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首页> 外文期刊>Composites Science and Technology >Relationships between the glass fibre sizing composition and the surface quality of sheet moulding compounds (SMC) body panels
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Relationships between the glass fibre sizing composition and the surface quality of sheet moulding compounds (SMC) body panels

机译:玻璃纤维上浆剂成分与片状模塑料(SMC)车身面板的表面质量之间的关系

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摘要

The characteristics of thermosetting composite materials such as SMC are affected by the presence of reinforcements as a result of surface-matrix interactions. Surface treatments or sizings can significantly affect such interactions; hence the sizing selection may significantly affect SMC characteristics. The wetting properties of the unsaturated polyester matrix on glass fibres with different sizings have been studied by contact angle determination. In addition, the permeability of the glass fibres as well as their stiffness, the sizing solubility and swelling were also studied to understand the impregnation level of the glass fibres by the unsaturated polyester matrix before the curing reaction as a function of the sizing chemistry. The parameters that have been varied to determine the wetting and the adhesion properties provided by surface energies are the followings: (i) the sizing amount; (ii) the antistatic agent nature; (iii) the deposit method of this antistatic agent, and (iv) the film former nature. From these results in relation with the surface quality of corresponding moulded SMC panels, some of these glass fibres were selected. By using a statistical approach (principal components analysis (PCA)), it has been possible to conclude about the influence of the glass fibres characteristics on the surface quality. Correlations have also been established between the glass fibre characteristics, the material flow and the surface quality of the SMC panels.
机译:由于表面-基质相互作用,增强材料的存在会影响热固性复合材料(例如SMC)的特性。表面处理或上浆会严重影响这种相互作用;因此,尺寸选择可能会严重影响SMC特性。通过接触角的测定研究了不饱和聚酯基体在玻璃纤维上的润湿性能。此外,还研究了玻璃纤维的渗透性及其刚度,上浆溶解度和溶胀度,以了解固化反应之前不饱和聚酯基质对玻璃纤维的浸渍程度与上浆化学性质的关系。为确定表面能提供的润湿性和粘附性而改变的参数如下:(i)上浆量; (ii)抗静电剂的性质; (iii)该抗静电剂的沉积方法,和(iv)成膜剂性质。从与相应的模制SMC面板的表面质量相关的这些结果中,选择了其中一些玻璃纤维。通过使用统计方法(主要成分分析(PCA)),可以推断出玻璃纤维特性对表面质量的影响。在玻璃纤维特性,材料流动和SMC面板的表面质量之间也建立了相关性。

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