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Microstructure and mechanical properties of NZ30K alloy by semi-continuous direct chill and sand mould casting processes

机译:NZ30K合金半连续直接冷却和砂型铸造工艺的组织和力学性能。

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The Mg-3.0Nd-0.2Zn-0.4Zr (NZ30K) alloys were prepared by direct-chill casting (DCC) and sand mould casting (SMC) processes, respectively and their microstructures and mechanical properties were investigated. The results indicate that casting method plays a remarkable influence on the microstructure and mechanical properties of as-cast NZ30K alloy. The grain size increases from 35-40 μm in the billets made by the DCC to about 100-120 μm in the billets by the SMC. The aggregation of Mg12Nd usually found at the triple joints of grain boundaries in the billets prepared by SMC while is not observable from the billets by DCC. The tensile strengths and elongations of the billets are 195.2 MPa and 15.5% by DCC, and 162.5 MPa and 3.2% by SMC, respectively. The tensile strength of the alloy by DCC is remarkably enhanced by T6 heat treatment, which reached 308.5 MPa. Fracture surfaces of NZ30K alloy have been characterized as intergranular fracture by SMC and quasi-cleavage fracture by DCC, respectively.
机译:Mg-3.0Nd-0.2Zn-0.4Zr(NZ30K)合金分别采用直接冷铸(DCC)和砂型铸造(SMC)工艺制备,并对其微观组织和力学性能进行了研究。结果表明,铸造方法对铸态NZ30K合金的组织和力学性能有显着影响。晶粒尺寸从DCC生产的坯料中的35-40μm增加到SMC生产的坯料中的约100-120μm。 Mg12Nd的聚集通常出现在SMC制备的坯料晶界的三重连接处,而DCC无法从坯料中观察到。通过DCC,钢坯的拉伸强度和伸长率分别为195.2 MPa和15.5%,对于SMC,其分别为162.5 MPa和3.2%。通过T6热处理,DCC对合金的拉伸强度显着提高,达到了308.5 MPa。 NZ30K合金的断裂表面分别被SMC表征为晶间断裂和DCC准裂解断裂。

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