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Predicting Guar Seed Splitting by Compression between Two Plates Using Hertz Theory of Contact Stresses

机译:利用接触应力的赫兹理论预测瓜尔豆种子在两块板之间的压缩分裂

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Hertz's theory of contact stresses was applied to predict the splitting of guar seeds during uni-axial compressive loading between 2 rigid parallel plates. The apparent modulus of elasticity of guar seeds varied between 296.18 and 116.19 MPa when force was applied normal to hilum joint (horizontal position), whereas it varied between 171.86 and 54.18 MPa when force was applied in the direction of hilum joint (vertical position) with in moisture content range of 5.16% to 15.28% (d.b. At higher moisture contents, the seeds yielded after considerable deformation, thus showing ductile nature. Distribution of stresses below the point of contact were plotted to predict the location of critical point, which was found at 0.44 to 0.64 mm and 0.37 to 0.53 mm below the contact point in vertical and horizontal loading, respectively, depending upon moisture content. The separation of cotyledons from each other initiated before yielding of cotyledons and thus splitting of seed took place. The relationships between apparent modulus of elasticity, principal stresses with moisture content were described using second-order polynomial equations and validated experimentally.
机译:应用赫兹接触应力理论来预测瓜尔种子在两个刚性平行板之间的单轴压缩载荷下的分裂。瓜耳种子的表观弹性模量在法向腹股沟关节(水平位置)上施加力时在296.18和116.19 MPa之间变化,而当在腹股沟关节(垂直位置)方向上施加力时在171.86和54.18 MPa之间变化。水分含量在5.16%到15.28%(db)之间时,在较高的水分含量下,种子经过相当大的变形后屈服,从而显示出延展性。绘制了接触点以下的应力分布,以预测临界点的位置,取决于水分含量,在垂直和水平负载下分别在接触点下方0.44至0.64 mm和0.37至0.53 mm处,子叶彼此之间的分离在产生子叶之前就开始了,因此发生了种子分裂。表观弹性模量,主应力和水分含量用二阶多项式方程描述并验证d实验上。

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