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Development of aluminum rheo-extrusion process using semi-solid slurry at low solid fraction 被引量:2

Development of aluminum rheo-extrusion process using semi-solid slurry at low solid fraction
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摘要 An aluminum extrusion process is mainly used to fabricate long tubes, beams and rods for various applications.However, this process has a high production cost due to the need for investment of high-pressure machinery.The objective of this work is to develop a new semi-solid extrusion process using semi-solid slurry at low solid fractions.A laboratory extrusion system was used to fabricate aluminum rods with the diameter of 12 mm.The semi-solid metal process used in this study was the gas induced semi-solid (GISS) technique.To study the feasibility of the GISS extrusion process, the effects of extrusion parameters such as plunger speed and solid fraction on the extrudability, microstructure, and mechanical properties of extruded samples were investigated.The results show that the plunger speed and solid fraction of the semi-solid metal need to be carefully controlled to produce complete extruded parts. An aluminum extrusion process is mainly used to fabricate long tubes, beams and rods for various applications. However, this process has a high production cost due to the need for investment of high-pressure machinery. The objective of this work is to develop a new semi-solid extrusion process using semi-solid slurry at low solid fractions. A laboratory extrusion system was used to fabricate aluminum rods with the diameter of 12 ram. The semi-solid metal process used in this study was the gas induced semi-solid (GISS) technique. To study the feasibility of the GISS extrusion process, the effects of extrusion parameters such as plunger speed and solid fi-action on the extrudability, microstructure, and mechanical properties of extruded samples were investigated. The results show that the plunger speed and solid fraction of the semi-solid metal need to be carefully controlled to produce complete extruded parts.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第9期1763-1768,共6页 中国有色金属学报(英文版)
基金 the financial supports from Prince of Songkla University (Contract number AGR530031M)
关键词 半固态挤压工艺 半固态浆料 固相率 铝棒 流变 GISS 连接速度 半固态金属 aluminum alloys extrusion semi-solid metal rheo-extrusion gas induced semi-solid (GISS)
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参考文献17

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