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真空烧结参数 parameter of the vacuum sintering英语短句 例句大全

时间:2019-07-28 08:48:38

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真空烧结参数 parameter of the vacuum sintering英语短句 例句大全

真空烧结参数,parameter of the vacuum sintering

1)parameter of the vacuum sintering真空烧结参数

2)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 ofvacuum 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 byvacuum 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。

英文短句/例句

1.Effects of Processing Parameters in Vacuum Sintering on Properties of Cu Powder Samples真空烧结工艺参数对铜粉烧结性能的影响

2.Design and Study on the Auto Control System of HIP-Sinter Stove;低压真空烧结炉自动控制系统研究与设计

3.Integral Vacuum Sintering Furnace Manufactuved by Xiangtan Xinda P/M Equipment Manufacturing Company Ltd湘潭新大粉末冶金设备制造有限公司的一体化真空烧结炉

4.Research on Properties and Fabrication Technique of Aluminum Foam with Press-Dissolution-Vacuum Sintering Progress;冷压—溶解—真空烧结法制备泡沫铝工艺及性能的研究

5.Effect of alloy additives on the friction and wear properties of vacuum sintering FeAl matrix composite frictional materials合金元素对真空烧结FeAl基摩擦材料摩擦学性能影响的研究(英文)

6.For prolonged atmospheric sinter firing and infiltration firing of VITA In-Ceram frameworks created using the slip technique.用于由堆涂技术制成的VITA全瓷支架的长时间非真空烧结和渗透培烧。

7.STUDY ON NANO-SIZED AlN CERAMICS BY HOT PRESSED SINTERING真空热压烧结纳米氮化铝陶瓷的研究

8.Study on VC/Cu Composite Fabricated by Hot Pressing Sintering真空热压烧结VC/Cu基复合材料的研究

9.Microstructure and Properties of Al_2O_3/Cu-Cr Composites Prepared by Vacuum Hot-pressed Sintering真空热压烧结Al_2O_3/Cu-Cr复合材料的组织与性能

10.Research on the Vacuum Extrusion For Production of Non-Sintering Flyash CeramIsite真空挤压生产免烧结粉煤灰陶粒的研究

11.Effect of Vacuum Hot-pressed Sinter on Properties of Cu/WC Composite真空热压烧结对Cu/WC复合材料性能的影响

12.Practices and upgrading of rubber belt vacuum filter in red mud washing system of sintering process橡胶带式真空过滤机在烧结法赤泥洗涤系统的实践及改进

13.Researches on application of tilting-pan type vacuum filters in the sintering process to separation of red mud翻盘式真空过滤机在烧结法赤泥分离中的应用研究

14.Experimental study on sintering to extract Al by low-valency compounds in vacuum真空下低价化合物法提取铝的新工艺——原料烧结实验研究

15.Microstructures and Properties of Hard Materials Coating on Die Steel Surface by Vacuum Powder Sintering;真空粉末烧结法在模具钢表面制备的硬质覆层的组织和性能

16.Study on Pressureless Vacuum Powders Sintering of NIB and IN738 for Bonding Repairing SuperalloyNIB与IN738混合粉末真空无压烧结连接修复高温合金

17.Fired hollow bricks and blocksGB13545-1992烧结空心砖和空心砌块

18.IPSEN International supplies companies in the automobile, aircraft and space industries, as well as tool and machine builders, manufacturers of medical equipment and commercial heat-treatment shops.易普森产品广泛应用于各种工艺,包括气氛和真空热处理、离子渗碳、焊和烧结。

相关短句/例句

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 ofvacuum 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 byvacuum 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。

3)sintering parameter烧结参数

4)Vacuum Sintering Furnace真空烧结炉

1.A Interpolation Adaptive Control Method on Temperature of Cemented CarbideVacuum 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

5)vacuum sintering bell真空烧结罩

6)Overpressure vacuum Sintering低压真空烧结

延伸阅读

真空烧结分子式:CAS号: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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