高校化学工程学报
高校化學工程學報
고교화학공정학보
JOURNAL OF CHEMICAL ENGINEERING OF CHINESE UNIVERSITIES
2014年
1期
137-142
,共6页
宋晓玲%崔学民%林坤圣%马学莲%黄东
宋曉玲%崔學民%林坤聖%馬學蓮%黃東
송효령%최학민%림곤골%마학련%황동
聚氯乙烯%地聚物%复合材料%塑化%力学性能
聚氯乙烯%地聚物%複閤材料%塑化%力學性能
취록을희%지취물%복합재료%소화%역학성능
poly(vinyl chloride)%geopolymer%composite%plasticization%mechanical properties
采用聚氯乙烯(PVC)树脂与处于地聚合初期凝胶阶段的偏高岭土基地聚物混合、熔融加工的方法制备了PVC/偏高岭土基地聚物复合材料,研究地聚物含量对 PVC 复合材料加工塑化、力学性能、热性能及断面形貌的影响。发现少量地聚物(如≤8%(wt))的引入可促进 PVC 树脂的塑化,地聚物分散尺寸较小,在基体中分散较均匀,并与 PVC基体有良好的界面结合,可有效发挥地聚物刚性粒子对 PVC 的增强增韧作用,复合材料有较好的力学性能,其中以4%(wt)的地聚物含量为最佳,其材料的抗冲击强度达到了9.16 kJ×m-2,比纯PVC材料提高了约40%。当地聚物含量过高时,PVC 树脂塑化困难,地聚物分散尺寸增大,与 PVC 基体界面作用减弱,导致复合材料拉伸强度和韧性的下降。随着地聚物含量的增加,PVC复合材料抵抗热变形的能力增加,维卡软化温度升高。
採用聚氯乙烯(PVC)樹脂與處于地聚閤初期凝膠階段的偏高嶺土基地聚物混閤、鎔融加工的方法製備瞭PVC/偏高嶺土基地聚物複閤材料,研究地聚物含量對 PVC 複閤材料加工塑化、力學性能、熱性能及斷麵形貌的影響。髮現少量地聚物(如≤8%(wt))的引入可促進 PVC 樹脂的塑化,地聚物分散呎吋較小,在基體中分散較均勻,併與 PVC基體有良好的界麵結閤,可有效髮揮地聚物剛性粒子對 PVC 的增彊增韌作用,複閤材料有較好的力學性能,其中以4%(wt)的地聚物含量為最佳,其材料的抗遲擊彊度達到瞭9.16 kJ×m-2,比純PVC材料提高瞭約40%。噹地聚物含量過高時,PVC 樹脂塑化睏難,地聚物分散呎吋增大,與 PVC 基體界麵作用減弱,導緻複閤材料拉伸彊度和韌性的下降。隨著地聚物含量的增加,PVC複閤材料牴抗熱變形的能力增加,維卡軟化溫度升高。
채용취록을희(PVC)수지여처우지취합초기응효계단적편고령토기지취물혼합、용융가공적방법제비료PVC/편고령토기지취물복합재료,연구지취물함량대 PVC 복합재료가공소화、역학성능、열성능급단면형모적영향。발현소량지취물(여≤8%(wt))적인입가촉진 PVC 수지적소화,지취물분산척촌교소,재기체중분산교균균,병여 PVC기체유량호적계면결합,가유효발휘지취물강성입자대 PVC 적증강증인작용,복합재료유교호적역학성능,기중이4%(wt)적지취물함량위최가,기재료적항충격강도체도료9.16 kJ×m-2,비순PVC재료제고료약40%。당지취물함량과고시,PVC 수지소화곤난,지취물분산척촌증대,여 PVC 기체계면작용감약,도치복합재료랍신강도화인성적하강。수착지취물함량적증가,PVC복합재료저항열변형적능력증가,유잡연화온도승고。
Poly(vinyl chloride)/metokaolin based geopolymer composites were prepared by mixing and melting the poly(vinyl chloride) (PVC) resin with initial gel stage geopolymer. Influences of geopolymer content on fusion, mechanical and heat deformation properties, and morphology of fractured section of PVC/geopolymer composites were investigated. It was found that the incorporation of lower content of geopolymer (i.e, ≤8%(wt)) would improve the plasticizing process of PVC resin, and small geopolymer particles are formed and well disperse in PVC matrix with good interface adhesive. In this case, compared with pure PVC, the geopolymer composites have good mechanical properties when their geopolymer contents are less then 8%(wt), and among them, the geapolymer composite with 4%(wt) geopolymer is the best, its impact strength reaches 9.16 kJ×m-2, which is abont 40%higher than that of pure PVC. When the geopolymer content is too high, the plasticization of PVC becomes difficult, the size of geopolymer particles increases and its interface adhesive with PVC decreases, which would lead to the decrease of tensile and impact strengths of PVC composites. Incorporation of geopolymer would improve the heat deformation resistance of PVC composites, and lead to the increase of Vicat heat deformation temperature of PVC composites.