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Fragmentation in small-scale confined blasting

机译:小型密闭爆破中的破碎

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Design of sub-level blasting rounds and optimisation has become more important now when the sizes of the blasting rings get larger. Sufficient fragmentation is one of the key factors, and in confined blasting as in sub-level caving, this influences the mobilisation of the blasted ring. Model scale tests have been made to understand the mechanisms of rock breakage and therefore fragmentation under relatively confined conditions. By using the acoustic impedance between the blasted material and the confining debris, a relationship for fragmentation has been found depending on material, specific charge (powder factor) and physical properties of the debris. The results can be comparable with confined blasting in large scale.
机译:现在,当爆破环的尺寸变大时,次爆破设计和优化就变得越来越重要。充分的破碎是关键因素之一,在密闭爆破中,如在地下崩落中,这会影响爆破环的动员。已经进行了模型规模测试,以了解岩石破碎的机理,以及在相对狭窄的条件下破碎的机理。通过使用喷砂材料和限制碎屑之间的声阻抗,已发现碎屑的关系取决于材料,碎屑的比电荷(粉末系数)和物理性质。其结果可与大规模密闭爆破相媲美。

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