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提高传统法电解作业率
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作者 孔祥明 《铜业工程》 CAS 2021年第1期69-71,共3页
介绍了传统法电解工序,大量外购阳极后,增加了作业流程,作业时间延长,影响了作业率。通过创新短路处理的方式,释放一台行车参加作业;解决机组吞吐能力不足,提升阳极、始极片存储能力;优化作业方式,将单系统作业,提升为双系统同时作业。... 介绍了传统法电解工序,大量外购阳极后,增加了作业流程,作业时间延长,影响了作业率。通过创新短路处理的方式,释放一台行车参加作业;解决机组吞吐能力不足,提升阳极、始极片存储能力;优化作业方式,将单系统作业,提升为双系统同时作业。不仅提高了作业率,也节约了成本。 展开更多
关键词 传统法电解 复杂原料 机组加工能力 单系统作业 双系统作业 生产作业率
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A novel method to improve interfacial bonding of compound squeeze cast Al/Al-Cu macrocomposite bimetals:Simulation and experimental studies 被引量:6
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作者 Mohammad Hossein BABAEE Ali MALEKI Behzad NIROUMAND 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第6期1184-1199,共16页
A facile and innovative method to improve bonding between the two parts of compound squeeze cast Al/Al-4.5 wt.%Cu macrocomposite bimetals was developed and its effects on microstructure and mechanical properties of th... A facile and innovative method to improve bonding between the two parts of compound squeeze cast Al/Al-4.5 wt.%Cu macrocomposite bimetals was developed and its effects on microstructure and mechanical properties of the bimetal were investigated.A special concentric groove pattern was machined on the top surface of the insert(squeeze cast Al-4.5 wt.%Cu) and its effects on heat transfer,solidification and distribution of generated stresses along the interface region of the bimetal components were simulated using ProCAST and ANSYS softwares and experimentally verified. Simulation results indicated complete melting of the tips of the surface grooves and local generation of large stress gradient fields along the interface. These are believed to result in rupture of the insert interfacial aluminum oxide layer facilitating diffusion bonding of the bimetal components. Microstructural evaluations confirmed formation of an evident transition zone along the interface region of the bimetal. Average thickness of the transition zone and tensile strength of the bimetal were significantly increased to about 375 μm and 54 MPa, respectively, by applying the surface pattern.The proposed method is an affordable and promising approach for compound squeeze casting of Al-Al macrocomposite bimetals without resort to any prior cost and time intensive chemical or coating treatments of the solid insert. 展开更多
关键词 Al/Al-4.5wt.%Cu macrocomposite bimetal interfacial bonding surface machining pattern microstructure mechanical properties simulation
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