Effects of Characteristics of Sisal Fiber using the SPSS Method

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Abstract

The distinguishing qualities or traits of anything are its characteristics. They can be viewed as traits that set one person or thing apart from another. For instance, the chameleon's ability to blend in is one of its traits. Soft, straight, and golden in color, sisal fibers are. Sisal can have long or short fibers because it is extremely coarse and rigid. Because of its strength, toughness, stretch ability, compatibility with some colors, and resilience to degradation in saline water, sisal is prized for use as cordage. Sisal can be fashioned into carpets, mats, and a variety of handicrafts in addition to its traditional applications as rope, ropes, string, and yarn. Sisal fiber is a tough, robust material with low flexibility that is obtained from freshly cut leaves of the plant. It is crucial in the production of materials like carpeting, coarse purses, maritime rope (where strong resistance to saltwater is required), and cordage. Research significance: In recent years, materials engineers and material scientists have paid close attention to sisal-fiber reinforced composites as a type of environmental composites. Effects of fiber surface treatment on fiber compressive properties and fiber-matrix are discussed in this article. Tensile as well as single-strand strand pull tests were used, respectively, to assess the interfacial characteristics. For assessing the implies that the average shear resistance of composite laminates, a short beam shearing test was also carried out. High density polyethylene (HDPE), vinyl ester, and epoxy were selected as the matrix materials. Two different fiber surface-treatment techniques, chemical bonding and oxidation, were used to boost interfacial strength. According to the results, different fiber surface-treatment techniques had varying effects on the tensile strength of sisal fiber, as well as the strength and bonding characteristics of the fiber-matrix interface. As a result, this work can provide important knowledge on jute fiber-polymer matrix compound interface design. Method: Ratio studies are statistical analyses of data from appraisals and property valuations. Nearly all states utilize them to produce quantitative measure of the proportion of current market price about which individually estimated taxable property is appraised as well as to offer assessment performance indicators. Evaluation parameters: Fiber diameter (mm), Water content (%), Tensile strength(MPa), Tensile modulus(GPa) and Elongation at break (%) Result: The Cronbach's Alpha Reliability result. The overall Cronbach's Alpha value for the model is .658 which indicates 66% reliability. From the literature review, the above 50% Cronbach's Alpha value model can be considered for analysis. Conclusion: Characteristics of sisal fiber the Cronbach's Alpha Reliability result. The overall Cronbach's Alpha value for the model is .658 which indicates 66% reliability. From the literature review, the above 50% Cronbach's Alpha value model can be considered for analysis.
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用SPSS分析方法分析剑麻纤维特性的影响
任何事物的区别性质或特征是它的特征。它们可以被看作是将一个人或一件事与另一个人或一件事区分开来的特征。例如,变色龙的特征之一就是能够融入社会。柔软,直,金黄色,剑麻纤维是。剑麻的纤维可以长或短,因为它非常粗糙和坚硬。因为它的强度,韧性,拉伸能力,与某些颜色的相容性,以及在盐水中降解的弹性,剑麻被用作绳索。剑麻可以制成地毯、垫子和各种手工艺品,除了它的传统用途,如绳子、绳索、绳子和纱线。剑麻纤维是一种坚韧、坚固的材料,柔韧性低,是从刚割下的植物叶子中获得的。它在地毯、粗钱包、海上绳索(需要耐盐水)和绳索等材料的生产中至关重要。研究意义:剑麻纤维增强复合材料作为一类环保复合材料,近年来受到材料工程师和材料科学家的密切关注。讨论了纤维表面处理对纤维压缩性能和纤维基体的影响。分别使用拉伸和单股拉伸试验来评估界面特性。为了评估复合材料层合板的平均抗剪性能,还进行了短梁剪切试验。选用高密度聚乙烯(HDPE)、乙烯基酯和环氧树脂作为基体材料。两种不同的纤维表面处理技术,化学键合和氧化,被用来提高界面强度。结果表明,不同的纤维表面处理工艺对剑麻纤维的拉伸强度以及纤维-基体界面的强度和结合特性有不同的影响。研究结果为黄麻纤维-聚合物基复合材料界面设计提供了重要的理论依据。方法:比率研究是对估价和财产估价数据的统计分析。几乎所有的州都利用它们来定量衡量当前市场价格中个别估计的应税财产所占的比例,并提供评估绩效指标。评价参数:纤维直径(mm)、含水量(%)、拉伸强度(MPa)、拉伸模量(GPa)、断裂伸长率(%)结果:Cronbach’s Alpha信度结果。模型的总体Cronbach’s Alpha值为0.658,信度为66%。从文献综述来看,可以考虑以上50%的Cronbach’s Alpha值模型进行分析。结论:剑麻纤维的特性符合Cronbach's Alpha信度结果。模型的总体Cronbach’s Alpha值为0.658,信度为66%。从文献综述来看,可以考虑以上50%的Cronbach’s Alpha值模型进行分析。
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