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steel matrix composites
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  钢基复合材料
     Combustion Synthesis of TiB_2/TiC Locally Reinforced Steel Matrix Composites in Molten Steel Using Cu-Ti-B/B_4C Systems
     Cu-Ti-B/B_4C系钢液内燃烧合成局部TiB_2/TiC增强钢基复合材料
短句来源
     Effect of Friction Speed on Friction Properties of In-Situ Steel Matrix Composites Fe(Ti,W,Cr,V,Nb)C_p
     摩擦速度对原位自生钢基复合材料Fe(Ti,W,Cr,V,Nb)C_p磨损性能的影响
短句来源
     Properties of Sinter-Forged WC/FY-1 Steel Matrix Composites
     WC/FY-1烧结锻造钢基复合材料性能
短句来源
     Study on Roller Ring of Steel Matrix Composites Reinforced by WC Particle
     WC颗粒增强钢基复合材料辊环的研究
短句来源
     Behavior of Thermal Fatigue Resistance of WCp/Fe Ni Steel Matrix Composites
     WCp/Fe-Ni钢基复合材料的抗热疲劳特性
短句来源
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  钢铁基复合材料
     Development of the researches on casting WC/steel matrix composites
     铸造WC/钢铁基复合材料研究进展
短句来源
     DEVELOPMENT OF PARTICULATE REINFORCED STEEL MATRIX COMPOSITES
     颗粒强化钢铁基复合材料的研究现状与展望
短句来源
     The progress in research on particulate reinforced steel matrix composites has been reviewed in several aspects such as reinforcement and matrix alloy selection,materials processing,mechanical properties and applications.
     从材料选择、制造工艺和应用情况等方面对颗粒增强钢铁基复合材料的发展状况进行了综合评述 ,分析了其性能特点和可能的应用领域 ,展望了其发展前景
短句来源
     The development of the researches on casting WC/steel matrix composites is reviewed in this paper, including the selection of WC particles,the preparation method and the process.
     对国内外用铸造法制备的WC颗粒增强钢铁基复合材料研究进展进行了综述,包括了WC颗粒的选择,制备方法和工艺。
短句来源
     Particle-reinforced steel matrix composites have a good application prospect,and are becoming one of the most important aspects in current researches.
     指出颗粒增强钢铁基复合材料是当前研究的重要方向之一,颗粒增强钢铁基复合材料具有广阔的应用前景。
短句来源
  “steel matrix composites”译为未确定词的双语例句
     The Wear Resistance Mechanisms and Decision of Critical Normal Load for In-situ Granular γ+(Fe, Mn)_3C/γ Steel Matrix Composites
     团球γ+(Fe,Mn)_3C/γ钢基自生复合材料的磨损机理及临界载荷确定
短句来源
     Structure and Properties of In-situ Granular γ+(Fe,Mn)_3C Eutectics Reinforce Austenite Steel Matrix Composites
     团球γ+(Fe,Mn)_3C/γ体钢基自生复合材料的组织与性能
短句来源
     In-Situ Austenite Steel Matrix Composites Reinforced by Granular γ+(Fe,Mn)_3C Eutectics Prepared with Y-Based Heavy RE Modifier
     钇基重稀土合金变质团球γ+(Fe,Mn)_3C共晶体增强奥氏体钢基自生复合材料
短句来源
     In this article, spray dispersion method was used to produce as-cast mid-maganese steel matrix composites reinforced with Al_2O_3 particles.
     闸述采用喷吹弥散法制取Al_2O_3颗粒增强铸态中锰钢基复合材材。
短句来源
     Study on Producing Method of As-Cast Mid-Maganese Steel Matrix Composites Reinforced by A1_2O_3 Particles
     Al_2O_3颗粒—中锰钢铸造材料工艺方法
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  steel matrix composites
The wear resistance of the locally reinforced region of the steel matrix composites is much higher than that of the unreinforced steel matrix.
      
The locally reinforced steel matrix composites consist of three distinct regions: (i) a TiC and TiB2 particulate-reinforced region, (ii) a transition region, and (iii) a steel matrix region.
      
Steel matrix composites locally reinforced by in situ TiC and TiB2 particulates were successfully fabricated using self-propagating high-temperature synthesis (SHS) in a Fe-Ti-B4C-C system during casting.
      
Fabrication of TiC and TiB2 locally reinforced steel matrix composites using a Fe-Ti-B4C-C system by an SHS-casting route
      
This paper reviews the current status of literature on titanium carbide-reinforced steel matrix composites and looks into the different types and methods of reinforcements being used, together with other alternative processing routes.
      
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In this article, spray dispersion method was used to produce as-cast mid-maganese steel matrix composites reinforced with Al_2O_3 particles. The results show that the content of A1_2O_3 particles in steel matrix can reach to 8.5% (in volume percent); the wear resistance can be increased by 1.93 times.

闸述采用喷吹弥散法制取Al_2O_3颗粒增强铸态中锰钢基复合材材。试验结果表明,此法可使Al_2O_3颗粒在钢基中的复合量达8.5%(体积百分比),最大提高铸态中锰钢耐磨性1.93倍。

In this paper, the casting steel matrix composites were made by spraying the particles of Al 2O 3、 WC and FeO·Cr 2O 3 on melted steel respectively.The effects of some technological variables on the microstructure of the composites have been investigated. The result was that, the dispersion of particles are more easy and more homogeneous with decreasing the amount of particles and increasing the size of particles. WC are dispersing well in liquid steel due to its interfacial reaction...

In this paper, the casting steel matrix composites were made by spraying the particles of Al 2O 3、 WC and FeO·Cr 2O 3 on melted steel respectively.The effects of some technological variables on the microstructure of the composites have been investigated. The result was that, the dispersion of particles are more easy and more homogeneous with decreasing the amount of particles and increasing the size of particles. WC are dispersing well in liquid steel due to its interfacial reaction and wettable with liquid steel. Al 2O 3 cannot disperse in liquid steel, because they are not wettable each other. FeO·Cr 2O 3 are unsuitable used as the strengthened particles for they are cracked in liquid steel.

本文用向钢液流喷射刚玉、碳化钨、铬铁矿砂三种陶瓷颗粒的方法,进行了制备钢基铸造复合材料的试验。结果表明,颗粒粒度愈大,数量愈少,愈易分散。碳化钨与钢液有反应,润湿好,因此分散均匀。刚玉与钢液不润湿,分散不好,且引起颗粒脱落。铬铁矿砂存在裂纹,不宜用作增强颗粒

The austenizing behaviors between 980~1 240℃, hardening effects after zuenching, of carbide (WC) reinforced steel matrix composites have been investigated. It has been found that the tested material has much wide austenization temperature range, fine microstructure after heated at 960~1 100℃ then quenched into oil, and remarkable hardening effect, HRC68. Also, the present work has measured the micro hardness (HV0.05) of massive hard phase, WC aggregate and matrix at various conditions in the...

The austenizing behaviors between 980~1 240℃, hardening effects after zuenching, of carbide (WC) reinforced steel matrix composites have been investigated. It has been found that the tested material has much wide austenization temperature range, fine microstructure after heated at 960~1 100℃ then quenched into oil, and remarkable hardening effect, HRC68. Also, the present work has measured the micro hardness (HV0.05) of massive hard phase, WC aggregate and matrix at various conditions in the material and its relationship with macro hardness (HRC) has been discussed.

研究了碳化钨(WC)增强钢基复合材料在980~1240℃温度范围的高温奥氏体化行为及相应的淬火硬化效应.发现此材料的奥氏体化温度范围宽,在980~1100℃加热淬火均能得到细小的组织结构,而且具有显著的淬火硬化效果(HRC68).并且测量及探讨了不同状态下大块硬质相、WC聚集区及基体显微硬度(HV0.05)的变化以及与宏观洛氏硬度之间的关系.

 
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