首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Improving High-Temperature Tensile and Low-Cycle Fatigue Behavior of Al-Si-Cu-Mg Alloys Through Micro-additions of Ti, V, and Zr
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Improving High-Temperature Tensile and Low-Cycle Fatigue Behavior of Al-Si-Cu-Mg Alloys Through Micro-additions of Ti, V, and Zr

机译:通过微量添加Ti,V和Zr改善Al-Si-Cu-Mg合金的高温拉伸和低循环疲劳行为

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摘要

High-temperature tensile and low-cycle fatigue tests were performed to assess the influence of micro-additions of Ti, V, and Zr on the improvement of the Al-7Si-1Cu-0.5Mg (wt pct) alloy in the as-cast condition. Addition of transition metals led to modification of microstructure where in addition to conventional phases present in the Al-7Si-1Cu-0.5Mg base, new thermally stable micro-sized Zr-Ti-V-rich phases Al21.4Si4.1Ti3.5VZr3.9, Al6.7Si1.2TiZr1.8, Al2.8Si3.8V1.6Zr, and Al5.1Si35.4Ti1.6Zr5.7Fe were formed. The tensile tests showed that with increasing test temperature from 298 K to 673 K (25 A degrees C to 400 A degrees C), the yield stress and tensile strength of the present studied alloy decreased from 161 to 84 MPa and from 261 to 102 MPa, respectively. Also, the studied alloy exhibited 18, 12, and 5 pct higher tensile strength than the alloy A356, 354 and existing Al-Si-Cu-Mg alloy modified with additions of Zr, Ti, and Ni, respectively. The fatigue life of the studied alloy was substantially longer than those of the reference alloys A356 and the same Al-7Si-1Cu-0.5Mg base with minor additions of V, Zr, and Ti in the T6 condition. Fractographic analysis after tensile tests revealed that at the lower temperature up to 473 K (200 A degrees C), the cleavage-type brittle fracture for the precipitates and ductile fracture for the matrix were dominant while at higher temperature fully ductile-type fracture with debonding and pull-out of cracked particles was identified. It is believed that the intermetallic precipitates containing Zr, Ti, and V improve the alloy performance at increased temperatures.
机译:进行了高温拉伸和低周疲劳试验,以评估微量的Ti,V和Zr添加对铸态Al-7Si-1Cu-0.5Mg(wt pct)合金的改进的影响。健康)状况。过渡金属的添加导致微观结构的改变,除了在Al-7Si-1Cu-0.5Mg碱中存在常规相之外,新的热稳定的富Zr-Ti-V微米级微细相Al21.4Si4.1Ti3.5VZr3也是如此。参照图9,形成Al6.7Si1.2TiZr1.8,Al2.8Si3.8V1.6Zr和Al5.1Si35.4Ti1.6Zr5.7Fe。拉伸试验表明,随着试验温度从298 K升高到673 K(25 A摄氏度到400 A摄氏度),本研究合金的屈服应力和拉伸强度从161降低到84 MPa,从261降低到102 MPa。 , 分别。同样,被研究的合金表现出比合金A356、354和分别添加Zr,Ti和Ni改性的现有的Al-Si-Cu-Mg合金高的拉伸强度18、12和5 pct。所研究合金的疲劳寿命明显长于参比合金A356和相同的Al-7Si-1Cu-0.5Mg基体的疲劳寿命,并在T6条件下少量添加了V,Zr和Ti。拉伸试验后的分形分析表明,在较低的温度(最高473 K(200 A摄氏度)下,析出物的裂解型脆性断裂和基体的延性断裂占主导,而在高温下,全延性型断裂并脱胶。并且鉴定出破裂颗粒的拉出。据信,含有Zr,Ti和V的金属间沉淀物在升高的温度下改善了合金性能。

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