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Effect of particle size on new constitutive relationship of aluminium-iron powder metallurgy composite during cold upsetting

机译:粒度对冷锻过程中铝铁粉末冶金复合材料新本构关系的影响

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摘要

The strain hardening and the strain rate sensitivity of a material are important phenomenons which are required to be studied during the plastic deformation of any material and these also are the important parameters in the study of workability criteria of the metals. The present investigation has been undertaken to propose the constitutive relationship for porous powder metallurgy parts during upsetting operation. The instantaneous parameters namely the work hardening exponent, the strength coefficient, the density coefficient and the strain rate sensitivity were evaluated during the cold working of sintered aluminium-iron composite with different iron particle sizes and percent of iron content under various stress state conditions, namely, the uniaxial, the plane and the triaxial. Sintered preforms with aspect ratios of 0.44 with different initial preform densities ranging from 0.8 to 0.92 were prepared and cold forged. The variation of above-mentioned parameters with respect to the relative density has been proposed for the different percent of iron content and the various sizes of the iron particles, for different initial preform densities and for the different stress state conditions. Studies showed that there is a tremendous variation in the above parameters for different iron particle sizes and iron contents, for different initial preform densities and for different stress state conditions.
机译:材料的应变硬化和应变速率敏感性是重要的现象,在任何材料的塑性变形过程中都需要研究这些现象,这些也是研究金属可加工性标准的重要参数。已经进行了本研究以提出up粗操作期间多孔粉末冶金零件的本构关系。在不同的应力状态条件下,对不同铁粒度和铁含量的烧结铝铁复合材料进行冷加工时,评估了瞬时参数,即加工硬化指数,强度系数,密度系数和应变率敏感性。 ,单轴,平面和三轴。制备纵横比为0.44,初始密度为0.8到0.92的烧结预成型坯并进行冷锻。对于铁含量的不同百分比和铁颗粒的各种尺寸,对于不同的初始预成型坯密度以及对于不同的应力状态条件,已经提出了上述参数相对于相对密度的变化。研究表明,上述参数对于不同的铁粒度和铁含量,不同的预成型坯密度以及不同的应力状态条件都有很大的差异。

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