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Fabrication of metal matrix composites by friction stir processing with different Particles and processing parameters

机译:通过不同颗粒和工艺参数的搅拌摩擦加工制备金属基复合材料

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摘要

Friction stir processing has been employed to produce metal matrix composites by incorporating reinforcement particles in an Al 5059 matrix. The fabrication method involved repeated friction stir passes on a groove which contained powder reinforcements, with different processing parameters and tool geometries used for each pass. Various particles with sizes from 130 nm to 4.3 μm, and different process parameters were examined to obtain a uniform distribution of particles within the stir zone. Mechanical properties (i.e. tensile and microhardness) of the Al 5059 matrix MMCs reinforced with Al_2O_3, SiC, and B_4C with particle sizes of 130, 250, and 35 nm respectively were compared. Tensile tests showed 11%, 20%, and 38% increases in yield strength compared to the matrix alloy for composites containing nano-scale Al_2O_3, SiC, and B_4C, respectively. When 4.3 μm Al_2O_3 particles were employed, higher volume fractions could be achieved which resulted in a 32% increase in yield strength compared to the base metal. The average microhardness value within the stir zone increased from 85 HV in the base material to a maximum of 170 HV in the B_4C-reinforced composite. Nano-scale particles seem to be more effective to increase hardness by increasing the particle fraction in the produced composites.
机译:通过将增强颗粒掺入Al 5059基体中,采用了摩擦搅拌工艺来生产金属基复合材料。该制造方法涉及在包含粉末增强剂的凹槽上重复摩擦搅拌道次,每次道次使用不同的加工参数和工具几何形状。检查尺寸为130 nm至4.3μm的各种颗粒以及不同的工艺参数,以获得在搅拌区内颗粒的均匀分布。比较了分别用130、250和35 nm的Al_2O_3,SiC和B_4C增强的Al 5059基MMC的机械性能(即拉伸强度和显微硬度)。拉伸试验表明,与基体合金相比,含纳米级Al_2O_3,SiC和B_4C的复合材料的屈服强度分别提高11%,20%和38%。当使用4.3μmAl_2O_3颗粒时,可以获得更高的体积分数,与母材相比,屈服强度提高了32%。搅拌区内的平均显微硬度值从基材中的85 HV增加到B_4C增强复合材料中的最大值170 HV。纳米级颗粒似乎更有效地通过增加所生产复合材料中的颗粒分数来增加硬度。

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