1、

Preparation of bulk Al_3Ti/ Al nanocomposite by high-energy ball milling and in-situ reaction sintering

高能球磨制备Al3Ti/Al块体纳米晶复合材料

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2、

The prepared porous material manufactured by elemental powder solid phase diffusion followed by high temperature reaction sintering process had excellent comprehensive performance.

采用元素粉末固相扩散+高温反应烧结工艺所制备的多孔材料具有优异的综合性能。

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3、

Also, the effect of the additional ingredients including resin, silicon and graphite on the reaction sintering ws explained.

另外,探索了酚醛树脂、硅粉、石墨粉等辅助配料在反应烧结过程中的作用。

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4、

Regular reaction sintering occured only as the heating temperature is lower than 1 173 K for thermo explosion reaction.

当温度尚未达到热爆温度时,只能发生常规反应烧结;

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5、

Mullite zirconia ceramics with in situ SiC powder were prepared by Reaction sintering process. The reaction sintering mechanism was studied.

通过反应烧结锆英石、氧化铝和碳黑的混合物制备了原位SiC颗粒复合的锆莫来石材料并研究了烧结机理。

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6、

Investigation in this program was concentrated on three main parts: ( 1) mirrorgreenbody fabricating,( 2) reaction sintering.

本项目主要包括以下三方面的研究工作:(1)反射镜素坯的制备;(2)反应烧结;

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7、

The results show that the content of tetragonal phase is increasing in BNBT ceramics by direct reaction sintering method but still exhibiting a single phase of perovskite structure.

结果表明,直接反应烧结法不影响BNBT陶瓷的钙钛矿相结构,但可使准同型相界处组成的四方相含量增加;

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8、

Influences of carbon, silicon and aluminium on reaction on surface of austenite stainless steel powder during sintering

碳、硅和铝对奥氏体不锈钢粉末烧结时表面反应的影响

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9、

The relationship between a catalytic reaction over the surface of activated MgO and its crystal growth and sintering behavior

在活性MgO表面上进行的催化反应与其晶粒成长及烧结的关系

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10、

In order to remove the phenol pollutants more effectively, experiments were conducted in this study using phenol as simulate waste water in self-regulation reaction vessel. Adopting the impregnated sintering method, a supported catalyst with clinoptilolite as its carrier was made.

为了更加有效的去除水中的苯酚污染物,本研究使用苯酚作为模拟废水,在自制的反应容器中进行实验,采用浸渍焙烧法制备了以斜发沸石为载体的负载型催化剂。

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11、

After detailed research for sintering process, the whole sintering process is divided into three stages of formation, movement and disappearance of reaction zone.

本文深入研究了烧结过程的特点,将从点火开始到烧结结束的整个过程分成反应带形成阶段、反应带移动阶段和反应带消失阶段;

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12、

The Reactive Liquid Phase Sintering of Materials with Corrosion Resistance to Molten Zinc

耐液态锌腐蚀材料的反应液相烧结

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13、

Properties of CeB_6 Cathode Fabricated by Spark Plasma Reactive Liquid Phase Sintering Method

放电等离子反应液相烧结制备CeB6阴极与性能研究

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14、

On the basis of porous carbon, the reactive sintering silicon carbide ceramics were prepared by ihrigizing reaction.

以此为基础,进一步通过渗硅反应,制成反应烧结碳化硅陶瓷。

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15、

Research progress on reactive sintering of silicon nitride

氮化硅反应烧结的研究进展

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16、

A study on Sintering Mechanism of the Reactive Sintering of Zircon Porous Ceramics

反应烧结锆英石质多孔陶瓷烧结机理初探

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17、

The Reactive Sintering Technique for Preparing the Compounds of Si and Mo

反应烧结法制备硅钼化合物

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18、

Effect of reactive sintering temperature on properties of Si_3N_4-SiC refractories

反应烧结温度对Si3N4-SiC材料性能的影响

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19、

Influence of titania oxide on reactive sintering process and properties of β-sialon

二氧化钛对β-sialon反应烧结及其性能的影响

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20、

Synthesis of SiC/ MoSi_2 Composite by Mechanical Alloying and Reactive Sintering

机械合金化反应烧结制备SiC/MOSi2复合材料

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