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The Dynamic Stress Characteristics of Air-Decked Bench Blasting Under Soft Interlayer

机译:软层间空气甲板爆破的动态应力特性

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In modern mining and project construction, how to make use of the explosion energy effectively is the key technology demanding prompt solution at present. The application of air-decked blasting technology has enabled the efficient use of explosion energy, which proves that the air-decked blasting technology can overcome many disadvantages caused by column charge effectively, getting ideal explosion effect. Based on the dynamic finite element analysis software with the material model of Mat-Plastic-Kinemetic, the dynamic stress characteristics and failure mechanism of blast-hole near-field with level soft interlayer are researched with different air-decked charge structures. There is significant effect on the rock at the middle of blast-hole if top-air-decked charge structure with indirect initiation and middle-air-decked charge structure with two ends initiation at the same time. If bottom-air-decked charge structure with indirect initiation, soft inter-layer don't change the peek of compression and tensile stress curves of typical elements with distance from the bottom of hole, so there is not effect significantly of level soft interlayer on bottom-air-decked charge structure with indirect initiation.
机译:在现代采矿和项目建设中,如何有效利用爆炸能量是目前要求迅速解决的关键技术。空气装饰爆破技术的应用能够有效地利用爆炸能量,这证明了空气装饰爆破技术可以有效地克服柱电荷引起的许多缺点,得到理想的爆炸效果。基于动态有限元分析软件,采用垫塑料运动型薄膜 - 塑料 - 型型电动仪,采用不同的空气甲基电荷结构研究了水平软层间近场的动力应力特性和故障机理。如果具有间接起始和中空甲基电荷结构的顶部空气装饰的电荷结构,则在爆破孔中间的岩石对岩石的岩石有显着影响。如果底部空气装饰电荷结构具有间接启动,软层面不会改变典型元素的距离和距离孔底部的典型元素的张力曲线,因此水平软层间没有显着影响间接启动的底部空气甲板电荷结构。

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