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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Anisotropic mechanical properties of thermoplastic elastomers in situ reinforced with thermotropic liquid-crystalline polymer fibers revealed by biaxial deformations
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Anisotropic mechanical properties of thermoplastic elastomers in situ reinforced with thermotropic liquid-crystalline polymer fibers revealed by biaxial deformations

机译:热致液晶聚合物纤维原位增强的热塑性弹性体的各向异性力学性能通过双轴变形揭示

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The anisotropic mechanical properties of the thermoplastic elastomer (TPE) in situ reinforced with thermotropic liquid-crystalline polymer (TLCP) fibers were investigated by uniaxial, strip-biaxial, and equibiaxial tensile measurements. The in situ composite sheets were prepared from an immiscible blend of a TLCP, Rodrun LC3000, and a TPE, styrene-(ethylene butylene)-styrene (SEBS) triblock copolymer, by a melt extrusion process. The uniaxial orientation of the TLCP fibers in the TPE matrix generated during processing yielded a significant mechanical anisotropy in the composites. The biaxial tensile measurements clearly demonstrated the anisotropic mechanical properties of the composites: The modulus in the direction parallel to the machine direction (MD) was considerably higher than that in the transverse direction (TD), even at large deformations; in equibiaxial stretching, the yield strain in the MD was smaller than that in the TD; the composite containing 10 wt % of TLCP exhibited the highest mechanical anisotropy among the composites, with 0-30 wt % TLCP. The latter result was in accord with the SEM observation that the composite with 10 wt % of TLCP possessed the best fibrillar morphology and the highest degree of uniaxial orientation of the TLCP fibers. The yield strains in uni- and biaxial elongation for the composite containing 10 wt % of TLCP were almost the same as those for the neat styrene-ethylene butylene-styrene The TLCP phase with good fibrillation did not appreciably alter the original yielding characteristics of the elastomer matrix. (C) 2004 Wiley Periodicals, Inc.
机译:通过单轴,条带双轴和等双轴拉伸测量研究了用热致液晶聚合物(TLCP)纤维原位增强的热塑性弹性体(TPE)的各向异性力学性能。通过熔融挤出法由TLCP,Rodrun LC3000和TPE,苯乙烯-(乙烯丁烯)-苯乙烯(SEBS)三嵌段共聚物的不混溶共混物制备原位复合片。在加工过程中产生的TPE基质中TLCP纤维的单轴取向在复合材料中产生了显着的机械各向异性。双轴拉伸测量清楚地表明了复合材料的各向异性力学性能:即使在较大变形下,平行于纵向(MD)的模量也显着高于横向(TD)的模量。在等轴拉伸中,MD的屈服应变小于TD的屈服应变。包含10wt%的TLCP的复合材料在复合材料中表现出最高的机械各向异性,其中TLCP为0-30wt%。后一结果与SEM观察结果一致,即具有10wt%的TLCP的复合材料具有最佳的原纤维形态和最高的TLCP纤维单轴取向度。含有10 wt%TLCP的复合材料的单轴和双轴伸长率的屈服应变与纯苯乙烯-乙烯-丁烯-苯乙烯的屈服应变几乎相同。具有良好原纤化的TLCP相不会明显改变弹性体的原始屈服特性矩阵。 (C)2004年Wiley Periodicals,Inc.

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