首页> 外文期刊>International Journal of Adhesion & Adhesives >Hygrothermal aging of composite single lap shear specimens comprised of AF-555M adhesive and T800H/3900-2 adherends
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Hygrothermal aging of composite single lap shear specimens comprised of AF-555M adhesive and T800H/3900-2 adherends

机译:由AF-555M粘合剂和T800H / 3900-2粘附体组成的复合单搭接剪切试样的湿热老化

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Fiber reinforced resin matrix composites and structural adhesives have found increased usage on commercial and military aircraft. These structural materials offer weight savings without sacrificing strength and mechanical performance. Since service history and long-term aging performance of these relatively new material systems are not well established, a long-term environmental aging study was undertaken. Adhesive bonds were prepared by secondary bonding of 3M~(TM) Scotch-Weld~(TM) AF-555M between pre-cured, unidirectional composite adherends comprised of Toray~(TM) T800H/3900-2 prepreg. Single lap shear specimens (SLS) were fabricated and subsequently aged in an unstressed configuration at 82 °C (180 °F) and 85% relative humidity for up to 772 days. The aging conditions are more severe than those expected to occur in service and were selected in order to observe some changes within a reasonable exposure time. The apparent shear strengths were measured periodically at both room temperature and 82 °C (180°F), and failure modes were determined and compared to control specimens that had been stored for equal periods of time at room temperature under low humidity. With hygrothermal aging, apparent shear strengths decreased and some changes in the failure mode were observed relative to those of the control specimens. However, in spite of the severe aging conditions, no adhesive failures indicative of interfacial failures were observed. SLS specimens that were hygro-thermally aged, subsequently dried, and then tested did not exhibit complete recovery of unaged apparent shear strengths indicating some irreversible changes.
机译:纤维增强树脂基复合材料和结构粘合剂已发现在商用和军用飞机上的使用增加。这些结构材料可减轻重量,而不会牺牲强度和机械性能。由于这些相对较新的材料系统的服务历史和长期老化性能尚未很好地建立,因此进行了长期环境老化研究。通过在由TorayTM T800H / 3900-2预浸料组成的预固化单向复合被粘物之间进行3MTM Scotch-WeldTM AF-555M的二次粘合,来制备粘合键。制作了单圈剪切试样(SLS),然后在无应力配置下于82°C(180°F)和85%相对湿度下老化长达772天。老化条件要比预期使用中要严重得多,因此选择老化条件是为了在合理的暴露时间内观察到一些变化。在室温和82°C(180°F)时定期测量表观剪切强度,确定破坏模式并将其与在低湿度下于室温下等时存储的对照样本进行比较。随着湿热老化,表观剪切强度降低,并且破坏模式相对于对照样品发生了一些变化。然而,尽管存在严重的老化条件,但未观察到表明界面失效的粘合失效。经湿热老化,随后干燥,然后测试的SLS样品未完全恢复未老化的表观剪切强度,表明存在一些不可逆的变化。

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