Structure development of polylactides with various D-lactide contents in the high-speed melt spinning process

Structure development of polylactides with various D-lactide contents in the high-speed melt spinning process
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DOI:
10.1081/mb-120015750
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发表时间:
2003-01-01
期刊:
JOURNAL OF MACROMOLECULAR SCIENCE-PHYSICS
影响因子:
--
通讯作者:
Kikutani, T
Kikutani, T
中科院分区:
其他
文献类型:
--
作者:
Takasaki, M;Ito, H;Kikutani, T

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对不同D-丙交酯含量的聚乳酸进行了高速熔融纺丝,并对初生纤维的结构和性能进行了研究。低、中、高D-丙交酯含量的聚乳酸(聚乳酸-L、聚乳酸-M和聚乳酸-H)的最高卷绕速度分别为10、9和8公里/分。初生纤维的双折射随卷绕速度的增加而增大。在高卷取速度下,纤维的双折射随D-丙交酯含量的增加而降低。聚乳酸-L纤维和聚乳酸-M纤维分别以5和6公里/分钟及更高的速度纺丝,其广角X射线衍射谱显示出明显的晶态反射。晶型为α-晶型。在差示扫描量热图中,由于聚合物结晶性的差异和分子取向对结晶速率的影响,在较低的卷绕速度区,聚乳酸-L纤维出现冷结晶,而在较高的卷绕速度区,则出现冷结晶。从差示扫描量热图分析,聚乳酸-L和聚乳酸-M的结晶度随着卷绕速度的增加而增加。聚乳酸-L纤维的结晶度明显高于聚乳酸-M纤维,而聚乳酸-H纤维在达到最高的卷绕速度时是非晶态的。初生纤维的力学性能随卷绕速度的提高而提高。以10 km/min的速度制得的聚乳酸-L纤维的最大初始杨氏模数和最大强度分别为5.9 GPA和570 Mpa。
High-speed melt spinning of polylactides with various D-lactide contents was carried out and the structure and properties of the as-spun fibers were investigated. The highest take-up velocities attained for polylactides with low, middle, and high D-lactide contents (PLA-L, PLA-M, and PLA-H) were 10, 9, and 8 km/min, respectively. Birefringence of as-spun fibers increased with an increase in the take-up velocity. Fibers obtained at high take-up velocities showed lower birefringence with an increase in the D-lactide content. Distinct crystalline reflections appeared in WAXD patterns of PLA-L and PLA-M fibers spun at 5 and 6 km/min and higher, respectively. The crystal modification was alpha-form. In DSC thermograms, because of the difference in crystallizability of polymers and the effect of molecular orientation on crystallization rate, cold crystallization was observed for the PLA-L fibers obtained in a low take-up velocity region, whereas in a high take-up velocity region it was observed for the PLA-M fibers. Crystallinity analyzed from DSC thermograms of PLA-L and PLA-M increased with an increase in the take-up velocity. PLA-L fibers showed significantly higher crystallinity than PLA-M fibers, whereas PLA-H fibers were found to be amorphous up to the highest take-up velocities attained. Mechanical properties of as-spun fibers increased with an increase in the take-up velocity. The highest initial Young's modulus and tenacity, which were for PLA-L fibers obtained at 10 km/min, were about 5.9 GPa and 570 MPa, respectively.