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1.
ANALYSIS OF DENSIFICATION BEHAVIOUR OF METAL POWDERS UNDER CIP PROCESS
金属粉末冷等静压下致密化过程的分析
2.
Study on Reaction and Compacting Process, Structure, Performance and Forming Mechanism of Iron-base Surface Composite by Cast-sintering Technique;
铸造烧结铁基表面复合材料的化学反应过程、致密化过程、组织及性能研究
3.
The effect of the additives and its amount on the densification of BN-ZrO?2 composite powder body during hot pressing sintering were investigated.
研究了烧结助剂和添加量及烧结温度对氮化硼、化锆复合粉体在热压烧结过程致密化的影响。
4.
Study on Deformation and Densification Law of Powder Forging and Numerical Simulation of Forging Process;
粉末锻造成形致密规律及过程模拟的研究
5.
Experimental study on fracturing damage in low permeability tight gas reservoir
低渗致密气藏压裂过程中伤害实验研究
6.
Study on Water during Compression of Fast-Growing Wood of China Fir;
杉木速生材压缩密化过程水分的研究
7.
The Study of Conserved Function and Molecular Mechanism of HID-1 during Secretory Granules Biogenesis
HID-1在致密核心囊泡生成过程中的保守功能及其分子机制研究
8.
Diagnosing left ventricular noncompaction by cardiac magnetic resonance imaging and its differential diagnosis on left ventricular hypertrabeculation
左心室心肌致密化不全的MR诊断及与过度小梁化的鉴别诊断
9.
Thickness of consistency;impenetrability.
致密度一致的程度,不可穿透性
10.
SINTERING DENSIFICATION OF ZrB_2-YAG CERAMICS
ZrB_2-YAG陶瓷的烧结致密化
11.
The Subdivision and Concentration of Villages in Huabei Plain in the Ming and Qing Dynasties;
明清华北平原村落的裂变分化与密集化过程
12.
Had it melted all the way through, the heavier materials would have concentrated in a dense core.
假如它熔化过,那么,较重的物质就会聚集在一个致密的核里。
13.
hypoxia resulting from defective oxygenation of the blood in the lungs.
由于血液中的氧化过程有缺陷而导致的氧不足。
14.
anoxia resulting from defective oxygenation of the blood in the lungs.
由于血液中的氧化过程有缺陷而导致的缺氧。
15.
Enrichment and sedimentation are the principal contributor to the aging process of lakes.
富饶和沉淀是导致湖泊老化过程的主要原因。
16.
The Dynamic Change of MPF in Germ Cells of Heat-stressed Mouse Testis;
热激导致小鼠生精细胞中MPF变化的动态过程
17.
On the Law Harmonization in the European Economic Integration;
欧洲经济一体化过程中法律趋于一致及其启示
18.
The densification of said composite started at1750℃ and ended at1830℃.
结果表明,材料的致密化开始于1750℃1830℃全致密。