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首页> 外文期刊>Journal of food engineering >Effect of moisture content on some physical and mechanical properties of faba bean (Vicia faba L.) grains
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Effect of moisture content on some physical and mechanical properties of faba bean (Vicia faba L.) grains

机译:水分含量对蚕豆某些物理和机械性能的影响

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This study was carried out to determine the effect of moisture content on some physical properties and mechanical behaviour under compression load of faba bean grains. Four levels of moisture content ranging from 9.89% to 25.08% d.b. (dry basis) was used. The average length, width, thickness, geometric mean diameter, unit mass of grain, sphericity, thousand grain mass and angle of repose ranged from 18.40 to 19.77 mm, 12.54 to 13.66 mm, 7.00 to 8.03 mm, 11.68 to 13.01 mm, 1.147 to 1.301 g, 63.47% to 65.78%, 1140.15 to 1332.67 g and 13.94° to 18.58° as the moisture content increased from 9.89% to 25.08% d.b., respectively. As the moisture content increased from 9.89% to 25.08% d.b., the bulk density was found to decrease from 419.59 to 381.60 kg/m~3, whereas the grain volume, true density, porosity and surface area were found to increase from 0.998 to 1.099 cm~3, 1151.33 to 1206.21 kg/m~3, 63.09 to 67.21% and 4.29 to 5.31 cm~2, respectively. The static and dynamic coefficients of friction on various surfaces, namely, galvanized metal, chipboard, mild steel, plywood and rubber also increased linearly with an increase in moisture content. The mechanic properties of faba bean were determined in terms of average rupture force, specific deformation and rupture energy along X-, Y-, and Z-axes. Specific deformation and rupture energy of the faba bean grains generally increased in magnitude with an increase in moisture content, while rupture force decreased for compression along X-, Y-, and Z-axes. The highest rupture force, specific deformation and rupture energy in all moisture content levels were obtained for faba bean grains loaded along the Z-axis.
机译:进行这项研究来确定水分含量对蚕豆颗粒压缩负荷下某些物理性质和机械性能的影响。水分含量的四个水平为9.89%至25.08%d.b. (干燥)。平均长度,宽度,厚度,几何平均直径,颗粒单位质量,球形度,千颗粒质量和休止角范围为18.40至19.77 mm,12.54至13.66 mm,7.00至8.03 mm,11.68至13.01 mm,1.147至含水量分别从9.89%增至25.08%db,分别为1.301 g,63.47%至65.78%,1140.15至1332.67 g和13.94°至18.58°。随着水分含量从9.89%增至25.08%db,堆积密度从419.59 kg / m〜3降低至381.60 kg / m〜3,而晶粒体积,真实密度,孔隙率和表面积从0.998升高至1.099 cm〜3、1151.33至1206.21 kg / m〜3、63.09至67.21%和4.29至5.31 cm〜2。镀锌金属,刨花板,低碳钢,胶合板和橡胶在各种表面上的静态和动态摩擦系数也随着水分含量的增加而线性增加。根据平均断裂力,沿X,Y和Z轴的比变形和断裂能确定蚕豆的力学性能。蚕豆籽粒的比变形和破裂能通常随水分含量的增加而增加,而破裂力则随着沿X轴,Y轴和Z轴的压缩而减小。沿Z轴加载的蚕豆籽粒在所有水分含量水平下均具有最高的破裂力,比变形和破裂能。

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