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-  2015 

改性马来酸酐橡胶接枝物增韧尼龙6的制备及表征
Preparation and characterization of modified maleic anhydride graft rubber toughened nylon 6

DOI: 10.13801/j.cnki.fhclxb.20141204.001

Keywords: 改性马来酸酐,橡胶接枝物,尼龙6,分散性,冲击强度
modified maleic anhydride
,grafted rubbers,nylon 6,dispersion,impact strength

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Abstract:

为了促进橡胶接枝物与尼龙6(PA6)的相容性并提高增韧效果,利用马来酸酐和对苯二胺合成了一种含酰胺键的二元羧酸, 命名为对苯马来二酰胺二酸(改性马来酸酐, MDMA), 并将MDMA接枝到三元乙丙橡胶(EPDM)上, 制备出不同接枝率的改性马来酸酐橡胶接枝物(EPDM-g-MDMA), 以EPDM-g-MDMA与PA6质量比为30:70, 通过共混挤出制备了含不同接枝率接枝物的EPDM-g-MDMA/PA6共混物。通过核磁共振和红外光谱对MDMA进行了测试, 表明成功合成了所需要的二元羧酸。对共混物进行了相容性测试、DSC、熔融指数(MI)、SEM、拉伸和冲击力学性能测试。结果表明:随着接枝率的增大, 共混物的熔融峰温度略有降低, 其熔体黏度不断增大, 橡胶接枝物在PA6基体中有良好的分散性, 使EPDM-g-MDMA/PA6共混物的冲击强度提高了5.5倍, 说明EPDM-g-MDMA对PA6的增韧效果较为明显。 In order to promote the compatibility between rubber graft and nylon 6 (PA6) and its toughening effect, the anhydride and p-phenylene diamine were used to compound a dicarboxylic acid containing an amide bond and named terephthalic diamide of maleic acid (modified maleic anhydride, MDMA).MDMA was grafted onto ethylene propylene diene monomer(EPDM) to prepare modified maleic anhydride grafted rubbers(EPDM-g-MDMA). EPDM-g-MDMA/PA6 blends containing different graft ratio grafts were prepared when mass ratio of EPDM-g-MDMA to nylon6 (PA6) is 30:70. MDMA was tested by NMR and FTIR for indicating the successful synthesis of the desired dicarboxylic acid. The results of compatibility test, DSC, melting index (MI) test, SEM, tensile and impact mechanical property tests of blends were preformed.Results show that with the graft ratio increasing, the melting peak temperature of the blend is slightly reduced, increasing the melt viscosity.The grafted rubber has good dispersion in PA6 matrix to make the impact strength of EPDM-g-MDMA/PA6 blends increased by 5.5 times, indicating EPDM-g-MDMA toughening PA6 effect is more obvious. 黑龙江省自然科学基金(E201259)

References

[1]  Bucknall C B, Clayton D, Keast W E. Rubber toughening of plastics: 2 creep mechanisms in HIPS/PPO blends[J]. Journal of Materials Science, 1972, 7(12): 1443-1453.
[2]  Zheng X J, He J S. Mechanical performance of LCP/PA6 blends with LCP mcrospheres[J].Acta Materiae Compositae Sinica, 2009, 26(2): 47-53 (in Chinese). 郑学晶, 何嘉松.LCP微球对LCP/尼龙6共混体系力学性能的影响[J].复合材料学报, 2009, 26(2): 47-53.
[3]  Borggreve R J M, Gaymans R J. Impact behaviour of nylon-rubber blends: 4.Effect of the coupling agent, maleic anhydride[J]. Polymer, 1989, 30(2): 63-70.
[4]  Zhu W M, Liu X J. Advanced in study of toughening of nylon 6[J]. Chemical Industry Times, 2005, 19(10): 56-59 (in Chinese). 朱文明, 刘喜军.PA6增韧研究进展[J].化工时刊, 2005, 19(10): 56-59.
[5]  Liu X R, Zhao H Y. Research progress in toughening modification of PA6[J]. Plastics Science and Technology, 2010, 38(6): 87-92 (in Chinese). 刘欣然, 赵海燕.PA6增韧改性研究[J]. 塑料科技, 2010, 38(6): 87-92.
[6]  Bucknall C B, Clayton D. Rubber toughening of plastics: 1 creep mechanisms in HIPS[J]. Journal of Materials Science, 1972, 7(2): 202-210.
[7]  Tanrattanakul V, Sungthong N T, Raksa P C. Rubber toughening of nylon 6 with epoxidized natural rubber[J]. Polymer Testing, 2008, 27(7): 794-800.
[8]  Sun S L, Sun L L, Zhang H X. Effect of interface on brittle-ductile transition and fracture behavior of ABS/PA6 blends[J]. Acta Materiae Compositae Sinica, 2010, 27(4):111-117(in Chinese). 孙树林, 孙丽丽, 张会轩.界面对ABS/PA6共混体系脆韧转变及断裂行为的影响[J].复合材料学报, 2010, 27(4):111-117.
[9]  Lawson D F, Hergenrother W L, Matlock M G. Preparation and characterization of heterophase blends of polycaprolactum and hydrogenated polydines[J]. Journal of Applied Polymer Science, 1990, 39(11-12): 2331-2352.
[10]  Song B, Yang D, Huang R. Study on morphology of disperse phase and properties of PA6/POE/POE-g-MAH[J]. Plastics Science and Technology, 2007, 35(1): 22-26 (in Chinese). 宋波, 杨丹, 黄锐.PA6/POE/POE-g-MAH分散相态与性能研究[J]. 塑料科技, 2007, 35(1): 22-26.
[11]  National Technical Committee on Plastic Products of Standardization Administration of China. GB/T 3682-2000 Determination of the melt mass-flow rate (MFR) and the melt volume-flow rate (MVR) of thermoplastics[S].Beijing:Standards Press of China, 2000 (in Chinese). 全国塑料标准化技术委员会.GB/T 3682-2000 热塑性塑料熔体质量流动速率和熔体体积流动速率的测定[S]. 北京:中国标准出版社, 2000.
[12]  National Technical Committee on Plastic Products of Standardization Administration of China.GB/T 1040.1-2006 Plastics-Determination of tensile properties[S]. Beijing: Standards Press of China, 2006 (in Chinese). 全国塑料标准化技术委员会.GB/T 1040.1-2006 塑料拉伸性能的测定[S]. 北京: 中国标准出版社, 2006.
[13]  National Technical Committee on Plastic Products of Standardization Administration of China.GB/T 1043.1-2008 Plastics-Determination of charpy impact properties[S]. Beijing: Standards Press of China, 2008 (in Chinese). 全国塑料标准化技术委员会.GB/T 1043.1-2008 塑料简支梁冲击性能的测定[S]. 北京: 中国标准出版社, 2008.

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