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A method for the determination and correction of the effect of thermal degradation on the viscoelastic properties of degradable polymers

机译:测定和校正热降解对可降解聚合物粘弹性的影响的方法

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摘要

Small amplitude oscillatory shear is carried out during isothermal degradation of poly(lactic acid) (PLA) in order to determine the evolution of the characteristic relaxation time with degradation time and temperature. After reducing the relaxation time data to a single mastercurve, a 4-parameter function is fitted to the data to allow prediction of the change in relaxation time following an arbitrary thermal history. The method enables separation of the effects of temperature and of degradation on the relaxation time, both of which lead to a horizontal shift of dynamic data along the frequency axis, and hence enable a correction for thermal degradation during rheometry to be carried out. To validate the method, two isothermal frequency sweeps were measured with different temperature histories, producing different mastercurves due to dissimilar in-test thermal degradation. After correcting for thermal degradation using the function and the thermal histories, the two frequency sweeps reduce to the same viscoelastic mastercurve in the undegraded pre-test state.
机译:为了确定特征弛豫时间随降解时间和温度的变化,在聚乳酸(PLA)等温降解过程中进行了小振幅振荡剪切。将弛豫时间数据减少到单个主曲线后,将4参数函数拟合到数据,以预测随任意热历史而变化的弛豫时间变化。该方法使得能够分离温度和退化对弛豫时间的影响,这两者都导致动态数据沿着频率轴水平移动,并且因此使得能够进行流变学期间的热退化的校正。为了验证该方法,在不同的温度历史记录下测量了两次等温扫频,由于不同的测试内热降解,产生了不同的主曲线。在使用函数和热历史校正了热降解之后,在未降解的预测试状态下,两个扫频会减小为相同的粘弹性主曲线。

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