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Elastic strain energy behavior in the polymer nanocrystals

机译:聚合物纳米晶体中的弹性应变能量

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In the paper, the changes in the axial and the contour lengths of skeletal interatomic bonds in the chain molecules of polyethylene nanocrystals have been measured using X-ray diffractometry and Raman spectrometry. In the course of the measurements the samples were subjected to stretching and heating (mechanical and thermal actions). The measured force and temperature dependences were analyzed and the calculated description of the polymer nanocrystal’s strain was inferred from them. In so doing the original results were obtained for the thermal action. The potential energy components related to both the skeletalbond stretching and the chain-molecule bending were determined for the strained polymer crystal. The sharp distinction between the ratios of these components for the object under mechanical and thermal actions was found.
机译:在本文中,使用X射线衍射法测定了聚乙烯纳米晶体链分子中骨骼间隙键的轴向和轮廓长度的变化,并使用X射线衍射测定和拉曼光谱法测量。在测量过程中,样品进行拉伸和加热(机械和热动作)。分析了测量的力和温度依赖性,并从它们中推断出聚合物纳米晶体菌株的计算描述。在这样做的那样,获得了热动作的原始结果。针对紧张的聚合物晶体测定与骨架拉伸和链分子弯曲有关的潜在能量分量。发现,在机械和热动作下对物体的这些组分的比率之间的尖锐区分。

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