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国家自然科学基金(5077400)

作品数:7 被引量:40H指数:4
相关作者:毛卫民郑志凯刘志勇吴宗闯陈正周更多>>
相关机构:北京科技大学清华大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划更多>>
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Effect of rheo-diecast process on the mechanical properties of A390 alloy by serpentine channel
2016年
In this paper, the effects of rheo-diecast process parameters and T6 heat treatment on the microstructure and mechanical properties of the rheo-diecasting(RDC) semi-solid A390 alloy prepared through pure copper serpentine channel were investigated. The results indicate that the mechanical properties of the RDC samples change with the pouring temperature and injection pressure. In this case, a lower pouring temperature results in better tensile strength and elongation of the RDC A390 alloy; however, the tensile strength and elongation decrease when the pouring temperature decreases to 660°C. Higher injection pressures result in the improved mechanical properties of the RDC A390 alloy. To some extent, T6 heat treatment improves the tensile strength and ductility of the RDC A390 alloy compared to those of the non-heat treated alloy. However, when the pouring temperature and injection pressure are greater than 670°C and 70 MPa, respectively, the mechanical properties are sharply diminished.
Kunhyok RiWei-min MaoZhi-kai ZhengMyongsik KimYongho Sin
关键词:机械性质
Refinement of primary Si grains in Al–20%Si alloy slurry through serpentine channel pouring process被引量:2
2016年
In this study, a serpentine channel pouring process was used to prepare the semi-solid Al–20%Si alloy slurry and refine primary Si grains in the alloy. The effects of the pouring temperature, number of curves in the serpentine channel, and material of the serpentine channel on the size of primary Si grains in the semi-solid Al–20%Si alloy slurry were investigated. The results showed that the pouring temperature, number of the curves, and material of the channel strongly affected the size and distribution of the primary Si grains. The pouring temperature exerted the strongest effect, followed by the number of the curves and then the material of the channel. Under experimental conditions of a four-curve copper channel and a pouring temperature of 701°C, primary Si grains in the semi-solid Al–20%Si alloy slurry were refined to the greatest extent, and the lath-like grains were changed into granular grains. Moreover, the equivalent grain diameter and the average shape coefficient of primary Si grains in the satisfactory semi-solid Al–20%Si alloy slurry were 24.4 μm and 0.89, respectively. Finally, the refinement mechanism and distribution rule of primary Si grains in the slurry prepared through the serpentine channel pouring process were analyzed and discussed.
Zhi-kai ZhengWei-min MaoZhi-yong LiuDong WangRui Yue
关键词:初生硅AL-SI合金半固态浆料
Refinement of primary Si grains of A390 alloy slurry through serpentine channel pouring process被引量:2
2015年
In this paper, the serpentine channel pouring process for preparing a semi-solid A390 alloy slurry and refining the primary Si grains of the A390 alloy, was used. The effects of the pouring temperature, the cooling water flow and the number of the curves on the size of the primary Si grains in the semi-solid A390 alloy slurry were investigated. The results show that the pouring temperature, the cooling water flow and the number of the curves have a major effect on the size and the distribution of primary Si grains. Under the experimental condition of the four-curve copper channel whose cooling water flow was 500 L·h-1 and the pouring temperature was 690 oC, the primary Si grains of the semi-solid A390 alloy slurry were refined to the greatest extent and the lath-like grains were changed into granular ones. Additionally, the equivalent grain diameter and the average shape factor of the primary Si grains of the satisfactory semi-solid A390 alloy slurry are 18.6 μm and 0.8, respectively. Further, the refinement mechanism of the primary Si grains through the serpentine channel pouring process was analyzed and discussed. In summary, the primary Si nuclei could be easily precipitated due to the chilling effect of the channel inner wall, thus the primary Si grains were greatly refined. Meanwhile, the subsequent alloy melt fluid also promoted the separation of primary Si grains from the inner wall, further refining the primary Si grains.
Zhi-kai ZhengWei-min MaoBing-quan YanRui YueZhi-yong Liu
流变压铸工艺参数对过共晶Al-30%Si合金显微组织和力学性能的影响(英文)被引量:4
2017年
研究流变压铸工艺参数浇注温度、振动频率和蛇形通道弯道数量对Al-30%Si合金的显微组织和力学性能的影响。流变压铸过程中的半固态Al-30%Si合金浆料采用振动蛇形通道浇注工艺制备。实验结果表明:浇注温度、振动频率和通道数量对Al-30%Si合金显微组织和力学性能的影响较大。在浇注温度为850°C、通道弯道数量为12和振动频率为80 Hz的条件下,流变压铸工艺制备的样品组织的初生硅晶粒被细化成平均粒径约为24.6μm的块状颗粒;此外,流变压铸样品的抗拉强度、伸长率和硬度分别为296 MPa、0.87%和HB 155。因此,振动蛇形通道浇注工艺能有效地细化组织中的初生Si晶粒。初生Si晶粒的细化是流变压铸样品力学性能改善的主要原因。
郑志凯吉永健毛卫民岳锐刘志勇
关键词:过共晶铝硅合金初生SI浇注工艺流变压铸显微组织
Investigation of rheo-diecasting mold filling of semi-solid A380 aluminum alloy slurry被引量:4
2017年
The rheo-diecasting mold filling capacity and the microstructure of the semi-solid A380 aluminum alloy slurry were investigated. The results show that the mold filling capacity was strengthened with increasing pouring temperature or increasing injection pressure. Under certain process parameters, the mold cavity was fully filled. However, the mold filling capacity decreased with increasing holding time. The mold filling capacity was improved with increasing shape factor of primary α(Al) grains; however, the solid fraction and the grain size significantly increased at the same time. In addition, the microstructures along the route of the spiral samples obviously differed. The grain size decreased gradually from the near-end to the far-end, whereas the shape factor increased gradually.
Zhi-yong LiuWei-min MaoWei-pan WangZhi-kai ZhengRui Yue
关键词:SEMI-SOLIDSLURRYRHEO-DIECASTINGMOLDFILLING
采用蛇形通道制备半固态A380铝合金浆料(英文)被引量:7
2015年
采用蛇形通道浇注法制备半固态A380铝合金浆料。研究浇注温度、弯道数量和通道内径对半固态A380铝合金浆料显微组织的影响。结果表明:浇注温度在630-650°C时可获得优质的半固态A380铝合金浆料。在相同条件下,增加弯道数量或减小通道内径可减小初生α(Al)晶粒的平均直径,同时提高其形状因子。蛇形通道内合金熔体的"自搅拌"有利于枝晶的熟化和初生α(Al)晶粒的球化。
刘志勇毛卫民王伟番郑志凯
关键词:半固态浆料
多弯道蛇形管浇注法制备半固态A356铝合金浆料被引量:23
2011年
采用多弯道蛇形管浇注技术制备半固态A356铝合金浆料。结果表明:在浇注温度为640~680℃的条件下,当弯道数量为3且直径为20 mm时,可获得形状因子F为0.72~0.85和晶粒直径D为55~75μm的半固态浆料;当弯道数量为5且直径为20 mm时,可获得形状因子F为0.86~0.92和晶粒直径D为44~58μm的半固态浆料;当弯道数量为5且直径为25 mm时,可获得形状因子F为0.76~0.90和晶粒直径D为48~68μm的半固态浆料。弯道数量增加或弯道直径减小,可以改善初生α(Al)晶粒的形貌和尺寸。弯道内的合金熔体具有"自搅拌"的作用,可使初生晶核逐渐演变为球形或近球形晶粒。
陈正周毛卫民吴宗闯
关键词:半固态A356铝合金
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