详细信息
动态硫化PP/EPDM强化增韧机理的动态力学研究
Study on the Toughning Mechanism of the Dynamic VulcanizedPP/EPDM Blends by the Dynamic Mechanical Analysis
文献类型:期刊文献
中文题名:动态硫化PP/EPDM强化增韧机理的动态力学研究
英文题名:Study on the Toughning Mechanism of the Dynamic VulcanizedPP/EPDM Blends by the Dynamic Mechanical Analysis
作者:吴唯[1];周达飞[2]
机构:[1]华东理工大学石油化工学院;[2]华东理工大学材料工程学院
年份:1999
卷号:25
期号:4
起止页码:377
中文期刊名:华东理工大学学报(自然科学版)
外文期刊名:Journal of East China University of Science and Technology
收录:CSTPCD;;Scopus;北大核心:【北大核心1996】;CSCD:【CSCD2011_2012】;
语种:中文
中文关键词:聚丙烯;三元乙丙橡胶;动态硫化;增韧;动态力学分析
外文关键词:polypropylene; ethylenepropylenediene terpolymer; dynamic vulcanization; toughning; dynamic mechanical analysis
摘要:采用动态力学试验方法,研究了不同EPDM含量的动态硫化和简单共混两种PP/EPDM材料动态力学响应的差异及其特征。结果显示:与简单共混PP/EPDM相比,动态硫化PP/EPDM具有ΔTg小,内耗峰扩宽程度大,低温和室温内耗峰强度高,所处温度低,60~70℃时内耗峰强度发生高低变位,在EPDM相的α转变(Tg)以下还显示β和γ次级转变等特性。研究结果同时还预示动态硫化PP/EPDM具有耐寒性好、高温下模量保留率大的优点。
The
differences and the characteristics of the dynamic mechanical resonances between dynamic
vulcanized and unvulcanized PP/EPDM blends with deffrent content of EPDM were studied by
means of the dynamic mechanical analysis. The results showed that, compared with the
unvulcanized PP/EPDM blend, the dynamic vulcanized PP/EPDM has the characteristics of
smaller Tg larger mechanical loss peak width, higher mechanical loss strength and lower
mechanical loss peak temprature at the room and low temprature, a change in the peak value of
the mechanical loss at 6070 and some appearances of and secondary transition under the
transition (Tg) of EPDM etc. The main reason why the toughning effect of the dynamic
vulcanized PP/EPDM blend was better than the unvalcanized PP/EPDM blend is that, the
dynamic vulcanized PP/EPDM can increase the compatibility between the two phases PP and
EPDM, increase the mobility of the molecular segments and form the new chemical structures
which can have the mobility at the low t emprature etc. From the results it can be also predicted
that the dynamical vulcanized PP/EPDM blends may have the advantages of the high cold
properties and high holding ratio of the modulus at the high temprature.
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