首页> 外文期刊>Journal of Applied Polymer Science >Effect of DAPBO segment on the structure and performance enhancement of powder foamed BTDA-ODA polyimide
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Effect of DAPBO segment on the structure and performance enhancement of powder foamed BTDA-ODA polyimide

机译:DAPBO段对粉末泡沫BTDA-ODA聚酰亚胺结构和性能增强的影响

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摘要

Achieving excellent thermal stability, good mechanical strength, and low-density in one product, is a big challenge in the design and synthesis of polyimide (PI) foams. We selected a rigid diamine monomer, 2-(4-aminophenyl)-5-aminobenzoxazole (DAPBO) to partially replace 4,4 '-oxydianiline (ODA) in BTDA-ODA system, and studied the effect on properties of foamed PI products. With various molar ratio between DABPO and ODA (0:5, 1:4, 2:3, 3:2, 4:1, 5:0), the diamine(s) polymerized with 3,3 ',4,4 '-benzophenonetetracarboxylic dianhydride (BTDA) and produced six PI precursors (PAE-0 similar to PAE-5). After foaming and thermal imidization, corresponding PI foams (PI-0 similar to PI-5) prepared. Among them, PI-3 has a glass transition temperature of 386 degrees C, which is 95 degrees C higher than PI-0, and its compressive strength reaches 1.32 MPa. Moreover, PI-3 has a uniform cell structure with an average pore size of similar to 200 mu m. The analysis results show that PI-3 is in a transition state from amorphous to partial crystalline, maintaining a balance between flexibility and rigidity. The addition of DABPO not only increases the rigidity of polymer molecular segments, but also introduces N and O atoms that can form intermolecular hydrogen bonds between molecules, which increases the packing density and arrangement regularity of polymer molecules.
机译:在一种产品中实现优异的热稳定性、良好的机械强度和低密度是聚酰亚胺(PI)泡沫塑料设计和合成的一大挑战。我们选择刚性二胺单体2-(4-氨基苯基)-5-氨基苯并恶唑(DAPBO)在BTDA-ODA体系中部分取代4,4'-氧二苯胺(ODA),并研究了其对发泡PI产品性能的影响。当DABPO和ODA之间的摩尔比(0:5、1:4、2:3、3:2、4:1、5:0)不同时,二胺与3,3',4,4'-二苯四甲酸二酐(BTDA)聚合,生成六种PI前体(PAE-0类似于PAE-5)。发泡和热亚胺化后,制备了相应的PI泡沫(PI-0类似于PI-5)。其中,PI-3的玻璃化转变温度为386℃,比PI-0高95℃,抗压强度达到1.32MPa。此外,PI-3具有均匀的细胞结构,平均孔径类似于200μm。分析结果表明,PI-3处于从非晶态到部分晶态的过渡状态,保持了柔性和刚性之间的平衡。DABPO的加入不仅增加了聚合物分子链段的刚性,还引入了N和O原子,可以在分子之间形成分子间氢键,从而增加了聚合物分子的堆积密度和排列规律。

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