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Effect of interfacial modification on metal fiber filled polypropylene composites and property balance

机译:界面改性对金属纤维填充聚丙烯复合材料的影响及性能平衡

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摘要

Mechanical properties and electrical conductivity of discontinuous stainless steel fiber (SSF) filler polypropylene (PP) composites were considered as candidates for shielding electromagnetic interference (EMI) applications. In order to improve the unsatisfied impact resistance, surface treatments of SSF and modified PP were introduced. By means of a microdroplet pull-out test, polyproylene grafted maleic anhydride copolymer (PP-g-MAH) was found to be able to enhance the poor interfacial adhesion between fiber and matrix. On this basis, PP-g-MAH was used to prepare conventional composites, and the macromechanical measurements showed evidence that PP-g-MAH helped increase both flexural and impact strength of the composites. However, the good affinity of PP-g-MAH for SSF reduced composite conductivity accordingly. Finally, blends of PP and PP-g-MAH proved to be a solution for the problem, i.e., the impact strength was increased significantly while acceptable electrical resistivity was maintained.
机译:不连续的不锈钢纤维(SSF)填料聚丙烯(PP)复合材料的机械性能和电导率被认为是屏蔽电磁干扰(EMI)应用的候选材料。为了改善不满意的抗冲击性,引入了SSF和改性PP的表面处理。通过微滴拉出试验,发现聚丙烯接枝的马来酸酐共聚物(PP-g-MAH)能够增强纤维与基质之间不良的界面粘合性。在此基础上,将PP-g-MAH用于制备常规复合材料,宏观力学测量结果表明,PP-g-MAH可帮助提高复合材料的弯曲强度和冲击强度。然而,PP-g-MAH对SSF的良好亲和力相应地降低了复合材料的电导率。最后,PP和PP-g-MAH的共混物被证明是解决该问题的方法,即,在保持可接受的电阻率的同时,冲击强度显着提高。

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