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Foam Injection Molding of Phenolic Resins

机译:酚醛树脂的泡沫注射成型

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摘要

The process of foam injection molding is state of the art for thermoplastic materials, whereas very little research has been carried out applying this technique for thermosetting materials. This publication demonstrates the feasibility of a foam injection molding process with phenolic resin as a thermosetting material. Test series were carried out applying different foaming agents, which differ in their decomposition process. One is exothermic, another one is endothermic and the third creates foam due to thermal expansion. The maximum weight reduction achievable for each foaming agent has been determined by gradually decreasing the shot volume until incomplete filling occurs. The foam structures are analyzed by microsections and evaluated with a digital image processing method. Additionally, the effect on mechanical properties is discussed by evaluating the bending stress. The exothermic foaming agent shows the best foam patterns achieving a maximum weight reduction of approximately 50 %, whereas the endothermic and the thermal foaming agent can reduce the weight by approximately 25 % and 20 % respectively. The bending stress decreases significantly with an increasing proportion of foam in all samples.
机译:泡沫注塑成型的过程是热塑性材料的领域,而是对热固性材料的技术进行了很少的研究。本出版物证明了泡沫注射成型方法与酚醛树脂作为热固性材料的可行性。测试系列进行施加不同的发泡剂,其分解过程不同。一个是放热的,另一个是吸热,第三个由于热膨胀而产生泡沫。通过逐渐降低射击体积直至发生不完全填充,确定每个发泡剂可实现的最大减少。通过微观切割分析泡沫结构并用数字图像处理方法评估。另外,通过评估弯曲应力来讨论对机械性能的影响。放热发泡剂显示最佳泡沫图案,实现最大重量约为50%,而吸热和热发泡剂可以分别将重量减少约25%和20%。弯曲应力随着所有样品中的泡沫比例而显着降低。

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