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TC4钛合金锻造/SLM增材组合制造结合区组织调控与力学行为研究 被引量:4
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作者 王舒 王志敏 +4 位作者 钱婷婷 步贤政 陈博 陈浩 尤逢海 《新技术新工艺》 2021年第9期70-75,共6页
采用在锻造TC4钛合金上激光选区熔化增材制造TC4钛合金的组合制造工艺方法,制备了锻造/激光选区熔化增材组合制造TC4钛合金组织,在退火热处理状态下研究了锻造/激光选区熔化增材组合制造TC4钛合金结合区的组织特征和力学行为。结果表明... 采用在锻造TC4钛合金上激光选区熔化增材制造TC4钛合金的组合制造工艺方法,制备了锻造/激光选区熔化增材组合制造TC4钛合金组织,在退火热处理状态下研究了锻造/激光选区熔化增材组合制造TC4钛合金结合区的组织特征和力学行为。结果表明:经过780℃×2 h的退火热处理后,锻造/激光选区熔化增材组合制造TC4钛合金结合区可观察到一条清晰连续的界线,界线两侧显微组织分别呈典型锻造TC4钛合金、激光选区熔化增材制造TC4钛合金组织特征,无逐渐变化的特征。界面区域组织致密,与锻造或激光选区熔化增材制造TC4钛合金相比,未表现出更多微观缺陷。在拉伸位移方向平行于界面方向的条件下,锻造/激光选区熔化增材组合制造TC4钛合金结合区的屈服强度、抗拉强度低于激光选区熔化增材制造区域,高于锻造区域。在一定程度上展现了TC4钛合金锻造/激光选区熔化增材组合制造工艺方法的应用潜力。 展开更多
关键词 组合制造 激光选区熔化制造 锻造 界面 TC4钛合金 航天
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430不锈钢激光选区增材件的组织及抗拉性能
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作者 鲍正浩 黄仲佳 +1 位作者 张晨阳 陶靖 《安徽工程大学学报》 CAS 2023年第4期8-13,共6页
为了探明430不锈钢增材制造件的打印态和固溶态的抗拉性能,采用激光选区增材制造制备430不锈钢增材样品,研究打印态和固溶处理态的组织、拉伸性能。结果表明:430不锈钢具有良好的激光选区增材成形性能;打印态的晶界析出物较多,固溶处理... 为了探明430不锈钢增材制造件的打印态和固溶态的抗拉性能,采用激光选区增材制造制备430不锈钢增材样品,研究打印态和固溶处理态的组织、拉伸性能。结果表明:430不锈钢具有良好的激光选区增材成形性能;打印态的晶界析出物较多,固溶处理消除了晶界析出;打印态的抗拉强度高达700 Mpa,固溶态的抗拉强度降低至550 Mpa,但固溶态具有更好的塑性;断口形貌表明,打印态拉伸断裂受到剪切力影响较大,固溶处理态为典型韧性断裂。 展开更多
关键词 激光选区制造 不锈钢 组织 拉伸性能
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模型转轮叶片的金属选区激光熔化工艺研究
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作者 陈道全 吴伟 吴家奎 《东方电气评论》 2016年第2期39-43,共5页
介绍了模型转轮叶片金属选区激光熔化(SLM)工艺探索创意产生的背景,阐述了SLM的工艺流程。遵循此流程,从叶片几何形状、工艺支撑设计、成形设备和材质的选择、基于增材制造的结构优化几个关键点对叶片进行选区激光熔化工艺分析,试验证... 介绍了模型转轮叶片金属选区激光熔化(SLM)工艺探索创意产生的背景,阐述了SLM的工艺流程。遵循此流程,从叶片几何形状、工艺支撑设计、成形设备和材质的选择、基于增材制造的结构优化几个关键点对叶片进行选区激光熔化工艺分析,试验证明工艺分析方法可靠、工艺措施合理。 展开更多
关键词 模型转轮叶片 增材制造选区 激光熔化
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选区激光熔化TC4钛合金疲劳裂纹扩展行为研究 被引量:3
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作者 孙文博 马玉娥 《航空科学技术》 2022年第3期71-76,共6页
选区激光熔化增材制造(AM-SLM)技术广泛应用于钛合金结构部件制造。SLM钛合金材料疲劳性能具有明显各向异性。研究SLM钛合金在不同方向载荷下的疲劳裂纹扩展行为对于航空结构耐久性/损伤容限设计具有重要意义。基于此,本文设计了与打印... 选区激光熔化增材制造(AM-SLM)技术广泛应用于钛合金结构部件制造。SLM钛合金材料疲劳性能具有明显各向异性。研究SLM钛合金在不同方向载荷下的疲劳裂纹扩展行为对于航空结构耐久性/损伤容限设计具有重要意义。基于此,本文设计了与打印方向呈0°、45°、75°和90°的4种不同取样角度及未处理和热处理的钛合金紧凑拉伸试验件(CT),完成了应力比R=0.1下的疲劳裂纹扩展速率试验,得到了da/d N—ΔK关系曲线,分析研究了取样角度及后处理对疲劳裂纹扩展的影响。结果表明,75°和90°试件的裂纹扩展速率较快,45°试件最慢。45°和75°试件在疲劳试验中会出现裂纹偏转现象,且45°试件疲劳断面沿厚度方向存在较小坡度。经过热处理后,75°试件疲劳裂纹扩展速率显著降低。 展开更多
关键词 选区激光熔化制造 钛合金 各向异性 疲劳裂纹扩展 后处理
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Microstructure and mechanical property of additively manufactured NiTi alloys:A comparison between selective laser melting and directed energy deposition 被引量:11
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作者 ZHENG Dan LI Rui-di +4 位作者 YUAN Tie-chui XIONG Yi SONG Bo WANG Jia-xing SU Ya-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1028-1042,共15页
NiTi shape memory alloy(SMA)with nominal composition of Ni 50.8 at%and Ti 49.2 at%was additively manufactured(AM)by selective laser melting(SLM)and laser directed energy deposition(DED)for a comparison study,with emph... NiTi shape memory alloy(SMA)with nominal composition of Ni 50.8 at%and Ti 49.2 at%was additively manufactured(AM)by selective laser melting(SLM)and laser directed energy deposition(DED)for a comparison study,with emphasis on its phase composition,microstructure,mechanical property and deformation mechanism.The results show that the yield strength and ductility obtained by SLM are 100 MPa and 8%,respectively,which are remarkably different from DED result with 700 MPa and 2%.The load path of SLM sample presents shape memory effect,corresponding to martensite phase detected by XRD;while the load path of DED presents pseudo-elasticity with austenite phase.In SLM sample,fine grain and hole provide a uniform deformation during tensile test,resulting in a better elongation.Furthermore,the nonequilibrium solidification was studied by a temperature field simulation to understand the difference of the two 3D printing methods.Both temperature gradient G and growth rate R determine the microstructure and phase in the SLM sample and DED sample,which leads to similar grain morphologies because of similar G/R.While higher G×R of SLM leads to a finer grain size in SLM sample,providing enough driving force for martensite transition and subsequently changing texture compared to DED sample. 展开更多
关键词 Ni50.8Ti49.2 shape memory alloy additive manufacturing selective laser melting laser directed energy deposition mechanical properties
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Comparison of Cu−Al−Ni−Mn−Zr shape memory alloy prepared by selective laser melting and conventional powder metallurgy 被引量:9
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作者 Dennis GERA Jonadabe SANTOS +1 位作者 Cláudio SKIMINAMI Piter GARGARELLA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第12期3322-3332,共11页
This work aimed to investigate and critically analyze the differences in microstructural features and thermal stability of Cu−11.3Al−3.2Ni−3.0Mn−0.5Zr shape memory alloy processed by selective laser melting(SLM)and co... This work aimed to investigate and critically analyze the differences in microstructural features and thermal stability of Cu−11.3Al−3.2Ni−3.0Mn−0.5Zr shape memory alloy processed by selective laser melting(SLM)and conventional powder metallurgy.PM specimens were produced by sintering 106−180μm pre-alloyed powders under an argon atmosphere at 1060°C without secondary operations.SLM specimens were consolidated through melting 32−106μm pre-alloyed powders on a Cu−10Sn substrate.Mechanical properties were measured through Vickers hardness testing.Differential scanning calorimetry was conducted to assess the martensitic transformation temperatures.X-ray diffraction patterns were collected to identify the metallurgical phases.Optical and scanning electron microscopy was used to analyze the microstructural features.b′1 martensite was found,irrespective of the processing route,although coarser martensitic variants were present in PM-specimens.In conventional powder metallurgy samples,intergranular eutectoid constituents and stabilized austenite also formed at room temperature.PM-specimens showed similar average hardness values to the SLM-specimens,albeit with high standard deviation linked to the porosity.The specimens processed by SLM showed reversible martensitic transformation(T0=171°C).PM-processed specimens did not show shape memory effects. 展开更多
关键词 shape memory alloys powder metallurgy additive manufacturing selective laser melting Cu-based alloys
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