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1)  electric erosion
电烧蚀
2)  arc ablation
电弧烧蚀
1.
For improving the arc ablation resistance of nozzle materials of high-voltage circuit breaker,it is needed to fill Al 2 O 3 and TiO 2 in PTFE to reduce the ablation of arc energy and improve the arc ablation resistance of nozzle.
为了提高高压断路器喷口材料的耐电弧烧蚀性能,采用在聚四氟乙烯(PTFE)中添加三氧化二铝或二氧化钛,降低电弧能量对PTFE的烧蚀,同时试验研究复合聚四氟乙烯介电性能的变化规律。
3)  arc erosion
电弧烧蚀
1.
It is found by XRD that the phase structure of La2NiO4 ceramics did not change after arc erosion and exhibited a high chemical stability.
X射线衍射分析发现La2NiO4陶瓷在电弧烧蚀作用下相结构不发生变化,具有高的化学稳定性。
2.
After cryogenic treatment,the resistance property of arc erosion of CuCr50 vacuum contact material change dramatically.
CuCr50真空触头材料经深冷处理后 ,抗电弧烧蚀性能明显提高。
3.
The samples of carbon sliding panel infiltrated with copper were prepared,and the friction test and arc erosion test were carried out.
制备了浸铜碳滑板试样,并通过试验研究了浸金属碳滑板和纯碳滑板的机械摩擦性能与电弧烧蚀性能。
4)  electrode erosion
电极烧蚀
1.
In order to study the electrode erosion mechanisms of gas spark switch in this paper the erosion micro patterns of the spark switch electrode are investigated.
为分析气体火花开关的电极烧蚀问题 ,首先用尼康ECLIPSEME6 0 0P型显微镜实验研究了开关放电后电极表面的微观形貌和侵蚀特征 ,结果表明电极烧蚀的典型图象大致有 3种 :弧坑、突起、裂纹 ;电极烧蚀机理的定性分析表明电极表面烧蚀的图象可用热爆炸力、磁流体动力、热应力等学说解
2.
The electrode erosion of gas spark switch caused by high current,high energy arc influences the feature and lifetime of the switch.
本文根据电极电弧的烧蚀模型 ,通过热传导的计算 ,推导出了几个实用的公式 ,指出了选择耐烧蚀电极材料的原则和减少气体火花开关电极烧蚀的方法。
3.
To find the ways to increase repetition rates and lifetime of the switches, mechanisms of two physical processes which determine repetition rates and lifetime of the switches ,dielectric recovery and electrode erosion, were studied in theory, and a serial of high-energy high-coulomb repetitive experiments were performed with two different three-electrode gas spark switches designed by ours.
为了探寻提高开关重复频率和寿命的技术途径和方法,对制约开关重复频率和寿命的两个主要物理过程—绝缘恢复和电极烧蚀的机理进行了理论研究。
5)  micro-arc ablation
微电弧烧蚀
6)  Electric erosive resistance
抗电弧烧蚀
补充资料:弹头烧蚀(见弹头防热)


弹头烧蚀(见弹头防热)
warhead ablation

dantou shaoshi弹头烧蚀(warhead的lation)见弹头防热。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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