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Effect of second phase precipitation behavior on mechanical properties of casting Al-Cu alloys

机译:第二相析出行为对铸造Al-Cu合金力学性能的影响

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The effect of the second phase precipitation behavior on the mechanical properties and fracture behavior of the modified casting Al-Cu alloys was investigated.The tensile strength of the alloys increases firstly and then decreases due to the appearance of θ' precipitation phases,which increases firstly and then become coarser with the aging time increasing from 10 h to 20 h at 155 °C.The strength of the alloys reaches the peak,resulting from and θ' precipitation phases,and decreases due to phases becoming coarser and θ' precipitation decreasing with the aging time increasing from 10 h to 20 h at 165 °C. phase becoming coarser and θ' precipitation decreasing result in the strength of the alloys drastically decreasing after aging at 175 °C for 20 h.The ductility remains high level with increasing aging time at 155 °C.The ductility irregularly changes as aging time prolongs at 165 °C.The ductility is very low and at the same time gradually decreases with increasing aging time at 175 °C.The Al-Cu alloy with a promising combination of tensile strength and ductility of about 474 MPa and 12.0% after aging at 165 °C for 10 h is due to a dense,uniform distribution of precipitation phases together with a heterogeneous distribution of θ' precipitations.
机译:研究了第二相析出行为对改性铸造Al-Cu合金力学性能和断裂行为的影响。合金的拉伸强度由于出现了θ'析出相而先升高后降低。然后在155°C下时效时间从10 h增加到20 h时,合金的强度逐渐变粗。合金的强度达到θ'析出相的峰值,并由于相变粗和θ'析出度降低而降低。老化时间在165°C时从10 h增加到20 h。在175°C时效20 h后,相变粗,θ'沉淀减少,导致合金强度急剧下降。155°C时效时间延长,延展性保持较高水平。随着时效时间的延长,延展性不规则地变化。 165°C。延展性非常低,并且同时随着175°C时效时间的增加而逐渐降低.Al-Cu合金具有良好的拉伸强度和延展性,有望在约474 MPa的强度下结合,并在165°C时效后达到12.0% °C持续10小时是由于沉淀相的致密均匀分布以及θ'沉淀的不均匀分布所致。

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