INVESTIGATION OF VARIABLES GEOMETRY OF NOVEL PIN CORE-SANDWICH STRUCTURE ON UNSATURATED POLYESTER FLEXTURAL PROPERTIES

Meethaq M. Abed
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Abstract

Sandwich Structure with pin core is widely used in foam core for crushing, debonding and interfacial delamination prevention; this structure has manufactured by drilling foam core frequently. On the other hand, a novel method for manufacturing a pin core sandwich structure has been the aim of this research. Machinable wax panel was used to achieve cavities in form of pin within the core by drilling the wax panel by CNC-drilling machine then casting of thermoset resin (unsaturated polyester resin) into a wax mold, after that melting of the wax mold to get pin core sandwich structure. Complex structure can't be designed by conventional method but by this method allows to design such complex structures: spheres, pyramids, ellipse…etc. According to Response Surface Methodology method, fifteen specimens were achieved and three variables were investigated to get optimization and prediction model. The results show that 300% improvement of stiffness performance index with 40% weight reduction comparative to reference sample with 4.46 GPa0.5 cm3 g-1 optimal value for the specimen ((High=11mm), (Diameter=9 mm) and (Pin-to-Pin distance=4.3 mm)). Strength performance index improvement is 126% and 50% weight reduction comparative to reference sample with 35.9 MPa2/3 cm3 g-1 optimal value for the specimen ((High=11mm), (Diameter=6.115 mm) and Pin-to-Pin distance=1.5 mm)). ANOVA analysis shows that the pin height (H) is effective parameter on stiffness property. On the other hand, the height and diameter of the pin are effective parameters on strength property.    
新型销芯夹芯结构变量几何对不饱和聚酯柔韧性能的影响研究
针芯夹层结构广泛应用于泡沫芯中,用于防止破碎、脱胶和界面分层;这种结构是通过频繁地钻取泡沫芯来制造的。另一方面,一种新的制造销芯夹层结构的方法一直是本研究的目的。采用可加工蜡板,通过数控钻床对蜡板进行钻孔,然后将热固性树脂(不饱和聚酯树脂)浇注到蜡模中,然后熔化蜡模,得到销芯夹层结构,从而在芯内形成销形空腔。复杂的结构不能用传统的方法设计,但用这种方法可以设计出球体、金字塔、椭圆等复杂的结构。根据响应面方法,选取15个样本,对3个变量进行研究,得到优化预测模型。结果表明,与4.46 GPa0.5 cm3 g-1的参考样品相比,刚度性能指数提高了300%,重量减少了40%,样品的最佳值为(高=11mm)、(直径=9mm)和(销到销距离=4.3mm)。与参考样品相比,强度性能指数提高了126%,重量减少了50%,样品的最佳值为35.9 MPa2/3cm3 g-1(高=11mm)、(直径=6.115mm)和销对销距离=1.5mm)。方差分析表明,销高(H)是影响刚度特性的有效参数。另一方面,销的高度和直径是影响强度性能的有效参数。
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