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首页> 外文期刊>Journal of Applied Polymer Science >New functional bicomponent fibers with core/sheath-configuration using poly(phenylene sulfide) and poly(ethylene terephthalate)
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New functional bicomponent fibers with core/sheath-configuration using poly(phenylene sulfide) and poly(ethylene terephthalate)

机译:使用聚苯硫醚和聚对苯二甲酸乙二酯的新型具有芯/鞘结构的功能性双组分纤维

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Bicomponent fibers using the high-performance polymer poly(phenylene sulfide) (PPS) together with poly(ethylene terephthalate) (PET) were melt-spun. Both possibilities of using PPS, either as core or as sheath material, were realized to provide special functionalities like improved thermobonding capability, flame retardancy, or chemical resistance. Parameters that guarantee stable processing of PPS and PET during coaxial extrusion with different core/sheath volume ratios were explored. Microscopic studies of the cross-sections showed holes and cavities, which were formed at the interface between PPS and PET. Possible mechanisms for cavity formation were evaluated. Results of thermal and mechanical characterization by means of TGA, DSC, and tensile testing revealed a strong influence of the processing parameters, namely draw ratio and core/sheath volume ratio, on the crystaltization and the tensile strength of the drawn fibers. By changing the core/sheath volume ratio from 2 to 0.5 in the PPS/PET fiber, the crystallinity of the PET-component was switched from 10 to 50%, whereas the crystallinity of the PPS dropped from 68 to 7%. It was determined that bicomponent fibers can exceed the strength of monocomponent fibers up to 28%. The flammability and chemical resistance of the new developed fibers were characterized. In contrary to what was expected, the encasing of PET with PPS reduced the flame retardancy, though PPS has a higher flame resistance than PET. The chemical resistance of the PET core against hydrolysis was imparted by coextruding a PPS sheath. (c) 2007 Wiley Periodicals, Inc.
机译:将高性能聚合物聚苯硫醚(PPS)与聚对苯二甲酸乙二醇酯(PET)一起纺制双组分纤维。既可以使用PPS作为芯材料也可以用作皮材料,以提供特殊的功能,例如改进的热粘合能力,阻燃性或耐化学性。探索了在不同芯/皮体积比的同轴挤出过程中确保PPS和PET稳定加工的参数。横截面的显微研究显示出在PPS和PET之间的界面处形成的孔洞。评价了可能的腔形成机理。通过TGA,DSC和拉伸测试进行的热和机械表征的结果表明,加工参数,即拉伸比和芯/鞘体积比,对拉伸纤维的结晶和拉伸强度有很大的影响。通过将PPS / PET纤维的芯/鞘体积比从2更改为0.5,PET组分的结晶度从10%切换到50%,而PPS的结晶度从68%降低到7%。已确定双组分纤维可以超过单组分纤维的强度高达28%。对新型纤维的易燃性和耐化学性进行了表征。与预期相反,尽管PPS具有比PET更高的阻燃性,但用PPS包裹PET降低了阻燃性。通过共挤出PPS护套可赋予PET芯抗水解的耐化学性。 (c)2007年Wiley Periodicals,Inc.

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