一个新的滑动链导体的抗结冰机制
Huiying Xiang1, Yuan Yuan1, Tao Zhu1
1College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China.
ACS applied materials & interfaces
|July 6, 2023
概括
应用在传输导体上的滑滑滑剂注入多孔表面 (SLIPS) 显著减少了77%的结冰. 这种创新的防冰技术通过最大限度地减少冰的粘附和延迟结来提高电网安全性.
科学领域:
- 材料科学 材料科学 材料科学
- 表面工程是什么?表面工程是什么?
- 电力系统工程 电力系统工程
背景情况:
- 电网运行受到传输导体结冰的威胁.
- 滑动滑剂注入的多孔表面 (SLIPS) 显示出对抗结冰的承诺.
- 现有的SLIPS研究仅限于小型平面,而不是复杂的导体.
研究的目的:
- 在链导体上构建SLIPS.
- 为了研究SLIPS涂层导体的抗结冰机制.
- 为了评估修改过的导体的抗结冰性能.
主要方法:
- 阳极氧化被用来在导体表面创建SLIPS.
- 进行了玻璃结冰试验,以量化结冰重量减少.
- 测量了冰的粘合强度.
- 分析了滴滴撞击动态和滑剂的稳定性.
主要成果:
- 与未经处理的导体相比,SLIPS涂层导体的结冰重量减少了77%.
- 冰附着强度显著降低到7.0kPa.
- 复杂的导体表面几何学影响了滴滴撞击动态,促进了滑动.
- 滑剂的稳定性通过纳米孔质基板和滑剂的兼容性得到增强,延迟了滴滴的结.
结论:
- 对于抗结冰传输导体,SLIPS技术是有效的.
- 导体的复杂表面形态在抗结冰性能中起作用.
- 增强的滑剂稳定性和延迟结有助于优良的抗结冰性能.
- 这项研究为电力传输线路的抗结冰策略提供了指导.
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