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首页> 外文期刊>Journal of Macromolecular Science. Physics >Structure and mechanical properties of nylon 6.12 prepared by temperature slope crystallization .2. Rolling deformation and microhardness of the oriented negative spherulite
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Structure and mechanical properties of nylon 6.12 prepared by temperature slope crystallization .2. Rolling deformation and microhardness of the oriented negative spherulite

机译:通过温度斜率结晶制备的尼龙6.12的结构和力学性能.2。取向负球晶的滚动变形和显微硬度

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摘要

Oriented negative spherulites of nylon 6.12 were crystallized by the temperature slope method. Rolling deformation of the negative texture was performed in three directions. The deformation mechanism of the negative spherulites was investigated by x-ray diffraction and microhardness measurements. Slip deformation between crystalline lamellae (interlamellar slip) was observed in the first stage of deformation. The results are compared with the rolling deformation of other polymer textures such as the positive spherulites of nylon 6.12 and beta-phase isotactic polypropylene. In the rolling deformation of nylon 6.12, hydrogen-bonded (010) planes play an important role. For large deformations (lambda > 1.5), preferential slip between (010) planes appears, resulting in a lamellar inclination of 60 degrees and a decrease of the lamellar thickness. Microhardness measurements after rolling deformation of the oriented negative texture show good agreement with the structural analysis. The rapid decrease in the microhardness with increasing deformation can be explained by the lamellar thickness decrease brought about by the preferential slip between the (010) planes.
机译:尼龙6.12的取向负球晶通过温度斜率法结晶。负纹理的滚动变形在三个方向上进行。通过X射线衍射和显微硬度测量研究了负球晶的变形机理。在变形的第一阶段,观察到结晶层之间的滑动变形(层间滑动)。将结果与其他聚合物织构的滚动变形进行比较,例如尼龙6.12的正球晶和β相全同立构聚丙烯。在尼龙6.12的滚动变形中,氢键(010)平面起着重要作用。对于较大的变形(λ> 1.5),在(010)平面之间会出现优先滑移,导致60度的层状倾斜和层状厚度的减小。定向负纹理滚动变形后的显微硬度测量结果与结构分析吻合良好。随着变形的增加,显微硬度的快速下降可以用(010)面之间的优先滑移引起的层状厚度减小来解释。

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