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SiC晶须 SiC whisker英语短句 例句大全

时间:2022-10-22 13:37:09

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SiC晶须 SiC whisker英语短句 例句大全

SiC晶须,SiC whisker

1)SiC whiskerSiC晶须

1.Growth mechanism ofSiC whisker in Al_2O_3-ZrO_2-C slide gate;铝锆碳质滑板中SiC晶须形成机理

2.Study on theSiC whisker toughening Ti(C,N)-based cermet composites;SiC晶须增韧Ti(C,N)基金属陶瓷复合材料的研究

3.Study on the separation of the paramorphicSiC whisker and SiC particle;同质异形体SiC晶须与SiC颗粒的分离

英文短句/例句

1.Properties of ZrB_2 ceramics reinforced by SiC nanowhiskers and SiC particles纳米SiC晶须和SiC颗粒混合增韧ZrB_2陶瓷性能

2.Preparation and Mechanical Properties of Silicon Carbide Whisker Reinforced Silicon Carbide Mini CompositesSiC晶须增韧SiC mini复合材料的制备与性能分析

3.The Preliminary Research on Whisker Orientation Arrangement and Cutting Performance of Photosensitive Resin Bond SiC Whisker WheeSiC晶须砂轮的晶须定向及切割性能的初步研究

4.SYNTHESIS OF THE SiC WHISKERS IN SiO_2-C-N_2 SYSTEMSiC晶须在SiO_2-C-N_2系统中的合成

5.MoSi_2 composites reinforced by SiC whiskers and Si_3N_4 particlesSiC晶须与Si_3N_4颗粒强韧MoSi_2复合材料

6.Study on the SiC Whisker-Toughened Silisides and SiC/Glass Oxidation Protective Coatings;SiC晶须增韧硅化物及SiC/玻璃高温防氧化涂层的研究

7.Research on influencing factor of mechanical properties of SiC whisker toughened photosensitive resinsSiC晶须增韧光敏树脂的力学性能影响因素研究

8.MoSi_2-based Composites Reinforced and Toughened by Si_3N_(4(p)) and Nano SiC_(w)Si_3N_4颗粒和纳米SiC晶须强韧化MoSi_2基复合材料

9.Preparation of SiC Whiskers Pre-added Ni-based Cladding on Cu Alloy Surface by Laser Deposition铜合金表面添加SiC晶须的Ni-Cu激光熔覆层

10.Nano Hydroxyapatite/SiC Whisker Composite Bioceramics Material and Its Machining;纳米羟基磷灰石/SiC晶须复合生物陶瓷材料及其加工

11.Study on Recovery Process of SiC Whisker from SiC Mixture Synthesized in Infinite-mini-heat Sources Furnace;无限微热源法合成的SiC晶须与颗粒分选工艺研究

12.Investigation on the SiC Whisker Reinforced Resin Matrix Composite in the UV Curing of Rapid Prototyping光固化快速成型中SiC晶须增强树脂基复合材料的研究

13.Microstructure and Mechanical Properties of Nano-SiC Whisker Reinforced Ti(C, N)-Based Cermets纳米SiC晶须增强Ti(C,N)基金属陶瓷的显微组织与力学性能

14.Low Temperature Oxidation Behavior of MoSi_2 Composites Strengthened and Toughened by Si_3N_4 Particles and SiC WhiskersSi_3N_4颗粒及SiC晶须强韧化MoSi_2复合材料的低温氧化行为

15.Study on the Tribological Performance of Nano-SiCw Reinforced Cu-based Composites纳米SiC晶须增强铜基纳米复合材料摩擦学性能研究

16.Realization on In-situ Growth of SiC Nano-whisker by Laser Irradiation on SiC Nano-particles;激光照射下SiC纳米颗粒原位生成晶须的实现

17.Mechanism of Heat Transport of SiC Growth by PVT;PVT法生长SiC晶体的热系统分析

18.Preparation and Photoluminescence of SiC Nanocrystal Films;SiC纳米晶薄膜的制备及发光性质

相关短句/例句

SiC whiskersSiC晶须

1.The dispersion performances of four different dispersants inSiC whiskers suspension were investigated by centrifugal sedimentation turbidimetric method.利用离心沉降浊度法对SiC晶须在4种不同分散剂中的分散行为进行了研究,探讨了不同分散剂的分散效果,并对其分散机理进行了分析。

2.The texture ofSiC whiskers and it’s influence on cavity in SiCw/Mg-Zn-Zr composites during superplastic deformation were studied.研究了镁基复合材料超塑性变形过程中SiC晶须织构的演化规律,并分析了其对孔洞行为的影响。

3.SiC whiskers and Ti(C,N) particles toughened Al 2O 3 matrix ceramic composites for cutters were fabricated with hot pressing technique, with a certain amount of Y 2O 3 used as sintering aids to reduce the sintering temperature.研究了不同烧结温度(16 0 0~ 175 0℃ )下 ,材料的致密度和力学性能 (断裂韧性KIC ,维氏硬度HV和抗弯强度σf)随晶须含量 (10 %~4 0 % )的变化关系 ;探讨了SiC晶须和Ti(C ,N)颗粒对Al2 O3基体的协同增韧机理。

3)β-SiC whiskerβ-SiC晶须

1.The carbothermal synthesis ofβ-SiC whiskers with ultrafine carbon powder and kaolin clay isa better method.用超细碳粉热还原高岭土合成β-SiC晶须是一条较新颖的晶须制备工艺途径。

4)SiC whisker grinding wheelSiC晶须砂轮

5)β-SiC nanowhiskerSiC纳米晶须

1.A novel catalyst-free method of preparingβ-SiC nanowhiskers by using carbon fibres as solid carbon source was presented.介绍了使用碳纤维为固相碳源,无催化剂加入制备β-SiC纳米晶须的一种新方法。

6)SiCw/SiCpSiC晶须/颗粒

1.The new TN30W cutting tools of cermet composites were fabricated with the vacuum sintering technique while theSiCw/SiCp are added to the TN30 cutting tools.在TN30金属陶瓷切削刀片中添加SiC晶须/颗粒,采用真空烧结法制备出新型TN30W金属陶瓷复合材料刀具。

延伸阅读

晶须晶须whisker由高纯度单晶生长而成的短纤维。其机械强度等于邻接原子间力。晶须的高度取向结构不仅使其具有高强度、高模量和高伸长率,而且还具有电、光、磁、介电、导电、超导电性质。晶须的强度远高于其他短切纤维,主要用作复合材料的增强体,用于制造高强度复合材料。制造晶须的材料分金属、陶瓷和高分子材料3大类。已发现有100多种材料可制成晶须,主要是金属、氧化物、碳化物、卤化物、氮化物、石墨和高分子化合物。晶须可从过饱气相、熔体、溶液或固体生长,常生产成不同规格的纤维,其使用形态有原棉、松纤维、毡或纸。原棉(如由蓝宝石晶须构成)具有很松散的结构,长径比为500~5000∶1,松密度为0.028g/cm3。松纤维具有轻微交错的结构,长径比为10~200∶1。毡或纸状的晶须,排列杂乱,长径比为250~2500∶1。

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