文章摘要
有机粘土/天然胶乳纳米复合材料的多轴循环拉伸 诱导结晶行为研究
Multi-axial Cyclic Tensile Induced Crystallization Behavior of Organic Clay/Natural Latex Nanocomposites
投稿时间:2022-05-15  修订日期:2022-05-15
DOI:10.12136/j.issn.1000-890X.2023.08.0578
中文关键词: 天然胶乳  有机粘土  纳米复合材料  拉伸诱导结晶  多轴循环拉伸
英文关键词: natural latex  organic clay  nanocomposite  tensile induced crystallization  multi-axial cyclic tensile
基金项目:国家自然科学基金资助项目(51573124)
作者单位E-mail
刘兵兵 太原工业学院 材料工程系 13483085378@163.com 
梁玉蓉* 太原工业学院 材料工程系 liangyr7103@aliyun. com 
任绒艇 太原工业学院 材料工程系  
李子贤 太原工业学院 材料工程系  
赵 俊 太原工业学院 材料工程系  
朱 苗 太原工业学院 材料工程系  
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中文摘要:
      采用乳液插层法制备有机粘土/天然胶乳(NRL)纳米复合材料(NRLCNs),研究有机粘土用量对NRLCNs拉 伸性能的影响以及NRLCNs在不同拉伸方式、拉伸倍率和循环拉伸次数下拉伸诱导结晶行为的变化。结果表明:当有机 粘土用量为4份时,NRLCNs的拉伸强度最大,为24. 6 MPa,较纯NRL胶料的拉伸强度12. 6 MPa增大了95%;有机粘土的 加入有助于NRLCNs更快地发生拉伸诱导结晶,在一定范围内随着有机粘土用量的增大,NRLCNs的拉伸诱导结晶临界 诱变点提前;经过不同拉伸倍率和循环拉伸次数预处理后,NRLCNs的拉伸诱导结晶临界诱变点发生不同程度的滞后; NRLCNs的拉伸强度随着多轴拉伸预处理循环拉伸次数的增大而增大,且经过相同预处理后,相同应变下NRLCNs的单 轴拉伸强度大于多轴拉伸强度。
英文摘要:
      Organic clay/natural latex(NRLCNs) nanocomposites(NRLCNs) were prepared by emulsion intercalation method.The effects of organic clay dosage on the tensile properties of NRLCNs and the changes in the tensile induced crystallization behavior of NRLCNS under different tensile modes,tensile ratios and tensile cycles were investigated.The results showed that when organic clay dosage was 4 phr,the tensile strength of NRLCNs was largest,at 24.6 MPa,which was 95% larger than the tensile strength of pure NRL compound of 12.6 MPa.The addition of organic clay contributed to the faster formation of tensile-induced crystallization of NRLCNs.In a certain range,the critical mutagenic point of tensile-induced crystallization of NRLCNs was advanced with the increase of organic clay dosage.After pretreatment with different tensile ratios and tensile cycles,the critical mutagenic point of tensile induced crystallization of NRLCNs exhibited varying degrees of hysteresis.The tensile strength of NRLCNs increased with the increase of tensile cycles of multi-axial tensile pretreatment,and after the same pretreatment,the uniaxial tensile strength of NRLCNs was larger than the multi-axial tensile strength under the same strain.
Author NameAffiliationE-mail
LIU Bingbing Taiyuan Institute of Technology 13483085378@163.com 
LIANG Yurong Taiyuan Institute of Technology liangyr7103@aliyun. com 
REN Rongting Taiyuan Institute of Technology  
LI Zixian Taiyuan Institute of Technology  
ZHAO Jun Taiyuan Institute of Technology  
ZHU Miao Taiyuan Institute of Technology  
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