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第54卷第7期                                       涂料工业                                     Vol. 54  No. 7
              2024年7月                     张宇 等:水性醇酸-丙烯酸杂化树脂制备的研究进展                                    Jul. 2024
                                                   PAINT & COATINGS INDUSTRY


                          水性 酸 丙烯酸杂化树脂制备的研究进展




                                     张宇  ,刘           ,丁永波     *1,2 , 永  ,        亮  1,2
                                                                           1,2
                                             1
                                                      1
                           (1. 江 科技  大学化学化工学院涂料与高分  ,南昌330013;
                                      2. 江 省水性涂料工程研究中心,南昌330013)
                     摘 要:针对当前人们环保意识的增强以及对生物基代替化石燃料需求的增加,结合了醇酸树
                 脂生物基含量高、空气氧化交联以及丙烯酸树脂干燥快、硬度高等优点的水性醇酸-丙烯酸杂化树脂
                 已被广泛研究。为了给从事水性醇酸-丙烯酸杂化树脂开发的研究人员提供参考,文章介绍了国内
                 外水性醇酸-丙烯酸杂化树脂制备方法,主要包括物理共混法、接枝共聚法和局部酯化缩聚法;同时
                 评价了各种水性醇酸-丙烯酸杂化树脂的制备方法。最后就发展性价比高的水性醇酸-丙烯酸杂化
                 树脂制备方法提出了建议,如可重点发展物理共混法制备醇酸二级分散体和丙烯酸一级分散体的杂
                 化共混物以及溶液接枝共聚法制备丙烯酸接枝改性醇酸二级分散体。
                     关键词:水性树脂;醇酸树脂;丙烯酸树脂;杂化树脂

                     中图分类号:TQ637. 81  文献标志码:A  文章编号:0253-4312(2024)07-0083-06
                     doi:10. 12020/j. issn. 0253-4312. 2023-412
                      Progress in the Preparation of Waterborne Alkyd-acrylic
                                                     Hybrid Resin



                                                  1
                                        1
                                                                                   1,2
                                                                  1,2
                         ZHANG Yuchen ,LIU Ren ,DING Yongbo ,QIAO Yongluo ,SHEN Liang             1,2
                (1. The  epartment of Coatings and Polymeric Materials,School of Chemistry and Chemical Engineering,iangxi
                                                                                                     J
                 Science & Technology Normal University,Nanchang   330013,China;2. Jiangxi Provincial Engineering Research
                                      Center for Waterborne Coatings,Nanchang   330013,China)
                      Abstract:Waterborne alkyd-acrylic hybrid resins that combine the benefits of alkyd resin’
                                                                                                          s
                 high  bio-based  content,air-oxidation  cross-linking  and  acrylic  resin’s  fast  drying,high
                 hardness. Along  with  the  current  increase  in  environmental  awareness  and  the  increasing
                 demand for bio-based alternatives to fossil fuels,waterborne alkyd-acrylic hybrid resin had

                 been  widely  investigated. In  order  to  provide  reference  for  researchers  engaged  in  the
                 development  of  waterborne  alkyd-acrylic  hybrid  resin,he  article  introduced  domestic  and
                                                                        t
                 foreign  methods  for  the  preparation  of  waterborne  alkyd-acrylic  hybrid  resin,which  mainly
                 included  physical  mixing  method,graft  co-polymerization  method,and  local  condensation

                 method. Meanwhile,he  various  methods  mentioned  above  for  the  preparation  of  waterborne
                                     t
                 alkyd-acrylic hybrid resin were also evaluated. Finally,suggestions were put forward for the
                                                                                  s
                 future development trend of waterborne alkyd-acrylic hybrid resin,uch as physical blending
             *通信作者
             本文规范引用格式:
             张宇辰,刘仁,丁永波,等. 水性醇酸-丙烯酸杂化树脂制备的研究进展[J]. 涂料工业,2024,54(7):83-88.
             ZHANG  Y  C,LIU  R,DING  Y  B,t al. Progress in the preparation of waterborne alkyd-acrylic hybrid resin[J]. Paint & Coatings Industry,2024,54(7):
                                    e
             83-88.
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