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Porous poly-ether ether ketone (PEEK) manufactured by a novel powder route using near-spherical salt bead porogens:characterisation and mechanical properties

机译:多孔聚醚醚酮(PEEK)通过新颖的粉末路线使用近球形盐珠成孔剂制备而成:表征和机械性能

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摘要

Porous PEEK structures with approximately 85% open porosity have been made using PEEK-OPTIMAtextregistered powder and a particulate leaching technique using porous, near-spherical, sodium chloride beads. A novel manufacturing approach is presented and compared with a traditional dry mixing method. Irrespective of the method used, the use of near-spherical beads with a fairly narrow size range results in uniform pore structures. However the integration, by tapping, of fine PEEK into a pre-existing network salt beads, followed by compaction and textquotedblleftsinteringtextquotedblright, produces porous structures with excellent repeatability and homogeneity of density; more uniform pore and strut sizes; an improved and predictable level of connectivity via the formation of textquotedblleftwindowstextquotedblright between the cells; faster salt removal rates and lower levels of residual salt. Although tapped samples show a compressive yield stress N1 MPa and stiffness N30 MPa for samples with 84% porosity, the presence of windows in the cell walls means that tapped structures show lower strengths and lower stiffnesses than equivalent structures made by mixing.
机译:使用PEEK-OPTIMAtextregistered粉末和使用多孔,近球形氯化钠珠粒的微粒浸出技术,制得了具有约85%孔隙率的多孔PEEK结构。介绍了一种新颖的制造方法,并将其与传统的干混方法进行了比较。不管使用哪种方法,使用具有相当窄的尺寸范围的近球形珠粒都会导致均匀的孔结构。然而,通过轻敲将精细的PEEK整合到预先存在的网状盐珠中,然后进行压实和文字“ bleftsintering”文字“ bright”的整合,产生了具有出色的可重复性和密度均匀性的多孔结构;更加均匀的孔和支柱尺寸;通过在单元格之间形成文本“ blleftwindows”文本“ blright”,改善了连接的水平和可预测性;更快的除盐速度和更低的残留盐含量。尽管攻丝样品的孔隙度为84%,样品的压缩屈服应力为N1 MPa,刚度为N30 MPa,但孔壁中存在窗口意味着,攻丝结构的强度和刚度均低于通过混合制成的等效结构。

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