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Investigation of the degradation of pitch-based carbon fibers properties upon insufficient or excess thermal treatment

机译:热处理不充分或过度时沥青基碳纤维性能下降的研究

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摘要

To overcome the disadvantages of discontinuous conventional batch extruders, a continuous screw extruder is introduced to manufacture pitch-based carbon fibers. For a carbon fiber preparation process, an oxidation time of 8 h was determined to be optimal for obtaining desirable mechanical properties of the fibers acquiring employing the screw extruder. It is hypothesized that the differences in the properties of the carbon fibers fabricated utilizing the batch and screw extruders originate from the melt spinning time; therefore, a combined equation for the total amount of heat treatment from the pitch precursor through the oxidation process is established in this study. The crystallinity of the carbon fibers is confirmed to correspond to the differences in mechanical properties as the oxidation time increases. The poor mechanical properties of the carbon fibers that are insufficiently oxidized are a result of irregular oxidation from the sheath to the core of the fiber cross section. However, the over-oxidized carbon fibers also show poor mechanical properties than the optimal fibers. This result further affirms that excessive oxidation times cause unstable chemical bonding, which interrupts the formation of stable crystal structures after carbonization.
机译:为了克服不连续的常规间歇式挤出机的缺点,引入了连续螺杆挤出机以制造沥青基碳纤维。对于碳纤维的制备过程,确定8 h的氧化时间对于获得采用螺杆挤出机获得的纤维的理想机械性能而言是最佳的。假设利用间歇式和螺杆式挤出机制造的碳纤维的性能差异源自熔融纺丝时间。因此,在这项研究中,建立了由沥青前体到氧化过程的热处理总量的组合方程。随着氧化时间的增加,证实碳纤维的结晶度对应于机械性能的差异。碳纤维被充分氧化的不良机械性能是从纤维横截面的皮层到芯部不规则氧化的结果。但是,过氧化的碳纤维也比最佳纤维表现出较差的机械性能。该结果进一步证实,过多的氧化时间会导致不稳定的化学键合,从而在碳化后中断稳定晶体结构的形成。

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