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Study on the macro- and micro-mechanical properties of quartz fiber reinforced polyimide resin matrix composite after thermal aging

机译:石英纤维增强聚酰亚胺树脂基体复合材料热时效后的宏观和微观力学性能研究

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摘要

In this work, the polyimide resin (YH-550) with high glass transition temperature (similar to 403 degrees C) was selected as the matrix, and the quartz fiber reinforced polyimide resin matrix (SiO2f/PI) composite was prepared by prepreg hot pressing method. In order to obtain the evolution mechanism of macro-and micro-mechanical properties of the SiO2f/PI composite after thermal aging, the composite was first subjected to thermal aging at 250 degrees C and 350 degrees C for 100 h (SiO2f/PI-250 degrees C, SiO2f/PI-350 degrees C) in air, respectively. And then the as-received SiO2f/PI, SiO2f/PI-250 degrees C and SiO2f/PI-350 degrees C composite was tested by SEM, macro-mechanics, nano-mechanics and XPS. Thus, the macro-and micro-mechanical properties of the SiO2f/PI composite were constructed. The results show that the SiO2f/PI-250 degrees C composite still has excellent mechanical properties. However, the flexural strength of SiO2f/PI-350 degrees C composite decreases remarkably (similar to 227.7 MPa). The in-situ modulus of fiber and matrix in as-received SiO2f/PI, SiO2f/PI-250 degrees C and SiO2f/PI-350 degrees C composite do not change significantly, but interfacial shear strength (IFSS) changes greatly, which are 106.7 +/- 2.0 MPa, 97.0 +/- 8.3 MPa and 14.7 +/- 0.7 MPa, respectively. Based on the basic mechanical theory of composites, it is concluded that the decrease of IFSS is the fundamental reason for mechanical properties degradation of SiO2f/PI-350 degrees C composite, and the interface evolution mechanism of the composite was discussed.
机译:本工作选取玻璃化转变温度高(相近403°C)的聚酰亚胺树脂(YH-550)作为基体,采用预浸料热压法制备了石英纤维增强聚酰亚胺树脂基体(SiO2f/PI)复合材料。为了获得SiO2f/PI复合材料热老化后宏观和微观力学性能的演化机理,首先将该复合材料分别在空气中250°C和350°C(SiO2f/PI-250°C,SiO2f/PI-350°C)进行100 h的热老化。然后,通过扫描电镜、宏观力学、纳米力学和XPS对SiO2f/PI-250°C和SiO2f/PI-350°C复合材料进行了测试。构建了SiO2f/PI复合材料的宏观和微观力学性能。结果表明,SiO2f/PI-250°C复合材料仍具有优异的力学性能。然而,SiO2f/PI-350°C复合材料的抗弯强度显著降低(接近227.7 MPa)。SiO2f/PI、SiO2f/PI-250 °C和SiO2f/PI-350 °C复合材料中纤维和基体的原位模量变化不显著,但界面剪切强度(IFSS)变化较大,分别为106.7 +/- 2.0 MPa、97.0 +/- 8.3 MPa和14.7 +/- 0.7 MPa。基于复合材料的基本力学理论,认为IFSS的降低是SiO2f/PI-350°C复合材料力学性能下降的根本原因,并探讨了复合材料的界面演化机理。

著录项

  • 来源
    《Composite structures》 |2022年第7期|115666.1-115666.8|共8页
  • 作者单位

    Hunan Univ Sci & Technol, Sch Phys & Elect Sci, Xiangtan 411021, Peoples R China|Hunan Univ Sci & Technol, Key Lab Intelligent Sensors & Adv Sensing Mat Huna, Xiangtan 411021, Peoples R China;

    Natl Univ Def Technol, Elect Countermeasure Inst, Hefei 230037, Peoples R China;

    Natl Univ Def Technol, Coll Aerospace Sci & Engn, Sci & Technol Adv Ceram Fibers & Composites Lab, Changsha 410073, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Polyimide resin matrix composite; Micro-mechanical properties; Quartz fiber; Interface; Thermal aging; Flexural strength;

    机译:聚酰亚胺树脂基体复合材料;微观机械性能;石英纤维;界面;热老化;抗弯强度;
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