TY - JOUR
T1 - Effects of hyperbranched polyester on mechanical properties of HTPB polyurethane elastomer
AU - Song, Xue Jing
AU - Luo, Yun Jun
AU - Chai, Chun Peng
PY - 2007/8
Y1 - 2007/8
N2 - A novel interpenetrating polymer network, which based on modified hyperbranched polyester and HTPB polyurethane, was prepared for enhancing mechanical properties of HTPB based composite solid propellants. The results indicate that with the modified hyperbranched polyester added, the tensile strength and elongation of HTPB polyurethane elastomer improves obviously. Specially, when the content of modified hyperbranched polyester of generation 4 rises up to twenty percentage of the whole weight, the resultant elastomer has the best tensile strength and elongation, which increase 3.36 times and 3.69 times than pure elastomer, and reach 2.3 MPa and 1860% respectively. Therefore, the modified hyperbranched polyester can serve as a better modifier for HTPB propellants.
AB - A novel interpenetrating polymer network, which based on modified hyperbranched polyester and HTPB polyurethane, was prepared for enhancing mechanical properties of HTPB based composite solid propellants. The results indicate that with the modified hyperbranched polyester added, the tensile strength and elongation of HTPB polyurethane elastomer improves obviously. Specially, when the content of modified hyperbranched polyester of generation 4 rises up to twenty percentage of the whole weight, the resultant elastomer has the best tensile strength and elongation, which increase 3.36 times and 3.69 times than pure elastomer, and reach 2.3 MPa and 1860% respectively. Therefore, the modified hyperbranched polyester can serve as a better modifier for HTPB propellants.
KW - Composite propellant
KW - HTPB
KW - Hyperbranched polyester
KW - Interpenetrating polymer network
KW - Mechanical properties
KW - Polymer materials
UR - http://www.scopus.com/inward/record.url?scp=34948837792&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:34948837792
SN - 1006-9941
VL - 15
SP - 352
EP - 355
JO - Hanneng Cailiao/Chinese Journal of Energetic Materials
JF - Hanneng Cailiao/Chinese Journal of Energetic Materials
IS - 4
ER -