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首页> 外文期刊>Applied Mechanics and Materials >Surface Structure of Epoxy Treated Semantan Bamboo (Gigantochloa scortechinii)
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Surface Structure of Epoxy Treated Semantan Bamboo (Gigantochloa scortechinii)

机译:环氧治疗半竹(Gigantochloa Scortechinii)的表面结构

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Bamboo is well known as the oldest structural material that possess unique anatomical structure and superior mechanical properties. It has become a subject of interest worldwide and research is being conducted for its structural applications including safety, durability and also mechanical properties. Many studies carried out previously indeed have shown superior strength of bamboo. Most of the research circulate on the mechanical properties improvement using chemical, plasma, enzyme, fungi and nanocellulose coating treatment. However, despite the conventional treatments’ advantages, but they are impractical, costly and it able to change the structure of the treated materials. This study aims to evaluate the morphological properties of untreated and treated of Semantan bamboo culm (Gigantochloa scortechinii) after subjected to a simple and cost-effective epoxy treatment. By using Alicona Infinite Focus 3D profilometer machine, the comparison between the untreated and treated surfaces of bamboo can be obtained under profile surface roughness test. Meanwhile, the depth formation of the treated surfaces also can be obtained by using the same machine under profile form management test. Next, optical microscope was used later to examine the epoxy matrix treatment formation of the untreated and treated bamboo surfaces. The result revealed that the application of epoxy treatment gave a better surface roughness and structure as it treat the bamboo strips and concurrently gave a thin layer of coating to the bamboo strips. The findings of this study suggest that epoxy treatment can be an effective and economical approach to treat natural fiber as it resulting in good surface structure which simultaneously increase the chemical and mechanical interlocking; thus, the bond between matrix and natural fiber become stronger.
机译:竹子是众所周知的结构材料,具有独特的解剖结构和优越的机械性能。它已成为全球兴趣的主题,并且正在为其结构应用进行研究,包括安全性,耐用性和机械性能。此前进行的许多研究确实表明了竹子的优越性。大多数研究使用化学,血浆,酶,真菌和纳米纤维素涂层处理循环机械性能改善。然而,尽管传统的治疗的优势,但它们是不切实际的,昂贵的,昂贵,并且能够改变处理的材料的结构。本研究旨在评估在经过简单且经济高效的环氧处理后,评估未处理和治疗的单竹秆(Gigantochloa Scortechinii)的形态学性质。通过使用Alicona无限聚焦3D轮廓仪机器,可以在概况表面粗糙度试验下获得未处理和处理的竹子表面之间的比较。同时,处理表面的深度形成也可以通过在概况形式管理测试下使用相同的机器来获得。接下来,稍后使用光学显微镜,以检查未处理和处理过的竹表面的环氧基质处理。结果表明,环氧处理的应用得出了更好的表面粗糙度和结构,因为它处理竹条并同时将薄层涂层涂布到竹条。本研究的结果表明环氧治疗可以是一种有效且经济的方法来治疗天然纤维,导致良好的表面结构,同时增加化学和机械互锁;因此,基质和天然纤维之间的键变强。

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