脉冲载荷作用下薄圆孔金属盘的变形与破坏

IF 2.1 Q2 ENGINEERING, CIVIL International Journal of Protective Structures Pub Date : 2022-05-25 DOI:10.1177/20414196221095249
Gopinath Kanakadandi, V. Narayanamurthy, Y. Rao
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引用次数: 0

摘要

本文研究了应用于加压火箭发射井底部的薄型圆顶刻痕金属盘(SMD)的结构变形和破坏,该金属盘需要承受储存压力并在脉冲压力下发生瞬时破裂。首先,对压力脉冲作用下的平薄型贴片的大变形和破裂进行了数值研究,并用实验结果进行了验证。在此基础上,研究了在上述载荷作用下,薄型圆壳弹体的性能。研究了加载速率(P·)、刻痕深度和宽度-圆盘厚度比(t1 /t和b/t)、直径-圆盘厚度比(D/t)、圆墩高度-圆盘直径比(H/D)、刻痕长度-圆盘半径比(l/R)、刻痕模式和刻痕几何形状对圆墩薄型SMD变形和破坏响应的影响。研究表明:(1)加载速率为bbb10 MPa/s时,失效起始点由1/4半径向盘面中心偏移;(2)在脉冲加载下,响应(i)对加载速率高达100 MPa/s敏感,(ii)对刻痕深度敏感,仅达到圆盘厚度的一半,对刻痕宽度不敏感,(iii)对刻痕数量N bbb6不受影响,(iv)在l/R > 0.4时稳定,(vii)对半圆形、矩形和三角形刻痕几何形状几乎相同;(3)故障不启动,并沿磁盘中所有分数N > 10传播;(4) H/D >.3时,球形SMD的性能接近球形圆顶。
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Deformation and failure of thin domed-scored metallic disc under impulsive loading
This paper presents the structural deformation and failure of a thin domed-scored metallic disc (SMD) applied at the bottom of a pressurized rocket silo which needs to withstand a storage pressure and undergo instantaneous rupture under an impulsive pressure. Initially, the large deformation and rupture of a flat-thin SMD subjected to a pressure impulse is numerically studied and validated with experimental results. Subsequently, the behavior of a domed-thin SMD is investigated for the aforementioned loadings in the rocket silo. The influence of loading rates ( P · ) , score depth and width-to-disc thickness ratio (t 1 /t and b/t), diameter-to-disc thickness ratio (D/t), dome height-to-disc diameter ratio (H/D), score length-to-disc radius ratio (l/R), score pattern, and score geometry on the deformation and failure response of the domed-thin SMD is investigated. The studies demonstrate that (1) the failure initiation point shifts from 1/4th radius to the disc center for loading rates > 10 MPa/s; (2) under impulse loading, the responses are (i) sensitive to the loading rates up to 100 MPa/s, (ii) sensitive to score’s depth, only up to half the disc thickness and insensitive to score’s width, (iii) unaffected for number of scores N > 6, (iv) stabilized for l/R > 0.4, and (vii) almost the same for semi-circular, rectangular and triangular score geometries; (3) the failure do not initiate and propagate along all scores for N > 10 in the disc; and (4) behavior of the domed SMD approaches to that of a spherical dome for H/D > 0.3.
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
期刊最新文献
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