1)  corona resistance
耐电晕性
2)  Corona-resistance
耐电晕性
3)  corona-resistant lifespan
耐电晕性能
1.
The chemical structure,morphology,the corona-resistant lifespan and thermal property were characterized by the method of Fourier transform infrared spectroscopy(FTIR),atomic force microscope(AFM),scan electric microscope(SEM) and thermogravimetric analysis(TGA).
研究了氧化铝添加量对该复合材料耐电晕性能和耐热性能的影响。
4)  breakdown voltage
耐电压
1.
With the increase of pressure the room temperature resistivi ty follows on cap-type change, and the R-t Coefficient and the breakdown voltage decrease accordingly.
随着成型压力的增大,材料的室温电阻率呈倒“U”形变化,电阻温度系数及耐电压性能呈单调递减变化,通过回归分析建立了烧成收缩率与成型压力的关系。
5)  corona-resistance
耐电晕
1.
The surface, morphology, structure, and performance of the composites before and after the experiment of corona-resistance was examined with atom force microscope (AFM) and was compared with KAPTON .
利用原子力显微镜(AFM)对PI/纳米SiO2复合材料与杜邦公司的KAPTON耐电晕复合材料及其电晕试验后的复合材料进行了表面形貌、结构和性能比较。
2.
The effect of SiO_(2) content and the morphology between the organic and inorganic phases on corona-resistance(CR) property was analyzed and discussed.
分析和讨论了无机成分的含量和两相间界面形态的变化对PI/S iO2薄膜耐电晕性能的影响。
3.
On the basis of the documents published home and broad,the synthesization and corona-resistance mechanism of the kind of material are overviewed.
采用耐电晕材料作为变频电机的漆包线绝缘是延长变频电机使用寿命的重要途径之一。
6)  withstand voltage
耐电压
1.
The duplicate tests prove that the PTC magnet erasing components of thus acquired electrode possesses higher withstand voltage and capacity of AC over current.
重复试验证明 ,在该工艺条件下获得的以Ni镀层为底层电极的PTCR元件 ,其耐电压和耐工频电流冲击性能良好。
2.
Reliability is improved by rising withstand voltage.
对其耐电压性能的改进进行了研究 ,解决了影响产品可靠性水平的关键指标——耐压击穿问题。
参考词条
补充资料:耐电晕性
分子式:
CAS号:

性质:绝缘材料经受电晕放电作用能够抵抗质量下降的性质。材料在电晕放电电流(约10-9~10-6A)作用下缓慢破坏,原因在于电晕放电产生的氧原子、离子类及氧化氮等对材料进行氧化。耐电晕试验是测定材料在电极有间产生的电晕热、离子冲击作用下,保持电绝缘性能的试验。常见的方法有Rufolo-Winans试验法和Dakin试验法。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。