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一端轴承浮动,另一端轴承固定的风机主轴 被引量:5
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作者 Laurentiu lonescu Thierry Pontius 《电气制造》 2010年第3期50-53,共4页
目前在风机主轴位置上固定端使用一个双列调心滚子轴承的方案并不是一个值得优先考虑的,并且在未来的设计中应该要避免。虽然没有一个确定的公认的最大极限值,但是一般认为所允许的双列调心滚子轴承承受的轴向力和径向力的最大比值在0... 目前在风机主轴位置上固定端使用一个双列调心滚子轴承的方案并不是一个值得优先考虑的,并且在未来的设计中应该要避免。虽然没有一个确定的公认的最大极限值,但是一般认为所允许的双列调心滚子轴承承受的轴向力和径向力的最大比值在0.15和0.20之间。也就是说,轴向力只能是径向力的15%~20%,在某一些应用中这个比值可以达到0.3甚至0.35,但可能会出现一列不受力,两列应力不均,滚子倾斜,保持架变形,产生过多的热量,滚子斑点剥落等情况。 展开更多
关键词 双列调心滚子轴承 主轴位置 风机 浮动 径向力 轴向力 固定端 极限值
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Effect of Nano-SiC and Nano-Si Doping on Critical Current Density of MgB_2
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作者 H.K.Liu S.H.Zhou +6 位作者 S.Soltanian J.Horvat A.V.Pan M.J.Qin X.L.Wang M.lonescu S.X.Dou 《Tsinghua Science and Technology》 SCIE EI CAS 2003年第3期307-315,共9页
The discovery of superconductivity in magnesium diboride (MgB2) has opened up a new field in materials science research. It offers a possibility of a new class of high performance superconducting materials for practic... The discovery of superconductivity in magnesium diboride (MgB2) has opened up a new field in materials science research. It offers a possibility of a new class of high performance superconducting materials for practical applications because of the relatively low cost of fabrication, high critical current densities (Jc) and fields, large coherence length, absence of weak links, higher Tc(TC = 39K) compared with Nb3Sn and Nb-Ti alloys (two or four times that of Nb,,Sn and Nb-Ti alloys). However, the weak flux pinning in the magnetic field remains a major challenge. This paper reports the most interesting results on nanomaterial (SiC and Si) doping in magnesium diboride. The high density of nano-scale defects introduced by doping is responsible for the enhanced pinning. The fabrication method, critical current density, microstructures, flux pinning and cost for magnesium diboride bulks, wires and tapes are also discussed. It is believed that high performance SiC doped MgB2 will have a great potential for many practical applications at 5K to 25K up to 5T. 展开更多
关键词 magnesium diboride (MgB2) MgB2/Fe wires doped with nano-SiC MgB2/Fe wires doped with nano-Si critical current density flux pinning
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