PERILAKU CONE ALUMINUM TIPIS DENGAN SUDUT YANG BERBEDA DALAM MENYERAP ENERGI IMPAK

Q4 Mathematics
Witono Hardi
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引用次数: 1

Abstract

The use of thin-walled structures as energy absorbers has been widely known and applied in various fields. Thin-walled structures have the ability to absorb energy very well at various levels of impact speed. In this study, an analysis of the behavior of thin-walled structures with aluminum cone-shaped was carried out. This structure has a length of 200 mm thickness of 2 mm with one end whose diameter is left to remain 50 mm and the other end is made varied; 50 mm, 64 mm, 84 mm, 104 mm and 124 mm. A pounder made of cube-shaped steel measuring 15 cm x 15 cm x 15 cm weighing 26.49 kg pounding the specimen at a speed of 10 m / s so that the kinetic energy is received is 1324.7 Joules. Deformation with certain patterns in thin-walled structures and the results of the simulation obtained are total deformation, bending pattern, and energy per unit length. From the five specimens, it was found that the thin tube had a longer deformation than the cone shape. But the cone's ability to absorb more energy is indicated by the amount of energy per unit length.
薄圆锥体在吸收海盗能量时的角度不同
薄壁结构作为吸能材料已被广泛认识并应用于各个领域。薄壁结构在各种冲击速度下都能很好地吸收能量。本文对铝锥型薄壁结构进行了性能分析。该结构的长度为200毫米,厚度为2毫米,一端的直径保持50毫米不变,另一端是可变的;50mm, 64mm, 84mm, 104mm和124mm。用一个尺寸为15厘米× 15厘米× 15厘米、重26.49公斤的方钢锤,以10米/秒的速度撞击试样,得到的动能为1324.7焦耳。薄壁结构具有一定规律的变形,模拟结果为总变形、弯曲规律和单位长度能量。从5个试样中发现,细管型比锥体型的变形时间更长。但锥体吸收更多能量的能力是由单位长度的能量量来表示的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
AIUB Journal of Science and Engineering
AIUB Journal of Science and Engineering Mathematics-Mathematics (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
3
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