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铝合金的氢脆和应力腐蚀开裂是受到广泛重视的课题.本文采用正电子湮没(PA)技术研究了LC4铝合金在慢拉伸动态充氢时,在3.5%NaCl+200mg/1As2O3介质中,多普勒展宽(Dopplerbroadening)S参数的变化.实验发现在阴极极化下,S参数下降.这是由于相当部分原来是深阱的正电子陷阱转为为浅阱,或者充氢后产生新的正电子陷阱引起,Mg与H互作用形成MgH2是形成脆化的可能原因;在阳极极化下也观察到S参数下降,作者认为这是由于此时GP区(主要是MgZn2)的优先溶解.
Hydrogen embrittlement and stress corrosion cracking of aluminum alloy are topics of great importance. In this paper, the change of S-parameters of Doppler broadening in 3.5% NaCl + 200mg / 1As2O3 medium was studied by using positron annihilation (PA) technique. Experiments found that in the cathode polarization, S parameters decreased. This is due to the fact that a considerable part of the original deep well positrons turn into shallow wells or hydrogen poses new positron traps, Mg and H interact to form MgH2, which is the possible cause of embrittlement. S-parameters were also observed to decline, the authors believe that this is due to GP area (mainly MgZn2) preferential dissolution.