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Effect of polypropylene fiber processing conditions on fiber mechanical behavior

机译:聚丙烯纤维加工条件对纤维力学性能的影响

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摘要

An investigation into the mechanical behavior of melt-spun isotactic polypropylene (iPP) fibers is reported. Two different iPP formulations, PH835 and Exxon3854, synthesized using Ziegler-Natta and metallocene catalysts, respectively, and spun at take-up velocities ranging from 1000 to 3000 m min~(-1) were subjected to uniaxial tensile loading, cyclic loading and creep tests. The strain rate sensitivity was determined by performing strain rate jumps. Injection molded specimens from the same iPP formulations were tested under the same conditions. The fiber birefringence increases slightly with increasing take-up velocity, while the crystallinity is approximately insensitive to this process parameter in this range of velocities. Fibers from the two iPP samples behave differently at large plastic strains despite having the same birefringence and crystallinity. Differences are also seen in creep. The behavior of fibers is significantly different from that of the injection molded samples of the same iPP and same crystallinity. These have lower strain hardening rate, smaller failure strains, close to zero strain rate sensitivity and exhibit a yield point phenomenon. The difference is associated with the different nature and spatial organization of the crystals and inter-crystalline amorphous and mesomorphic phases.
机译:报告了对熔融纺丝等规聚丙烯(iPP)纤维的机械性能的研究。分别使用齐格勒-纳塔催化剂和茂金属催化剂合成的两种不同的iPP配方PH835和Exxon3854,并以1000-3000 m min〜(-1)的卷绕速度纺丝,并进行单轴拉伸载荷,循环载荷和蠕变测试。通过执行应变率跳跃来确定应变率灵敏度。在相同条件下测试了来自相同iPP配方的注塑样品。纤维双折射随卷取速度的增加而略有增加,而结晶度在此速度范围内对此工艺参数几乎不敏感。尽管具有相同的双折射和结晶度,但来自两个iPP样品的纤维在较大的塑性应变下的性能不同。在蠕变方面也可以看到差异。纤维的行为与相同iPP和相同结晶度的注塑样品的行为显着不同。它们具有较低的应变硬化率,较小的破坏应变,接近零应变率的敏感性并表现出屈服点现象。差异与晶体以及晶间非晶和介晶相的不同性质和空间组织有关。

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