STUDY OF THE BRITTLE DUCTILE TRANSTION OF POLYMER BLENDS Ⅳ THE EFFECT OF RUBBER PARTICLE DISPERSION ON THE BRITTLE DUCTILE TRANSITION OF PVC/NBR BLENDS
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Research Article|更新时间:2021-03-19
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STUDY OF THE BRITTLE DUCTILE TRANSTION OF POLYMER BLENDS Ⅳ THE EFFECT OF RUBBER PARTICLE DISPERSION ON THE BRITTLE DUCTILE TRANSITION OF PVC/NBR BLENDS
LIU Zhehui, ZHU Xiaoguang, ZHANG Xuedong, QI Zongneng, CHOY C.L., WANG Fosong. STUDY OF THE BRITTLE DUCTILE TRANSTION OF POLYMER BLENDS Ⅳ THE EFFECT OF RUBBER PARTICLE DISPERSION ON THE BRITTLE DUCTILE TRANSITION OF PVC/NBR BLENDS. [J]. Acta Polymerica Sinica (5):565-572(1997)
DOI:
LIU Zhehui, ZHU Xiaoguang, ZHANG Xuedong, QI Zongneng, CHOY C.L., WANG Fosong. STUDY OF THE BRITTLE DUCTILE TRANSTION OF POLYMER BLENDS Ⅳ THE EFFECT OF RUBBER PARTICLE DISPERSION ON THE BRITTLE DUCTILE TRANSITION OF PVC/NBR BLENDS. [J]. Acta Polymerica Sinica (5):565-572(1997)DOI:
STUDY OF THE BRITTLE DUCTILE TRANSTION OF POLYMER BLENDS Ⅳ THE EFFECT OF RUBBER PARTICLE DISPERSION ON THE BRITTLE DUCTILE TRANSITION OF PVC/NBR BLENDS
An experimental study of the effect of rubber particle dispersion on the brittle ductile transition of polyvinyl chlorde (PVC)/nitrible rubber (NBR) blends is carried out based on the model of pseudonetwork morphology established in our previous paper.However
two well separated master curves of brittle ductile transition for blends with the morphology of well dispersed rubber particles and with the pseudonetwork morphology were obtained
indicating that the rubber particle dispersion has a great influence on the brittle ductile transition of PVC/NBR blends.The critical matrix ligament thickness for the blends with the morphology of well-dispersed rubber particles is much smaller than that for the blends with the pseudonetwork morphologyy.Therefore
the pseudonetwork morphology is much more efficient in the rubber toughening of PVC than that of well-dispersed rubber particles.The present study strongly supports that the critical matrix ligament thickness is not noly a material property of polymer maxtrix
but it is also a function of interfacial adhesion and rubber particle configuration.
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EFFECT OF INTERFACIAL ADHESION ON THE IMPACT TOUGHNESS AND TOUGHENING MECHANISMS OF PVC/NBR BLENDS
BRITTLE-DUCTILE TRANSITION IN POLYMER BLENDS ──EFFECTS OF MORPHOLOGICAL PARAMETERS ON BRITTLE-DUCTILE TRANSITION IN PVC /NBR BLENDS
MORPHOLOGY AND PROPERTIES OF PBT/POE-g-MAH/PP TERNARY BLENDS
BRITTLE-DUCTILE TRANSITION OF POLY(BUTYLENE TEREPHTHALATE) TOUGHENED WITH EPOXIDIZED EPDM RUBBER