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Influence of high aluminium content on the mechanical properties of directionally solidified multicrystalline silicon

机译:高铝含量对定向凝固多晶硅力学性能的影响

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摘要

The purpose of this research is the mechanical characterisation of multicrystalline silicon crystallised from silicon feedstock with a high content of aluminium for photovoltaic applications. The mechanical strength, fracture toughness and elastic modulus were measured at different positions within the multicrystalline silicon block to quantify the impact of the segregation of impurities on these mechanical properties. Aluminium segregated to the top of the block and caused extensive micro-cracking of the silicon matrix due to the thermal mismatch between silicon and the aluminium inclusions. Silicon nitride inclusions reduced the fracture toughness and caused failure by radial cracking in its surroundings due to its thermal mismatch with silicon. However, silicon carbide increased the fracture toughness and elastic modulus of silicon.
机译:这项研究的目的是从硅原料中结晶的多晶硅的机械特性,该硅原料具有高含量的铝,可用于光伏应用。在多晶硅块内的不同位置处测量机械强度,断裂韧性和弹性模量,以量化杂质的分离对这些机械性能的影响。由于硅和铝夹杂物之间的热失配,铝被隔离到块的顶部,并引起硅基体的广泛微裂纹。氮化硅夹杂物由于与硅的热失配而降低了断裂韧性并由于其周围的径向裂纹而导致失效。然而,碳化硅增加了硅的断裂韧性和弹性模量。

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