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Selective breakage of mineralised synthetic particles by high voltage pulses. Part 1: Metalliferous grain-induced breakage in a two-particle paired system

机译:通过高压脉冲选择性破碎矿化合成颗粒。 第1部分:双粒子配对系统中的金属晶粒引起的破损

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The propensity of high voltage pulse (HVP) towards mineral-enriched ore particles during treatment has been reported by researchers at the Julius Kruttschnitt Mineral Research Centre. However, the fundamentals of HVP selective breakage between particles remains unclear due to complex mechanical and electrical properties of the natural ores. An experimental study of HVP selective breakage was conducted using fabricated synthetic particles embedded with various metalliferous minerals of different conductivities/permittivities. HVP tests were performed by placing the mineralised and the barren synthetic particles in the pulse discharge zone, which were then treated with one pulse loading. Part 1 of this study presents evidence of metalliferous grain-induced breakage in a two-particle paired system, with barren particles remaining intact. High-resolution images of the mineralised fragments showed that the electrical breakdown channel exerted detrimental effects upon the integrity of all the metalliferous grains tested, resulting in complete disintegration and heavy surface oxidation of the metalliferous grains, rather than liberating the metalliferous grain along its boundaries as reported in the literature. In addition, the influence of metalliferous grain locality in a particle on HVP breakage selectivity is also investigated.
机译:在Julius Kruttschnitt Mineral研究中心的研究人员报告了治疗期间富含富集矿石颗粒的高压脉冲(HVP)的倾向。然而,由于天然矿石的复杂机械和电性能,颗粒之间的HVP选择性断裂的基础仍不明确。使用嵌入不同导电性/允许性的各种金属矿物质的制造合成颗粒进行HVP选择性破裂的实验研究。通过将矿化和贫瘠合成颗粒放入脉冲放电区中的矿化和贫瘠合成颗粒进行HVP测试,然后用一个脉冲载荷处理。本研究的第1部分呈现了两种粒子配对系统中的冶金晶粒诱导的断裂的证据,其中贫瘠的颗粒保持完整。矿化片段的高分辨率图像表明,电击穿通道对所测试所有金属晶粒的完整性产生的不利影响,导致矿物质粒的完全崩解和重物氧化,而不是将沿其界限释放金属粒度在文献中报道。此外,还研究了颗粒在HVP破损选择性粒子中的冶金颗粒局部的影响。

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