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1)  vacuum sintering
真空烧结
1.
Fabrication of a High-density Fine-grain P/M Titanium Alloy by Mechanical Alloy and Vacuum Sintering;
机械合金化-真空烧结法制备致密细晶钛合金
2.
Study of vacuum sintering technique of powder catalyst capsule;
粉末触媒合成柱真空烧结工艺的研究
3.
The microstructure and doping of Nd:YAG ceramics prepared by vacuum sintering were analyzed by X-ray diffraction (XRD), absorption spectra, digital metalloscope, scanning electron microscope (SEM) and energy dispersive spectrometer (EDS).
利用X射线衍射(XRD)、吸收光谱、数字金相显微镜、扫描电镜(SEM)和能谱(EDS)分析了真空烧结法制备的掺钕YAG陶瓷的显微结构和掺杂情况。
2)  Vacuum Sintering Furnace
真空烧结炉
1.
A Interpolation Adaptive Control Method on Temperature of Cemented Carbide Vacuum Sintering Furnace;
硬质合金真空烧结炉温度插值自适应控制
2.
A fuzzy adaptive control method on temperature of cemented carbide vacuum sintering furnace;
模糊自适应在真空烧结炉温度控制中的应用
3.
A temperature fuzzy control system for vacuum sintering furnace based on parameter self-adjustment;
基于参数自调整的真空烧结炉温度模糊控制系统
3)  vacuum sintering bell
真空烧结罩
4)  Overpressure vacuum Sintering
低压真空烧结
5)  vacuum powder sintering
真空粉末烧结
1.
The microstructures and properties of coating from cemented carbide on the surface of H13 steel by vacuum powder sintering were studied.
研究了真空粉末烧结法在高速钢表面上复合硬质合金层的组织及性能,分析了硬质合金层组织和界面结构的特点、测试了表面硬质合金层和高速钢之间的结合强度、复合双金属材料常温及高温硬度、耐磨性能。
2.
The results indicate that coating from cemented carbide with thickness of 1-3㎜ by vacuum powder sintering at temperature ranging from .
研究了真空粉末烧结法在H13钢表面上制备硬质合金覆层的组织及性能,论述了烧结工艺对覆层显微组织的影响,分析了覆层与钢基底界面形成特点、覆层的微观硬度分布及耐磨性能。
3.
The microstructures and properties of coating from ternary boride-based cermets on the surface of 45 steel by vacuum powder sintering were studied.
研究了真空粉末烧结在45钢基体表面制备三元硼化物基金属陶瓷覆层的组织和性能,论述了烧结工艺对覆层显微组织的影响,分析了覆层显微组织、显微硬度分布以及覆层与钢基体界面的形成特点。
6)  high vacuum sintering furnace
高真空烧结炉
1.
In view of the traditional heating method and technological requirement of high vacuum sintering furnace, the adjustment of heat-up speed is decided by the vacuum degree of the furnace.
针对高真空烧结炉传统的升温方式以及生产工艺要求,烧结炉升温速度要以真空度状态高低为条件而调节快慢,本研究以工业控制计算机为核心,采用嵌套真空度模糊条件于温度主控回路,温度控制采用PID和Fuzzy双模切换模糊控制算法,将高真空烧结炉原有升温系统由手动调节改为微机自动化检测与控制系统。
补充资料:真空烧结
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性质:瓷坯在真空条件下烧结的方法。氧化物陶瓷坯体的气孔中含有的水蒸气、氢、氧等气体在烧结过程中借溶解、扩散沿着坯体晶界或通过晶粒可从气孔中逸出,但其中的一氧化碳、二氧化碳,特别是氮,由于溶解度较低,不易从气孔中逸出,致使制品内含有气孔,致密度下降。如将坯体在真空条件下烧结,则所有气体在坯体尚未完全烧结前就会从气孔中逸出,使制品不含气孔,从而提高制品的致密度。

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