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首页> 外文期刊>Mesopotamia Environmental Journal >Improvement of mechanical properties of polyvinyl alcohol by addition of biomaterial (Okra shell and peel peas) for production of environmentally friendly products
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Improvement of mechanical properties of polyvinyl alcohol by addition of biomaterial (Okra shell and peel peas) for production of environmentally friendly products

机译:通过添加用于生产环保产品的生物材料(黄秋葵壳和豌豆)改善聚乙烯醇的机械性能

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A bio-based automotive parts are currently astonishing applied such as, DaimlerChrysler of biggest proponent with up to 50 components in its European vehicles. The properties of natural fibers are closely related to the nature of cellulose and its crystallinity properties. Where, fibers with higher cellulose content possess impressive specific mechanical properties.In making of natural fibers composites, the natural fibers are usually collected, dried, ground and sieved to obtain the desired size prior to processing between (125-250) μm. The processing method that used to prepare natural fiber based composites is moulding ,where the natural fiber for new composites are processing at low temperature limited to 100?C with a shorter processing time reached 24hr in order to avoid the degradation of natural fibers.PVAatural fibers green composites processing methods and applications in various fields have been investigated. From results these green composite based on okra shell and peel Pease fibers reinforced PVA composites showed good fiber/matrix bonding and exhibited high tensile strength with the maximum fiber content in addition to other mechanical properties as (impact strength, compression strength, and bending distortion) with preference to the combined fibers composite that selected to be a best optimum one.
机译:目前,以生物为基础的汽车零部件的应用令人惊讶,例如戴姆勒克莱斯勒是最大的支持者,其欧洲汽车中多达50个零部件。天然纤维的性质与纤维素的性质及其结晶性密切相关。纤维素含量较高的纤维具有令人印象深刻的特定机械性能。在制备天然纤维复合材料时,通常将天然纤维收集,干燥,磨碎和筛分,以得到所需的尺寸,然后加工至(125-250)μm之间。用于制备天然纤维基复合材料的加工方法是成型,其中用于新复合材料的天然纤维在100°C的低温下加工,并在24小时内缩短加工时间,以避免天然纤维降解。研究了天然纤维绿色复合材料的加工方法及其在各个领域的应用。结果表明,这些基于黄秋葵壳和果皮的绿色复合材料豌豆纤维增强的PVA复合材料表现出良好的纤维/基体粘合性,并具有最大的纤维含量,具有高拉伸强度,此外还具有其他机械性能,例如(冲击强度,压缩强度和弯曲变形)最好选择被选择为最佳纤维的复合纤维复合材料。

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