Effect of toughening Fe2B by the addition of tungsten on the wear resistance of Fe–B–C alloy
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Zhifu Huang
, Li Chang , Zhiwei Liu and Qiaoling Zheng
Abstract
With an increase in the addition of W, the morphology and volume percentage of Fe2B show no obvious variation. Although an increase in the hardness of the alloy has a beneficial effect on improving wear resistance, toughening Fe2B by the addition of W has a more helpful role in the wear resistance of Fe–B–C alloy in this study. The weight loss of Fe–B–C alloy with the addition of 2.04 wt.% W can be decreased by more than 47 % of that of the alloy without added W.
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Articles in the same Issue
- Contents
- Contents
- Editorial
- Downloads and the impact of Open Access at IJMR
- Original Contributions
- A material selection approach using the TODIM (TOmada de Decisao Interativa Multicriterio) method and its analysis
- Investigation of the influence of Fe on the microstructure and properties of Ti5553 near-β titanium alloy with combinatorial approach
- Evolution of the temperature, microstructures and microsegregation in equiaxed solidification of Al-5 wt.% Cu alloy
- Phase composition and microstructure of materials in the Ir–Ru–B system prepared by arc melting and VHP sintering
- Thermal shock behavior of rare earth modified alumina ceramic composites
- Investigation of tribological and corrosion properties of CuTi–alumina nanocomposite fabricated by mechanical alloying
- Effect of acetic acid on corrosion behavior of AISI 201, 304 and 430 stainless steels
- Verification of strength mis-match of electron beam welded heavy thickness titanium alloy
- Short Communications
- Effect of toughening Fe2B by the addition of tungsten on the wear resistance of Fe–B–C alloy
- Microstructural stability of heat-resistant high-pressure die-cast Mg-4Al-4Ce alloy
- DGM News
- DGM News