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Sn-Zn-Bi-In-P新型無(wú)鉛焊料壓縮力學(xué)性能分析及ANAND本構(gòu)方程參數(shù)確定
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Compressive Mechanical Properties and Parameter Determination of Anand Viscoplastic Constitutive Model for a New Lead-free Material Sn-Zn-Bi-In-P
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    摘要:

    在gleeble1500力學(xué)試驗(yàn)機(jī)上,對(duì)Sn-4.5Zn-2Bi-In-P,Sn-9Zn-2.5Bi-In-P,Sn-8Zn-3Bi 3種無(wú)鉛焊料進(jìn)行系列恒溫恒應(yīng)變速率的壓縮試驗(yàn),實(shí)驗(yàn)系列由3種實(shí)驗(yàn)溫度(20,60,100 ℃)和5種應(yīng)變速率(101,100,10-1,10-2,10-3)正交組成。結(jié)果表明:3種無(wú)鉛焊料的飽和應(yīng)力隨應(yīng)變速率的增加而增加,隨溫度的升高而減??;在所有實(shí)驗(yàn)系列中,Sn-8Zn-3Bi合金的飽和應(yīng)力最大,Sn-4.5Zn-2Bi-In-P最??;應(yīng)用非線性擬合方法分別確定了描述3種無(wú)鉛焊料非彈性率相關(guān)性的Anand粘塑性本構(gòu)方程的9個(gè)材料常數(shù);通過(guò)實(shí)驗(yàn)數(shù)據(jù)與Anand模型預(yù)測(cè)數(shù)據(jù)的對(duì)比分析,表明Anand模型能有效描述3種新型無(wú)鉛焊料的粘塑性行為,為3種無(wú)鉛焊料焊點(diǎn)的可靠性模擬和失效分析提供模型支持。

    Abstract:

    Compressive tests of Sn-4.5Zn-2Bi-In-P, Sn-9Zn-2.5Bi-In-P and Sn-8Zn-3Bi were conducted with gleeble1500 at constant temperature and strain rate. The conditions of the tests consisted of three temperatures 20, 60, 100 oC, and five strain rates 101, 100, 10-1, 10-2, 10-3. Results show that the saturation stress of three materials rises with the strain rate increasing, and decreases with the temperature increasing. In all experimental results, the saturation stress of Sn-8Zn-3Bi is maximum, and that of Sn-4.5Zn-2Bi-In-P is minimum. Nine parameters of Anand constitutive equation were confirmed for each kind of lead-free material by nonlinear fitting. By comparison and analysis between the experimental data and model prediction data of three materials under different conditions, the results show that Anand constitutive equation can describe the mechanical behaviors of three materials accurately, and supply a strong support for the reliability simulation and efficacy losing analysis.

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于紅嬌,張 弓,馬莒生. Sn-Zn-Bi-In-P新型無(wú)鉛焊料壓縮力學(xué)性能分析及ANAND本構(gòu)方程參數(shù)確定[J].稀有金屬材料與工程,2014,43(10):2383~2388.[Yu Hongjiao, Zhang Gong, Ma Jusheng. Compressive Mechanical Properties and Parameter Determination of Anand Viscoplastic Constitutive Model for a New Lead-free Material Sn-Zn-Bi-In-P[J]. Rare Metal Materials and Engineering,2014,43(10):2383~2388.]
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  • 收稿日期:2013-10-14
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  • 在線發(fā)布日期: 2015-04-07
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