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Semi-solid high pressure die casting of metal matrix composites produced by liquid state processing

机译:液态加工生产的金属基质复合材料的半固体高压压铸

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There are two main technologies for manufacturing of particulate reinforced metal matrix composites (MMC), solid state and liquid state processing. The great challenge of producing cast metal matrix composites is to prevent agglomeration of particulates. This tendency is more pronounced with decreasing the particulate size to fine micro- and nano size. A method for producing MMC was successfully implemented for mixing hybrid, nano and low micron sized, reinforcing particles in an aluminium alloy matrix. The hybrid SiC particles were produced by milling 3μm to 5μm SiC particles to a particle size range between 2.5μm and 150 nm. The hybrid particles were mixed with A356 aluminium alloy under combined magneto-hydrodynamic (MHD) and mechanical stirring. The composite was then transferred to a High Pressure Die Casting (HPDC) machine in the semi-solid state. The micron size particles were found to be predominantly in the intergranular eutectic while the nano-particles were predominantly in the primary a-Al grains. Increased ultimate tensile strength, yield strength and hardness were achieved for the new cast metal matrix hybrid component (MMHC) alloy.
机译:制造颗粒增强金属基质复合材料(MMC),固态和液态加工有两种主要技术。产生铸造金属基质复合材料的巨大挑战是防止颗粒的聚集。这种趋势更加明显,将颗粒尺寸减少到细微的微型和纳米尺寸。成功实施了生产MMC的方法,用于混合杂交,纳米和低微米尺寸的加强颗粒,在铝合金基质中加固颗粒。通过将3μm至5μm的SiC颗粒研磨至2.5μm和150nm之间的粒度产生杂化SiC颗粒。将杂交颗粒与A356铝合金混合在组合的磁动力学(MHD)和机械搅拌下。然后将复合材料转移到半固态中的高压压铸(HPDC)机器。发现微米尺寸颗粒主要在晶间共晶中主要,而纳米颗粒主要在初级A-Al颗粒中。为新的铸造金属基质杂化组分(MMHC)合金实现了增加的极限拉伸强度,屈服强度和硬度。

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