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IMPACT CHARACTERIZATION OF CORE-FILLED PULTRUDED BIOCOMPOSITE PANELS

机译:核心覆盖的覆膜生物复合板的影响特征

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The major cost drivers for composites are raw materials and manufacturing process. Automated manufacturing processes like pultrusion and low cost raw materials can significantly lower the cost of composites. In the present work, a novel core-filled pultruded panel is developed using a bio-based polyester resin system. The panel is made using a one-step process in which the foam core enters the heated die along with the glass reinforcements. Solid and core-filled pultruded panels are manufactured using base polyester and soy-based polyester resin systems. Mechanical characterization was conducted on the manufactured panels. Four energy levels (25 J, 50 J, 60 J and 75 J) are considered for the impact tests. Impact parameters such as contact force, energy absorbed, center deflection and contact duration are recorded during the tests to evaluate their performance. Results indicate that the core-filled soy-based composite panels exhibit improved impact resistance as compared to the base polyester panels. The bio-based core-filled panels will have a wide variety of applications in the construction and transportation industry.
机译:复合材料的主要成本驱动因素是原材料和制造过程。像拉挤成脉冲等自动化制造工艺可以显着降低复合材料的成本。在本作工作中,使用生物基聚酯树脂体系开发了一种新型核心覆盖的覆膜板。使用一步法制造面板,其中泡沫芯进入加热管芯以及玻璃增强件。使用基础聚酯和基于大豆基聚酯树脂系统制造固体和芯填充的覆膜板。在制造的面板上进行机械表征。对冲击试验考虑了四个能量水平(25 j,50 j,60 j和75 j)。在测试期间记录诸如接触力,能量吸收,中心偏转和接触持续时间的冲击参数,以评估它们的性能。结果表明,与碱聚酯板相比,芯填充的大豆基复合板具有改善的抗冲击性。基于生物的核心填充面板将在建筑和运输行业中具有各种各样的应用。

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