气体渗氮的英文
发音:
"气体渗氮"怎么读用"气体渗氮"造句
英文翻译手机版
- gas nitriding
- "气体"英文翻译 gas; gaseous fluid
- "渗"英文翻译 ooze; seep
- "氮"英文翻译 nitrogen
- "气体渗氮的" 英文翻译 : gasnitriert gas nitrided
- "气体渗氮处理" 英文翻译 : nitemper
- "气体氮化 气体渗氮" 英文翻译 : gasnitriding
- "钢件的气体渗氮" 英文翻译 : gas nitriding of steel parts
- "液体渗氮" 英文翻译 : liquid nitriding
- "气体软氮化处理 气体渗氮处理" 英文翻译 : nitemper
- "查普曼液体渗氮法" 英文翻译 : chapmanizing
- "气体渗硅" 英文翻译 : gas siliconizing
- "气体渗漏法" 英文翻译 : gas leakage method
- "气体渗硼" 英文翻译 : gas boriding
- "气体渗碳" 英文翻译 : carburizing by gas; gas carburation; gas carburization; gas carburizing; gas cementation; gas-carburization; gaseous carburization
- "气体渗碳法" 英文翻译 : gas carbonizing method
- "气体渗碳剂" 英文翻译 : carburizing gas; gas carburizer
- "气体渗碳炉" 英文翻译 : gas carbruizing furance
- "气体渗透" 英文翻译 : gas permeation
- "气体渗透率" 英文翻译 : gas permeability
- "气体渗透膜" 英文翻译 : gas permeable membrane; gas-permeable membrane
- "气体渗透性" 英文翻译 : gas permeability
- "气体共渗氮碳" 英文翻译 : gas nitrocarburizing
- "渗氮气体, 氮化气体" 英文翻译 : nitriding gas
- "杜菲利特液体渗碳渗氮剂" 英文翻译 : durferrit
- "空气搅拌液体渗氮法" 英文翻译 : aerated bath nitriding
例句与用法
- Preparation technology of fe - n single - phase austenite by gas nitriding
奥氏体的气体渗氮制备工艺 - Gas nitriding of steel parts
钢件的气体渗氮 - According to the demand of the technology of gas nitriding , the author firstly put forward total demand analysis and systematic model - making for gas - nitriding furnace ' s temperature control system with uml in order to definite the temperature control system ' s functional requirement and the interaction of each object in this system on the basis of this idea . it ' s thought that the key step for realizing the temperature control system is the analysis and the design of the pid controller . considering that the gas - nitriding furnace has significant temperature lag , the author initially pointed out the opinion of realizing the system of temperature control by pid controller with pure lag compensation and then designed the parameter of pid controller with pure lag compensation and ordinary pid controller by matlab6 . 5
这篇论文以作者本人在原工作单位的技术改造实践中(即渗氮炉的技术改造)所遗留下来的技术问题为背景,根据气体渗氮工艺的具体需要,首先提出了用uml对渗氮炉温控系统进行总体的需求分析和系统实物建模以明确温控系统的功能需求及各对象间的交互,在此基础上分析得出温控系统实现的关键所在即pid控制器的分析设计和实现,由气体渗氮炉存在较大的温度滞后这一特性,初步提出用带纯滞后补偿的pid控制器来实现温控系统的温度控制,随后借助于matlab6 . 5平台对带纯滞后补偿的pid控制器和常规的pid控制器进行参数的设计与整定,进而在matlab6 . 5的simulink仿真环境中对基于两种不同pid控制器的渗氮炉的两种温控系统的设计方案进行了仿真实现及仿真结果比较,结果表明,采用带纯滞后补偿的pid控制系统的鲁棒性较常规的pid控制系统好。
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