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Study on the Dynamic Compression Resistance of Papermaking Felts
Received:March 14, 2025  Revised:May 08, 2025
DOI:10.11980/j.issn.0254-508X.2025.09.020
Key Words:papermaking felt  dynamic compression resistance  deformation
Fund Project:2025年度嘉兴市科技计划项目(2025CGZ070);国家自然科学基金项目(21466000)。
Author NameAffiliationPostcode
MENG Fenye* College of Textile, Donghua University, Shanghai, 201620
Jiangsu Jinni Engineering Fabric Co., Ltd., Nantong,Jiangsu Province, 226132
Fashion Design College, Jiaxing Vocational & Technical College, Jiaxing, Zhejiang Province, 314036 
314036
ZHOU Jixue Jiangsu Jinni Engineering Fabric Co., Ltd., Nantong,Jiangsu Province, 226132 226132
SUN Baozhong College of Textile, Donghua University, Shanghai, 201620 201620
CHEN Ping Jiangsu Jinni Engineering Fabric Co., Ltd., Nantong,Jiangsu Province, 226132 226132
KANG Hongmei Jiangsu Jinni Engineering Fabric Co., Ltd., Nantong,Jiangsu Province, 226132 226132
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Abstract:Raw materials, structure, and properties such as compression and recovery of the currently widely used BOM paper-making felts were introduced. Three types of paper-making felts with different base mesh specifications were selected for multiple dynamic reciprocating compression, their thickness, air permeability, porosity and other performance were tested. A relationship model between the continuous force on the felt and its deformation in the thickness direction during dynamic compression was established, and the model (y=A(eBx-1))was fitted using the equation (R2 ≥ 0.99). The results showed that there was a strong nonlinear relationship between the pressure and deformation of the sample during the dynamic compression resistance process, which could be used to characterize the compressive resistance of the sample. Felt 2# exhibited superior compressive resistance due to its relatively larger A and B values (A = 0.025, B = 5.960), smaller compression deformation (< 1.74 mm) and porosity (61.2%), and higher elastic recovery (87.8%).
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