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Straining and relaxation properties of wet paper during heating

机译:湿纸在加热过程中的应变和松弛特性

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摘要

The influence of increasing temperature on the strength and relaxation of wet press-dry paper was studied using a tensile tester equipped with a special heating chamber. The heating chamber made fast heating possible without detectable moisture loss. The results showed that temperature had a significant influence on the straining, relaxation and re-straining behavior of wet paper. The majority of observed changes due to increased temperature seem to originate from the softening of wet fibers. The observed short time scale phenomena in wet paper have practical significance for fiber webs dried under tension in paper machines. Straining-relaxation-de-straining cycles were used to analyze the effect of heating on the work of straining and apparent plastic and elastic work. Heating affected the amount of mechanical energy absorbed by the sample and the amount of elastic energy recoverable in a straining-relaxation-de-straining cycle. Increased temperature reduced the work of straining and both elastically and plastically absorbed energy. The hysteresis work of the examined wet papers was estimated to correspond to a 1-22 mK temperature change. This suggests that temperature changes in wet paper induced by straining play no role in practice. After mechanical conditioning, tensile stiffness in the re-straining of wet paper depended only marginally on temperature, whereas in initial straining the effect of temperature was clearly stronger. The linear thermal expansion coefficient of wet paper in the machine direction was estimated and the influence of moisture content on the linear thermal expansion coefficient of paper was found to be relatively small.
机译:使用装有特殊加热室的拉伸试验机研究了温度升高对湿压干纸强度和松弛的影响。加热室可实现快速加热,而不会检测到水分流失。结果表明,温度对湿纸的应变,松弛和再应变行为有显着影响。观察到的大多数由于温度升高引起的变化似乎源自湿纤维的软化。在湿纸中观察到的短时间尺度现象对于在造纸机中在张力下干燥的纤维网具有实际意义。使用应变松弛松弛循环来分析加热对应变功和表观塑性和弹性功的影响。加热影响了样品吸收的机械能的量以及在应变松弛松弛循环中可回收的弹性能的量。升高的温度减少了拉力,并减少了弹性和塑性吸收的能量。估计所检查的湿纸的滞后功对应于1-22 mK的温度变化。这表明在实际操作中,因张力引起的湿纸温度变化不起作用。在进行机械调节之后,湿纸再拉伸中的拉伸刚度仅在一定程度上取决于温度,而在初始拉伸中,温度的影响显然更强。估计湿纸在纵向上的线性热膨胀系数,并且发现水分含量对纸的线性热膨胀系数的影响相对较小。

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