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Mechanical Testing of Tomato Plant Stem in Relation to Structural Composition

机译:番茄植株茎与结构成分的机械测试

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摘要

As an important biological resource, the development and utilization of tomato plant stem arouse more and more attention. Facing increasingly rare resources and serious environmental protection, it will have more significant meaning to comprehensivelyuse stem resource and research its mechanical properties. This paper takes tomato plant stem as research object to observe and analyze the microstructure of the fibers, and test moisture, tensile and shear mechanical properties of different parts of stem. The results revealed that: (1) Tomato plant stem is a composite material and its microstructure mainly consists of epidermis, cortex, vascular bundle and pith; moreover, it presents on sieve texture with heterogeneous distribution. (2) Cross-sectionalarea of root is 7.08-23.4 mm2, its tensile strength and shear strength are 8.64-17.92 and 4.12-5.26 MPa, respectively, while cross-sectional area of middle is 5.94-20.19 mm2 with tensile strength and shear strength being 13.73-22.68 and 2.24-4.38 MPa separately; in terms of top part, its cross-sectional area is between 5.04 and 14.57 mm2 with tensile strength and shear strength being 11.86-29.59 and 1.4-4.27 MPa. (3) All tensile stress, tensile strength and elastic modulus from root to top part tend todecrease gradually; in addition, different parts have significant influence on both tensile strength and elastic modulus. (4) Shear stress, shear strength and shear modulus from root to top reduced gradually; besides, each part has extremely obvious impact on shear strength and shear modulus. This research provides necessary experimental data and theoretical basis for the development of harvest and processing machinery for tomato plant stems; moreover, it helps to confirm working parameters when cutting and assists to accelerate the application and promotion of comprehensive utilization of tomato plant stem.
机译:番茄作为一种重要的生物资源,其开发利用越来越受到人们的重视。面对日益稀少的资源和严峻的环境保护,全面利用茎资源并研究其力学性能将具有更重要的意义。以番茄植物茎为研究对象,观察和分析其纤维的微观结构,并测试茎不同部位的水分,拉伸和剪切力学性能。结果表明:(1)番茄植株茎是复合材料,其微观结构主要由表皮,皮层,维管束和髓组成。而且,它呈现出具有不均匀分布的筛子质地。 (2)根的截面积为7.08-23.4 mm2,其抗拉强度和剪切强度分别为8.64-17.92和4.12-5.26 MPa,而中间的截面积为5.94-20.19 mm2,具有抗拉强度和剪切强度分别为13.73-22.68和2.24-4.38 MPa;就顶部而言,其横截面积在5.04至14.57mm 2之间,拉伸强度和剪切强度为11.86-29.59和1.4-4.27MPa。 (3)从根部到顶部的所有拉伸应力,拉伸强度和弹性模量都有逐渐降低的趋势;另外,不同的部分对拉伸强度和弹性模量都有重要影响。 (4)从根部到顶部的剪切应力,剪切强度和剪切模量逐渐减小;此外,每个部分对剪切强度和剪切模量都有非常明显的影响。本研究为开发番茄茎秆收获加工机械提供了必要的实验数据和理论依据。此外,它有助于确定切割时的工作参数,并有助于加速番茄植株茎的应用和促进其综合利用。

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