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Deposition characteristics and behaviour of high-pressure cold-sprayed silicon powder

机译:高压冷喷涂硅粉的沉积特性和行为

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The high-pressure cold spraying technology was adopted to deposit silicon particles on the copper substrates for preparing the silicon-based electrode of lithium-ion batteries. The deposition of silicon powder was accomplished at two spray process parameter sets by impacting the particle stream or individual particle. The microstructure and the morphology of the silicon coatings were characterised by scanning electron microscopy. A single-silicon particle represents three different deposition behaviours. The mass gains of as-sprayed samples are negative over multiple spray passes, but the thin silicon coating with the particular covered structures is formed. Increasing the number of spray pass cannot cause the obvious increase in the coating thickness. The interfacial morphology of the silicon coatings indicates that, except for the plastic deformation of the copper substrate, both the mechanical interlock effect among the deposited silicon particles and even the chemical binding contributing to the effective bond of silicon particles to the substrate.
机译:采用高压冷喷涂技术在铜基材上沉积硅颗粒,用于制备锂离子电池的硅基电极。通过撞击颗粒物流或单独的颗粒,在两个喷雾工艺参数组中完成硅粉末。通过扫描电子显微镜表征硅涂层的微观结构和形态。单硅颗粒代表三种不同的沉积行为。在多个喷射过程中,喷雾样品的质量增益是阴性的,但是形成具有特定覆盖结构的薄硅涂层。增加喷射通道的数量不能导致涂层厚度明显增加。硅涂层的界面形态表明,除了铜基材的塑性变形外,沉积的硅颗粒之间的机械互锁效应甚至有助于硅颗粒对基材的有效键。

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