聚醚醚酮粉末床熔融机床多工艺参数优化与成形性能研究

Study on multi-process parameter optimization and forming performance of polyether ether ketone in powder bed fusion

  • 摘要: 聚醚醚酮(polyetheretherketone, PEEK)材料作为典型的轻质高性能聚合物材料,在医疗航空航天等领域获得了大量应用,PEEK材料的增材制造技术可以实现复杂零部件的结构功能一体化制造。针对聚醚醚酮粉末床熔融(powder bed fusion, PBF)系统加工温度高、易翘曲的难题,开展了聚醚醚酮粉末床熔融系统多工艺参数优化与成形性能研究,通过工艺成形过程模拟仿真,揭示了激光功率等核心参数对温度场的影响规律。在成形工艺仿真基础上,开展了成形工艺参数优化试验,建立了工艺参数与拉伸力学性能以及翘曲率的对应关系,获得了拉伸强度86 MPa,断裂伸长率3.7%的优异力学性能,并最终实现了颅骨植入物的高精度增材制造。

     

    Abstract: Polyetheretherketone (PEEK), as a typical lightweight and high-performance polymer, has been extensively applied in medical, aerospace, and other fields. Additive manufacturing (AM) of PEEK enables the integrated fabrication of complex components with both structural and functional characteristics. To address the challenges of high processing temperatures and warpage susceptibility in PEEK powder bed fusion (PBF) systems, multi-process parameter optimization and forming performance were investigated. Through simulation of the forming process, the effects of critical parameters such as laser power on the temperature field were revealed. Based on forming process simulations, experiments were conducted to optimize process parameters, establishing correlations between process parameters, tensile mechanical properties, and warpage rate. Excellent mechanical properties, including a tensile strength of 86 MPa and an elongation at break of 3.7%, were achieved, ultimately enabling high-precision additive manufacturing of cranial implants.

     

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