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13篇 您的检索式:作者名="Jan Van Humbeeck"
    题名 作者 年代 出处 被引量
1Open cellular magnesium alloys for biodegradable orthopaedic implants显示文摘Replication processing using NaCl spaceholders offers the possibility to produce cellular structures for a range of Mg alloys. Four Mg alloys (AZ63, M2, ZM21 and MZX211) were processed into open cellular structures with a pore size near 500 μm and a porosity of 75% using an optimized NaCl leaching procedure. The production method was found to be robust and yielded samples of acceptable strength and stiffness. Their dissolution rate (by H2 release in simulated body fluid) and mechanical properties (by cyclic compression) were measured. For all 4 alloys the initial mechanical properties mimic those of cancellous bone;however, the dissolution rate is too high for direct use in the human body, leading to excessive hydrogen evolution and overly rapid degradation of mechanical properties. Further post-processing of the material is thus required.Karel Lietaert Ludger Weber Jan Van Humbeeck Andreas Mortensen Jan Luyten Jan Schrooten 2013Journal of Magnesium and Alloys2013,1,4:3
2Shape memory alloys:a material and a technology 显示文摘By Jan Van Humbeeck 2001Advanced Engineering Materials2001,3,11:1
3Comparison of the effects of silicon and aluminium on the tensile behaviour of multiphase TRIP-assisted steels显示文摘Etienne Girault Anne Mertens Pascal Jacques Yvan Houbaert Bert Verlinden Jan Van Humbeeck 2001Scripta Materialia2001,,6:1
4A study of the microstructural evolution during selective laser melting of Ti–6Al–4V显示文摘Lore Thijs Frederik Verhaeghe Tom Craeghs Jan Van Humbeeck Jean-Pierre Kruth 2010Acta Materialia2010,,9:1
5Nonmedical applications of shape memory alloys 显示文摘Humbeeck Jan Van 1999Materials Science and Engineering1999,,:1
6A study of the microstructural evolution during selective laser melting of Ti–6Al–4V显示文摘Lore Thijs Frederik Verhaeghe Tom Craeghs Jan Van Humbeeck Jean-Pierre Kruth 2010Acta Materialia2010,,9:1
7Heat treatment of Ti6Al4V produced by Selective Laser Melting: Microstructure and mechanical properties显示文摘Bey Vrancken Lore Thijs Jean-Pierre Kruth Jan Van Humbeeck 2012Journal of Alloys and Compounds2012,,:1
8Non-medical applications of shape memory al- loys显示文摘Jan Van Humbeeck 1999Materials Science and Engineering1999,,:1
9用原子力显微镜研究钢丝组织性能显示文摘Hilde Delrue Eric Bruneel Jan Van Humbeeck Etienne Aernoudt 窦光聚 2004金属制品2004,30,B05:1
10Cyclic deformation of NiTi shape memory alloys显示文摘 XIE Ze-liang VAN HUMBEECK Jan 1999Materials Science and Engineering A1999,,:1
11Non - medical applications of shape memory alloys显示文摘Jan Van Humbeeck 1999Materials Science and Engineering A1999,,:1
12Shape Memory Alloys; A Material and Technology显示文摘Jan Van Humbeeck 2001Advanced Engineering Materials2001,,11:1
13Size effect on the microstructure, phase transformation behavior, and mechanical properties of NiTi shape memory alloys fabricated by laser powder bed fusion显示文摘In this work,NiTi samples with different thicknesses(0.15-1.00 mm)were fabricated by laser powder bed fusion(LPBF)under variable scanning speeds(500-1200 mm s^(-1)).The densification behavior,phase transformation behavior,and mechanical properties of the sample with different thicknesses are studied.The results indicate a strong size effect in the LPBF-fabricated NiTi alloy.The decrease of the sample thickness results in(i)the increase of porosity,(ii)the decrease of the number of adhered NiTi powder particles at the surface,(iii)the monotonous decrease of the martensitic transformation temperatures(MTTs),and(iv)the decrease of the shape recovery temperature.The influence of sample thickness on the melt-pool behavior,and thus the microstructure and performance of NiTi alloys are discussed.It is suggested that the melt-pool is deeper and narrower in the thin samples than in the thick samples.We conclude that,apart from the LPBF process conditions,the sample dimensions have also to be considered to fabricate NiTi structures with predictable properties.Hao Jiang Xiebin Wang Rui Xi Guichuan Li Huiliang Wei Jiangwei Liu Bo Zhang Sergey Kustov Kim Vanmeensel Jan Van Humbeeck Guoqun Zhao 2023Journal of Materials Science & Technology2023,,26:0
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