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30卷    第6期    總第255期    2020年6月

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文章編號(hào):1004-0609(2020)-06-1238-11
Mg-7Zn-0.3Mn-xCu鎂合金半固態(tài)組織演變
黃曉鋒1, 2,楊劍橋1,魏浪浪1,張喬喬1,尚文濤1,李旭嬌1

(1. 蘭州理工大學(xué) 省部共建有色金屬先進(jìn)加工與再利用國(guó)家重點(diǎn)實(shí)驗(yàn)室,蘭州 730050;
2. 蘭州理工大學(xué) 有色金屬合金及加工教育部重點(diǎn)實(shí)驗(yàn)室,蘭州 730050
)

摘 要: 本文研究了Cu含量、重熔溫度及等溫時(shí)間對(duì)Mg-7Zn-0.3Mn鎂合金半固態(tài)組織演變的影響。結(jié)果表明:Mg-7Zn-0.3Mn-1Cu合金的鑄態(tài)組織由白色α-Mg基體和黑色共晶組織(α-Mg+Mg4Zn7+ MgZn2+CuMnZn)組成。在等溫?zé)崽幚磉^程中,Cu有加速非枝晶顆粒分離和球化的作用,且Cu含量(質(zhì)量分?jǐn)?shù))為1.0%時(shí)效果最佳;Mg-7Zn-0.3Mn-1Cu鎂合金通過適當(dāng)提高保溫溫度或延長(zhǎng)保溫時(shí)間,能夠得到細(xì)小且分布均勻的球狀顆粒。然而當(dāng)保溫溫度超過585 ℃或保溫時(shí)間超過20 min時(shí),半固態(tài)顆粒則會(huì)粗化長(zhǎng)大。這種粗化長(zhǎng)大現(xiàn)象是在合并長(zhǎng)大機(jī)制與Ostwald熟化機(jī)制共同作用下產(chǎn)生的。在整個(gè)等溫?zé)崽幚磉^程中,半固態(tài)組織演變主要經(jīng)歷了初始粗化、組織分離、球化和最后粗化四個(gè)階段。Mg-7Zn-0.3Mn-1Cu鎂合金的最佳等溫?zé)崽幚砉に噮?shù)為保溫溫度585 ℃和保溫時(shí)間20 min,其非枝晶顆粒的平均尺寸、形狀因子和固相率分別為38.85 μm、1.39和53.38%。

 

關(guān)鍵字: Mg-7Zn-0.3Mn-1Cu鎂合金;Cu含量;非枝晶組織;演變機(jī)理

Semi-solid microstructure evolution of Mg-7Zn-0.3Mn-xCu alloy
HUANG Xiao-feng1, 2, YANG Jian-qiao1, WEI Lang-lang1, ZHANG Qiao-qiao1, SHANG Wen-tao1, LI Xu-jiao1

1. State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals, Lanzhou University of Technology, Lanzhou 730050, China;
2. Key Laboratory of Non-ferrous Metal Alloys and Processing, Ministry of Education, Lanzhou University of Technology, Lanzhou 730050, China

Abstract:The effects of Cu content (0%, 0.5%, 1.0%, 1.5%), remelting temperature and holding time on the evolution of semi-solid non-dendrites of Mg-7Zn-0.3Mn magnesium alloy were studied. The results show that the cast microstructure of the Mg-7Zn-0.3Mn-1Cu alloy is composed of white α-Mg matrix and black eutectic phase (α-Mg+Mg4Zn7+ MgZn2+CuMnZn). And Cu accelerated the separation and spheroidization of non-dendritic particles during isothermal heat treatment, and the effect is optimal when the Cu content (mass fraction) is 1.0%. By properly raising the holding temperature or extending the holding time, Mg-7Zn-0.3Mn-1Cu can obtain finer and more uniform spherical particles. However, when the holding temperature exceeds 585 ℃ or the holding time exceeds 20 min, semi-solid particles will gradually coarsene. This coarsening growth phenomenon is generated by the combined growth mechanism and Ostwald maturation mechanism. During the whole isothermal heat treatment process, the semi-solid microstructure evolution mainly experiences four stages: initial coarsening, tissue separation, spheroidization and final coarsening. The best parameters of isothermal heat treatment of Mg-7Zn-0.3Mn-1Cu are 585 ℃ in holding temperature, 20 min in holding time, and the average particle size, shape factor and solid fraction are 38.85 μm, 1.39 and 53.38%, respectively.

 

Key words: Mg-7Zn-0.3Mn-1Cu magnesium alloy; Cu content; non-dendritic microstructure; evolution mechanism

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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