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Rheological and Morphological Properties of Immiscible Blends and Microfiber Prepartion from the Blends

机译:不混溶共混物和由共混物制得的超细纤维的流变学和形态学性质

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摘要

One modified poly(ethylene terephthalate) (m-PET) containing 16 mol% of isophthalic acid content and three kinds of isotactic polypropylene (i-PP) with different molecular weights were melt blended in various volume ratios by a twin screw extruder. The dynamic viscosity of the i-PP/m-PET blend showed positivie deviation at lower volume content of i-PP and negative deviation at higher volume content of i-PP. The size of dispersed phase increased with an increase of the minor component. Also, the less difference between the viscosities of two polymers caused the smaller particle size in the blend and the smaller critical Weber number. After melt spinning of these binary polymer blends, m-PET and i-PP micro staple fiber, whose diameter was about 0.13 to 2.75 #mu#m, could be obtained by extracting the continuous phase with a proper solvent. The less the minor component in the blend, the better the spinnability of the blended polymers and the physical properties of the fiber. Also, when i-PP was the continuous phase, the spinnability and the physical properties of the fibers were better than the opposite case. molecular weight of i-PP and the blend ratio had a marked influence on the diameter of microfibers. The micro fiber obtained from i-PP which has similar viscosity with m-PET showed the smallest diameter than those obtained from other two i-PPs.
机译:用双螺杆挤出机将一种包含16mol%间苯二甲酸含量的改性聚对苯二甲酸乙二酯(m-PET)和三种具有不同分子量的全同立构聚丙烯(i-PP)以不同的体积比熔融共混。 i-PP / m-PET共混物的动态粘度在较低的i-PP含量下显示正偏差,而在较高的i-PP含量下显示负偏差。分散相的尺寸随着次要组分的增加而增加。同样,两种聚合物的粘度之间的差异越小,导致共混物中的粒径越小,临界韦伯数越小。在将这些二元聚合物共混物熔融纺丝后,可以通过用适当的溶剂萃取连续相来获得直径约为0.13至2.75#μm的m-PET和i-PP微短纤维。共混物中的次要组分越少,则共混聚合物的可纺性和纤维的物理性能越好。另外,当i-PP为连续相时,纤维的可纺性和物理性能比相反情况更好。 i-PP的分子量和混合比对超细纤维的直径有显着影响。与其他两种i-PP相比,由i-PP制成的微纤维与m-PET具有相似的粘度,显示出最小的直径。

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