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Optimisation of mechanical milling process for production of AA 7075/(SiC or TiB₂) composite powders

机译:生产aa 7075 /(siC或TiB 2)复合粉末的机械球磨工艺优化

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摘要

The present work concerns the processing of composite powders based on 7075 aluminium alloy by mechanical milling. A premixed powder (Alumix 431D, Ecka Granules, Germany) was used as the matrix material, and two different ceramic reinforcements (SiC and TiB₂) were chosen as reinforcements. The main objective was to evaluate the effect of the content and addition method of the process control agent as well as the content and type of reinforcement on the microstructural and morphological evolutions of the powder particles during milling process and the as milled properties of the processed materials. Results showed that regardless of the starting composition, alloying took place through three stages, in which deformation, cold welding and fracturing of powder particles were the main mechanisms involved respectively. The mechanically milled composite powders showed a fine and homogenous distribution of reinforcement particles. A higher content of reinforcement resulted in a lower crystalline size for the milled powders (∼18 nm for composite powders containing 15 vol.-% ceramic particles).
机译:本工作涉及通过机械研磨加工基于7075铝合金的复合粉末。将预混合的粉末(Alumix 431D,Ecka Granules,德国)用作基质材料,并选择了两种不同的陶瓷增强材料(SiC和TiB 2)作为增强材料。主要目的是评估过程控制剂的含量和添加方法以及增强剂的含量和类型对研磨过程中粉末颗粒的微观结构和形态演变以及所加工材料的研磨性能的影响。 。结果表明,不论起始成分如何,合金化过程均经历三个阶段,其中粉末颗粒的变形,冷焊和断裂分别是主要的机理。机械研磨的复合粉末显示出增强颗粒的细小均匀分布。较高的补强含量导致研磨后的粉末具有较低的结晶尺寸(对于含有15%(体积)陶瓷颗粒的复合粉末,约为18nm)。

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