[1]
Zhang Zuoqi ,Yang Binggui. Feasibility analysis of high foaming PVC flame retardant thermal insulation material[J]. Polyvinyl Chloride, 2015, 43(11):1-4.
Google Scholar
[2]
Zhou Jiahua. Status and Development Proposals of Rigid PVC Foam Products Industry in 2014[J]. Polyvinyl Chloride, 2015, 43(3):8-13.
Google Scholar
[3]
Qian Bozhang, Zhu Jianfang. Technical Progress of Building Energy Conservation Thermal Insulation Material[J].Building Energy Conservation, 2009, 02: 56-60.
Google Scholar
[4]
Yu Xiaoqiang. Formulation Design of Rigid PVC Foam Products[J]. Polyvinyl Chloride, 2007 (12) :15-23.
Google Scholar
[5]
Liu Yan, Wang Yue, Zhang Shaofeng. Mechanical properties and density of PVC wood plastic foam composites[J]. Plastic, 2014, 43(5): 83-85.
Google Scholar
[6]
Wang Xue, Li Hongcheng, Li Rongxun. Study on Flame Retardant NBR / PVC Foaming Material [J]. China Rubber/Plastics Technology and Equipment, 2013, 41(9): 23-28.
Google Scholar
[7]
Cheng Y, Zhou T, Wang H, et al. Numerical investigation on the dynamic response of foam-filled corrugated core sandwich panels subjected to air blast loading[J]. Journal of Sandwich Structures & Materials, (2017).
DOI: 10.1177/1099636217700350
Google Scholar
[8]
S Avachat, M Zhou .Compressive response of sandwich plates to water-based impulsive loading [J]. International Journal of Impact Engineering , 2016, 93: 196-210.
DOI: 10.1016/j.ijimpeng.2016.03.007
Google Scholar
[9]
Cesim Atas, Cenk Sevim. On the impact response of sandwich composites with cores of balsa wood and PVC foam[J]. Composite Structures, 2010, 93(1): 40-48.
DOI: 10.1016/j.compstruct.2010.06.018
Google Scholar
[10]
Zhang Peng, Mai Wang, Huang Yuwu. Application of PVC Plastic Form in Project Construction [J].Cities and Towns Construction in Guangxi, 2014, 1: 128-131.
Google Scholar
[11]
Liu Yan, Wang Yue, Zhang Shaofeng. Mechanical Performance and Density of PVC Wood-plastic Foamed Composite Material[J]. Plastics, 2014 (5): 83-85.
Google Scholar
[12]
Xiong Lei, Zhang Jing, Yu Jin, Sun Wei. Damping performance of PVC sports floor and analysis of foaming technology[J]. Chemical Enterprise Management, 2016, 20: 131-134.
Google Scholar
[13]
Lian Bingrong, Zhang Weiqin, Kong Zhan,Huang Rui. Effect of foaming agent on properties of soft PVC foaming material[J]. Plastics Science and Technology, 2006, 34(5): 20-22.
Google Scholar
[14]
XieYingli. Theory and Practice of Sports Harm Protection[J]. Bulletin of Sport Science, 2007, 15(09): 120-121.
Google Scholar
[15]
Shen Quanxing. Development trend, current situation and Countermeasures of plastic pipes, Liaoning Building Materials, 1999, 2: 9-10.
Google Scholar
[16]
K. Kaewkraisorn,S. Phattanarudee. Influence of Environmentally Friendly Plasticizers on Cellular Morphology and Mechanical Properties of Flexible PVC Foam[J]. Science Journal Ubon Ratchathani University, 2010, 1(1).
Google Scholar
[17]
Thongsang, S.,Suwapanaviwat, S.,Supanpesat, J.,Chantawart, S.,Khamphan, K.,Sombatsompop, N. Effects of recycled PVC content and processing temperature on the properties of PVC foam products[J]. Songklanakarin Journal of Science and Technology, 2005, 27(3).
Google Scholar