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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Mechanisms of deformation in crystallizable natural rubber. Part 1: Thermal characterization
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Mechanisms of deformation in crystallizable natural rubber. Part 1: Thermal characterization

机译:可结晶天然橡胶变形的机理。第1部分:热特性

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摘要

This paper investigates the mechanisms of deformation in rubber, especially stress-induced crystallization, using infrared thermography. Temperature variations are measured during cyclic uniaxial mechanical tests at ambient temperature. Results show that natural rubber mainly exhibits entropic behaviour: the material produces (resp. absorbs) heat during loading (resp. unloading). The crystallization of the polymer chains under tension leads to a temperature increase of the order of several degrees Celsius. If crystallization and crystallite melting occur over one mechanical cycle, a hysteresis loop is observed in terms of the strain-stress relationship. Stress relaxation tests show that the thermal signatures of crystallization and of crystallite melting are different. Indeed, if the strain is maintained fixed during loading, the temperature continues to increase for a few seconds before returning to the ambient temperature. This reveals that crystallization continues during relaxation. On the contrary, if the strain is maintained fixed during unloading, the specimen returns instantaneously to the ambient temperature.
机译:本文利用红外热成像技术研究了橡胶变形的机理,特别是应力引起的结晶。温度变化是在环境温度下的循环单轴机械测试过程中测量的。结果表明,天然橡胶主要表现出熵行为:该材料在加载(卸载)过程中产生(吸收)热量。聚合物链在张力下的结晶导致温度升高几摄氏度。如果在一个机械周期内发生结晶和微晶熔化,则在应变-应力关系方面会观察到磁滞回线。应力松弛测试表明,结晶和微晶熔融的热特征不同。实际上,如果在加载过程中应变保持固定,则温度会继续升高几秒钟,然后再返回到环境温度。这表明在松弛过程中结晶继续进行。相反,如果在卸载过程中应变保持固定,则样品会立即返回到环境温度。

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