首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Effects of die angle on microstructures and mechanical properties of AZ31 magnesium alloy processed by equal channel angular pressing
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Effects of die angle on microstructures and mechanical properties of AZ31 magnesium alloy processed by equal channel angular pressing

机译:模具角对等通道角挤压AZ31镁合金组织和力学性能的影响。

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摘要

AZ31 Mg alloy was prepared through equal channel angular pressing (ECAP) by Bc route in two different dies, in which the intersecting angles between channels are 90 deg and 120 deg respectively. Microstructures and tensile behaviors of the processed material at room temperature were investigated. The 90 deg die could provide more effective grain refinement in one pass of ECAP. But after multiple passes of deformation and when the total Strain reached about 8, the alloy processed by the two dies acquired tiny homogeneous equiaxed grains with a mean size of 1 - 5 (mu)m and possessed similar mechanical properties with a large ductility of above 45 percent and a yield strength of 100 MPa, which are much different from the ductility of 18 percent and the yield strength of 200 MPa for the conventionally extruded material. The X-ray diffraction results show a great difference on peak of the basal plane (0001) between sections perpendicular and parallel to the extrusion direction for the conventionally extruded alloy but the difference lowers much for the ECAP processed alloy. The ultra-fine-grain microstructure and the texture or scattered orientation of the basal plane (0001) has the great effect on the alloy's mechanical behavior.
机译:AZ31镁合金是通过等通道角挤压(ECAP)通过Bc工艺在两个不同的模具中制备的,其中通道之间的相交角分别为90度和120度。研究了加工材料在室温下的微观结构和拉伸行为。 90度模具可以在一次ECAP中提供更有效的晶粒细化。但是经过多次变形之后,当总应变达到约8时,由两个模具加工的合金获得了平均尺寸为1-5μm的细小均质等轴晶粒,并具有相似的机械性能,且延展性大于1。 45%的屈服强度和100 MPa的屈服强度,与常规挤压材料的18%的延展性和200 MPa的屈服强度有很大不同。 X射线衍射结果表明,与常规挤压合金垂直和平行于挤压方向的截面之间,在基面(0001)的峰上有很大的差异,但对于ECAP处理的合金,该差异降低了很多。基体(0001)的超细晶粒组织和织构或散布方向对合金的机械性能有很大影响。

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