By Tao Jiang, Jiann-Yang Hwang, Gerardo R. F. Alvear Flores, Onuralp Yucel, Xinping Mao, Hong Yong Sohn, Naiyang Ma, Phillip J. Mackey, Thomas P. Battle
The research, improvement, and/or operation of extreme temperature strategies that contain the construction of ferrous and nonferrous metals, alloys, and refractory and ceramic fabrics are coated within the ebook. The leading edge equipment for attaining impurity segregation and removing, spinoff restoration, waste minimization, and/or power potency also are concerned. 8 topics are offered: 1: excessive potency New Metallurgical procedure and expertise 2: primary learn of Metallurgical technique three: Alloys and fabrics coaching four: Direct relief and Smelting aid five: Coking, New power and surroundings 6: usage of sturdy Slag/Wastes and intricate Ores 7: Characterization of extreme temperature Metallurgical Process
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Additional resources for 6th International Symposium on High-Temperature Metallurgical Processing
In Dec, the bottom temperature was increasing to 590℃ till Dec 28th. So the wind had to be shut down. 86kg/tFe. In the meanwhile, titanium-rich taphole mix (20% iron concentrate which included 20% titanium) was used in the anterior 1/3 of the clay gun. 10%, and the protection of titanium compounds was effectively. Table 1 shows the advantages and disadvantages of the above ways. Table I.
SEM Photographs of the Cu-25%Cr Alloy Samples 1#-5# Conclusions （1）XRD results show that: The melting slag is mainly composed of Al2O3 phase and small amount of metal Cr phase, the metal is mainly composed of Cu, Cr and a small amount of Al2O3 inclusions. The presence of inclusions phase described the separation of metal and slag is insufficient. （2）Metallographic analysis showed that: In the alloy, the yellow areas are Cu matrix, the white areas are Cr-rich phase, and the black areas are pores and inclusions.
Inclusions mainly existed in the form of pores and Al2O3 phase and distributed in the copper-rich area and the interface between copper-rich phase and chromium-rich phase. Acknowledgement This research was supported by National Natural Science Foundation (NSFC) (51422403,51304043) and the basic research universities special fund operations (N110202003) 41 References 1. ZHENG Wei, WANG Ya-ping and WANG Yong-sheng, “WANG Hui-xin. Development of Contact Materials for Low-operating-power Vacuum Switches,” High Voltage Apparatus, 46 (10) (2010), 69-74 2.
6th International Symposium on High-Temperature Metallurgical Processing by Tao Jiang, Jiann-Yang Hwang, Gerardo R. F. Alvear Flores, Onuralp Yucel, Xinping Mao, Hong Yong Sohn, Naiyang Ma, Phillip J. Mackey, Thomas P. Battle