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Effect of the geometric shapes of specimens on impact tensile tests 被引量:2

Effect of the geometric shapes of specimens on impact tensile tests
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摘要 The geometric shapes of specimens are important in impact tensile tests because geometric shapes determine the stress states of the specimens, and precise geometric shapes can obtain proper material properties without non-material factors. The aim of this study was to investigate the 1D form of the stress by changing the length-to-diameter (L/D) ratios of specimens. The experiments were carried out on a split Hopkinson tensile bar (SHTB)-rotating disk indirect bar-bar tensile impact apparatus. The L/D ratios of the LY12CZ specimens used in the test ranged from 1 to 5. Results show that the specimens can be used to obtain exact parameters of materials under the proposed conditions when the L/D ratio is greater than 2. This is because the longer length will reduce or eliminate the effects of the interfaces. The geometric shapes of specimens are important in impact tensile tests because geometric shapes determine the stress states of the specimens, and precise geometric shapes can obtain proper material properties without non-material factors. The aim of this study was to investigate the 1D form of the stress by changing the length-to-diameter (L/D) ratios of specimens. The experiments were carried out on a split Hopkinson tensile bar (SHTB)-rotating disk indirect bar-bar tensile impact apparatus. The L/D ratios of the LY12CZ specimens used in the test ranged from 1 to 5. Results show that the specimens can be used to obtain exact parameters of materials under the proposed conditions when the L/D ratio is greater than 2. This is because the longer length will reduce or eliminate the effects of the interfaces.
出处 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第10期817-821,共5页 浙江大学学报(英文版)A辑(应用物理与工程)
关键词 Impact tensile Split Hopkinson tensile bar (SHTB) Length-to-diameter (L/D) ratios 几何形状 拉伸试验 标本 LY12CZ铝合金 材料特性 应力状态 形状确定 试验装置
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  • 1夏源明,1986年
  • 2匿名著者,1986年
  • 3王礼立,应力波基础,1985年
  • 4王礼立,胡时胜.铝合金LF6R和纯铝L4R在高应变率下的动态应力应变关系[J]固体力学学报,1986(02).

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