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Effects of moisture content and level in the crop on the engineering properties of alfalfa stems

机译:作物含水量和水平对苜蓿茎秆工程特性的影响

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Some physical and mechanical properties of alfalfa stems are presented. The experiments were conducted at four moisture content levels from 10% w.b. to 80% w.b. and at three levels up the stem. At all levels along the stem, moisture contents less than 40% w.b. did not significantly influence major and minor diameters, thickness, cross-sectional area, second moment and polar moment of area. At the different moisture contents studied, the values of the tensile strength were within the ranges 9.24-26.35 MPa, 16.31-32.74 MPa, and 28.88-43.82 MPa for the upper, middle and lower levels in the crop, respectively. The maximum shear strength and shearing energy were 28.16 MPa and 345.80 mJ, respectively. The value of the bending stress obtained at the lowest moisture content was approximately 3 times greater than at the highest moisture content. The average Young's modulus ranged from 0.79 GPa to 3.99 GPa. The maximum and minimum of torsional stresses were found to be 4725 kPa and 465 kPa, respectively. The fact that a greater shearing energy was obtained at the lower levels in the crop could be due to the accumulation of more mature fibres in the stem. It was concluded that an increase in moisture content of stem leads to a decrease in the tensile strength, bending stress, Young's modulus, torsional stress, modulus of rigidity and to an increase in shear strength and shearing energy.
机译:介绍了苜蓿茎的一些物理和机械性能。实验从10%w.b的四个水分含量水平进行。至80%w.b.在三个层次上在茎的所有水平上,水分含量均低于40%w.b。并没有显着影响大,小直径,厚度,横截面积,第二矩和极矩。在研究的不同水分含量下,作物上,中和下水平的抗张强度值分别在9.24-26.35 MPa,16.31-32.74 MPa和28.88-43.82 MPa范围内。最大剪切强度和剪切能分别为28.16 MPa和345.80 mJ。在最低水分含量下获得的弯曲应力值大约是在最高水分含量下大约3倍。平均杨氏模量在0.79GPa至3.99GPa的范围内。发现最大和最小扭转应力分别为4725 kPa和465 kPa。在较低水平的作物中获得更大的剪切能的事实可能是由于茎中积累了更多的成熟纤维。结论是,茎中水分含量的增加导致抗张强度,弯曲应力,杨氏模量,扭转应力,刚度模量降低,并导致剪切强度和剪切能量增加。

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