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Effect of conditions of ion-plasma deposition of aluminides on structure and hardness of aluminium and dural substrates

机译:铝化物离子等离子体沉积条件对铝和硬质合金基体结构和硬度的影响

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摘要

The changes in microhardness and structure of substrates made of pure aluminium and alloy D16T after the ion-plasma deposition of coatings of Al{sub}55Cu{sub}20Fe{sub}20Ni{sub}14Si alloy are investigated. It is shown that the hardness of thecoating itself and a transition layer, as well as its depth significantly depends on the shear stress on the substrate, other conditions being equal. It was established that the strengthened sublayer exceeds the thickness of the coating itself by 2...3orders. The. distribution of iron in depth corresponds to the presence of iron-containing intermetallic phases and to the high level of sublayer strengthening (150...200mkm). The strengthening of the transition layer at a large depth is associated withstructural changes caused by diffusion-initiating polygonization and recrystallization.
机译:研究了离子沉积Al {sub} 55Cu {sub} 20Fe {sub} 20Ni {sub} 14Si合金涂层后,纯铝和D16T合金制成的基体的显微硬度和组织的变化。结果表明,在其他条件相同的情况下,涂层本身和过渡层的硬度及其深度在很大程度上取决于基材上的剪切应力。已经确定,强化的子层超过涂层本身的厚度2 ... 3个数量级。的。铁在深度上的分布对应于含铁金属间相的存在以及亚层强化的高度(150 ... 200mkm)。大深度过渡层的强化与由扩散引发的多边形化和再结晶引起的结构变化有关。

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