首页> 外文期刊>Polymers & Polymer Composites >Fabrication of Composite Tiles From Poly(ethylene terephthaiate) (PET) and Micro-Marble Particles Reinforced with Glass Fiber Mats: Comparison of Recycled and Commercial Resin
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Fabrication of Composite Tiles From Poly(ethylene terephthaiate) (PET) and Micro-Marble Particles Reinforced with Glass Fiber Mats: Comparison of Recycled and Commercial Resin

机译:用聚对苯二甲酸乙二酯(PET)和玻璃纤维毡增强的微大理石颗粒制造复合砖:再生树脂和商业树脂的比较

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摘要

Polyester composite tiles (PCT) are synthesized from PET and fabricated by compression molding using micro-marble clusters as filler. Identical PCTs are also fabricated by using commercially available polyester resin to compare properties. Three batches of marble clusters with different size distributions are used to assess the effect of filler particle size on mechanical properties. Tiles prepared using finer marble grades yield consistently higher flexural strength and stiffness values regardless of the synthesized or commercial polyester resin. However, the flexural strength and stiffness of the tiles prepared with commercial polyester are observed to be on average 1.8 and 2.5 fold higher, respectively. Prospects of improving mechanical properties are explored by reinforcing PC tiles with randomly oriented, discontinuous glass fibers. This is achieved by placing a single layer of glass fiber mat on the top and bottom tile surface. Presence of fiber mats leads to the formation of a graded particle size distribution across the mat thickness when the coarse grade marble dust is used. This distribution resulted in significant improvements in flexural strength, stiffness and overall toughness of the tiles. The improvements observed in PCTs prepared with synthesized polyester resin surpassed the improvements in their counterparts prepared with commercial polyester. In fact, the flexural strength of the glass fiber mat reinforced PCTs prepared with synthesized and commercial polyester resin are observed to be statistically identical.
机译:聚酯复合瓷砖(PCT)由PET合成,并使用微大理石簇团作为填充剂通过压缩成型制造。相同的PCT也可以通过使用市售的聚酯树脂制成,以比较其性能。使用三批具有不同尺寸分布的大理石团簇来评估填料粒径对机械性能的影响。无论使用合成或商业聚酯树脂,使用更精细的大理石牌号制备的瓷砖都能始终获得更高的弯曲强度和刚度值。然而,观察到用市售聚酯制备的砖的弯曲强度和刚度分别平均高出1.8倍和2.5倍。通过用随机取向的不连续玻璃纤维增​​强PC砖,探索了改善机械性能的前景。这是通过在顶部和底部瓷砖表面放置一层玻璃纤维垫来实现的。当使用粗糙等级的大理石粉尘时,纤维垫的存在导致在垫厚度上形成梯度的粒度分布。这种分布导致砖的抗弯强度,刚度和整体韧性得到显着改善。用合成聚酯树脂制备的PCT中观察到的改进超过了用市售聚酯制备的PCT中的改进。实际上,观察到用合成和商业聚酯树脂制备的玻璃纤维毡增强的PCT的抗弯强度在统计上是相同的。

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