An orthogonal test was conducted to investigate the influence of technical parameters of squeeze casting on the strength and ductility of AISigCu3 alloys. The experimental results showed that when the forming pressure...An orthogonal test was conducted to investigate the influence of technical parameters of squeeze casting on the strength and ductility of AISigCu3 alloys. The experimental results showed that when the forming pressure was higher than 65 MPa, the strength (ab) of A1Si9Cu3 alloys decreased with the forming pressure and pouring temperature increasing, whereas ab increased with the increase of filling velocity and mould preheating temperature. The ductility (6) by alloy was improved by increasing the forming pressure and filling velocity, but decreased with pouring temperature increasing. When the mould preheating temperature increased, the ductility increased first, and then decreased. Under the optimized parameters of pouring temperature 730 ℃, forming pressure 75 MPa, filling velocity 0.50 m/s, and mould preheating temperature 220 ℃, the tensile strength, elongation, and hardness of A1Si9Cu3 alloys obtained in squeeze casting were improved by 16.7%, 9.1%, and 10.1%, respectively, as compared with those of sand castings.展开更多
用HP4294A型阻抗分析仪测量了经不同温度预退火后再540℃退火的Fe73.5Cu1Nb3S i13.5B9纳米晶合金薄带的巨磁阻抗,并结合XRD衍射图谱和AFM图谱,研究了预退火对纳米晶介观结构的影响.结果发现,200℃、300℃和400℃预退火处理40 m in对随后...用HP4294A型阻抗分析仪测量了经不同温度预退火后再540℃退火的Fe73.5Cu1Nb3S i13.5B9纳米晶合金薄带的巨磁阻抗,并结合XRD衍射图谱和AFM图谱,研究了预退火对纳米晶介观结构的影响.结果发现,200℃、300℃和400℃预退火处理40 m in对随后540℃退火的Fe73.5Cu1Nb3S i13.5B9薄带-αFe(S i)纳米晶介观结构产生了影响,颗粒团聚优势明显减弱,横向各向异性场减小,巨磁阻抗比得到了显著的提高.展开更多
基金Project(11C26211304055) supported by Small to Medium Enterprise Innovation Fund
文摘An orthogonal test was conducted to investigate the influence of technical parameters of squeeze casting on the strength and ductility of AISigCu3 alloys. The experimental results showed that when the forming pressure was higher than 65 MPa, the strength (ab) of A1Si9Cu3 alloys decreased with the forming pressure and pouring temperature increasing, whereas ab increased with the increase of filling velocity and mould preheating temperature. The ductility (6) by alloy was improved by increasing the forming pressure and filling velocity, but decreased with pouring temperature increasing. When the mould preheating temperature increased, the ductility increased first, and then decreased. Under the optimized parameters of pouring temperature 730 ℃, forming pressure 75 MPa, filling velocity 0.50 m/s, and mould preheating temperature 220 ℃, the tensile strength, elongation, and hardness of A1Si9Cu3 alloys obtained in squeeze casting were improved by 16.7%, 9.1%, and 10.1%, respectively, as compared with those of sand castings.