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基于球形铍粉制备的铍铝合金的力学性能及热变形研究
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1.中国工程物理研究院材料研究所;2.中国工程物理研究院表面物理与化学重点实验室

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基础加强计划技术领域(2021-JCJQ-JJ-0094),国家自然科学基金青年基金(52103362)


Investigation on the mechanical properties and thermal deformation of Be-Al alloy prepared by spherical beryllium powder
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1.Institute of Materials,China Academy of Engineering Physics,Jiangyou,621907;2.China;3.China Academy of Engineering Physics

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    摘要:

    本文研究了基于球形铍粉制备的新型变形Be-50wt.%Al合金。热等静压组织中Be相保持了较高的球形率,形状因子大于0.5的Be相占比超过77%,测试了合金的室温拉伸性能,其弹性模量达到171GPa,具有较好的刚性。Be-50Al合金在250℃~550℃温度下的热压缩过程中均表现出低于传统洛克合金的峰值应力,在300℃~350℃下Be-50Al合金应变硬化指数非常稳定,具有良好的均匀塑性变形能力。Be-50Al合金在不同温度下的单轴压缩过程中均表现出以铝相为主导的双相协调变形机制。该合金的室温拉伸断口表现为铍颗粒的解理断裂、铝的韧性断裂和铍铝的界面脱粘,高温下压缩断口主要表现为铝相的撕裂

    Abstract:

    A new Be-50 wt. %Al alloys were prepared by spherical beryllium powder. The Be phase keeps near spherical shape in the billet prepared by hot isostatic pressing ,and the proportion of Be phase with shape factor greater than 0.5 exceeds 77%. At room temperature, the alloy has good rigidity and the elastic modulus is 171GPa. The uniaxial compression experiment was carried out on the Gleeble tester to study the hot deformation ability of Be-50Al alloy at the temperature range from 250℃ to 550℃, and the strain rate 0.01s-1.The results show that the peak stress is significantly lower than that of traditional beryllium aluminum alloy. The strain hardening index of Be-50Al alloy is very stable at the temperature of 300℃ ~ 350 ℃, and it has good uniform plastic deformation ability. The deformation mechanism of compressed Be-50Al at various temperatures is mainly dominated by the plastic deformation of aluminum phase well coordinated by the beryllium phase. The tensile fracture surfaces at ambient temperature show cleavage fracture of beryllium particles, ductile fracture of aluminum and the interfacial debonding between beryllium phase and aluminum phase. Differently, the compression fracture at high temperature is caused by tearing of aluminum phase.

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王晶,彭仕先,王旻,张晨,张新建.基于球形铍粉制备的铍铝合金的力学性能及热变形研究[J].稀有金属材料与工程,2023,52(8):2901~2908.[Wang Jing, Peng Shixian, Wang Min, Zhang Chen, Zhang Xinjian. Investigation on the mechanical properties and thermal deformation of Be-Al alloy prepared by spherical beryllium powder[J]. Rare Metal Materials and Engineering,2023,52(8):2901~2908.]
DOI:10.12442/j. issn.1002-185X.20220667

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历史
  • 收稿日期:2022-08-26
  • 最后修改日期:2022-10-18
  • 录用日期:2022-10-21
  • 在线发布日期: 2023-08-28
  • 出版日期: 2023-08-24