1)  FTS
火焰热喷
1.
Linear materials such as Al, Zn and 1Cr18Ni9Ti were made into metal powders by flame thermal spray(FTS);the average diameter and distribution spectrum were analyzed by light-permeating method;the morphologic appearances of the powders were studied by SEM;and the relationships between the particle size,oxygen content and the parameters of FTS were analyzed.
提出用火焰热喷雾化法将Al、Zn和1Cr18Ni9Ti等线材制成金属粉末。
2)  the flame thermal spray
火焰热喷涂
1.
The design and the flame thermal spray process of the piston;
一种柱塞件的设计与火焰热喷涂加工
3)  flames
火焰
1.
One-dimension carbon nanomaterials with variant morphologies from ethanol flames were studied systematically by using scanning electron microscopy(SEM) and transmission electron microscopy(TEM).
文章利用扫描电镜(SEM)、透射电镜(TEM)系统观察和研究了乙醇燃烧火焰中合成的具有各种不同形貌特征的一维碳纳米材料。
2.
Analysis shows that the higher the concentration of oxygen, the more obvious effects of CO2 dilution, and the lower the concentrations of NO x is; N2 diluted fuel flames mass flow is more effective than dilution air flow to reduce the effects of NOx concentrations.
分析表明,氧浓度越高,CO2稀释效果越明显,NOx浓度越低;N2稀释燃料火焰质量流量的效果比稀释空气对降低NOx浓度更加有效。
3.
different arrangements of intersecting bias flames on tne formation of NOX are discussed.
本文提出了浓淡火焰对冲燃烧技术方案,并对其降低NO_x的原理进行了理论分析,给出了该技术方案试验研究和利用该方案研制的实用工业燃烧器的工业运行试验结果。
4)  fire
火焰
1.
Real-time fluid-dynamic-based fire modeling and rendering technology;
基于流体动力学的火焰实时绘制技术
2.
Fire Simulation in Wind Based on Particle System;
基于粒子系统的风场火焰模拟
3.
An improved algorithm for simulating real-time fire based on classic particle systems is presented.
本文根据火焰的性质,在经典粒子系统的基础上提出了一种改进的实时火焰模拟算法。
5)  flame
火焰
1.
VUV Photoionization Study of the Allyl Radical from Premixed Gasoline/Oxygen Flame;
汽油/氧气预混火焰中烯丙基自由基的真空紫外光电离研究(英文)
2.
Synthesis of one-dimension carbon nanomaterials from liquefied petroleum gas (LPG) flame;
液化石油气燃烧火焰制备一维碳纳米材料
3.
Fractal characteristics of flame inner flow field in methane/air explosion;
瓦斯爆燃火焰内部流场分形特性研究
6)  trough of flame
火焰空穴,火焰槽
参考词条
补充资料:激光喷码机与喷墨喷码机的比较
喷印的图案文字和数码主要包括生产日期、有效期、批号、条形码以及商标图案。防伪标记和中文字样等,是贯彻卫生法和促进包装现代化强有力的设备。

    这种技术广泛应用于多行业,多材质表面,运行高速,稳定,适配各种车间,生产线工况的包装标刻。应用材质包括纸张、PVC、玻璃、塑料、橡胶、木材、陶瓷、皮革、布料等各种材质。应用对象目前主要分两大类,一类是产品的包装,主要分布在食品、饮料、烟草、酒类及医药行业:另一类是产品本身,即在产品上标注其规格型号等,使其成为产品本身的一部分内容,主要分布在电线电缆、建筑材料、电子产品和商务印刷等行业。


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