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Microstructures and Properties of AlMgTi-Based Metal-Intermetallic Laminate Composites by Dual-Steps Vacuum Hot Pressing

机译:双步真空热压的基于Almgti基金属层压材料复合材料的微观结构和性能

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摘要

AlMgTi-based metal–intermetallic laminated composites were successfully fabricated through an innovative dual-step vacuum hot pressing. First, this study prepares the AlTi-based laminated composites by vacuum hot pressing at 650 °C. Then, the researchers place the Mg-Al-1Zn (AZ31) magnesium alloy between the prepared AlTi-based laminated composites at 430 °C for hot pressing. This study investigates the microstructure, phase composition, and microhardness distribution across interfaces of the intermetallics and metal. A multilayer phase (Mg17Al12, Al3Mg2, and transition layers) structure can be found from the diffusion layers between Al and AZ31. The microhardness of the material presents a wavy distribution in the direction perpendicular to the layers; the maximum can be up to 600.0 HV0.2 with a minimum of 28.7 HV0.2 The microhardness gradient of an AlMgTi-based composite is smoother due to the different microhardness of the layers, and reduces the interface stress concentration. The bending strength of AlMgTi-based composites can reach 265 MPa, and the specific strength is 105 × 103 Nm/kg, higher than AlTi-based composites.
机译:通过创新的双步真空热压成功制造了基于AlmgTI的金属化金属化层压复合材料。首先,该研究在650℃下真空热压制备基于Alti的层压复合材料。然后,研究人员将Mg-Al-1ZN(AZ31)镁合金在430℃下在制备的Alti基层叠复合材料之间放置以进行热压。本研究研究了金属间化合物和金属界面的微观结构,相位组成和显微硬度分布。可以从Al和AZ31之间的扩散层找到多层相(Mg17Al12,Al3MG2和转换层)结构。该材料的显微硬度在垂直于层的方向上呈现波状分布;最大可高达600.0 HV0.2,最小值为28.7 HV0.2。由于层的不同的显微硬度,基于AlmgTI的复合材料的显微硬度梯度是光滑的,并且降低界面应力集中。基于AlmgTI基复合材料的弯曲强度可以达到265MPa,比强度为105×103nm / kg,高于Ali基复合材料。

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