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Plasticized and reinforced poly(methyl methacrylate) obtained by a dissolution-dispersion process for single point incremental forming: Enhanced formability towards the fabrication of cranial implants

机译:通过用于单点增量成型的溶解分散法得到的塑化和增强聚(甲基丙烯酸甲酯):增强了朝向颅植入物的制造的可成形性

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摘要

A plasticized and reinforced material made of poly(methyl methacrylate), PMMA, was developed via an effective dissolution-dispersion method to enhance its formability in Single Point Incremental Forming process (SPIF). Different contents of triacetine (plasticizer), and Cloisite 30B nanoclay (C-30B) used as reinforcement, were added to PMMA based on a factorial design of experiments with center points. A synergistic effect between triacetine and C-30B was evidenced during the SPIF processing of the PMMA composite material. The addition of triacetine produced the relaxation and mobility of polymer chains, while C-30B improved the mechanical properties without affecting the formability. The transfer of stresses during SPIF of cone-shaped parts was enhanced due to a mechanical interlocking effect between the nanoclay and the PMMA chains, in addition to the formation of intercalated nanostructures within the clay galleries. The potential application of these PMMA-based composite materials for manufacturing cranial implants is addressed in this work as well.
机译:通过有效的溶解分散方法开发由Poly(甲基丙烯酸甲酯),PMMA制成的增塑和增强材料,以提高其单点增量成型过程(SPIF)中的成形性。基于中心点的实验的因子设计,将用作增强物的三乙酰式(增塑剂)和Cloisite 30B纳米粘土(C-30B)的不同含量。在PMMA复合材料的SPIF加工过程中,可以在三乙胺和C-30B之间进行协同效应。添加三乙胺的添加产生了聚合物链的弛豫和迁移率,而C-30b改善了机械性能而不影响成形性。由于纳米粘土和PMMA链之间的机械互锁效应,除了形成粘土术中的插层纳米结构之外,纳米粘土和PMMA链之间的机械互锁效应,应增强应力在锥形部件的SPIF中的转移。这些PMMA的制造颅植入物的潜在应用也在这项工作中得到解决。

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