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Some aspects on strain hardening behaviour in three dimensions of aluminium-iron powder metallurgy composite during cold upsetting

机译:铝铁粉末冶金复合材料三维冷up过程中应变硬化行为的某些方面

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Strain hardening is an important phenomenon, which is required to study the plastic deformation of any material and also it is an important parameter in the study of workability criteria of metals. The present investigation has been undertaken to evaluate the strain hardening phenomenon experienced during the cold working of sintered aluminium-iron powder metallurgy composite performs during upsetting operation under various stress state conditions namely uniaxial, plane and triaxial. Sintered performs of three different aspect ratios namely 0.44, 0.45 and 0.75 with two different per cent of iron contents (0 percent and 2 percent) and with three different iron particle sizes namely -53 to + 45 mum, -76 to + 63 mum and -106 to + 90 mum were prepared and cold forged. The strain hardening exponent 'n' and the strength coefficient 'K' were obtained for each aspect ratio and iron particle sizes. It is found that there is a greater change in the values of 'n' and 'K' for the different addition of iron powders and also for the different iron particle sizes for different aspect ratios and for different stress state conditions.
机译:应变硬化是重要的现象,是研究任何材料的塑性变形所必需的,也是研究金属可加工性标准的重要参数。进行本研究以评估在各种应力​​状态条件(即单轴,平面和三轴)下up锻操作过程中烧结铝铁粉末冶金复合材料的冷加工过程中所经历的应变硬化现象。具有三种不同的长宽比(即0.44、0.45和0.75)的烧结坯料,其中铁含量的百分比分别为2%(0%和2%),铁的三种粒径分别为-53至+ 45微米,-76至+ 63微米,以及准备了-106至+ 90妈妈并进行了冷锻。对于每个长宽比和铁颗粒尺寸,获得了应变硬化指数“ n”和强度系数“ K”。已经发现,对于不同的铁粉添加量以及对于不同的长宽比和不同的应力状态条件,对于不同的铁颗粒尺寸,“ n”和“ K”值的变化更大。

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