Effects of Annealing Temperature on Microstructure and Properties of Pure Copper Wires Containing Unidirectional Fibrous Crystals
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摘要: 對退火前后單向纖維晶純銅線材組織進行了觀察,測試了其力學與導電性能,結果表明:在300℃以下退火時,線材的金相顯微組織與退火前相比沒有明顯變化,仍然保持為連續纖維晶,其抗拉強度有所下降,延伸率有所增加;在400℃退火時,線材發生完全再結晶,且有孿晶生成;500℃退火時,再結晶晶粒長大;在400℃以上退火時,抗拉強度大幅度下降,延伸率顯著增加;在200~400℃的范圍退火時,電導率增加,但增幅較小.Abstract: Effects of annealing temperature on microstructure and properties of pure copper wires containing unidirectional fibrous crystals fabricated by unidirectional continuous casting process and heavy deformation below recrystallization temperature were investigated. The copper wire was annealed in a vacuum firing furnace for 1 h at 200, 300, 400 and 500℃ respectively, then was cooled down in the furnace. By observing the microstructure and analyzing the mechanical properties and electrical conductivity of the copper wires before and after annealing treatment, it is shown that at the annealing temperature below 300℃, the microstructure of the wires still remains fibrous crystals without evident changes, the tensile strength decreases slightly, and the elongation increased a little. After annealing at 400℃, the wires were fully recrystallized and compound twins could be found. After annealing at 500℃, the recrystallized grains coarsened. When the annealing temperature was higher than 400℃, the tensile strength decreased apparently and the elongation increased greatly. When the annealing temperature ranges from 200 to 400℃, the electrical conductivity increases by a small percentage (lower than 2%).
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