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首页> 外文期刊>Metals and Materials International >Interfacial Layers Evolution During Annealing in Ti-Al Multi-Laminated Composite Processed Using Hot Press and Roll Bonding
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Interfacial Layers Evolution During Annealing in Ti-Al Multi-Laminated Composite Processed Using Hot Press and Roll Bonding

机译:使用热压机和辊粘合的Ti-Al多层压复合材料退火过程中的界面层演变

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Ti-Al multi-laminated composites have great potential in high strength and low weight structures. In the present study, tri-layer Ti-Al composite was synthesized by hot press bonding under 40 MPa at 570 degrees C for 1 h and subsequent hot roll bonding at about 450 degrees C. This process was conducted in two accumulative passes to 30% and to 67% thickness reduction in initial and final passes, respectively. Then, the final annealing treatments were done at 550, 600, 650, 700 and 750 degrees C for 2, 4 and 6 h. Investigations on microstructural evolution and thickening of interfacial layers were performed by scanning electron microscopes, energy dispersive spectrometer, X-ray diffraction and micro-hardness tests. The results showed that the thickening of diffusion layers corresponds to amount of deformation. In addition to thickening of the diffusion layers, the thickness of aluminum layers decreased and after annealing treatment at 750 degrees. for 6 h the aluminum layers were consumed entirely, which occurred because of the enhanced interdiffusion of Ti and Al elements. Scanning electron microscope equipped with energy dispersive spectrometer showed that the sequence of interfacial layers as Ti3Al-TiAl-TiAl2-TiAl3 which are believed to be the result of thermodynamic and kinetic of phase formation. Micro-hardness results presented the variation profile in accordance with the sequence of intermetallic phases and their different structures.
机译:Ti-Al多层叠复合材料具有很大的高强度和低重量结构的潜力。在本研究中,通过在40MPa下在570℃下以40MPa的热压键合合成三层Ti-Al复合物,并在约450℃下随后的热辊键合。该方法以两次累积通行证进行至30%初始和最终通量的厚度降低67%。然后,最终退火处理在550,600,650,700和750℃下进行2,4和6小时。通过扫描电子显微镜,能量分散光谱仪,X射线衍射和微硬度试验来研究对界面层的微观结构演化和增稠的研究。结果表明,扩散层的增厚对应于变形量。除了扩散层的增厚之外,铝层的厚度降低,在750度下退火处理后。对于6 H,完全消耗铝层,这发生了由于Ti和Al元素的增强的相互扩散而发生。配备有能量色散光谱仪的扫描电子显微镜表明,界面层的序列作为Ti3Al-Tial2-TiAl3被认为是热力学和相形成动力学的结果。根据金属间相的序列及其不同的结构,微硬度结果呈现了变化曲线。

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