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首页> 外文期刊>Polymer engineering and science >Effect of Glass Bead Content and Diameter on Shrinkage and Warpage of Injection-Molded PA6
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Effect of Glass Bead Content and Diameter on Shrinkage and Warpage of Injection-Molded PA6

机译:玻璃微珠含量和直径对注塑PA6收缩和翘曲的影响

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A simple technique has been introduced to evaluate the shrinkage and warpage behavior of injection molded products. Using the shrinkage values measured on specific locations of the specimen, three deformation factors have been defined to characterize the warpage behavior of the materials examined. Experiments were carried out to determine these properties of injection molded polyamide 6 (PA6) composites with solid glass bead (GB) contents of 10, 20, 30, 40 wt% and diameters of 11, 85, 156, 203 μm. It was concluded that the flow directional shrinkages can principally be described by the change in the bead content and diameter; it was proven that the increase in bead content and in bead diameter induces a reduction in flow directional shrinkage. The rising bead content and diameter increased the deformation factor, defined by the shrinkage differences caused by the pressure drop. It was pointed out that the ideal bead content can be determined in the function of bead diameter.
机译:已经引入一种简单的技术来评估注塑产品的收缩和翘曲行为。使用在样品的特定位置测得的收缩值,定义了三个变形因子来表征所检查材料的翘曲行为。进行实验以确定固体玻璃珠(GB)含量为10、20、30、40 wt%和直径为11、85、156、203μm的注塑聚酰胺6(PA6)复合材料的这些性能。得出的结论是,流向收缩主要可以通过珠粒含量和直径的变化来描述。已经证明,珠含量和珠直径的增加引起流向收缩的减小。珠含量和直径的增加增加了变形因数,变形因数由压降引起的收缩差定义。有人指出,理想的焊缝含量可以根据焊缝直径来确定。

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