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首页> 外文期刊>Industrial Crops and Products >Physico-chemical characterization of Tunisian plant fibers and its utilization as reinforcement for plaster based composites.
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Physico-chemical characterization of Tunisian plant fibers and its utilization as reinforcement for plaster based composites.

机译:突尼斯植物纤维的理化特性及其在石膏基复合材料中的增强作用。

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摘要

Alfa leaves, rush stems, palm leaflets and date palm wood are important renewable raw materials available in Tunisia where they are commonly used in handcrafts (like basketwork and carpets for example). To add value to these plants by using them as a potential reinforcement in so called natural fiber composites a better understanding of their physico-chemical properties is needed. As an application, we have studied the possibility of using alfa leaves, rush stems, palm leaflets as reinforcement in building materials trying to replace commercial fibers. Thus, the effect of hygroscopic parameters were studied and showed different behaviors depending on the raw material origin and morphology. Palm tree stipe is more sensitive than other fibers concerning the impregnation yield and saturation degree. The chemical composition was established. The contents of holocellulose and lignin were comparable to those found with fibers and wood (softwood and hardwood). Extractives in different solvents and ash contents are relatively high. Extractives from fibers are similar in their values and correspond also to those of palm tree stipe, but they are higher than those of hardwood. About ash contents, the same observation was found. Flexural strength of Tunisian fiber-plaster based composites show a maximum of resistance between 4.8 and 5.6 MPa with a strengthening rate of 5% in comparison with commercial plant fiber that presents a bending strength of 4.8 MPa for also a strengthening rate of 5%.
机译:阿尔法叶子,草冠,棕榈叶和枣椰子是突尼斯可用的重要可再生原材料,在突尼斯,它们通常用于手工艺品(例如编篮和地毯)。为了通过将它们用作所谓的天然纤维复合材料中的潜在增强材料来为这些植物增加价值,需要对其理化性质有更好的了解。作为一种应用,我们研究了使用阿尔法叶,草梗,棕榈叶作为建筑材料中的增强材料来替代商业纤维的可能性。因此,研究了吸湿参数的影响,并显示了不同的行为,具体取决于原材料的来源和形态。在浸渍产量和饱和度方面,棕榈树柄比其他纤维更敏感。确定化学成分。纤维素和木质素的含量与纤维和木材(软木和硬木)的含量相当。不同溶剂中的萃取物和灰分含量较高。来自纤维的提取物的价值相似,也与棕榈树柄的提取物相对应,但它们比硬木的提取物要高。关于灰分含量,发现相同的观察结果。突尼斯基于纤维-塑料的复合材料的抗弯强度在4.8到5.6 MPa之间显示出最大的阻力,增强率为5%,而商用植物纤维的抗弯强度为4.8 MPa,而增强率为5%。

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