首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Development of Advanced High Strength Steel for ImprovedVehicle Safety, Fuel Efficiency and CO_2 Emission
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Development of Advanced High Strength Steel for ImprovedVehicle Safety, Fuel Efficiency and CO_2 Emission

机译:推动高强度钢的开发,用于提升安全性,燃油效率和CO_2排放

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摘要

Global warming and green house gas emissions are the major issues worldwide and their impacts are clearly visible as a record high temperatures, rising sea, and severe 'flooding and droughts'. Motor vehicles considered as a major contributor on global warming due to its green house gas emissions. Hence, the automobile industries are under tremendous pressure from government and society to reduce green house gas emission to maximum possible extent. In present work, Dual Phase steel with boron as microalloying is manufactured using thermo-mechanical treatment during hot rolling. Dual phase steel with boron microalloying improved strength by near about 200 MPa than dual phase steel without boron. The boron added dual phase steel can be used for manufacturing stronger and a lighter vehicle which is expected to perform positively on green house gas emissions. The corrosion resistance behavior is also improved with boron addition which would further increase the life cycle of the vehicle even under corrosive atmosphere.
机译:全球变暖和绿色房屋气体排放是全球的主要问题,其影响清晰可见,作为历史新高的气温,上升和严重的“洪水和干旱”。由于绿色房屋气体排放,机动车被认为是全球变暖的主要因素。因此,汽车行业受到政府和社会的巨大压力,以减少绿色房屋气体排放至最大程度。在目前的工作中,使用热轧过程中的热机械处理制造具有硼作为微合金的双相钢。双相钢与硼微合金化的强度近约200MPa而不是硼的双相钢。硼添加的双相钢可用于制造更强和更轻的车辆,该车辆预计将对绿色房屋气体排放产生积极性。通过硼添加还改善了耐腐蚀性行为,即使在腐蚀性气氛下也将进一步增加车辆的生命周期。

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