AZ61 含量对 PA6-AZ61 镁合金机械强度和表面硬度的影响

Y. Tanoto, Song-Jeng Huang
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摘要

在这项研究中,使用压缩成型器制造了聚酰胺 6 (PA6)-AZ61 镁合金复合材料和纯 PA6。基体和增强材料均以粉末形式制备。使用行星式球磨机混合 PA6 和 AZ61 微粉。研究了不同比例的 AZ61 对复合材料最终性能的影响。采用 X 射线衍射(XRD)分析和扫描电子显微镜与能量色散 X 射线光谱(SEM-EDS)来验证混合过程的均匀性,并确认原材料和复合材料的成分。结果表明,与原始 PA6 相比,极限拉伸强度(UTS)大幅提高了 48.3%,达到 58 兆帕。而屈服强度(YS)则显著飙升至 49.38 兆帕,提高了 52.9%。此外,PA6-5AZ61 成分的显微硬度值最高,达到 21.162 HV,与未合金化的 PA6 材料相比显著提高了 66.3%。这一结果表明,AZ61 具有改善基体材料性能的潜力。
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The Effect of AZ61 Content on Mechanical Strength and Surface Hardness of PA6-AZ61 Magnesium Alloy
In this study, a Polyamide 6 (PA6)-AZ61 magnesium alloy composite and pure PA6 were fabricated using a compression molding instrument. Both the matrix and reinforcement were prepared in powder form. A planetary ball milling machine was employed to mix the PA6 and AZ61 micro powders. The effects of AZ61 content at different percentage on the final properties of the composite were investigated. X-ray diffraction (XRD) analysis and scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDS) were employed to verify the uniformity of the mixing process and to confirm the composition of both the raw materials and the composite. The result, relative to pristine PA6, the ultimate tensile strength (UTS) demonstrated a substantial increment of 48.3%, reaching 58 MPa. Whereas the yield strength (YS) exhibited a notable surge to 49.38 MPa, constituting a 52.9% enhancement. Additionally, the PA6-5AZ61 composition achieved the highest microhardness value at 21.162 HV, signifying a remarkable 66.3% augmentation compared to the unalloyed PA6 material. This result suggests that AZ61 has the potential to improve the properties of the matrix material.
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