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The Combined Effects of Moisture and Temperature on the Mechanical Response of Paper

机译:水分和温度对纸张机械响应的综合影响

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摘要

To model advanced 3-D forming strategies for paper materials, the effects of environmental conditions on the mechanical behavior must be quantitatively and qualitatively understood. A tensile test method has been created, verified, and implemented to test paper at various moisture content and temperature levels. Testing results for one type of paper for moisture contents from 6.9 to 13.8 percent and temperatures from 23 to 168 degrees Celsius are presented and discussed. Coupled moisture and temperature effects have been discovered for maximum stress. Uncoupled effects have been discovered for elastic modulus, tangent modulus, hardening modulus, strain at break, tensile energy absorption (TEA), and approximate plastic strain. A hyperbolic tangent function is also utilized which captures the entire one-dimensional stress-strain response of paper. The effects of moisture and temperature on the three coefficients in the hyperbolic tangent function may be assumed to be uncoupled, which may simplify the development of moisture-and temperature-dependent constitutive models. All parameters were affected by both moisture and temperature with the exception of TEA, which was found to only be significantly dependent on temperature.
机译:要对纸材料的高级3-D成形策略进行建模,必须定量和定性地了解环境条件对机械性能的影响。已经创建,验证并实施了拉伸测试方法,以测试各种水分含量和温度水平的纸张。介绍并讨论了一种类型的纸张的测试结果,其中水分含量为6.9%至13.8%,温度为23至168摄氏度。已经发现湿度和温度的耦合效应可以最大程度地提高应力。已发现弹性模量,切线模量,硬化模量,断裂应变,拉伸能吸收(TEA)和近似塑性应变的非耦合效应。还利用了一个双曲线正切函数来捕获纸的整个一维应力-应变响应。可以假定湿度和温度对双曲正切函数中三个系数的影响是不相关的,这可以简化依赖于湿度和温度的本构模型的开发。除TEA外,所有参数均受水分和温度的影响,而TEA则仅显着依赖于温度。

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