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Effect of Moisture and Temperature on the Mechanical Properties of an Epoxy Reinforced with Boron Carbide

机译:水分和温度对碳化硼增强环氧树脂的力学性能的影响

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摘要

The degree of degradation in a polymer composite is directly related to the amount of moisture it absorbs. Plasticization and swelling are among the undesirable consequences of absorbed water. This effect is rather important in materials under severe requirements. The use of these composites as coatings requires studying changes in their properties. For this reason, the aim of this work was to study the effect of moisture and temperature on the mechanical properties of an epoxy reinforced with boron carbide. Different B4C particle sizes (7 and 23 urn) were studied, and the carbide used was 6 wt%. The specimens were exposed to two moisture environments (50 and 95% RH) at 60°C to quantify composite degradation level. Shore D hardness, three-point bending, and pin-on-disk wear tests were used to determine the effect of humid environments. Mechanical properties were determined at several exposure time intervals. Besides, the degradation process was analysed with differential scanning calorimetry (DSC) and infrared spectroscopy (FTIR-ATR). A general loss of properties was observed after water absorption. However, most cases showed recovery after the drying process, depending on the amount of water remaining in the material, which acts as a plasticiser, particularly improving strength.
机译:聚合物复合材料的降解程度直接与其吸收的水分量有关。增塑和溶胀是吸收水的不良后果之一。在严苛条件下的材料中,此效果相当重要。这些复合材料用作涂料需要研究其性能的变化。因此,这项工作的目的是研究水分和温度对碳化硼增强环氧树脂的机械性能的影响。研究了不同的B4C粒度(7和23 n),所用碳化物为6 wt%。将样品在60°C下暴露于两种潮湿环境(50和95%RH)中以量化复合材料的降解水平。肖氏D硬度,三点弯曲和针盘磨损测试用于确定潮湿环境的影响。在几个曝光时间间隔内确定机械性能。此外,用差示扫描量热法(DSC)和红外光谱(FTIR-ATR)分析了降解过程。吸水后观察到一般性能损失。但是,大多数情况下,干燥过程后会恢复,具体取决于材料中残留的水量,水起增塑剂的作用,特别是提高强度。

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