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Effect of a novel sequential motion compaction process on the densification of multi-layer spray deposited 7090/SiCp composite

机译:新型顺序运动压实工艺对多层喷涂沉积7090 / SiCp复合材料致密化的影响

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摘要

In the present study, a large dimension Al-10.15Zn-3.6Mg-1.8Cu-0.15Ni-0.3Zr/SiCp composite was synthesized by the multi-layer spray deposition process, then densities by a novel sequential motion compaction technique. The microstructures and mechanical properties of the multi-layer spray-deposited Al-10.15Zn-3.6Mg-1.8Cu-0.15Ni-0.3Zr/SiCp composite were studied by optical microscopy, scanning electron microscopy, and tensile tests before and after densities. The experimental results showed that sequential motion compaction technique can be used to fully density sample with large dimensions and difficult to further processing by the traditional techniques. This technique can greatly improve the microstructures and mechanical properties of the composite. The pores in the composite are elongated and closed through model pressing at the jointed effect of huge hydrostatic pressure and shearing stress. After pressed, SiC particles in the composite were broken and redistributed. Compared with the as-spray-deposited composite, the tensile properties of compaction processed composite have a great improvement not only in transverse direction but also in longitudinal direction. When the thickness reduction is about 40%, relative densities approach the theoretical density, and the actual relative density is 91.76%. The relative theoretical density is 93%.
机译:在本研究中,通过多层喷涂沉积工艺合成了大尺寸的Al-10.15Zn-3.6Mg-1.8Cu-0.15Ni-0.3Zr / SiCp复合材料,然后通过一种新型的顺序运动压实技术合成了其密度。通过光学显微镜,扫描电子显微镜以及密度前后的拉伸试验研究了多层喷涂沉积的Al-10.15Zn-3.6Mg-1.8Cu-0.15Ni-0.3Zr / SiCp复合材料的组织和力学性能。实验结果表明,顺序运动压缩技术可用于大尺寸样品的全密度采样,传统技术难以对其进行进一步处理。该技术可以极大地改善复合材料的微观结构和机械性能。在巨大的静水压力和剪切应力的共同作用下,通过模型压制将复合材料中的孔拉长并封闭。压制后,复合材料中的SiC颗粒破碎并重新分布。与喷镀沉积的复合材料相比,压实处理的复合材料的拉伸性能不仅在横向上而且在纵向上都有很大的提高。当厚度减少约40%时,相对密度接近理论密度,而实际相对密度为91.76%。相对理论密度为93%。

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