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1)  Microwave plasma processing
微波等离子处理
2)  Microwave plasma treatment
微波等离子体处理
3)  microwave plasma
微波等离子
1.
Using the mixture ambience of high pure hydrogen and high pure nitrogen as precursor,VO 2-x N y thin films with good thermal induced phase transition property were synthesized at low temperature by microwave plasma enhanced route using V 2O 5 as molecular precursors through coating film in glass slice.
选用V2O5为前驱物,通过在玻璃片上镀膜,利用高纯氢和高纯氮作为气源,采用微波等离子体增强法,在低温条件下合成了具有优良热致相变特性的氮杂二氧化钒(VO2-xNy)薄膜。
2.
Both conventional microwave and microwave plasma sintering technology have been involved to sinter ZnO based varistor.
采用常规微波和微波等离子对比烧结ZnO/Bi2O3系压敏电阻发现:两者均可快速成瓷,烧结时间由常规的20 h减少到45 min;烧结后,ZnO晶粒细小(约1μm)均匀,相比而言,等离子更有利于压敏电阻烧结。
3.
The step sintering of microwave heating and microwave plasma heating (SSMP)was proposed in this paper.
提出微波加热和微波等离子加热分步烧结方法(SSMP)。
4)  plasma treatment
等离子处理
1.
Effect of plasma treatment on the stress-strain and the structure of locomotive wheel flanges;
等离子处理对轮缘应力-应变和组织的影响
2.
By meons of Scanning electron microscope, X-ray photoelectron spectrum, Laser Raman spectrum and Dynamic capillary wicking analyses, the changes of the chemical structure and the wetting pro perly of the carbon fiber surface before and after plasma treatment were studied.
通过扫描电镜(SEM)、X射线表面能谱(XPS)、激光喇曼光谱(LRS)以及动态毛吸浸润(DCW)等分析方法研究了等离子处理前后碳纤维表面化学结构及浸润特性的变化,并发展了一种以1,1-二苯基,2-苦基肼(dPPh)为探针,利用紫外可见光谱分析碳纤维表面酚羟基、酿基以及等离子处理后产生的游离基的新方法DPPH。
3.
By Way of SEM observation for the carbon fiber surface and the determination of the mechanical properties of conjugate fibers,it is found that plasma treatment almost has no affection on the modulus of the carbon fiber,on the other hand, the fiber strength drops slightly with the increasing of the plasma power or with the extending of the treating time.
通过碳纤维表面的扫描电镜观察与复丝力学性能测定,发现等离子处理对纤维的模量几乎没有影响,而强度随着处理功率的增加和时间的延长稍有下降,在外观上仅表现为纤维表面纵向沟槽的加深。
5)  plasma [英]['plæzmə]  [美]['plæzmə]
等离子处理
1.
The polypropylene fiber wetting property is ameliorated obviously by the oxygen plasma treatment.
对丙纶纤维用氧气进行等离子处理,明显地改善了其表面的润湿性能:甘油在纤维上的接触角可以从69°减小到21°,减少了70%。
6)  microwave plasma
微波等离子体
1.
V_(0.98)W_(0.02)O_(2-x)N_y thin films synthesized by microwave plasma;
微波等离子体制备氮杂二氧化钨钒薄膜
2.
Study of gel form intelligent cotton knitgoods with polymer grafting initiated by microwave plasma;
微波等离子体引发接枝凝胶型智能棉针织品
3.
Methane conversion into acetylene by synergism of transition metal catalyst and microwave plasma;
过渡金属与微波等离子体协同催化甲烷制乙炔
补充资料:电感耦合微波等离子体焰炬
分子式:
CAS号:

性质: 由微波感生、用于发射光谱分析的等离子体光源。将发生等离子体焰炬的石英管,置于微波谐振腔中,以2450MHz的微波激发。产生的光谱简单,背景低,耗气与耗电量小。

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