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High Strain Rate Mechanical Properties of SAC-Q With Sustained Elevated Temperature Storage at 100°C

机译:SAC-Q的高应变率力学性能,持续高温储存在100°C

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摘要

Leadfree electronics in harsh environments often may be exposed to elevated temperature for the duration of storage, transport, and usage in addition to high strain rate triggering loads during drop-impact, vibration, and shock. These electronic components may get exposed to high strain rates of 1 to 100s~-1 and operating temperatures up to 200°C in critical surroundings. Doped SAC solder alloys such as SAC-Q are being considered for use in fine-pitch electronic components. SAC-Q consists of Sn-Ag-Cu alloy in addition to Bi (SAC+Bi). Prior data presented to date for lead-free solders, such as SAC-Q alloy, at high aging temperature and high strain rate are for 50°C sustained exposure. In this paper, the effect of sustained exposure to temperature of 100 °C on high strain rate properties of SAC-Q is studied. Thermally aged SAC-Q samples at 100°C have been tested at a range of strain rates including 10, 35, 50, and 75 s~-1 and operating temperatures ranging from 25 °C up to 200°C. Stress-strain curves are established for the given range of strain rates and operating temperatures. Also, the computed experimental results and data have been fitted to the Anand viscoplasticity model for SAC-Q for comparison.
机译:除了高应变率触发在滴冲击,振动和冲击期间,储存,运输和使用的持续时间可能暴露于恶劣环境中的引线电子经常可能暴露于升高的温度。这些电子元件可能暴露于1至100〜-1的高应变率,并且在关键环境中高达200°C的操作温度。掺杂囊焊料如SAC-Q被认为用于细间距电子元件。 SAC-Q除了Bi(SAC + BI)之外还包括Sn-Ag-Cu合金。在高老化温度和高应变率下呈现到无铅焊料(如SAC-Q合金)的现有数据,均为50°C持续暴露。本文研究了持续暴露于100℃温度对SAC-Q的高应变率特性的影响。在100℃下的热老化SAC-Q样品在包括10,35,50和75s〜-1的一系列应变率下测试,并且操作温度范围为25℃至200℃。为给定范围的应变速率和操作温度建立应力 - 应变曲线。此外,计算的实验结果和数据已经适用于SAC-Q的AnAndcoplicity模型进行比较。

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