纸张湿抗张强度检测方法的研究

曾强, 朱红艳, 朱小利, 刘念, 吴胜军, 王丹, 王磊, 王鹏

包装工程(技术栏目) ›› 2018 ›› Issue (19) : 48-52.

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包装工程(技术栏目) ›› 2018 ›› Issue (19) : 48-52. DOI: 10.19554/j.cnki.1001-3563.2018.19.009

纸张湿抗张强度检测方法的研究

  • 曾强1, 朱红艳1, 朱小利1, 刘念1, 吴胜军1, 王丹1, 王磊2, 王鹏2
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Testing Method of Paper Wet Tensile Strength

  • ZENG Qiang1, ZHU Hong-yan1, ZHU Xiao-li1, LIU Nian1, WU Sheng-jun1, WANG Dan1, WANG Lei2, WANG Peng2
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摘要

目的 研究提高纸张湿抗张强度检测结果准确度的方法。方法 选择某湿强纸为样本,通过改变作用于浸湿后样品的擦拭力及其作用时间,测定擦拭后样品的湿抗张力和水分含量,并将最佳擦拭力和擦拭力作用时间下的测试结果与标准方法测得的检测结果作对比。结果 当砝码质量为500 g,作用时间为15 s时,测得纸张湿抗张强度标准偏差由0.4降低为0.1,变异系数由7.18%降低为1.86%,大大提高了纸张湿抗张强度检测结果的准确度。结论 为了减少人为因素对纸张湿抗张强度检测结果准确度的影响,可在标准中规定擦拭力和擦拭力作用时间。

Abstract

The work aims to investigate the method of improving the determination results accuracy of paper wet tensile strength. A kind of wet strength paper was selected as a sample. Wet tensile strength and moisture content of the immersed sample were determined through altering wiping force and its action time after paper was immersed in water, respectively. In addition, the determination results in the best wiping force and action time were compared with the test results obtained by the standard method. The standard deviation of wet tensile strength was reduced from 0.4 to 0.1, and the coefficient of variation was reduced from 7.18% to 1.86% when the wiped farmar quality was 500 g and the action time was 15 s. The determination results show that the accuracy of paper wet tensile strength was greatly improved. In order to reduce the influence of human factors on the accuracy of the paper wet strength test results, wiping force and its action time can be specified in the standard.

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曾强, 朱红艳, 朱小利, 刘念, 吴胜军, 王丹, 王磊, 王鹏. 纸张湿抗张强度检测方法的研究[J]. 包装工程(技术栏目). 2018(19): 48-52 https://doi.org/10.19554/j.cnki.1001-3563.2018.19.009
ZENG Qiang, ZHU Hong-yan, ZHU Xiao-li, LIU Nian, WU Sheng-jun, WANG Dan, WANG Lei, WANG Peng. Testing Method of Paper Wet Tensile Strength[J]. Packaging Engineering. 2018(19): 48-52 https://doi.org/10.19554/j.cnki.1001-3563.2018.19.009

基金

国家自然科学基金(31300494);湖北工业大学博士启动金项目(BSQD12037)

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