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微量元素Sr對AM60B鎂合金組織和性能的影響
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Effect of Trace Element Sr on Microstructure and Properties of AM60B Magnesium Alloy
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    摘要:

    利用光學顯微鏡(OM)、場發(fā)射掃描電子顯微鏡(FESEM)、電子萬能試驗機、數(shù)顯洛氏硬度計和顯微硬度儀研究微量Sr對鎂合金AM60B的鑄態(tài)組織和力學性能的影響。結果表明,添加微量元素Sr可以細化鎂合金的晶粒,而不改變基體α-Mg相的枝晶形貌,但可改變γ相的形態(tài)和大小,從連續(xù)或斷續(xù)網(wǎng)狀、長條狀,變?yōu)槁咽癄罨蝾w粒狀。Sr對AM60B鎂合金的抗拉強度和延伸率的影響具有相似的趨勢,即隨著Sr含量的增加,合金的抗拉強度和延伸率呈現(xiàn)先升后降的趨勢,當Sr含量為0.05%時抗拉強度和延伸率分別達到最大值191.82 MPa和4.63%,而洛氏硬度和顯微硬度隨著Sr含量的增加而增大。AM60B鎂合金斷裂方式存在著由解理斷裂向準解理斷裂再向解理斷裂轉化的模式

    Abstract:

    Effects of trace element Sr on the as-cast microstructure and mechanical properties of magnesium alloy AM60B were studied by optical microscope (OM), field emission scanning electron microscopy (FESEM), electronic universal testing machine, digital display Rockwell hardness tester and microhardness tester. The results show that the addition of trace element Sr can refine grains without change of dendrite morphology of matrix α-Mg phase, but can change the morphology and size of γ-Mg17A112 phase from continuous/discontinuous netlike or strip form to cobble or particulate form. The effect of Sr on the tensile strength and elongation of AM60B magnesium alloy has the similar tendency, i.e. with the increase of Sr content, the tensile strength and elongation of AM60B magnesium alloy are first increased and then decreased. With addition of 0.05% Sr, the tensile strength and elongation reach the maximum 191.82 MPa and 4.63%, respectively, while the Rockwell hardness and microhardness are increased with the increase of Sr content. The fracture mechanism of AM60B magnesium alloy is changed from cleavage fracture to quasi-cleavage fracture to cleavage fracture

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崔紅衛(wèi),閔光輝,劉俊成.微量元素Sr對AM60B鎂合金組織和性能的影響[J].稀有金屬材料與工程,2010,39(2):273~276.[Cui Hongwei, Min Guanghui, Liu Juncheng. Effect of Trace Element Sr on Microstructure and Properties of AM60B Magnesium Alloy[J]. Rare Metal Materials and Engineering,2010,39(2):273~276.]
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  • 收稿日期:2009-03-25
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