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Diffusion of Palm Biodiesel in Elastomers Undergoing Multiaxial Large Deformations

机译:棕榈生物柴油在经历多轴大变形的弹性体中的扩散

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摘要

Petroleum-based fuel is facing significant depletion issue due to its limited reserves and increasing demand from various industries. Thus, various considerations from economical, environmental and political concerns have motivated researchers to develop alternative energy sources such as biofuel to decrease dependence on petroleum-based fuel. However, the changes in the fuel composition of biofuel affect the material compatibility. In engineering applications where elastomeric components are exposed to hostile environment such as palm biodiesel medium, at least two aspects contribute to the degradation of the materials during the service: diffusion of the liquids leading to swelling and fluctuating multiaxial mechanical loading leading to fatigue failure. Therefore, it is of utmost importance to study the mechanical responses of elastomers under this coupled diffusion-mechanical loading in order to predict accurately their fatigue failure. The present work investigates the swelling of elastomers under simultaneous diffusion of palm biodie?el and multiaxial large deformations.
机译:石油基燃料由于其有限的储量和各个行业的需求增长而面临着严重的消耗问题。因此,来自经济,环境和政治方面的各种考虑促使研究人员开发替代能源,例如生物燃料,以减少对石油基燃料的依赖。但是,生物燃料的燃料成分的变化会影响材料的相容性。在弹性体组件暴露于不利环境(例如棕榈生物柴油介质)的工程应用中,至少两个方面会导致服务期间材料的降解:液体的扩散导致溶胀和波动的多轴机械载荷导致疲劳破坏。因此,至关重要的是研究弹性体在这种扩散-机械耦合载荷下的机械响应,以准确预测其疲劳破坏。本工作研究了在棕榈生物柴油同时扩散和多轴大变形下弹性体的溶胀。

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