Subsurface Weave Pattern Influences on Polymer Cold Spray Deposits onto Woven Fiber-Reinforced Composites

IF 3.2 3区 材料科学 Q2 MATERIALS SCIENCE, COATINGS & FILMS
Madison Kaminskyj, Nicholas Mennie, Nand Singh, Behrad Koohbor, Francis M. Haas
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Abstract

The polymer cold spray (CS) process has recently been demonstrated as a promising coating and repair technique for fiber-reinforced polymer composites (FRPs). However, a noticeable variation in coating thickness (herein referred to as checkerboard pattern) often occurs in the initial pass of low-pressure CS deposition. The checkerboard pattern occurs due to the periodic variations in matrix thickness and volume above the subsurface fiber weave pattern. When the initial pass exhibits the so-called checkerboard pattern, the CS deposition for subsequent passes may be negatively affected in terms of deposition efficiency, porosity, adhesion, surface roughness, and thickness consistency. The present work compares results of both numerical simulations and experimental studies performed to reveal the governing mechanisms for and elimination of checkerboarding. Single particle impact numerical simulations are conducted to observe thermomechanical behavior of particles during CS impact on the FRP surface at different regions of the composite material. Complementary experimental CS studies of exemplar powders onto FRPs with various surface interlayer thicknesses are also presented and discussed. Experimental analyses of deposits include microstructural observations to compare against the simulations while also providing practical strategies for the elimination of checkerboarding effects. It is demonstrated that the thickness and volume of the matrix region underneath the impact area are the main contributing factors that govern the CS deposition variations on CFRP substrates. As such, increasing the surface epoxy layer thickness beyond a critical value can reduce the effect of substrate stiffness effects imposed by the subsurface fiber tows, thereby effectively eliminating the checkerboard patterns.

亚表面编织模式对聚合物冷喷涂沉积在编织纤维增强复合材料上的影响
聚合物冷喷涂(CS)工艺近年来被证明是一种很有前途的纤维增强聚合物复合材料(frp)涂层和修复技术。然而,在低压CS沉积的初始阶段,涂层厚度的明显变化(这里称为棋盘图案)经常发生。棋盘格图案的出现是由于基体厚度和体积在地下纤维编织图案上的周期性变化。当初始孔道呈现出所谓的棋盘图案时,后续孔道的CS沉积可能会在沉积效率、孔隙率、附着力、表面粗糙度和厚度一致性方面受到负面影响。本工作比较了数值模拟和实验研究的结果,以揭示棋盘格的控制机制和消除。通过单颗粒冲击数值模拟,观察复合材料不同区域颗粒在CS冲击FRP表面时的热力学行为。本文还介绍和讨论了样品粉末在不同表面层间厚度frp上的互补实验CS研究。沉积物的实验分析包括微观结构观察,以与模拟进行比较,同时也为消除棋盘格效应提供实用策略。结果表明,冲击区域下方基体区域的厚度和体积是影响CFRP基底上CS沉积变化的主要因素。因此,将表面环氧层厚度增加到超过临界值可以减少由亚表面纤维束施加的基材刚度效应的影响,从而有效地消除棋盘格图案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Thermal Spray Technology
Journal of Thermal Spray Technology 工程技术-材料科学:膜
CiteScore
5.20
自引率
25.80%
发文量
198
审稿时长
2.6 months
期刊介绍: From the scientific to the practical, stay on top of advances in this fast-growing coating technology with ASM International''s Journal of Thermal Spray Technology. Critically reviewed scientific papers and engineering articles combine the best of new research with the latest applications and problem solving. A service of the ASM Thermal Spray Society (TSS), the Journal of Thermal Spray Technology covers all fundamental and practical aspects of thermal spray science, including processes, feedstock manufacture, and testing and characterization. The journal contains worldwide coverage of the latest research, products, equipment and process developments, and includes technical note case studies from real-time applications and in-depth topical reviews.
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