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1)  foaming SHS
发泡法燃烧合成
1.
The product was examined by XRD and SEM,whose results illustrate that foaming SHS is effective in preparing full-grown β-Si3N4 particles with controllable length/radius ratio.
实验结果表明,通过发泡法燃烧合成可制备长径比可控、晶粒发育完全的氮化硅粉体。
2)  combustion-frothing method
燃烧-发泡法
1.
Preparation of non-grinding SrAl_2O_4∶Eu~(2+),Dy~(3+) Long afterglow powdery material by combustion-frothing method;
燃烧-发泡法制备不球磨SrAl_2O_4∶Eu~(2+),Dy~(3+)长余辉粉体材料
3)  combustion synthesis
燃烧法合成
1.
Nanocrystalline CeO2∶Er phosphors with an average crystalline size of 18, 38, 70 nm were prepared by glycinenitrate solution combustion synthesis.
采用燃烧法合成了CeO2∶Er纳米荧光粉,研究了不同粒径大小的CeO2∶Er的晶型和晶貌。
4)  combustion synthesis
燃烧合成法
1.
Study of the Preparation of Alkali Earth Metals Halide by Combustion Synthesis;
燃烧合成法制备碱土金属卤化物的研究
2.
In this paper,different grain size of nanocrystalline Y_2O_3(Y_2O_3:Eu~(3+)) had been prepared by glycine-nitrate solution combustion synthesis and the homogeneous precipitation technique.
本文采用燃烧合成法和均相沉淀法制备了不同粒径的纳米晶Y2O3(Y2O3:Eu3+),着重研究了燃烧合成法中各种因素(甘氨酸的用量、前驱体中的含水量、炉温等)对纳米晶Y2O3晶粒尺寸的影响。
3.
This paper reported the preparation (of BaFBr)∶Eu~(2+) by combustion synthesis of urea-nitrate system,and the samples properties was studied with XRD and spectrophotometer.
BaFBr∶Eu2+的传统制备方法是高温固相法,文章介绍了应用燃烧合成法,采用尿素硝酸盐系燃烧合成获得BaFBr∶Eu2+,分别利用XRD和分光光度计对产物的各种性质进行测量研究。
5)  combustion method
燃烧合成法
1.
Super fine powders of calcium-doped lanthanum chromites were synthesized by the Pechini method and the combustion method respectively.
分别通过Pechini法和燃烧合成法制备了掺Ca铬酸镧超细粉体,并采用高压成形、无压烧结工艺实现了低温致密化烧结。
2.
3)Co_(1-y)FeyO_(3-δ) powders were synthesized by a low temperature combustion method.
采用低温燃烧合成法制备了用作中低温固体氧化物燃料电池的阴极材料La_(0。
6)  flame synthesis
燃烧合成法
1.
In this paper, the flame synthesis of carbon nanotubes based on laminar diffusion flames, counter-flow flames and premix flames are introduced.
本文主要介绍碳纳米管的燃烧合成法, 包括层流扩散火焰法、逆流火焰法和预混火焰法,并对影响碳纳米管合成的因素以及燃烧合成法中碳纳米管的生长机理做了做了简要分析。
补充资料:发泡
分子式:
分子量:
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性质:使塑料、橡胶等物料产生气泡而制成泡沫产品的过程。通常有机械发泡、物理发泡和化学发泡三种方法。其共同点是:在一定的条件下产生气体;同时,在一定粘度范围内的液态或塑性状态中,使物料具有气体泡孔结构。

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