter zone (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[10]
JGJ 75-2012: Design standard for energy efficiency of residential buildings in hot summer and warm winter zone (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[11]
JGJ/T 129-2012: Technical specification for energy efficiency retrofitting of existing residential buildings (China Architecture and Building Press, Beijing 2012). (In Chinese).
Google Scholar
[12]
GB 50016-2006: Code of design on building fire protection and prevention (China Planning Press, Beijing 2012). (In Chinese).
Google Scholar
[13]
GB/T 8239-2014: Normal concrete small block. (China Standard Press, Beijing 2014). (In Chinese).
Google Scholar
[14]
GB/T 4111-2013: Test methods for the concrete block and brick (China Standard Press, Beijing 2014). (In Chinese).
Google Scholar
[15]
Shaoqiu Li: Introduction of the measures to reduce drying shrinkage of normal concrete hollow block. Building Block and Block Construction Vol. 18 (2001), pp.9-11. (In Chinese).
Google Scholar
[16]
GB 50574-2010: Technical specification for concrete small-sized hollow block masonry buildings (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[17]
GB 50118-2010: Code for design of sound insulation of civil buildings (China Architecture and Building Press, Beijing 2010). (In Chinese).
Google Scholar
[18]
Xianli Wang: Experimental research on PK multifunctional concrete hollow block, Master Thesis. Changsha, Hunan, China, Hunan University (2008). (In Chinese).
Google Scholar
[19]
C. S. Hutchinson, U.S. Patent 53004. (1866).
Google Scholar
[20]
SG616: Concrete block series block shapes (2005). (In Chinese).
Google Scholar
[21]
Thanoon W A, Jaafar M S, Kadir M R A, Ali A A A, Trikha D N and Najm A M S: Development of an innovative interlocking load bearing hollow block system in Malaysia. Construction and Building Materials Vol. 18 (2004), pp.445-454.
DOI: 10.1016/j.conbuildmat.2004.03.013
Google Scholar
[22]
del Coz Díaz J J, Nieto P J G, Rabanal F P Á and Martínez-Luengas A L: Design and shape optimization of a new type of hollow concrete masonry block using the finite element method. Engineering Structures Vol. 33 (2011), pp.1-9.
DOI: 10.1016/j.engstruct.2010.09.012
Google Scholar
[23]
Nasly M A, Yassin A A M: Sustainable housing using an innovative interlocking block building system. In: Proceedings of the Fifth National Conference on Civil Engineering (AWAM'09): Towards Sustainable Development, Kuala Lumpur, Malaysia (2009).
Google Scholar
[24]
Wenying Du: Recommends that research and use multi-function building block. Building Block and Block Construction Vol. 3 (1998), pp.13-15. (In Chinese).
Google Scholar
[25]
Jian Shi, Shuiqing He and Weisheng Shan: The design of the concrete small hollow block shape. New Building Materials Vlo. 12 (2002), pp.1-3. (In Chinese).
Google Scholar
[26]
Binshou Tian, Zifen Chang, Zengmao Ren, Qibiao Feng and Shuxin Yang: Study on the applications of the core-blocks in energy efficiency buildings. New Building Materials Vol. 9 (2009), pp.37-41. (In Chinese).
Google Scholar
[27]
Ying Yang,Hai Wang,Xinghai Yu and Jin Shan: Composite energy saving block and its application. New Building Materials Vol. 3 (2008), pp.52-57. (In Chinese).
Google Scholar
[28]
Fanglin Huai, China Patent 01221975. 4 (2002). (In Chinese).
Google Scholar
[29]
Fanglin Huai, China Patent 03243228. 3 (2004). (In Chinese).
Google Scholar
[30]
Fanglin Huai, China Patent 200610017020. 5 (2008). (In Chinese).
Google Scholar
[31]
Xianli Wang, Fanglin Huai, Yanlong Liu: The composite function block with structure self thermal insulation. New Building Materials Vol. 5 (2010), pp.37-39. (In Chinese).
Google Scholar
[32]
Weimin Sun, Chenyu Wang, Huaijin Zhang and Hui Zhang: Experimental study on shear of energy-saving composite concrete small hollow block masonry. China Concrete and Cement Products Vol. 5 (2004), pp.48-49. (In Chinese).
Google Scholar
[33]
Hongbin Wei, China Patent 201120201597. 8 (2012). (In Chinese).
Google Scholar
[34]
Xixiang Wang, Guoping Yang: Reserch on multi-functional composite block. Building Block and Block Construction Vol. 1 (2002), pp.32-34. (In Chinese).
Google Scholar
[35]
Xiaogang Chen, Qingchun Li, Lingxuan Ran: 310 thickness composite heat insulation decorative concrete block. Building Block and Block Construction Vol. 3 (2012), pp.5-8. (In Chinese).
Google Scholar
[36]
Wenying Du. Adornment, heat insulation, bearing triad, concrete hollow block. Wall Materials Innovation and Energy Saving in Buildings Vol, 5(1998), pp.22-24. (In Chinese).
Google Scholar
[37]
China Architecture Design and Research Group, China Patent 200420115575. X (2006). (In Chinese).
Google Scholar
[38]
Beijing Life-construction Group, China Patent 200720200743. 9 (2008). (In Chinese).
Google Scholar
[39]
J. Pierzchlewicz: Modern concrete wall-units with improved thermal resistance for housing in hot climate. Sci. Technol Vol. 1 (1996), pp.69-80.
DOI: 10.24200/squjs.vol1iss1pp69-80
Google Scholar
[40]
Dingyi Yang, Wei Sun, Zhiyong Liu and Keren Zheng: Research on improving the heat insulation and preservation properties of small-size concrete hollow blocks. Cement and concrete research Vol. 33 (2003), pp.1357-1361.
DOI: 10.1016/s0008-8846(03)00066-8
Google Scholar
[41]
Jiancheng Li: The influence of hole shape to concrete hollow block heat insulation performance. China Concrete and Cement Products Vol. 5 (1995), pp.50-52. (In Chinese).
Google Scholar
[42]
Chongfu Wu, Jianming Liu, Shuhong Liu: Research on T, shaped multifunctional block. Building Block and Block Construction Vol. 4 (2001), pp.22-23. (In Chinese).
Google Scholar
[43]
Fangbo Wu, Wei Chen, Haili Huang and Xuhong Zhou: Research on the compression of concrete horizontal-hole hollow block masonry. Journal of Hunan University (Natural Sciences) Vol. 37 (2010), pp.1-5. (In Chinese).
Google Scholar
[44]
Fangbo Wu, China Patent 200510031304. 5 (2006). (In Chinese).
Google Scholar
[45]
Fangbo Wu, Wei Chen, Xuhong Zhou and Hailin Huang: Research on shear behavior of a new type of concrete horizontal-hole hollow block masonry. Building Structure Vol. 41 (2011), pp.126-129. (In Chinese).
Google Scholar
[46]
Fangbo Wu, Fulin Fu, Hailin Huang, Xiaoyu Deng and Xuhong Zhou: Seismic behavior on cross bore chain block dry walls confined concrete fram. Journal of Building Structures Vol. 32 (2011), pp.37-42. (In Chinese).
Google Scholar
[47]
Lanzhou University, China Patent 201210121724. 2 (2012). (In Chinese).
Google Scholar
[48]
Lanzhou University, China Patent 201020296863. 5 (2011). (In Chinese).
Google Scholar
[49]
Lanzhou University, China Patent 201020296850. 8 (2011). (In Chinese).
Google Scholar
[50]
Lanzhou University, China Patent 201020296865. 4 (2011). (In Chinese).
Google Scholar
[51]
Weilong Si, China Patent 201320014457. 9 (2013). (In Chinese).
Google Scholar
[52]
Gan 11J16: Standard collective drawings of horizontal-hole interlocking concrete hollow block (Lanzhou 2011). (In Chinese).
Google Scholar
[53]
Xiang T2013G604: Infilled wall structure of horizontal-hole interlocking concrete hollow block (Changsha 2013). (In Chinese).
Google Scholar
[54]
14CG16: Infilled wall of horizontal-hole interlocking concrete small hollow block (China Planning Press, Beijing 2014). (In Chinese).
Google Scholar
[55]
Baoying Lv, Shuangxi Zhang, Jianping Zhang and Boyan Hou: Research on optimization of thermal insulation performance about pulverized-coal-ash and extruded-foamed plastic composite masonry unit. New Building Materials Vol. 34 (2007).
Google Scholar