Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中國(guó)有色金屬學(xué)報(bào)

ZHONGGUO YOUSEJINSHU XUEBAO

第23卷    第1期    總第166期    2013年1月

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文章編號(hào):1004-0609(2013)01-009-06
熱處理對(duì)Mg-3Sn-1Y合金顯微組織及顯微硬度的影響
徐春杰1,屠  濤1,馬  濤1,余  玲1,張忠明1,王錦程2

(1. 西安理工大學(xué) 材料科學(xué)與工程學(xué)院,西安 710048;
2. 西北工業(yè)大學(xué) 凝固技術(shù)國(guó)家重點(diǎn)實(shí)驗(yàn)室,西安 710072
)

摘 要: 在電阻爐中采用熔劑保護(hù)熔鑄Mg-3Sn-1Y(質(zhì)量分?jǐn)?shù),%)合金,并通過Olympus GX71光學(xué)顯微鏡(OM)、裝備能譜(EDS)的FEI QUANTA 400型掃描電鏡(SEM)、RigakuD/max-3C型X射線衍射(XRD)、TUKON2100維氏型硬度計(jì)和CRY?2P型DTA差熱分析儀等分析合金的鑄態(tài)組織、固溶及時(shí)效熱處理對(duì)組織和時(shí)效硬化的影響。結(jié)果表明,Mg-3Sn-1Y合金鑄態(tài)組織由α-Mg枝晶、枝晶間斷續(xù)網(wǎng)狀Mg2Sn相和彌散分布的細(xì)小顆粒及短棒狀MgSnY相組成。固溶處理后Mg2Sn相已完全固溶,而具有高溫穩(wěn)定性的MgSnY相依然分布在基體中。加入Y元素可以提高合金的高溫穩(wěn)定性。Mg-3Sn-1Y合金具有典型的時(shí)效硬化特征,時(shí)效溫度提高,一定程度上有利于時(shí)效峰出現(xiàn);但時(shí)效溫度過高,基體組織的長(zhǎng)大會(huì)降低析出強(qiáng)化作用,延緩峰值硬度的出現(xiàn)。

 

關(guān)鍵字: Mg-3Sn-1Y鎂合金;微觀組織;固溶熱處理;時(shí)效硬化

Effects of heat treatment on microstructure and microhardness of Mg-3Sn-1Y alloy
XU Chun-jie1, TU Tao1, MA Tao1, YU ling1, ZHANG Zhong-ming1, WANG Jin-cheng2

1. School of Materials Science and Engineering, Xi’an University of Technology, Xi’an 710048, China;
2. State Key Laboratory of Solidification Processing, Northwestern Polytechnical University

Abstract:A nominal composition of Mg-3Sn-1Y (mass fraction, %) magnesium alloy was prepared by casting with flux protection in electric-resistance furnace. The microstructures as-cast, solution treatment and aging hardening of the Mg-3Sn-1Y alloy by different aging treatments after solution treatment were investigated by an Olympus GX71 optical microscope (OM), an FEI QUANTA 400 scanning electron microscope (SEM) equipped with an energy-dispersive X-ray spectroscop (EDS), a RigakuD/max-3C X-ray diffraction (XRD), a TUKON2100 Vickers hardness tester and a CRY?2P differential thermal analyzer (DTA). The results show that as-cast Mg-3Sn-1Y alloy consists of dendritic α-Mg and intermittent mesh inter-dendrite boundaries Mg2Sn phase, the dispersion tiny particles and fine rod-shaped MgSnY phase. After the solution treatment, the Mg2Sn phase is completely redissolved, and the MgSnY phase with the high temperature stability still distributes in the matrix. The addition of yttrium elements can improve the high temperature stability of Mg-Sn alloy. Mg-3Sn-1Y alloy exhibits obvious aging hardening characteristics. The increase of the aging temperature is advantageous to the occurrence of aging hardening peak to some extent. On the contrary, grain growth of the matrix will decrease the function of separation and strengthening and delay the appearance of aging hardening peak as the ageing temperature is too high.

 

Key words: Mg-3Sn-1Y magnesium alloy; microstructure; solution heat treatment; aging hardening

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

主管:中國(guó)科學(xué)技術(shù)協(xié)會(huì) 主辦:中國(guó)有色金屬學(xué)會(huì) 承辦:中南大學(xué)
湘ICP備09001153號(hào) 版權(quán)所有:《中國(guó)有色金屬學(xué)報(bào)》編輯部
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