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2A14鋁合金擠壓棒材的熱處理工藝

發(fā)布人:上海艾荔艾金屬材料有限公司www.bt990.com.cn 更新時(shí)間:2015-07-27
采用顯微硬度測試、電導(dǎo)率測試、拉伸力學(xué)性能測試以及透射電鏡觀察,研究時(shí)效溫度和時(shí)效時(shí)間對2A14大規(guī)格鋁合金棒材力學(xué)性能和電導(dǎo)率的影響規(guī)律。
2A14鋁合金擠壓棒材的熱處理工藝Heat treatment technology of 2A14 alloy extruded bar
采用顯微硬度測試、電導(dǎo)率測試、拉伸力學(xué)性能測試以及透射電鏡觀察,研究時(shí)效溫度和時(shí)效時(shí)間對2A14大規(guī)格鋁合金棒材力學(xué)性能和電導(dǎo)率的影響規(guī)律。結(jié)果表明:在相同的時(shí)效時(shí)間下,合金電導(dǎo)率隨時(shí)效溫度升高而逐漸升高;在相同的時(shí)效溫度下,合金電導(dǎo)率隨時(shí)效時(shí)間的延長而逐漸升高。固溶態(tài)2A14合金中存在與Al6Mn晶體結(jié)構(gòu)相近的Al12(MnCu)3Si2粒子,此Al12(MnCu)3Si2粒子在合金再結(jié)晶過程中影響晶界遷移,抑制晶粒在固溶過程中的長大效應(yīng);時(shí)效后,合金中主要的強(qiáng)化相為S''''相,但在140 ℃(或低于400 ℃)時(shí)效12 h的合金中,強(qiáng)化相數(shù)量較少,合金性能與固溶態(tài)接近;經(jīng)160 ℃、12 h時(shí)效后,合金具有較好的綜合力學(xué)性能,其抗拉強(qiáng)度和屈服強(qiáng)度分別為509 MPa和452 MPa,伸長率為10.1%;在180 ℃、12 h時(shí)效條件下處理后,合金中的S''''相會明顯粗化,屈服強(qiáng)度和抗拉強(qiáng)度大幅下降,伸長率升高,表現(xiàn)出明顯的過時(shí)效特征。
The effects of aging temperature and aging time on the mechanical properties and electrical conductivity of 2A14 aluminum alloy were investigated by microhardness test, electrical conductivity test, tensile test and transmission electron microscopy (TEM). The results show that the electrical conductivity of the sample increases gradually with increasing temperature or aging time when the aging time or aging temperature are constant. The Al12(MnCu)3Si2 particles found in the solid solution 2A14 alloy has a similar crystal structure with Al6Mn, the Al12(MnCu)3Si2 particles affect the migration of grain boundary during recrystalline process and restrain the grain growth during solid solution. For the 2A14 alloy, the S'''' phase is the mainly strengthening precipitates. However, for the sample aged at 140 ℃ (or lower than 140 ℃) for 12 h, the mechanical properties are close to the sample in solution-treated condition due to less strengthening phase. After aging at 160 ℃ for 12 h, the alloy shows better combination mechanical properties, the ultimate tensile strength (UTS), yield strength (YS) and elongation are 509 MPa, 452 MPa and 10.1%, respectively. After aging at 180 ℃ for 12 h, with the increase of aging temperature and extension of aging time, the precipitate size of S'''' phase increases and the mechanical properties decrease obviously, which is a typical phenomena of over aging.
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