首页> 外文会议>Conference Proceedings at ANTEC '98 >MELT PROCESSABLE SEMICRYSTALLINE POLYIMIDE STRUCTURAL ADHESIVE BASED ON 1,3-BIS(4-AMINOPHENOXY) BENZENE AND 3,3',4,4 -BIPHENYLTETRACARBOXYLIC DIANHYDRIDE
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MELT PROCESSABLE SEMICRYSTALLINE POLYIMIDE STRUCTURAL ADHESIVE BASED ON 1,3-BIS(4-AMINOPHENOXY) BENZENE AND 3,3',4,4 -BIPHENYLTETRACARBOXYLIC DIANHYDRIDE

机译:基于1,3-双(4-氨基苯氧基)苯和3,3',4,4-苯二甲酰基二羧酸二酐的熔融可加工半结晶聚酰亚胺结构胶

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Introducing crystallinity in polyimides offers the advantage of increased solvent resistance and retention of mechanical properties above the glass transition temperature(T_g). This work examines the thermal stability, semicrystalline morphology and adhesive properties of a new polyimide synthesized at Virginia Tech which is based on l,3-bis(4-aminophenoxy) benzene (TPER diamine) and 3,3',4,4'-biphenyltetracarboxylic dianhydride (BPDA). The polymer has a T_g of ca. 210°C and a T_m of 395°C. Polarized light microscopy was used to evaluate the morphology and spherulitic growth rates. The effects of molecular weight and melt conditions were studied in this regard. Lap-Shear specimens were made using Ti-6Al-4V alloy and the bonding conditions were optimized with respect to bonding temperature, bonding time and pressure. High lap-shear strengths of ca. 8000psi (55.172MPa) were obtained and the fracture surface investigation using the SEM revealed a very rough ductile surface. Durability studies on lap shears were conducted for aging and testing temperatures of ambient, 177°C and 232°C. Significant stability was observed for these aging temperatures for up to seven weeks. The bond strengths were found to be affected by testing temperatures rather than the aging conditions for the duration of the study. The effect of various solvents was investigated using lap-shear tests for periods up to 9 days.
机译:在聚酰亚胺中引入结晶度具有提高耐溶剂性和在玻璃化转变温度(T_g)以上保持机械性能的优势。这项工作研究了弗吉尼亚理工学院合成的一种新型聚酰亚胺的热稳定性,半结晶形态和粘合性能,该聚酰亚胺基于1,3-双(4-氨基苯氧基)苯(TPER二胺)和3,3',4,4'-联苯四甲酸二酐(BPDA)。该聚合物的T_g为约。 210°C和395°C的T_m。偏光显微镜用于评估形态和球状生长速率。在这方面,研究了分子量和熔融条件的影响。使用Ti-6Al-4V合金制作了搭接剪切试样,并针对粘结温度,粘结时间和压力优化了粘结条件。约高的搭接剪切强度获得了8000psi(55.172MPa),使用SEM进行的断裂表面研究显示出非常粗糙的延展性表面。进行了搭接剪的耐久性研究,以老化和测试177°C和232°C的环境温度。对于这些老化温度,观察到长达七周的显着稳定性。发现粘合强度受测试温度的影响,而不是整个研究期间的老化条件。使用搭接剪切测试长达9天,研究了各种溶剂的效果。

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