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Analysis of Deformation and Equivalent Stress during Biomass Material Compression Molding

机译:生物质材料压缩成型期间变形和等同应力分析

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Ansys is adopted to analyze mold deformation and stress field distribution rule during the process of compressing biomass under pressure of 20Mpa. By means of unit selection, material property setting, mesh partition, contact pair establishment, load and constraint applying, and solver setting, the stress and strain of overall mold are analyzed. Deformation and equivalent Stress of compression structure, base, mold, and compression bar were analyzed. We can have conclusions: The distribution of stress forced on compressor is not completely uniform, where the stress at base is slightly decreased; the stress and strain of compression bar is the largest, and stress concentration my occur at top of compression bar, which goes against compression bar service life; the overall deformation of main mold is smaller; although there is slight difference between upper and lower part, the overall variation is not obvious, but the stress difference between upper and lower part of main mold is extremely large so that reaches to 10 times; the stress and strain in base decrease in circular shape, but there is still stress concentration in ledge, which goes against service life; contact stress does not distribute uniformly, there is increasing or decreasing trend in adjacent parts, which is very large in some parts. in constructing both.
机译:采用ANSYS在压缩20MPa压力下压缩生物质过程中分析模具变形和应力场分布规则。通过单位选择,材料特性设定,网状分区,接触对建立,负载和约束应用,以及整体模具的应力和应变。分析了压缩结构,基础,模具和压缩棒的变形和等效应力。我们可以得出结论:压缩机压力的压力分布并不完全均匀,底部的应力略微降低;压缩棒的应力和应变是最大的,并且应力集中在压缩杆顶部发生,这违背了压缩杆使用寿命;主模的整体变形较小;虽然上部和下部有轻微的差异,但整体变化并不明显,但主模的上部和下部之间的应力差异非常大,因此达到10次;圆形底座的应力和应变降低,但壁架仍然存在应力集中,这抵抗了使用寿命;接触应力不会均匀分布,相邻部件的趋势越来越大,在某些部位非常大。在构建两者。

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