电流处理的进步 绝缘陶的电流加工
Sergey N Grigoriev1, Marina A Volosova1, Anna A Okunkova1
1Department of High-Efficiency Processing Technologies, Moscow State University of Technology STANKIN, Vadkovskiy per. 3A, 127994 Moscow, Russia.
Materials (Basel, Switzerland)
|September 9, 2023
概括
绝缘陶的电放电加工 (EDM) 通过修改材料性能或电极间隙来改进. 提高电导率和使用低带间隙辅助粉末显著提高了机械性.
科学领域:
- 材料科学 材料科学 材料科学
- 制造业 工程 制造工程
- 表面工程是什么?表面工程是什么?
背景情况:
- 绝缘陶的电放电加工 (EDM) 带来了重要的制造挑战.
- 目前的方法涉及改变陶性能或电极间隙环境.
研究的目的:
- 审查和分析关于绝缘陶的EDM现有数据.
- 确定影响水悬浮和碳化合物环境中的可加工性的关键因素.
- 为系统的实验研究提出进展建议.
主要方法:
- 对陶复合材料,纳米复合材料,涂料和粉末的EDM现有文献的分析.
- 基于电特性 (导电性,电阻,带间隙) 和粉末度的可加工性研究.
- 识别粉末度效应的技术差距.
主要成果:
- 陶复合材料的较高电导率提高了可加工性.
- 辅助粉末中较低的带间隙增加了绝缘陶的可加工性.
- 在粉末度方面发现了两个技术差距,可能与衰减有关.
结论:
- 优化陶和辅助手段的电气性能对于有效的EDM至关重要.
- 使用具有较低带间隙的辅助粉末是一种有前途的方法.
- 需要进一步的系统研究来完善用于绝缘陶的EDM工艺.
关键词:
Al2O3 的使用情况.一个AlNN一个AlNN如果Si3N4是Si3N4的话.这就是ZrO2的含量.辅助手段是一种辅助手段.电导率是指电导的电导率.电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电力电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电阻电力电阻电阻电阻电力电阻电阻电阻电流材料去除速度的速度.粉末度度粉末的度是什么相关概念视频
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