设计和开发一种具有特殊爬行抵抗力的新型聚合物涂层系统
Nader Ameli1, Jaya Verma1, Beth Muthoni Irungu1
1School of Engineering, London South Bank University, London, UK.
概括
这项研究用空心陶微球 (HCM@TiO2) 增强聚氨 (PU) 涂层,以提高机械强度. 这种新型涂层显著减少了爬行和增强了对疲劳失败的抵抗力.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物科学 聚合物科学
- 纳米技术纳米技术
背景情况:
- 聚合物涂层往往表现出不充分的机械性能,如低强度和模量.
- 这导致即使在轻微负载下也容易发生爬行故障.
研究的目的:
- 开发一种具有增强机械性能的新型聚氨 (PU) 涂层.
- 研究TiO2 (HCM@TiO2) 涂层的空心陶微球对PU涂层性能的影响.
主要方法:
- 在PU矩阵中嵌入4重%的内空陶微球,涂有TiO2外 (HCM@TiO2).
- 使用纳米沉积技术评估机械性能.
- 在不同负载下评估爬行行为.
主要成果:
- 增强HCM@TiO2的PU涂层显示,纳米沉积硬度增加了111%.
- 在爬行位移 (31%),爬行速率 (19%) 和爬行变种速率 (28%) 敏感度上观察到显著的减少.
- 带有TiO2外 (SSN@TiO2) 的固体二氧化纳米球没有提高性能,并且增加了爬行位移.
结论:
- HCM@TiO2增强有效地提高了PU涂料的机械性能和爬行抵抗.
- 增强的涂层显示出适用于要求高循环爬行疲劳耐受性的应用的潜力.
- 该研究强调了微球结构在增材增强中的重要性.
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