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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Deformation mechanism of iPP under uniaxial stretching over a wide temperature range: An in-situ synchrotron radiation SAXS/WAXS study
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Deformation mechanism of iPP under uniaxial stretching over a wide temperature range: An in-situ synchrotron radiation SAXS/WAXS study

机译:宽温度范围内单轴拉伸下IPP的变形机理:原位同步辐射露酢res / WAXS研究

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With a combination of homemade temperature jump extension apparatus and in-situ synchrotron radiation small and wide angle X-ray scattering (SR-SAXS and SR-WAXS) measurements, uniaxial stretching experiments of polypropylene films at 50 degrees C-150 degrees C are carried out to obtain the structure evolution routes. Three distinct features of the structure evolution are observed in temperature space, which can be described with three different deformation models, namely amorphization, crystalline block slip and melt recrystallization, respectively. Also, a refined morphology diagram in strain temperature space is given to specify the morphology under two dimensional stretching parameter space. This work supplies a guidance for selecting processing conditions to obtain optimal structures after uniaxial stretching in industry. (C) 2017 Elsevier Ltd. All rights reserved.
机译:采用自制温度跳跃延长装置和原位同步辐射小而广角X射线散射(SR-SAXS和SR-WAXS)测量,携带50℃-150℃的聚丙烯薄膜的单轴拉伸实验 出去获得结构演变路线。 在温度空间中观察到结构进化的三个不同的特征,其可以分别用三种不同的变形模型描述,即非晶化,结晶阻滞和熔体重结晶。 此外,给出了应变温度空间中的精制形态图来指定二维拉伸参数空间下的形态。 这项工作提供了一种指导,用于选择加工条件,以在工业中单轴拉伸后获得最佳结构。 (c)2017 Elsevier Ltd.保留所有权利。

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