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Effect of Preform Thickness and Volume Fraction on Injection Pressure and Mechanical Properties of Resin Transfer Molded Composites

机译:瓶坯厚度和体积分数对树脂传递模塑复合材料注射压力和力学性能的影响

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An experimental study is performed to characterize the effect of the thickness of random preforms on injection pressure and mechanical properties of resin transfer molded (RTM) parts.Center-gated,disk-shaped parts are molded using two different chopped-strand glass fiber preforms.Both preforms have random microstruclure but different planar densities (i.e.,different uncompressed layer thicknesses).Tensile strength,short-beam shear strength,and elastic modulus are measured for parts molded with each preform type at three different fiber volume fractions of 6.84,15.55,and 24.83%.Although mechanical properties are found to increase linearly with volume fraction,significant difference is not observed between disks containing thick and thin mats at equivalent fiber volume fraction.However at the same fiber content,parts molded with thin mats require significantly lower injection pressures compared to parts containing thick mats.To characterize this phenomenon,a pressure-matching method to determine planar permeability is presented.Permeability values for each preform would provide a quantitative description of the required injection pressure due to changes in preform thickness,with lower permeabilities resulting in higher injection pressure.Transient pressure data is collected at a fixed radial location within the mold cavity during filling for both preforms at three different volume fractions.Permeability is obtained by fitting the theoretical pressure equation derived from Darcy's law to the transient pressure data.Permeability values are found to be as much as 227% higher for thin mats compared with thick mats at the same fiber content.The results demonstrate that equivalent mechanical properties can be obtained at lower injection pressures by using thinner random mats.
机译:进行了一项实验研究,以表征无规预成型件的厚度对树脂传递模塑(RTM)部件的注射压力和机械性能的影响。使用两种不同的短切玻璃纤维预成型件模制中心浇口,盘状部件。两种预成型坯均具有随机的微结构,但平面密度不同(即,未压缩层的厚度不同)。在三种不同的纤维体积分数为6.84,15.55的情况下,测量用每种预成型坯成型的零件的拉伸强度,短光束抗剪强度和弹性模量,和24.83%。虽然发现机械性能随体积分数线性增加,但在包含相同纤维体积分数的厚垫和薄垫的圆盘之间没有观察到显着差异。但是,在相同纤维含量下,用薄垫模制的零件所需的注塑量要低得多与包含厚垫的零件相比,压力更大。为表征此现象,可采用与给出了确定的平面渗透率。每个预成型件的渗透率值将定量描述由于预成型件厚度变化而导致的所需注射压力,而较低的渗透率会导致较高的注射压力。瞬态压力数据是在模具内的固定径向位置收集的两种瓶坯在三个不同体积分数下填充时的模腔,通过将达西定律的理论压力方程拟合到瞬态压力数据来获得渗透率,发现薄垫子的渗透率值比厚垫子高227%结果表明,通过使用较薄的无序毡垫,可以在较低注射压力下获得相同的机械性能。

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