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Analysis of rubber pressure molding technique to fabricate fiber reinforced plastic components

机译:橡胶压力成型技术制造纤维增强塑料组件的分析

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A rubber pressure molding technique is developed to prepare fiber reinforced plastic components having complex shaped geometry. The technique is based on the matching die set, where the die is made of hard metal like steel and the punch from flexible rubber like materials. The use of flexible rubber punch helps to intensify and uniformly redistribute pressure (both operating pressure and developed hydrostatic pressure due to the flexible rubber punch) over the surface of product. The distribution of pressure was analyzed by ANSYS over a processing pressure of 0.5 to 50 MPa. The analysis was extended to find out the optimum hardness of rubber mold, where the pressure distribution is uniform. For this, analysis was carried out for NR vulcanizates where the loading of carbon black was varied from 0 to 75 phr, with an increment of 15 phr using the strain energy density function of two-, three-, five-, and nine-parameter Mooney-Riviin, first-, second-, and third-order Ogden, Neo-Hookean, first-, second-, and third-order Polynomial, Arruda-Boyce, first-, second-, and third-order Yeoh and Gent. 45 phr carbon black loading in NR vulcanizate shows best result.
机译:开发了橡胶压模技术以制备具有复杂形状的几何形状的纤维增强塑料部件。该技术基于匹配的模具,其中模具由像钢一样的硬质金属制成,而冲头则由类似橡胶的柔性材料制成。柔性橡胶冲头的使用有助于在产品表面上增强并均匀地重新分配压力(由于柔性橡胶冲头而产生的工作压力和静液压)。通过ANSYS在0.5至50MPa的处理压力下分析压力的分布。扩展了分析以找出压力分布均匀的橡胶模具的最佳硬度。为此,使用二参数,三参数,五参数和九参数的应变能密度函数对NR硫化橡胶进行了分析,其中炭黑的负载量在0至75 phr之间变化,增量为15 phr。 Mooney-Riviin,一阶,二阶和三阶Ogden,Neo-Hookean,一阶,二阶和三阶多项式,Arruda-Boyce,一阶,二阶和三阶Yeoh和Gent。 NR硫化橡胶中加入45 phr炭黑显示出最佳效果。

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