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Information Journal Paper

Title

The Ballistic Behavior of High Strength, Low Alloy-100 Steel at Sub-zero Temperatures

Pages

  1747-1756

Abstract

 The ballistic response of the High Strength, low alloy (HSLA-100) steel at ambient and temperatures of-400,-800 and-1960° C is investigated in this work. Lambert-Jonas equation is used to fit the experimental results into a curve. The effect of quenching on ballistic behavior of HSLA-100 is also studied. The experiments are conducted on 3mm thick rectangular specimens impacted by blunt tip projectiles. The results indicate that for the as-received material, the Ballistic Limit is nearly the same for ambient and-400° C temperatures, but increases significantly by 30% and 40% for-800 and-1960° C temperatures, respectively. The same trend is observed for the quenched specimens. However, the increase of Ballistic Limit is lower for the quenched specimens and is 16% and 30% for-800 and-1960° C temperatures, respectively. The ballistic test was also simulated using Ls-dyna hydrocode to examine the effect of parameters such as the specimen’ s thickness, the projectile’ s tip shape and mass on the Ballistic Limit of the materials.

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  • Cite

    APA: Copy

    Majzoobi, G., & MORADI, S.. (2016). The Ballistic Behavior of High Strength, Low Alloy-100 Steel at Sub-zero Temperatures. INTERNATIONAL JOURNAL OF ENGINEERING, 29(12), 1747-1756. SID. https://sid.ir/paper/724592/en

    Vancouver: Copy

    Majzoobi G., MORADI S.. The Ballistic Behavior of High Strength, Low Alloy-100 Steel at Sub-zero Temperatures. INTERNATIONAL JOURNAL OF ENGINEERING[Internet]. 2016;29(12):1747-1756. Available from: https://sid.ir/paper/724592/en

    IEEE: Copy

    G. Majzoobi, and S. MORADI, “The Ballistic Behavior of High Strength, Low Alloy-100 Steel at Sub-zero Temperatures,” INTERNATIONAL JOURNAL OF ENGINEERING, vol. 29, no. 12, pp. 1747–1756, 2016, [Online]. Available: https://sid.ir/paper/724592/en

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