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铸造高速钢轧辊的发展与展望 被引量:3
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作者 洪桃生 《上海金属》 CAS 2001年第1期1-6,共6页
介绍铸造高速钢轧辊的主要制造方法和使用效果 ,并着重分析了CPC工艺制造高速钢轧辊的性能、特点。
关键词 高速钢轧辊 离心铸造 CPC ESP esslm
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轧辊制造技术与发展趋势 被引量:23
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作者 周利 何奖爱 王玉玮 《铸造》 CAS CSCD 北大核心 2002年第11期666-670,共5页
介绍了生产轧辊的四种常规方法以及随着轧制技术的发展而陆续发展起来几种生产轧辊的新方法,分析了每种方法的优缺点,并介绍了国内轧辊制造业现状及国际轧辊制造技术的发展趋势,对现实生产具有一定指导意义。
关键词 轧辊 离心铸造 连续铸造 电渣重熔 喷射成形 液态金属电渣复合 组合轧辊
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铸造高速钢轧辊研究进展与前景展望 被引量:1
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作者 符寒光 《铸造技术》 CAS 北大核心 2000年第4期35-38,共4页
介绍了铸造高速钢轧辊的主要制造方法和使用效果 ,其中着重介绍了CPC工艺制造高速钢轧辊的性能、特点、存在的问题及改进方向。
关键词 离心铸造 CPC ESR esslm 高速钢轧辊
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耐磨铸造高速钢轧辊的研究 被引量:2
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作者 符寒光 《钼业经济技术》 2000年第6期30-34,共5页
介绍了铸造高速钢轧辊的主要制造方法和使用效果 ,其中着重介绍了CPC工艺制造高速钢轧辊的性能、特点。
关键词 离心铸造 ESR esslm 高速钢轧辊 CPC工艺
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Experimental and Simulation Studies on Fabricating GCr15/40Cr Bimetallic Compound Rollers Using Electroslag Surfacing with Liquid Metal Method 被引量:3
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作者 Lei RAO Shuang-jun WANG +2 位作者 Jian-hua ZHAO Mao-peng GENG Gang DING 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2014年第9期869-877,共9页
Electroslag surfacing with liquid metal (ESSLM) is an excellent method for producing high quality bimetallic compound rollers. The quality of each compound roller is primarily determined by the metallurgical quality... Electroslag surfacing with liquid metal (ESSLM) is an excellent method for producing high quality bimetallic compound rollers. The quality of each compound roller is primarily determined by the metallurgical quality of the combined interface. A GCrl5/40Cr compound roller is produced using an ESSLM non-consumable electrode electro- slag heating method. The temperature and electric fields produced by the ESSLM system are calculated. As the roller core moves downward in the mold, it passes through five sections., the preheating section, the rapid heating section, the temperature homogenizing section, the bimetal fusing section and the cooling section which listed from the top to bottom of the mold, respectively. The temperature distribution and the degree of the surface temperature fluctuation in the roller core are different for each section. Near the combined interface, four layers are found from the roller core to the cladding layer= the remelting layer, the fusion layer, the interface solidification layer and the chilling layer, re spectively. Among these, the fusion and interface solidification layers are the key transition zones that greatly influ- ence the combination quality. The surface temperature of the roller core prior to cladding is mainly determined by the drawing velocity, and the thickness of the transition layer increases as the drawing velocity decreases. A transition layer that is too thick or too thin will reduce the mechanical properties at the combined interface. Therefore, the drawing velocity should be limited to a moderate range to produce a satisfactory bimetallic Compound roller. 展开更多
关键词 bimetallic compound roller esslm combined interface drawing velocity numerical simulation
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