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首页> 外文期刊>Journal of Thermal Spray Technology >Adhesive/cohesive properties of thermally sprayed functionally graded coatings for polymer matrix composites
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Adhesive/cohesive properties of thermally sprayed functionally graded coatings for polymer matrix composites

机译:聚合物基复合材料的热喷涂功能梯度涂料的粘合/内聚性能

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摘要

High-velocity oxyfuel (HVOF) sprayed polyimide/WC-Co functionally graded (FGM) coatings with flame-sprayed WC-Co topcoats have been investigated as solutions to improve the solid-particle erosion and oxidation resistance of polymer matrix composites (PMCs) in the gas flow path of advanced turbine engines. Porosity, coating thickness, and volume fraction of the WC-Co phase retained in the graded coating architecture were determined using standard metallographic techniques and computer image analysis. The adhesive bond strength of three different types of coatings was evaluated according to ASTM D 4541. Adhesive/cohesive strengths of the FGM coating were measured and compared with those of pure polyimide and polyimide/WC-Co composite coatings and also related to the tensile strength of the uncoated PMC substrate perpendicular to the thickness. The FGM coatings exhibited lower adhesive bond strengths (∼6.2 MPa) than pure polyimide coatings (∼8.4 MPa), and in all cases these values were lower than the tensile strength (∼17.6 MPa) of the reference uncoated PMC substrate. The nature and locus of the failures were characterized according to the percent adhesive and/or cohesive failure, and the interfaces tested and layers involved were analyzed by scanning electron microscopy.
机译:高速火焰喷涂的HVOF喷涂聚酰亚胺/ WC-Co功能梯度(FGM)涂层和火焰喷涂的WC-Co面漆已被研究作为改善聚合物基复合材料(PMC)的固体颗粒侵蚀和抗氧化性能的解决方案。先进涡轮发动机的气流路径。使用标准金相技术和计算机图像分析确定保留在渐变涂层结构中的WC-Co相的孔隙率,涂层厚度和体积分数。根据ASTM D 4541评估了三种不同类型涂层的粘合强度。测量了FGM涂层的粘合/内聚强度,并将其与纯聚酰亚胺和聚酰亚胺/ WC-Co复合涂层的粘合强度进行了比较,并且还与拉伸强度有关垂直于未涂覆的PMC基材的厚度。与纯聚酰亚胺涂层(〜8.4 MPa)相比,FGM涂层的粘合强度(〜6.2 MPa)更低,并且在所有情况下,这些值均低于参考未涂层PMC基材的拉伸强度(〜17.6 MPa)。根据粘合和/或内聚破坏的百分比表征破坏的性质和位置,并通过扫描电子显微镜分析测试的界面和涉及的层。

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