Blanco David, Rubio Eva María, Marín Marta María, Davim Joao Paulo
Department of Manufacturing Engineering, Industrial Engineering School, Universidad Nacional de Educación a Distancia (UNED), St/Juan del Rosal 12, E28040 Madrid, Spain.
Department of Mechanical Engineering, University of Aveiro, 3810-193 Aveiro, Portugal.
Materials (Basel). 2020 Jan 15;13(2):393. doi: 10.3390/ma13020393.
This paper focused on the maintenance or repair of holes made using hybrid Mg-Al-Mg components by drilling, using two sustainable cooling techniques (dry machining and cold compressed air) and taking surface roughness on the inside of the holes as the response variable. The novelty of the work is in proving that the repair operations of the multi-material components (magnesium-aluminum-magnesium) and the parts made of aluminum and magnesium (separately) but assembled to form a higher component can be done simultaneously, thus reducing the time and cost of the assembly and disassembly of this type of component. The study is based on a design of experiments (DOE) defined as a product of a full factorial 2 and a block of two factors (3 × 2). Based on our findings, we propose that the analyzed operations are feasible under sustainable conditions and, in particular, under dry machining. Also, the results depend on the machining order.
本文聚焦于通过钻孔对由混合镁铝镁部件制成的孔进行维护或修复,采用两种可持续冷却技术(干式加工和冷压缩空气),并将孔内部的表面粗糙度作为响应变量。这项工作的新颖之处在于证明了多材料部件(镁铝镁)以及由铝和镁分别制成但组装成一个更高层级部件的零件的修复操作可以同时进行,从而减少了此类部件的组装和拆卸时间及成本。该研究基于一种实验设计(DOE),其定义为全因子2和一个双因素块(3×2)的乘积。基于我们的研究结果,我们提出所分析的操作在可持续条件下,特别是在干式加工条件下是可行的。此外,结果还取决于加工顺序。