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排序方式: 共有363条查询结果,搜索用时 156 毫秒
1.
Longquan Hou Jinyun Ju Xu Tang Renjie Chen Wenzong Yin Aru Yan Bin Chen Yeyuan Du 《中国稀土学报(英文版)》2021,39(8):993-997
A series of sandwiched structures with different near-surface mass fractions x(x=3 wt%,4 wt%,5 wt%)was employed to develop high-coercivity hot-deformed Nd-Fe-B magnets by the addition of 2 wt%Nd-Cu eutectic alloys via adjusting the middle thickness and near-surface thickness.The designed magnet with a pronounced composite structure shows a 23% increase in coercivity with a 6% loss of remanence by adjusting the sandwiched structure at 4 wt% Nd-Cu eutectic alloys in the near-surface regions.The results indicate that the near-surface Nd-Cu-rich "shell" structure can effectively suppress the magnetization reversal of overall magnets,enhancing the coercivity.With the help of loading stress,Nd-Cu liquid enriched at the near-surface regions of the sample is infiltrated into the Nd-Cu-lean middle region,resulting in a concentration gradient.Microstructure characterizations further demonstrate that the infiltrated Nd-Cu eutectic plays a critical role in inhibiting grain growth and intergranular magnetic interaction.The optimized microstructure features suppress the reversed magnetization process,which makes a positive contribution to coercivity. 相似文献
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Yilong Ma Qiqi Yang Xiaoli Chen Ying He Wenbo Xiang Jiaqi Lai Bin Shao Donglin Guo Dengming Chen Kejian Li 《中国稀土学报(英文版)》2021,39(6):689-695
The influence of Ce-Co alloy addition and sintering holding time on permanent magnetic properties and micro structure of nanocrystalline Nd-Fe-B bulk alloy were investigated.The coercivity of Nd-Fe-B bulk alloy can be enhanced greatly by more than 100% after adding Ce-Co powders.However,when the concentration of Ce-Co is up to 30 wt%,the density of the magnet can reach the maximum value of 7.58 g/cm~3,but the coercivity does not increase significantly.On the other hand,with the increase of holding time to 10 min,the density and coercivity of magnets increase gradually,reaching up to 7.55 g/cm~3 and 1134.3 kA/m,respectively.After the addition of Ce-Co alloy,Ce-Co may easily diffuse into the Nd-Fe-B matrix during hot-pressing and under the high pressure and temperature,thus increasing the content of grain boundary phase and the pinning effect of grain boundary,which leads to the increase of coercivity.The extension of the hot-pressing holding time may be more conducive to the diffusion of CeCo into the Nd-Fe-B matrix.In addition,the effect of Ce-Co addition on the magnetic properties of Nd-FeB with different content of rare earth was also studied.The addition of Ce-Co can effectively increase the coercivity of nanocomposite Nd_2 Fe_(14)B/α-Fe magnets.The addition of Nb to the parent alloy can further improve the coercivity.For Nd_(11)Fe_(81.5)Nb_1 Ga_(0.5)B_6 alloy with 10 wt% Ce-Co addition,the coercivity can increase from 740.28 to 1098.48 kA/m. 相似文献
4.
用磁控溅射法在烧结Nd-Fe-B磁体表面沉积Tb金属薄膜并进行晶界扩散处理,对比经不同热扩散温度及时间处理后的磁体组织和磁性能变化。结果表明,925℃×10 h+500℃×2 h为最佳晶界扩散工艺,可将磁体矫顽力提高到1630.9 kA·m-1,较原始磁体提升50%,同时剩磁和磁能积无明显下降,磁体仍具有较高的退磁曲线方形度。晶界扩散处理后磁体取向度有所提高,主相晶粒表面形成了明显的富Tb壳层结构,其厚度随离开磁体表面距离的增加逐渐变薄,随热扩散温度升高和时间延长逐渐增厚。长时间热扩散处理使磁体内形成沿晶界分布的连续薄层富Nd相,将主相晶粒彼此分隔,有效降低磁性相颗粒间交换耦合作用。能谱(EDS)分析表明,适当的热扩散工艺可使Tb元素扩散至磁体芯部,渗透厚度4 mm的磁体。 相似文献
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采用热处理态钕铁硼平板铸锭作为母合金,通过氢爆工艺将平板铸锭破碎成磁粉。研究了氢爆工艺过程中温度、氢压对钕铁硼磁粉的破碎程度、粒度和形状的影响。实验发现,随着温度和氢压的提高,吸氢过程活化时间逐渐缩短,当温度为300℃,氢压为0.1 MPa时,活化过程消失,铸锭一旦暴露在氢气中,吸氢过程直接发生。热处理态平板铸锭吸氢之后,破碎得到的磁粉大部分为粒度在178μm下的细粉,且随着氢压的提高,氢爆后细粉所占的质量分数趋势上是单调增加的。磁粉细粉粒度分布对氢压的变化不敏感,但是在相同氢压下,从室温到300℃,随着温度升高,磁粉平均粒度明显变粗。磁粉形状大部分为颗粒状,对应氢爆时富Nd相和Nd2Fe14B相间的沿晶断裂,少数呈尖角、针棒等不规则形状,可能与Nd2Fe14B相内穿晶断裂的发生有关。随着实验温度升高,氢爆-脱氢后的磁粉Nd2Fe14B相的衍射峰峰位向高角度发生偏移,原因是更高温度有利于脱氢,导致含氢量逐渐减少。不同氢压条件下,Nd2Fe14B相衍射峰位基本不变。 相似文献
6.
目的 提高烧结钕铁硼表面镀Cu膜层结合力,改善可焊性,进一步制备生物友好的强耐蚀性防护薄膜。方法 采用磁控溅射技术在钕铁硼表面制备约7 μm厚的Cu膜,研究热处理温度和时间对Cu/NdFeB界面组织、膜基结合力和样品磁性能的影响,选取最优化热处理样品电镀约2 μm厚的Sn膜,再于280 ℃在其表面焊接Au片,评估其可焊性。结果 500 ℃热处理样品的Cu膜与基体间发生了明显扩散,扩散深度及结合力随时间延长而增加。热处理2 h样品的膜基结合力由处理前的11.0 MPa提高至31.5 MPa,膜基分离位置发生在磁体亚表面层,矫顽力、剩磁和最大磁能积等磁性能无显著下降。进一步镀Sn后,在其表面焊接的Au层与Cu膜层基体冶金结合良好,耐腐蚀性能优异。700 ℃热处理样品的Cu膜与基体间扩散过快,易造成Cu膜消失及钕铁硼基体表面损伤。结论 真空热处理温度和时间对Cu/钕铁硼界面组织有根本性影响,通过适宜的热处理可大幅提高磁控溅射的Cu膜与烧结钕铁硼之间的膜基结合力,同时不明显降低磁性能,可采用焊接方法在热处理后的Cu膜表面制备结合力高、长效耐蚀且生物友好的防护薄膜。 相似文献
7.
重点研究制备工艺对各向异性热压稀土永磁体性能的影响,探讨了热压永磁体的热变形机理和数学描述模型,并尝试从微磁结构的角度研究各向异性纳米晶Nd-Fe-B磁体,揭示纳米晶粒之间的静磁和交换耦合相互作用、磁化和反磁化、热退磁等微观机制。获得了最佳磁性能为:Hcj=1 157 kA/m,Br=1.465 T,(BH)max=426 kJ/m3纳米晶Nd-Fe-B磁体。 相似文献
8.
The magnetic properties and microstructure of Nd-Fe-B magnets prepared by spark plasma sintering with different die-upsetting processes were investigated. The results showed that the optimum magnetic properties of die-upset Nd-Fe-B magnets were obtained at 680 ℃ when the die-upset level was 60%, and the degree of magnetic alignment was 0.84. The microstructures showed that the coarse grains oc-curred predominantly within certain areas, and abnormal grain growth was not observed within the major areas of wel... 相似文献
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The effects of Nb on the thermal stability and impact toughness of ultra-high intrinsic coercivity of Nd-Fe-B magnets were investigated.The results showed that the addition of Nb could improve the thermal stability,and obviously increased the impact toughness of sintered Nd-Fe-B magnets.The optimum thermal stability of sintered Nd-Fe-B magnets was obtained when the content of Nb was 1.0 at.%.The maximum impact toughness of sintered Nd-Fe-B magnets was obtained when the content of Nb was 1.5 at.%,but the magnetic properties of sintered Nd-Fe-B magnets drastically deteriorated when the content of Nb increased from 1.0 at.% to 1.5 at.%.The microstructure showed that overfull Nb addition made many ultra-fine grains get together,which led to the density of sintered Nd-Fe-B magnets decline and drastically deteriorated the magnetic properties of sintered Nd-Fe-B magnets. 相似文献