thermite
- 网络铝热剂;铝热;铝热反应;热剂;高热剂
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Effect of mixing procedure on combustion characteristics of thermite Al + Fe_2O_3
混料工艺对Al+Fe2O3铝热剂燃烧特性的影响
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Increasing preheating temperature of thermite , the speed of thermite reactions quicken , the properties of products can also be improved .
提高铝热剂预热温度,可加快铝热反应速度,改善复合铜管质量。
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Research on Ceramic Coating Technique by Thermite Reaction Fusion Adhesion Process
铝热反应熔附成型陶瓷涂覆技术的研究
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Basic Research on Refining of High Titanium Ferroalloy Based on Thermite Reduction
铝热还原精炼制备高钛铁的基础研究(铜火法精炼还原阶段的)插树
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Reaction mechanism of self propagating high temperature synthesis BN by thermite reaction
自蔓延还原合成BN反应机理
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Probe into reducing silicon contents in metallic chromium with thermite method
降低铝热法金属铬硅含量的探讨
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Study of the Pressure Thermite Welding of Rails
钢轨加压铝热焊的研究
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Thermite effects changed to look like it is burning for several seconds before causing damage .
铝热效应改变的样子是前几秒钟燃烧造成的损害。
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An investigation on melting ferrotitanium process in thermite method
铝热法冶炼高钛铁工艺试验
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Development of the SHS centrifugal - thermite process
SHS铝热-离心技术的研究进展
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High-strength TiC / FeNiCr Composite Produced by Rapid Solidification Thermite Process
铝热快速凝固工艺合成高强TiC/FeNiCr复合材料
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Influence of CrO_3 Additive on the Thermite Reaction Procedure in Fe_2O_3 + Al System
CrO3对Fe2O3+Al铝热反应系统反应过程的影响
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Probe into increasing recovery of Ch rome-boron alloy smelting with thermite method
提高铝热法生产铬硼合金回收率的探讨
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The practice shows that smelting high grade ferrotitanium with rutile by thermite method is feasible .
实践证明,采用金红石铝热法生产高钛铁在技术上是完全可行的。
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Solidification of Toxic Materials Under Explosion by SHS Method of Sand-Containing Thermite
含沙铝热剂对受爆炸作用有毒物质的SHS固化
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Test results show that the single-use crucible developed meets the requirements for alumino thermite welding .
试验结果显示,研制的一次性坩埚可以满足铝热焊接使用。
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In order to improve the quality of the thermite welding of rails , the pressure thermite welding process is studied .
为了提高钢轨常规铝热焊的接头质量,作者对钢轨加压铝热焊工艺进行了试验研究。
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The principle and merits of which thermite is used for combustion destruction of ammunition are expatiated .
破坏说争辩阐述了高热剂燃烧销毁弹药的原理和优点。
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Acting as a diluent during thermite combustion process , NaF will reduce the combustion temperature and propagation rate ;
在铝热燃烧过程中NaF作为稀释剂存在,降低燃烧温度和蔓延速率;
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Technology of thermite method smelting FEV 50 with v_2o_3
V2O3电铝热法冶炼FeV50的工艺探讨
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Thermite is aluminum powder and a metal oxide which produces an aluminothermic reaction known as a thermite reaction .
铝热是铝粉,一种金属氧化剂,能产生我们所谓的铝热反应。
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Adding SiO 2 in thermite , the porosity , the density and the compressive shear strength of the products are obviously improved .
铝热剂中加入SiO2也可降低孔隙度,提高压剪强度。
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The progression of thermite research and the fields of thermite application are outlined . Common methods for ammunition destruction and their defects are introduced .
概述了高热剂研究历史以及应用领域,介绍了弹药销毁的常规方法及其缺陷;
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Adding SiO 2 to thermite can enhance compactness and improve corrosion-resistance . Adding ZrO 2 can enhance breaking ductility .
在铝热剂中加入SiO2,可提高致密度,改善耐蚀性,加入ZrO2可提高断裂韧性。
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In the clip above we see an attempt to " cool " the thermite reaction by dumping it in a vat of liquid nitrogen .
在上面的视频中我们看到,为了让铝热反应“降温”而浇入大量液氮。
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To make the thermite reactions can be more valuable , one of the most effective methods to improve the reaction rate is to make one or two components of the reactant reach nano-scale .
为了改善铝热剂的反应速率,使其在含能领域更加有利用价值,将其中一种或者两种组分进行纳米化是一种有效的方法。
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The effects of respects such as material disposal , slag system and heat etc. on recovery are discussed in chrome-boron smelting with thermite method , and the control measures are also put forward .
讨论了铝热法铬硼合金生产工艺中原料处理、渣系、热量等方面对冶炼回收率的影响,并提出了控制方法。
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The thermite reaction of Al B 2O 3 system is a multi step one : B 2O 3 slowly reacts with Al , and forms Al 4B 2O 9 and B below 820 ℃;
结果表明:铝热还原B2O3的反应是一个分步过程,低于820℃时,B2O3与Al缓慢反应生成Al4B2O9;
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Melt-casting under ultra-high gravity integrates the combustion synthesis with ultra-high gravity technology . The ultra-temperature metal / ceramic mixing-melts can be achieved by heat generated from thermite combustion reaction .
超重力熔铸技术是将燃烧合成技术与超重力技术相结合,利用铝热燃烧合成体系的强放热获得超高温的陶瓷/金属混合熔体,并实现二者的彻底分离。
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An understanding to the nature of self propagating high temperature synthesis ( SHS ) of BN by thermite reaction was obtained from the results of differential thermal analysis ( DTA ), reaction at different temperatures for 30 min and SHS experiments .
结合差热分析,通过研究B2O3和Al在不同温度下的反应以及在不同氮气压力中的自蔓延实验,探讨了B2O3AlN2体系自蔓延还原合成BN的反应机理。