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首页> 外文期刊>Structural durability & health monitoring >Effect of Nitriding Treatment on Fatigue life for Free Piston Linear Engine Component using Frequency Response Method: a Finite Element Approach
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Effect of Nitriding Treatment on Fatigue life for Free Piston Linear Engine Component using Frequency Response Method: a Finite Element Approach

机译:频响法渗氮处理对自由活塞直线发动机零件疲劳寿命的影响:有限元方法

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Low weight and long lifetime are necessary requirements for automobiles to significantly reduce CO_2 emission and environmental burdens in their use. Aluminum alloys are one of the most promising materials selections for automobiles parts and electrical components to reduce their weight and to increase their specific strength. This paper presents the role of nitriding on the fatigue life of the vibrating cylinder block for a new two-stroke free piston engine using variable amplitude loading conditions. The finite element modeling and analysis have been performed utilising a computer aided design and a finite element analysis codes respectively. In addition, the fatigue life prediction was carried out using finite element based fatigue analysis code. The material AA6061-T6 is considered in this study. The narrow band frequency response approach was applied to predict the fatigue life of cylinder block using different load histories. Based on the finite element results, it is observed that there is a significant variation between the nitriding treatment and untreated cylinder block of free piston engine. The obtained results indicate that the ni-trided treatment produces longest life for all loading conditions. Therefore, the nitriding process is one of the promising surface treatments for aluminum alloy parts to increase the fatigue life of the linear engine cylinder block.
机译:轻量化和长寿命是汽车显着减少其使用中的CO_2排放和环境负担的必要要求。铝合金是用于汽车零件和电气部件的最有希望的材料选择之一,以减轻其重量并增加其比强度。本文介绍了在变幅载荷条件下,新型二冲程自由活塞发动机中氮化处理对振动气缸体疲劳寿命的作用。分别利用计算机辅助设计和有限元分析代码进行了有限元建模和分析。另外,使用基于有限元的疲劳分析代码进行了疲劳寿命预测。在这项研究中考虑了AA6061-T6材料。窄带频率响应方法被用于预测使用不同载荷历史的汽缸体的疲劳寿命。基于有限元结果,可以观察到自由活塞式发动机的渗氮处理与未经处理的气缸体之间存在明显的差异。所得结果表明,在所有负载条件下,经过ni-trided处理的使用寿命最长。因此,渗氮工艺是铝合金零件增加线性发动机气缸体疲劳寿命的有前途的表面处理方法之一。

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