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Direct investigations of deformation and yield induced structure transitions in polyamide 6 below glass transition temperature with WAXS and SAXS

机译:使用WAXS和SAXS直接研究低于玻璃化转变温度的聚酰胺6中的变形和屈服诱导的结构转变

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Deformation and yield induced structure transitions of polyamide 6 (PA6) were detected with the combination of the wide- and small-angle X-ray scattering (WAXS and SAXS) at 30 degrees C below glass transition temperature (T-g) of PA6. During deformation, gamma-alpha phase transition was found at elastic stage. The concentrated stress in crystals at elastic stage provided adequate energy for the direct gamma-alpha phase transition under T-g. The force to promote the gamma-phase into a phase directly is insufficient at the yield stage and a transient phase as a compromise was formed. The transient phase was confirmed by DSC measurements and assisted the gamma-alpha phase transition indirectly. The gamma-phase slips into incomplete fragments at yield point, and the parts along tensile direction are responsible for the formation of transient phase. The gamma-fragments after yield is oriented by shear force following alpha-phase. The yield of PA6 was intimately related with the gamma-transient phase transition and the slippage of gamma-fragments. In addition, the increase of long spacing at elastic deformation along tensile direction was mainly contributed by the amorphous region. After yield, the phase transition and crystalline slippage affected the lamellar evolution. A simplified schematic diagram was provided to illustrate the structure evolution of PA6. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过在低于PA6的玻璃化转变温度(T-g)的30摄氏度下使用广角和小角X射线散射(WAXS和SAXS)的组合检测聚酰胺6(PA6)的变形和屈服诱导的结构转变。在变形过程中,在弹性阶段发现了γ-α相变。弹性阶段晶体中集中的应力为T-g下的直接γ-α相变提供了足够的能量。在屈服阶段将γ相直接促进成相的力不足,并且由于形成折衷而形成过渡相。通过DSC测量证实了过渡相,并间接地辅助了γ-α相变。 γ相在屈服点滑落为不完整的碎片,而沿拉伸方向的部分负责形成过渡相。屈服后的γ片段通过剪切力跟随α相取向。 PA6的产量与伽马瞬态相变和伽玛碎片的滑移密切相关。另外,沿拉伸方向弹性变形时长间距的增加主要是由非晶区域引起的。屈服后,相变和晶体滑移影响层状演化。提供了简化的示意图以说明PA6的结构演变。 (C)2015 Elsevier Ltd.保留所有权利。

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