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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Influence of Al3Ni crystallisation origin particles on hot deformation behaviour of aluminium based alloys
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Influence of Al3Ni crystallisation origin particles on hot deformation behaviour of aluminium based alloys

机译:Al3NI结晶原点粒子对铝基合金热变形行为的影响

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Binary Al-Ni, Al-Mg and ternary Al-Mg-Ni alloys containing various dispersions and volume fraction of second-phase particles of crystallisation origin were compressed in a temperature range of 200-500 degrees C and at strain rates of 0.1, 1, 10, 30 s(-1) using the Gleeble 3800 thermomechanical simulator. Verification of axisymmetric compression tests was made by finite-element modelling. Constitutive models of hot deformation were constructed and effective activation energy of hot deformation was determined. It was found that the flow stress is lowered by decreasing the Al3Ni particle size in case of a low 0.03 volume fraction of particles in binary Al-Ni alloys. Intensive softening at large strains was achieved in the alloy with a 0.1 volume fraction of fine Al3Ni particles. Microstructure investigations confirmed that softening is a result of the dynamic restoration processes which were accelerated by fine particles. In contrast, the size of the particles had no influence on the flow stress of ternary Al-Mg-Ni alloy due to significant work hardening of the aluminium solid solution. Atoms of Mg in the aluminium solid solution significantly affect the deformation process and lead to the growth of the effective activation energy from 130-150 kJ/mol in the binary Al-Ni alloys to 170-190 kJ/mol in the ternary Al-Mg-Ni alloy.
机译:含有各种分散体的二元al-Ni,Al-Mg和三元Al-Mg-Ni合金在200-500℃的温度范围内并在0.1,1的菌株率下压缩含有各种分散体和第二相颗粒的分数和体积分数。 ,10,30 s(-1)使用Gleeble 3800热机械模拟器。通过有限元建模进行轴对称压缩测试的验证。构成型号的热变形模型,并确定了热变形的有效活化能。发现在二元Al-Ni合金中低0.03体积颗粒的情况下降低Al3Ni粒度,降低了流量应力。在具有0.1体积分数的细Al3Ni颗粒的合金中实现了大菌株的强烈软化。微观结构研究证实,软化是由细颗粒加速的动态恢复过程的结果。相反,由于铝固溶溶液的显着工作硬化,颗粒的尺寸对三元Al-Mg-Ni合金的流量应力没有影响。铝固溶体中的Mg原子显着影响变形过程,并导致在二元al-Ni合金中从130-150kJ / mol中的有效活化能量的生长在三元al-mg中的170-190kJ / mol -NI合金。

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