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Microstructure and Properties of Semi-solid ZCuSn10P1 Alloy Processed with an Enclosed Cooling Slope Channel

机译:封闭冷却坡道处理的半固态ZCuSn10P1合金的组织和性能

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Semi-solid ZCuSn10P1 alloy slurry was fabricated by a novel enclosed cooling slope channel (ECSC). The influence of pouring length of ECSC on the microstructures of ZCuSn10P1 alloy semi-solid slurry was studied with an optical microscope an optical microscope (OM), scanning electron microscope (SEM), X-ray diffraction (XRD) and energy dispersive spectrometer (EDS). Liquid squeeze casting and semi-solid squeeze casting were performed under the same forming conditions, and the microstructure and properties were compared. The results show that primary α-Cu phase gradually evolved from dendrites to worm-like or equiaxed grains under the chilling action of the inner wall of the ECSC. The mass fraction of tin in the primary α-Cu phase increased from 5.85 to 6.46 after the ECSC process, and intergranular segregation was effectively suppressed. The finest microstructure can be obtained at 300 mm pouring length of ECSC; the equivalent diameter is 46.6 μm and its shape factor is 0.73. The average ultimate tensile strength and average elongation of semi-solid squeeze casting ZCuSn10P1 alloy reached 417 MPa and 12.6%, which were improved by 22% and 93%, respectively, as compared to that of liquid squeeze casting.
机译:半固态ZCuSn10P1合金浆料是通过新型封闭式冷却坡道(ECSC)制成的。用光学显微镜,光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射(XRD)和能谱仪(EDS)研究了ECSC的浇注长度对ZCuSn10P1合金半固态浆料微观组织的影响。 )。在相同的成型条件下进行液态挤压铸造和半固态挤压铸造,并比较其组织和性能。结果表明,在ECSC内壁的冷却作用下,初生α-Cu相逐渐从树枝状转变为蠕虫状或等轴晶。 ECSC处理后,初级α-Cu相中锡的质量分数从5.85增加到6.46,并且有效抑制了晶间偏析。在ECSC浇注长度为300 mm时可获得最佳的微观结构;当量直径为46.6μm,形状因数为0.73。半固态挤压铸造ZCuSn10P1合金的平均极限抗拉强度和平均伸长率分别达到417 MPa和12.6%,与液态挤压铸造相比分别提高了22%和93%。

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