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铍青铜柱壳膨胀断裂研究
引用本文:金山,汤铁钢,李庆忠,孙学林,徐永波,沙桂英. 铍青铜柱壳膨胀断裂研究[J]. 高压物理学报, 2006, 20(4): 434-438
作者姓名:金山  汤铁钢  李庆忠  孙学林  徐永波  沙桂英
作者单位:中国工程物理研究院流体物理研究所,四川绵阳,621900;中国科学院金属研究所,辽宁沈阳,110015
基金项目:中国工程物理研究院流体物理研究所发展基金(FZ03001)
摘    要: 利用高速摄影和金相分析研究了不同热处理状态的铍青铜(QBe2)柱壳在爆轰加载下的膨胀断裂特性。研究表明:材料的细观组织决定材料的静态力学性能与动态断裂性能。当同种材料的组织结构有较大差异时,材料的静态力学性能及动态断裂性能均会有较大改变;当材料的基体组织没有明显变化、只是基体中强化相的多少发生改变时,材料的静态力学性能会有较大差异,而材料的动态断裂性能将没有明显变化,原因在于造成静态力学性能差异的强化相在爆轰加载下的性能趋于一致。

关 键 词:固体力学  铍青铜  膨胀断裂  高速摄影  金相分析
文章编号:1000-5773(2006)04-0434-05
收稿时间:2005-09-22
修稿时间:2006-04-07

Expanding Fracture of Beryllium Bronze Cylinder Shell
JIN Shan,TANG Tie-Gang,LI Qing-Zhong,SUN Xue-Lin,XU Yong-Bo,SHA Gui-Ying. Expanding Fracture of Beryllium Bronze Cylinder Shell[J]. Chinese Journal of High Pressure Physics, 2006, 20(4): 434-438
Authors:JIN Shan  TANG Tie-Gang  LI Qing-Zhong  SUN Xue-Lin  XU Yong-Bo  SHA Gui-Ying
Affiliation:1. Institute of Fluid Physics ,CAEP ,Mianyang 621900 ,China ;2. Institute of Metal Research ,Chinese Academy of Sciences, Shenyang 110015, China
Abstract:High-speed camera and optical microscope were used to study the expanding fracture characteristic of the beryllium bronze(QBe2) cylinder shell under detonation loading.The experimental(result) show that the static mechanics characteristics and the dynamic fracture characteristic of the material depend on the material's microcosmic structure.When the microcosmic structure of the material has evident difference,the static mechanics characteristics and the dynamic fracture characteristic of the material will be evident changed.When the basic structure of the material have no evident difference while the number of the strengthen phase in the basic structure is changed,the static mechanics characteristics of the material can be evident different,but the dynamic fracture characteristic of the material will be not greatly changed.A reason for such a behavior might be that the strengthen phase which occurs to the difference of the static mechanics characteristics of the material tends to the identical under detonation loading.
Keywords:solid mechanics  beryllium bronze  expanding fracture  high-speed photography  micrograph analysis
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