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莱钢105m^2烧结机头部弯道堆焊工艺
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作者 刘海燕 罗宗尧 +2 位作者 李玉东 孙其奎 徐丽丽 《莱钢科技》 2006年第5期15-16,共2页
105m^2烧结机头部弯轨在长期使用过程中,磨损严重而更换难度较大。针对这种情况,提出了修复方案,制定了科学合理的堆焊工艺,现场修复磨损的弯轨,使用效果良好。
关键词 烧结机 弯轨 堆焊性 堆焊工艺 高温耐磨层
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莱钢105m2烧结机头部弯道的堆焊修复 被引量:1
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作者 刘海燕 李玉东 +2 位作者 罗宗尧 孙其奎 张加芹 《冶金设备管理与维修》 2007年第3期29-30,共2页
针对105m2烧结机头部弯轨在长期使用过程中,磨损严重而更换难度较大的情况,提出了修复方案,制定了科学合理的堆焊工艺,现场修复了磨损的弯轨,使用效果良好。
关键词 烧结机 弯轨 堆焊性 堆焊工艺 高温耐磨层
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Influence of rotational speed in friction surfacing of nickel-aluminide reinforced aluminum matrix composite on commercially pure aluminum 被引量:1
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作者 Mobina YOUSEFI Hamed JAMSHIDI AVAL 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第8期2480-2493,共14页
The effect of rotational speed in the friction surfacing of nickel-aluminide reinforced Al-Zn-Mg-Cu alloy matrix composite on commercially pure aluminum was investigated. The nickel-aluminide reinforcement was fabrica... The effect of rotational speed in the friction surfacing of nickel-aluminide reinforced Al-Zn-Mg-Cu alloy matrix composite on commercially pure aluminum was investigated. The nickel-aluminide reinforcement was fabricated by in-situ methods based on adding nickel powders to Al-Zn-Mg-Cu alloy melt during the semi-solid casting process.The findings showed that an increase in the rotational speed from 600 to 1000 r/min raised the coating efficiency from 65% to 76%. Besides, there was no significant difference between coating efficiencies in the coating with and without nickel-aluminide. The outcomes showed that if the coating was applied at a rotational speed of 1000 r/min, a traverse speed of 100 mm/min, and an axial feeding rate of 125 mm/min, the hardness and shear strength of the substrate increased by up to 225% and 195%, respectively. But the wear rate of the substrate dropped by 75%. Although the hardness of the coating containing nickel-aluminide increases by up to 32% compared to the coating without nickel-aluminide, nickel-aluminide does not affect the thermal stability of the coating. 展开更多
关键词 nickel-aluminide aluminum matrix composite friction surfacing wear resistance
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