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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Investigation of the effects of eco-friendly MQL system to improve the mechanical performance of WE43 magnesium alloys by the burnishing process
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Investigation of the effects of eco-friendly MQL system to improve the mechanical performance of WE43 magnesium alloys by the burnishing process

机译:研究环保型MQL系统通过抛光工艺提高WE43镁合金力学性能的效果

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Today, manufacturers in the automotive and aerospace industries are the major contributors to carbon emissions. Reducing carbon emissions is critical for these industries. Doing so will both reduce energy consumption and enable environmentally friendly production. Therefore, the use of magnesium alloys has become important due to their high specific strength-to weight ratio and lightness. Since magnesium alloys cannot maintain their strength beyond a certain temperature, researchers have increased the strength of the WE series magnesium alloys by adding yttrium and rare earth elements up to temperatures exceeding 300 degrees C. Although the mechanical properties of the WE series alloys are suitable for high-temperature applications, these alloys are susceptible to corrosion and fatigue due to their high surface reactivity and low hardness. Therefore, this paper focused on preventing this problem by improving the surface quality and microhardness of WE series magnesium alloys. Ball burnishing is an efficient and cost-effective method of mechanical surface treatment. The analysis of surface quality and microhardness was carried out by applying the ball burnishing process in different media (dry and minimum quantity lubrication) and parameters (force, feed rate, passes) on WE43 magnesium alloy. The experimental design was planned using Taguchi L16 mixed orthogonal design. The parameters required for optimum surface quality and microhardness were determined by determining the signal-to-noise ratio of the results obtained. It was found that the force parameter is the most effective parameter affecting the surface quality and microhardness of the material. The predicted and experimental results show a high degree of convergence; therefore, this research can be successfully applied in the industrial sector, especially in the automotive industry.
机译:如今,汽车和航空航天工业的制造商是碳排放的主要贡献者。减少碳排放对这些行业至关重要。这样做既能降低能源消耗,又能实现环保生产。因此,镁合金因其高比强度重量比和轻质而变得重要。由于镁合金在超过一定温度后仍不能保持其强度,因此研究人员通过添加钇和稀土元素来提高WE系列镁合金的强度,使其温度超过300°C。虽然WE系列合金的机械性能适用于高温应用,但这些合金由于其高表面反应性和低硬度而容易受到腐蚀和疲劳。因此,本文重点通过提高WE系列镁合金的表面质量和显微硬度来防止这一问题。球抛光是一种高效且具有成本效益的机械表面处理方法。通过在WE43镁合金上应用不同介质(干润滑和微量润滑)和参数(力、进给率、通道)的球抛光工艺,对表面质量和显微硬度进行了分析。实验设计采用田口L16混合正交设计。通过确定所获得结果的信噪比来确定最佳表面质量和显微硬度所需的参数。研究发现,力参数是影响材料表面质量和显微硬度的最有效参数。预测结果与实验结果具有高度的收敛性;因此,这项研究可以成功地应用于工业领域,特别是在汽车工业中。

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