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学者姓名:张东涛
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Abstract :
Effect of hydrogen pressure on hydrogenation and pulverization behavior of Sm(CoFeCuZr)7.6 alloy prepared by plate mold (PM) and strip casting (SC) has been systematically investigated. Increasing hydrogen pres-sure can improve the hydrogenation ability. Both the PM and SC have the similar hydrogen absorption process, which can be divided into two stages. The first stage follows the Sieverts' law (1-5 MPa) while the second one deviates from the Sieverts' law (5-10 MPa). Rietveld refinement shows that the hydrogen ab-sorption causes different lattice distortion of different phases without changing the phase structure. The internal stress caused by such lattice distortion is the primary reason that accelerates the pulverization of the alloys, and increasing hydrogen pressure can lead to the decrease of particle size of the PM and SC alloys. The hydrogen decrepitation (HD) process are studied in detail based on these results. The hydrogen ab-sorption mechanism of Sm(CoFeCuZr)7.6 alloy can be regarded as a hydrogen dissolution process without phase transformation. In addition, the existence of a large amount of fine grains in the SC has an adverse effect on the alignment, which can be optimized by taking effective methods to reduce the overcooling rate. This work proves that the SC, HD and jet milling process can be a promising new approach to powder preparation for high-performance Sm(CoFeCuZr)z sintered magnets.(c) 2022 Elsevier B.V. All rights reserved.
Keyword :
Hydrogen pressure Hydrogen pressure Hydrogenation behavior Hydrogenation behavior Sm(CoFeCuZr)z magnets Sm(CoFeCuZr)z magnets Alignment characteristics Alignment characteristics Pulverization behavior Pulverization behavior Hydrogenation mechanism Hydrogenation mechanism
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GB/T 7714 | Yang, Jianjun , Zhang, Dongtao , Zhang, Hongguo et al. Effect of hydrogen pressure on hydrogenation and pulverization behavior of Sm(CoFeCuZr)z ingot and strip casting flake [J]. | JOURNAL OF ALLOYS AND COMPOUNDS , 2023 , 930 . |
MLA | Yang, Jianjun et al. "Effect of hydrogen pressure on hydrogenation and pulverization behavior of Sm(CoFeCuZr)z ingot and strip casting flake" . | JOURNAL OF ALLOYS AND COMPOUNDS 930 (2023) . |
APA | Yang, Jianjun , Zhang, Dongtao , Zhang, Hongguo , Shang, Zhifeng , Wang, Hong , Meng, Chengzhen et al. Effect of hydrogen pressure on hydrogenation and pulverization behavior of Sm(CoFeCuZr)z ingot and strip casting flake . | JOURNAL OF ALLOYS AND COMPOUNDS , 2023 , 930 . |
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Abstract :
一种可降低残余碳危害的稀土永磁材料Pr2Fe14C的相稳定性提升方法,涉及永磁材料技术领域。由具有如下所示化学计量比的物质组成:(Pr, RE)2Fe14C;其中RE=Sm、Gd;制备工艺包括配料、熔炼、熔体快淬、退火,其中,熔体快淬是采用铜辊转速20≤V≤40m/s的真空快淬炉在保护气氛下进行,退火是在保护气氛下500~1100℃的退火炉中进行。在本发明利用Sm2Fe14C和Gd2Fe14C相的高稳定性,用Sm、Gd原子置换Pr2Fe14C中的部分Pr原子,扩展了Pr2Fe14C相的稳定区间,制得了纯相的(Pr, RE)2Fe14C型稀土永磁材料。
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GB/T 7714 | 张红国 , 白祯至 , 岳明 et al. 一种可降低残余碳危害的稀土永磁材料Pr2Fe14C的相稳定性提升方法 : CN202310244834.6[P]. | 2023-03-14 . |
MLA | 张红国 et al. "一种可降低残余碳危害的稀土永磁材料Pr2Fe14C的相稳定性提升方法" : CN202310244834.6. | 2023-03-14 . |
APA | 张红国 , 白祯至 , 岳明 , 张东涛 , 刘卫强 , 路清梅 . 一种可降低残余碳危害的稀土永磁材料Pr2Fe14C的相稳定性提升方法 : CN202310244834.6. | 2023-03-14 . |
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Abstract :
Microstructure and magnetic properties were studied for the commercial Sm(CoFeCuZr)z magnets before and after post annealing treatment. The results show that the phases composition and orientation of the magnet do not change after post annealing treatment, but the substantial redistribution of Cu element within multiscale (the microscale crystal grain and the nanoscale cellular structure) is observed simul-taneously. In detail, along with the Cu redistribution, the thickness of the Cu-rich Sm(Co,Cu)5 cell boundary becomes thinner, and the Cu concentration in the boundary increases sharply. The pinning field of domain walls and corresponding coercivity increase remarkably with slight remanence and maximum energy product loss, and the overall magnetic performance of (BH)max (MGOe) thorn Hcj (kOe) increases by 54.3% as a result. Moreover, the thermal stability of the magnet improves as well. On the other hand, Cu-lean phenomenon was observed along the grain boundary region, triggering to magnetic domain reversal process and slightly undermining the squareness of the demagnetization curve of the magnet.(c) 2021 Chinese Society of Rare Earths. Published by Elsevier B.V. All rights reserved.
Keyword :
Magnetic properties Magnetic properties Rare earth permanent magnets Rare earth permanent magnets Post annealing treatment Post annealing treatment Cu distribution Cu distribution Sm(CoFeCuZr) Z magnets Sm(CoFeCuZr) Z magnets
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GB/T 7714 | Yang, Jianjun , Zhang, Dongtao , Xie, Zhihong et al. Tremendous enhancement of magnetic performance for Sm(CoFeCuZr)z magnet based on multiscale copper redistribution* [J]. | JOURNAL OF RARE EARTHS , 2022 , 40 (10) : 1592-1597 . |
MLA | Yang, Jianjun et al. "Tremendous enhancement of magnetic performance for Sm(CoFeCuZr)z magnet based on multiscale copper redistribution*" . | JOURNAL OF RARE EARTHS 40 . 10 (2022) : 1592-1597 . |
APA | Yang, Jianjun , Zhang, Dongtao , Xie, Zhihong , Shang, Zhifeng , Li, Yuqing , Liu, Weiqiang et al. Tremendous enhancement of magnetic performance for Sm(CoFeCuZr)z magnet based on multiscale copper redistribution* . | JOURNAL OF RARE EARTHS , 2022 , 40 (10) , 1592-1597 . |
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Abstract :
一种基于一级和二级相变材料的复合磁制冷材料及制备方法,属于磁性功能材料中的磁制冷材料领域。选取一种具有基于一级相变磁热效应的磁制冷材料(A)和另一种具有基于二级相变磁热效应的磁制冷材料(B),其中一级相变磁制冷材料(A)具有较强脆性,而二级相变磁制冷材料(B)具有较高的力学性能。根据本发明制备的一级相变材料磁制冷材料(A)与二级相变磁制冷材料材料(B)的复合磁体能改善非相变材料对磁热性能的稀释,具有较高的力学性能与热传导性能。
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GB/T 7714 | 张红国 , 吴正 , 岳明 et al. 一种基于一级和二级相变材料的复合磁制冷材料及制备方法 : CN202210266608.3[P]. | 2022-03-16 . |
MLA | 张红国 et al. "一种基于一级和二级相变材料的复合磁制冷材料及制备方法" : CN202210266608.3. | 2022-03-16 . |
APA | 张红国 , 吴正 , 岳明 , 张东涛 , 刘卫强 , 路清梅 . 一种基于一级和二级相变材料的复合磁制冷材料及制备方法 : CN202210266608.3. | 2022-03-16 . |
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Abstract :
一种定向组装的各向异性纳米晶复合稀土永磁体及其制备方法,属于稀土永磁材料制备技术领域。该方法所制备的磁体由具有高饱和磁化强度和高磁各向异性的两种基元根据逐层定向组装而成。所述制备方法包括:制备纳米晶/非晶稀土永磁粉作为组装基元;定向组装并压制成热变形前驱体;对所述前驱体进行热变形,获得定向组装的各向异性纳米晶复合稀土永磁体。本发明制备的定向组装纳米晶复合稀土永磁体可以协同远程的静磁相互作用和近程的交换耦合作用实现磁性能显著提高。
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GB/T 7714 | 李玉卿 , 刘卫强 , 滕媛 et al. 一种定向组装的各向异性纳米晶复合稀土永磁体及其制备方法 : CN202210291872.2[P]. | 2022-03-22 . |
MLA | 李玉卿 et al. "一种定向组装的各向异性纳米晶复合稀土永磁体及其制备方法" : CN202210291872.2. | 2022-03-22 . |
APA | 李玉卿 , 刘卫强 , 滕媛 , 岳明 , 徐晓厂 , 张东涛 et al. 一种定向组装的各向异性纳米晶复合稀土永磁体及其制备方法 : CN202210291872.2. | 2022-03-22 . |
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Abstract :
A novel hot extrusion method to fabricate anisotropic nanocrystalline SmCo5 magnet was investigated. The results indicate that the hot-extruded (HE) SmCo5 magnet obtains a strong c-axis texture in perpendicular to the extrusion direction, but the texture strength is clearly different in different regions. The deformation degree plays a key role in the formation of c-axis crystallographic texture and magnetic anisotropy. In surface region of the HE magnet, the deformation degree of grains is the biggest, and the c-axis texture and remanence are the strongest. Furthermore, deformation mechanism of the HE SmCo5 magnet was preliminarily discussed.
Keyword :
nanocrystalline nanocrystalline Anisotropic SmCo5 magnet Anisotropic SmCo5 magnet hot extrusion hot extrusion deformation mechanism deformation mechanism
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GB/T 7714 | Wang, Hong , Zhang, Dongtao , Tang, Yuyang et al. Anisotropic Nanocrystalline SmCo5 Permanent Magnet Prepared by Hot Extrusion [J]. | IEEE TRANSACTIONS ON MAGNETICS , 2022 , 58 (2) . |
MLA | Wang, Hong et al. "Anisotropic Nanocrystalline SmCo5 Permanent Magnet Prepared by Hot Extrusion" . | IEEE TRANSACTIONS ON MAGNETICS 58 . 2 (2022) . |
APA | Wang, Hong , Zhang, Dongtao , Tang, Yuyang , Yang, Jianjun , Li, Yuqing , Liu, Weiqiang et al. Anisotropic Nanocrystalline SmCo5 Permanent Magnet Prepared by Hot Extrusion . | IEEE TRANSACTIONS ON MAGNETICS , 2022 , 58 (2) . |
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Abstract :
一种Pr‑Fe‑(C, B)稀土永磁材料及其制备方法,涉及永磁材料技术领域,Pr‑Fe‑(C, B)稀土永磁材料,由具有按原子百分比计组成的物质组成Pr15Fe79(C1‑x, Bx)6,0.2<x≤0.8;制备工艺包括配料、熔炼、熔体快淬、退火,其中,熔体快淬是采用铜辊转速30≤V≤40m/s的真空快淬炉在保护气氛下进行,退火是在保护气氛下在600‑950℃的退火炉中进行。在本发明利用Nd2Fe14B相的高稳定性,B原子的原子尺寸与C原子相似的特性,用B原子部分替代Pr2Fe14C中的C原子,大幅提升了Pr2Fe14(C, B)稳定性,提高了Pr2Fe14(C, B)相含量,使矫顽力大大提高。
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GB/T 7714 | 岳明 , 姚辉 , 张红国 et al. 一种Pr-Fe-(C, B)稀土永磁材料及其制备方法 : CN202110166224.X[P]. | 2021-02-05 . |
MLA | 岳明 et al. "一种Pr-Fe-(C, B)稀土永磁材料及其制备方法" : CN202110166224.X. | 2021-02-05 . |
APA | 岳明 , 姚辉 , 张红国 , 刘卫强 , 张东涛 , 路清梅 . 一种Pr-Fe-(C, B)稀土永磁材料及其制备方法 : CN202110166224.X. | 2021-02-05 . |
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Abstract :
一种电镀电泳协同沉积扩散烧结钕铁硼的方法,属于稀土永磁材料晶界扩散技术领域。通过协同电镀电泳在烧结钕铁硼磁体上形成一层复合膜层,所述复合膜层的元素组成包括必要元素Dy和/或Tb,辅助元素为Cu和/或Zn和/或Al元素,所述复合膜层为电镀电泳混合膜层。两种或多种扩散源的掺杂使扩散源与磁体的结合力更强,同时辅助元素增加了DyHx/TbHx在磁体中的扩散速度和深度,利用(RE, Nd)2Fe14B(RE=Dy/Tb)较高的各向异性场来提高磁体矫顽力,利用辅助元素对晶界的修饰和优化获得更高的矫顽力。本发明特点在于该复合膜层与烧结钕铁硼结合力好,沉积所使用的重稀土量大幅降低,热处理后矫顽力大幅提升。
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GB/T 7714 | 刘卫强 , 吴海慧 , 张东涛 et al. 一种电镀电泳协同沉积扩散烧结钕铁硼的方法 : CN202110651431.4[P]. | 2021-06-10 . |
MLA | 刘卫强 et al. "一种电镀电泳协同沉积扩散烧结钕铁硼的方法" : CN202110651431.4. | 2021-06-10 . |
APA | 刘卫强 , 吴海慧 , 张东涛 , 岳明 , 王占嘉 , 陈昊 . 一种电镀电泳协同沉积扩散烧结钕铁硼的方法 : CN202110651431.4. | 2021-06-10 . |
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Abstract :
一种制备兼具高矫顽力和高磁各向异性纳米晶Co基稀土永磁的方法,属于功能材料技术领域。所述制备方法包括以下步骤:制备Co基稀土磁粉;对Co基稀土磁粉进行热压,获得热变形前驱体;对热变形前驱体进行热变形,获得强织构高各向异性纳米晶Co基永磁体。本发明中热变形前驱体的微观结构由RCo5主相和细小且弥散分布的纳米晶富稀土相组成,细小且弥散分布的纳米晶富稀土相是磁体能低温变形和获得强c轴织构的关键。本发明所制备的各向异性纳米晶Co基稀土永磁形成了强的c轴织构,同时具有高矫顽力和良好的热稳定性,在高温永磁领域具有较大的应用空间。
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GB/T 7714 | 李玉卿 , 滕媛 , 岳明 et al. 一种制备兼具高矫顽力和高磁各向异性纳米晶Co基稀土永磁的方法 : CN202110841787.4[P]. | 2021-07-23 . |
MLA | 李玉卿 et al. "一种制备兼具高矫顽力和高磁各向异性纳米晶Co基稀土永磁的方法" : CN202110841787.4. | 2021-07-23 . |
APA | 李玉卿 , 滕媛 , 岳明 , 刘卫强 , 徐晓厂 , 路清梅 et al. 一种制备兼具高矫顽力和高磁各向异性纳米晶Co基稀土永磁的方法 : CN202110841787.4. | 2021-07-23 . |
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Abstract :
一种辐射取向纳米晶Co基稀土永磁环及其制备方法,属于功能材料技术领域。本发明的合金为RCo5‑xTMx(0≤x≤0.3),R为Sm、Pr、La、Ce、Y等稀土元素中的一种或多种,TM为Ni、Fe、Mn、Cr、Al、Sn、Ga、Ti、Zn、Zr、Mo、Ag、Cu等元素中的一种或多种,通过真空熔炼制备合金铸锭→熔体快淬制备纳米晶/非晶快淬带→高能球磨制备非晶粉末→热压制备前驱体→背向挤压制备辐向取向的永磁环。该方法可以成功制备各种尺寸和壁厚的纳米晶Co基稀土永磁环,制备的永磁环磁性能高、均一性好,可广泛应用于永磁高温领域。
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GB/T 7714 | 刘卫强 , 滕媛 , 岳明 et al. 一种辐射取向纳米晶Co基稀土永磁环及其制备方法 : CN202110732161.X[P]. | 2021-06-29 . |
MLA | 刘卫强 et al. "一种辐射取向纳米晶Co基稀土永磁环及其制备方法" : CN202110732161.X. | 2021-06-29 . |
APA | 刘卫强 , 滕媛 , 岳明 , 李玉卿 , 徐晓厂 , 路清梅 et al. 一种辐射取向纳米晶Co基稀土永磁环及其制备方法 : CN202110732161.X. | 2021-06-29 . |
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