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冶金烧结球团运输车钢结构防腐措施探讨 被引量:1
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作者 钟卫 张国辉 徐小俊 《铁道车辆》 北大核心 2010年第5期39-41,共3页
针对新余钢铁公司改造后的烧结球团运输车运用现状、使用环境,对车辆钢结构腐蚀原因进行了分析,提出了对烧结球团运输车钢结构防腐的可行方法。
关键词 冶金 烧结球团运输 钢结构 腐蚀 措施
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大倾角挡边带式输送机在60万t球团生产线上的应用研究 被引量:2
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作者 孙羽生 李学明 董金锋 《莱钢科技》 2007年第5期114-116,共3页
分析了链板式输送机在60万t球团生产线上应用存在的问题及原因,介绍了用大倾角挡边带式输送机输送球团的改造方案及应用效果。
关键词 大倾角挡边带式输送机 链板式输送机 球团运输 改造
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大倾角挡边带式输送机在60万t球团生产线上的应用研究 被引量:2
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作者 孙羽生 《矿山机械》 北大核心 2008年第1期50-52,共3页
分析了链板式输送机在年产60万 t 球团生产线上输送球团存在的问题及原因,介绍了用大倾角挡边带式输送机输送球团的改造方案及应用效果。
关键词 大倾角挡边带式输送机 链板式输送机 球团运输 改造
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烧结球团中链板式输送机的改造
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作者 吕同军 孙羽生 《冶金设备》 2011年第1期74-76,24,共4页
分析了链板式输送机在60万t球团生产线上应用存在的问题及原因,介绍了用大倾角挡边带式输送机输送球团矿的改造方案及应用效果。
关键词 大倾角挡边带式输送机 链板式输送机 球团运输 改造
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Radial heat transport in packed beds-I: Experimental investigation of heat transfer coefficients of pellets and monolith catalysts at atmospheric and high pressures
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作者 Mohamed A. Al-Meshragi Hadi A. Elakrami Hesham G. Ibrahim 《Journal of Chemistry and Chemical Engineering》 2009年第6期1-14,共14页
The effect of operating pressure on the radial heat transfer coefficients, in a non-adiabatic fixed packed bed was studied at atmospheric and higher pressures, The study was concerned with investigating the effect of ... The effect of operating pressure on the radial heat transfer coefficients, in a non-adiabatic fixed packed bed was studied at atmospheric and higher pressures, The study was concerned with investigating the effect of the pressure on the radial thermal conductivity (K^r) and wall heat transfer coefficient (h~) for both pellets and monolith catalysts. The study included beds that were packed with pellets and monoliths, separately. The radial temperature distribution was measured at different beds heights and feed flow rates for both types of packing. Steady-state temperatures were measured using nine chromel-alumel thermocouples arranged on a stainless steel-cross. After temperatures were collected, the radial thermal conductivity and wall heat transfer coefficient were calculated using a two-dimensional pseudo-homogeneous model. The results showed that, the radial temperature profile at the entrance of the heating section was nearly even, and a constant temperature along the radius (0F/0r=0) taken as a boundary condition to solve the partial differential equation controlling the heat transfer. Temperature profiles obtained at elevated pressures were smoother at the center of the reactor and increased sharply near the wall, than profiles at atmospheric pressure. It could also be observed, that the radial temperature profiles in the center of the reactor using a monolith catalyst at elevated pressure were more even and smoother than those of pellets. Temperature profiles in fixed beds were found to be very sensitive to Ker and hw. In pressures between atmospheric and 10 bars, there was no change in the effective heat transport parameters (i.e. they are independent of pressure in this range). Both parameters were strongly affected by the pressure changes, above 10 bars. For the same Reynolds number (Ker) increased by 27% and 53% at 11 and 20 bars, respectively, in pellets catalyst. And they increased by factors of 2.3 and 4, when the pressure increased to the same pressures, in monolith catalyst. On the other hand, the effect of pressure on (hw) was completely the opposite, h,~ for pellets and monolith catalysts were found to be decreasing with increasing the pressure. Moreover, both coefficients increased with the Reynolds number at all applied pressures. This increase was higher for pellets than it for monoliths. 展开更多
关键词 heat transfer packed beds pseudo-homogeneous model pressure effect
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