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首页> 外文期刊>Research in Agricultural Engineering >Determination of the physical and mechanical properties of a potato (the Agria variety) in order to mechanise the harvesting and post-harvesting operations
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Determination of the physical and mechanical properties of a potato (the Agria variety) in order to mechanise the harvesting and post-harvesting operations

机译:确定马铃薯(Agria品种)的物理和机械特性,以机械化收割和收获后的操作

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Studying the physical and mechanical properties of agricultural products has been the subject of criticism and discussion for many years already and has attracted the attention of many researchers. The physical and mechanical properties of agriculture products are the most important parameters in the design of agricultural machinery sorting systems, transmissions, processing and packaging systems. The potato is one of the most important agricultural products as a food resource. The aim of this research is to investigate the physical properties and mechanical behaviour of the potato due to its importance and the current inadequate information about it. In this research, some of the physical and mechanical properties of the potato were measured in standard conditions. The length, width, thickness, geometric mean diameter and arithmetical diameter, sphericity, surface area, aspect ratio, mass, volume, bulk density and the projected mean area were included in the physical properties. The mechanical properties of the potato were determined by using a universal testing machine (MRT-5; Santam, Germany) with a uniaxial compression test. Then, the mechanical properties were measured with four repetitions. The physical properties of the potato such as length, width, thickness, mass, volume and geometric mean diameter had a direct relationship, while the density had an inverse relation to the size. The result of the mechanical properties of the sample, such as vertical stress, elasticity module, deformation energy, fracture force and deformation were obtained respectively as 0.34 MPa, 3.09 MPa, 892.02 J, 8.80 N and 207.22 mm. The comparison of the potato’s real volume with the standard shapes showed that the potato’s shape is similar to an oval due to the largest determination coefficient ( R sup2/sup = 0.86). The results of this research can be used for the design and optimisation of the processing equipment, as well as the transporting, sorting and packing of the potato crop.
机译:研究农产品的物理和机械性能已经成为多年来批评和讨论的主题,并引起了许多研究者的关注。农产品的物理和机械性能是农业机械分类系统,传动系统,加工系统和包装系统设计中最重要的参数。马铃薯是最重要的农产品之一,是一种粮食资源。这项研究的目的是调查马铃薯的物理性质和机械性能,因为马铃薯的重要性和当前有关马铃薯的信息不足。在这项研究中,在标准条件下测量了马铃薯的一些物理和机械性能。物理性质包括长度,宽度,厚度,几何平均直径和算术直径,球形度,表面积,长宽比,质量,体积,体积密度和预计的平均面积。马铃薯的机械性能通过使用单轴压缩试验的通用试验机(MRT-5;桑坦,德国)测定。然后,通过四次重复测量机械性能。马铃薯的物理特性(如长度,宽度,厚度,质量,体积和几何平均直径)具有直接关系,而密度与大小呈反比关系。样品的机械性能结果,如垂直应力,弹性模量,变形能,断裂力和变形,分别为0.34 MPa,3.09 MPa,892.02 J,8.80 N和207.22 mm。马铃薯的实际体积与标准形状的比较表明,由于最大的测定系数(R 2 = 0.86),马铃薯的形状类似于椭圆形。这项研究的结果可用于加工设备的设计和优化,以及马铃薯作物的运输,分类和包装。

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