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Inconel 738Lc/BNi-2/Hastelloy X接头钎焊工艺与性能研究
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作者 陈兴东 杨季坤 +3 位作者 刘亚兵 孙浩 陈斌 付伟 《电焊机》 2025年第4期73-80,共8页
异种高温合金的钎焊,一直是钎焊领域内的热点。以Inconel 738Lc与Hastelloy X异种高温合金为对象,采用0.3 mm/BNi-2粘带钎料,在真空度1.3×10^(-3) Pa条件下进行了不同温度下(1060~1140℃)的钎焊试验,系统探究了所获钎焊接头的微观... 异种高温合金的钎焊,一直是钎焊领域内的热点。以Inconel 738Lc与Hastelloy X异种高温合金为对象,采用0.3 mm/BNi-2粘带钎料,在真空度1.3×10^(-3) Pa条件下进行了不同温度下(1060~1140℃)的钎焊试验,系统探究了所获钎焊接头的微观组织、元素扩散和断口形貌等。结果表明,接头典型界面微观组织为IN738Lc/γ-Ni+β1+Ni-boride+Cr-boride/γ-phase+(Ni,Cr)-B+(Cr,Ni,Fe,Mo)B/Hastelloy X。1060℃时,钎缝中心形成富Cr/Ni硼化物相;当温度升至1100℃,硼化物相完全溶解,形成均匀Ni(s,s)组织,此时接头平均剪切强度达峰值227.62 MPa,较1060℃时提升13.1%,断裂机制表现为IN738Lc母材解理断裂;进一步升高温度至1140℃,B元素在HX晶间扩散深度增至159.2μm,诱发脆性(Cr,Ni,Fe,Mo)B相沿晶界析出,导致强度下降至189.27 MPa。基于此,确立了1100℃/10 min为最优工艺参数,接头强度达IN738Lc母材室温抗拉强度(247 MPa)的92%,满足燃气轮机蜂窝密封部件长时服役需求。 展开更多
关键词 Inconel 738lc合金 Hastelloy X合金 异种材料连接 钎焊 力学性能
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SLM成形IN738LC合金的微动磨损行为及磨损机理 被引量:2
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作者 胡勇 张旭 +2 位作者 贾慧斌 王少辉 柴利强 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第4期1393-1404,共12页
本文通过高精度微动摩擦磨损试验机(SRV-V),以球/平面点接触模式对选区激光熔化(SLM)技术制备的IN738LC合金进行切向微动磨损实验,系统研究了恒定载荷条件下(50 N),不同位移幅值(50、100、150、200μm)试样的微动磨损行为及其磨损机理... 本文通过高精度微动摩擦磨损试验机(SRV-V),以球/平面点接触模式对选区激光熔化(SLM)技术制备的IN738LC合金进行切向微动磨损实验,系统研究了恒定载荷条件下(50 N),不同位移幅值(50、100、150、200μm)试样的微动磨损行为及其磨损机理。结果表明:随着位移幅值增加,试样的摩擦因数和磨损体积逐渐增大,微动磨损运行状态由混合区逐渐转变为完全滑移区,50μm试样的磨损机理为轻微氧化磨损和疲劳磨损,200μm试样的磨损机理转变为氧化磨损、疲劳磨损和磨粒磨损。此外,磨痕中的微裂纹分布强烈依赖于微动区类型,即微裂纹出现在黏着区域和滑移区域的交界位置及完全滑移区域内。由于磨痕边缘存在犁削作用,磨痕形状由圆形变为椭圆形。 展开更多
关键词 选区激光熔化 IN738lc合金 微动磨损 位移幅值 磨损机理
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激光功率对激光熔覆IN738LC合金耐磨性能的影响 被引量:1
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作者 蒋武雄 伍文星 +3 位作者 陈平虎 阳彤 李会杰 邱长军 《材料保护》 CAS CSCD 2024年第7期191-198,共8页
IN738LC合金是典型的γ’相沉淀强化型镍基高温合金,常用于燃气轮机和航空发动机等高温部件。为进一步提高其高温耐磨性,分别以4种激光功率在纯度为99.99%氮气环境下利用激光熔覆技术制备IN738合金试样,并进行850℃×24 h热处理。采... IN738LC合金是典型的γ’相沉淀强化型镍基高温合金,常用于燃气轮机和航空发动机等高温部件。为进一步提高其高温耐磨性,分别以4种激光功率在纯度为99.99%氮气环境下利用激光熔覆技术制备IN738合金试样,并进行850℃×24 h热处理。采用X射线衍射(XRD)、扫描电镜(SEM)、高温摩擦磨损试验机等仪器和JMatPro软件研究金相组织与性能。结果表明:随着激光功率的升高,未热处理试样硬度的均值由40.74 HRC缓慢上升到41.92 HRC,经热处理后试样的硬度均值为43 HRC左右。未热处理和热处理后的试样在常温下摩擦系数的均值分别为0.70,0.65,热处理后的试样在800℃高温下摩擦系数均值为0.35。在一定激光功率范围内,试样的耐磨性能随激光功率的升高先上升后下降,激光功率分别为750,650 W时制备的试样分别在常温、800℃高温耐磨性能最好,相同激光功率下制备的试样在800℃高温下的耐磨性能远优于常温下的耐磨性能。 展开更多
关键词 IN738lc合金 激光熔覆 激光功率 摩擦磨损
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Thermal cycling on microstructure and mechanical properties of laser powder bed fusion manufactured IN738LC alloy 被引量:1
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作者 Yong Hu Hui-Bin Jia +4 位作者 Yong-Qi Hu Cheng Chu Xu Zhang Li-Hua Wang Dong Zhang 《Rare Metals》 CSCD 2024年第12期6649-6672,共24页
This study investigated the impact of thermal cycling effects on the microstructure and mechanical properties of IN738LC alloy manufactured by laser powder bed fusion,considering different volumetric energy densities(... This study investigated the impact of thermal cycling effects on the microstructure and mechanical properties of IN738LC alloy manufactured by laser powder bed fusion,considering different volumetric energy densities(VEDs)and interlayer times(ILTs)as part of the experimental parameters.The results show that low VED and long ILT samples displayed superior quality,with an average grain size of 10.97μm and relatively low strain accumulation level.In contrast,samples with high VED and long ILT exhibit increased cracking and porosity,the average grain size is 14.63μm and present higher strain accumulation degree.The nano-primary MC phase within the alloy transformed into a spherical secondary MC phase inside the grain and a polygonal secondary MC phase on the grain boundary.In the low VED and long ILT,the mean equivalent diameter(MED)of MC carbide within the grain and on the grain boundary was 63 and 140 nm,respectively,the tensile strength was 1072±21 MPa.By contrast,for the high VED and long ILT,the MED of MC carbide in the grain and on the grain boundary were 47 and105 nm,respectively,and the tensile strength was794±31 MPa.The tensile strength of high VED and long ILT decreased by 26%compared with low VED and long ILT. 展开更多
关键词 Laser powder bed fusion(L-PBF) IN738lc alloy Thermal cycling MICROSTRUCTURE Mechanical properties
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选区激光熔化IN738LC合金成形温度场的数值模拟及实验研究 被引量:3
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作者 胡勇 褚成 +3 位作者 胡永淇 张会莹 王力华 张东 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2023年第7期2434-2443,共10页
通过数值模拟得到的熔池热行为变化规律对选区激光熔化工艺参数进行优化,是提高成形件质量的有效手段。为此,本研究采用ANSYS的APDL语言建立了全参数化的IN738LC合金选区激光熔化过程温度场有限元分析模型,并通过单熔道成形实验对热源... 通过数值模拟得到的熔池热行为变化规律对选区激光熔化工艺参数进行优化,是提高成形件质量的有效手段。为此,本研究采用ANSYS的APDL语言建立了全参数化的IN738LC合金选区激光熔化过程温度场有限元分析模型,并通过单熔道成形实验对热源模型进行校核。结果表明:随着激光功率的增加或者扫描速度的减小,粉末吸收的线性能量密度不断增加,熔池中心最高温度升高,熔融金属量增加,熔道形态由不规则断续状向规则连续长条状演化;随着扫描速度的增加或者激光功率的减小,粉末吸收的线性能量密度不断下降,熔体流动能力减弱,熔池宽度与熔化穿透深度也随之减小;有限元模拟与实验结果吻合较好,当激光功率为270 W、扫描速度为1150 mm/s时,单熔道具有连续、少缺陷、规则良好的成形形貌。 展开更多
关键词 选区激光熔化 IN738lc合金 数值模拟 温度场 熔道形貌
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IN738LC镍基高温合金高温低周疲劳性能的研究 被引量:5
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作者 陈鸿均 H.Wever 《材料工程》 EI CAS CSCD 北大核心 2000年第11期45-48,共4页
以特殊热处理的方法将 IN738L C合金中的第二相颗粒处理成只由 45 0 nm边长的立方形γ′相构成的试样和只由直径为 80 nm的球形 γ′相所构成的试样。在对这两种试样进行的 12 2 3K低周疲劳试验中发现 ,应变速率不同 ,试样循环变形的机... 以特殊热处理的方法将 IN738L C合金中的第二相颗粒处理成只由 45 0 nm边长的立方形γ′相构成的试样和只由直径为 80 nm的球形 γ′相所构成的试样。在对这两种试样进行的 12 2 3K低周疲劳试验中发现 ,应变速率不同 ,试样循环变形的机理也不同。无论是含大颗粒的试样还是只含小颗粒的试样 ,在大应变速率时是颗粒被切割的变形机制 ,而在小变形速率条件下是类似于蠕变变形的位错攀移机制。在对小颗粒γ′相试样的试验中 。 展开更多
关键词 低周疲劳 循环变形机理 IN738lc 镍基高温合金
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Transient Liquid Phase Bonding of IN738LC/MBF-15/IN738LC:Solidification Behavior and Mechanical Properties 被引量:14
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作者 B.Binesh A.Jazayeri Gharehbagh 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2016年第11期1137-1151,共15页
Transient liquid phase(TLP) bonding of IN738 LC superalloy was carried out using a rapidly solidified MBF-15 Ni-based foil. The effects of bonding temperature(1130–1170 °C) and time(5–120 min) as well as ... Transient liquid phase(TLP) bonding of IN738 LC superalloy was carried out using a rapidly solidified MBF-15 Ni-based foil. The effects of bonding temperature(1130–1170 °C) and time(5–120 min) as well as foil thickness(35–140 μm) were studied on the microstructure of joint region and its mechanical properties. The solidification sequence in the joint region was found to be(i) formation of γ solid solution in the isothermally solidified zone, followed by(ii) ternary eutectic of γ + Ni3 B + Cr B, and finally(iii) binary eutectic of γ + Ni3 Si in the athermally solidified zone. Fine Ni3 Si particles were also formed via a solid state transformation within the γ matrix in the vicinity of eutectic products. A deviation of isothermal solidification kinetics from the standard parabolic TLP model was observed by increasing the bonding temperature to 1170 °C, which resulted in the formation of eutectic constituents at the joint centerline.The analysis of mechanical and fractographic test results revealed that the samples with complete isothermal solidification exhibit the highest shear strength, whereas the hard eutectic constituents act as preferential failure sites and lead to a significant reduction in the joint shear strength in samples with incomplete isothermal solidification. 展开更多
关键词 Transient liquid phase bonding IN738lc superalloy Isothermal solidification Amorphous brazing foil Mechanical properties
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Effect of Zr content on crack formation and mechanical properties of IN738LC processed by selective laser melting 被引量:13
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作者 Yong HU Xiao-kang YANG +3 位作者 Wen-jiang KANG Yu-tian DING Jia-yu XU Hui-ying ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1350-1362,共13页
Two batches of commercial IN738LC alloy powders with different Zr contents were printed under the same parameters.The influences of Zr content(0.024 wt.% and 0.12 wt.%,respectively) in powders on crack density,distrib... Two batches of commercial IN738LC alloy powders with different Zr contents were printed under the same parameters.The influences of Zr content(0.024 wt.% and 0.12 wt.%,respectively) in powders on crack density,distribution,formation mechanism and mechanical properties of selective laser melting(SLM)-treated parts were systematically studied.It was found that the crack density(area ratio) increases from 0.15% to 0.87% in the XOY plane and from 0.21% to 1.81% in the XOZ plane along with the Zr content increase from 0.024 wt.% to 0.12 wt.% in the original powders.Solidification cracks are formed along the epitaxially grown <001>-oriented columnar grain boundaries in molten pool center.The ultimate tensile strength of Sample 1(0.024 wt.% Zr) is 1113 MPa,and there are dimples in tensile fracture.With an increase in the Zr content to 0.12 wt.%(Sample 2),the ultimate tensile strength of Sample 2 decreases to 610 MPa,and there are numerous original cracks and exposed columnar grain boundaries in tensile fracture.The optimization of printing parameters of Sample 2 considerably increases the ultimate tensile strength by 55.2% to 947 MPa,and the plasticity is greatly improved. 展开更多
关键词 selective laser melting IN738lc alloy Zr content solidification crack process parameter optimization mechanical properties
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Effect of post heat-treatment on the microstructure and high-temperature oxidation behavior of precipitation hardened IN738LC superalloy fabricated by selective laser melting 被引量:5
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作者 Kyu-Sik Kim Sangsun Yang +1 位作者 Myeong-Se Kim Kee-Ahn Lee 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第17期95-103,共9页
The present study investigated the effect of as-built and post heat-treated microstructures of IN738LC alloy fabricated via selective laser melting process on high temperature oxidation behavior.The as-built microstru... The present study investigated the effect of as-built and post heat-treated microstructures of IN738LC alloy fabricated via selective laser melting process on high temperature oxidation behavior.The as-built microstructure showed fine cell and columnar structure due to high cooling rate.Ti element segregation was observed in inter-cell/inter-columnar area.After post heat-treatment,the initially-observed cell structure disappeared,instead bimodal Ni_3(Al,Ti)particles formed.High temperature(1273 K and 1373 K)oxidation test results showed parabolic oxidation curves regardless of temperature and initial microstructure.The as-built IN738LC fabricated via the selective laser melting process displayed oxidation resistance similar to or slightly better than that of IN738LC fabricated via wrought or cast process.Heat-treated SLM IN738LC,although had similar oxidation weight-gain values to those of the SLM asbuilt material at 1273K,showed relatively better oxidation resistance at 1373 K.Bimodal Ni_3(Al,Ti)precipitate formed in the post heat treatment changed the local chemical composition,thereby led to changes in alumina former/chromia former location and fraction on the alloy surface.It was concluded that in heat-treated IN738LC increased alumina former fraction was found,and this resulted in excellent oxidation resistance and relatively low weight-gain. 展开更多
关键词 IN738lc Selective laser melting High temperature oxidation Post heat-treatment Oxidation mechanism
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Subsurface Defect Evaluation of Selective-Laser-Melted Inconel 738LC Alloy Using Eddy Current Testing for Additive/Subtractive Hybrid Manufacturing 被引量:5
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作者 Sai Guo Guanhui Ren Bi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第6期224-239,共16页
New materials and manufacturing technologies require applicable non-destructive techniques for quality assurance so as to achieve better performance.This study comprehensively investigated the effect of influencing fa... New materials and manufacturing technologies require applicable non-destructive techniques for quality assurance so as to achieve better performance.This study comprehensively investigated the effect of influencing factors includ-ing excitation frequency,lift-off distance,defect depth and size,residual heat,and surface roughness on the defect EC signals of an Inconel 738LC alloy produced by selective laser melting(SLM).The experimental investigations recorded the impedance amplitude and phase angle of EC signals for each defect to explore the feasibility of detecting sub-surface defects by merely analyzing these two key indicators.Overall,this study revealed preliminary qualitative and roughly quantitative relationships between influencing factors and corresponding EC signals,which provided a prac-tical reference on how to quantitively inspect subsurface defects using eddy current testing(ECT)on SLMed parts,and also made solid progress toward on-line ECT in additive/subtractive hybrid manufacturing(ASHM)for fabricating SLMed parts with enhanced quality and better performance. 展开更多
关键词 Eddy current testing Subsurface defect Additive/subtractive hybrid manufacturing Selective laser melting Inconel 738lc alloy
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Effect of gap size on microstructure of transient liquid phase bonded IN-738LC superalloy 被引量:4
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作者 Vahid MALEKI Hamid OMIDVAR Mohammad-reza RAHIMIPOUR 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第2期437-447,共11页
In order to investigate the microstructure evolution and gain complete isothermal solidification time, transient liquid phase (TLP) bonding of IN-738LC superalloy was carried out using powdered AMS 4777 as the fille... In order to investigate the microstructure evolution and gain complete isothermal solidification time, transient liquid phase (TLP) bonding of IN-738LC superalloy was carried out using powdered AMS 4777 as the filler metal. The influence of gap size and bonding time on the joints was investigated. For example, complete isothermal solidification time for 40μm gap size was obtained as 45 min. In the case of lack of completion of isothermal solidification step, the remained molten interlayer cooled in the bonding zone under non-equilibrium condition andγ–γ′ eutectic phase formed in that area. The relationship between gap size and holding time was not linear. With the increase in gap size, eutectic phase width became thicker. In the diffusion affected zone, a much larger amount of alloying elements were observed reaching a peak. These peaks might be due to the formation of boride or silicide intermetallic. With the increase in gap size, the time required for bonding will increase, so the alloying elements have more time for diffusion and distribution in farther areas. As a result, concentrations of alloying elements decreased slightly with the increase in the gap size. The present bi-phasic model did not properly predict the complete isothermal solidification time for IN-738LC-AMS 4777-IN-738LC TLP bonding system. 展开更多
关键词 IN-738lc superalloy transient liquid phase (TLP) bonding gap size complete isothermal solidification
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Towards creep property improvement of selective laser melted Ni-based superalloy IN738LC 被引量:3
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作者 H.Y.Song M.C.Lam +5 位作者 Y.Chen S.Wu P.D.Hodgson X.H.Wu Y.M.Zhu A.J.Huang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第17期301-314,共14页
Nickel-based superalloy IN738LC produced by selective laser melting(SLM)exhibits inferior hightemperature creep properties than its cast counterparts due to relatively smaller grain size,particularly for the plane nor... Nickel-based superalloy IN738LC produced by selective laser melting(SLM)exhibits inferior hightemperature creep properties than its cast counterparts due to relatively smaller grain size,particularly for the plane normal to the building direction.This work studied effects of post heating strategy on the microstructure and especially the grain size to improve the high temperature creep resistance.The asbuilt microstructure exhibited a fine grain size and large quantities of MC carbides that could effectively hinder grain growth.It was found that unconventional two-step heat treatments could lead to substantial grain growth,and the effect is particularly prominent at a specific temperature.The ease of grain growth was explained after classifying the microstructural evolution(boundary carbide transformation)during each heating step and related to the reduced grain boundary pinning force from MC carbides.Creep tests validated the effect of the new heat treatment scheme on the SLM-processed IN738LC at 850℃.An extended creep fracture life(1.5 to 4 times improvement)and lower secondary creep rates were achieved with samples subjected to the newly optimized two-step heat treatment.The complete creep curves are also firstly presented for SLM-IN738LC,confirming the effectiveness of grain growth and highlighting the importance of dedicated heat treatment for SLM superalloys. 展开更多
关键词 Selective laser melting IN738lc alloy Creep properties Heat treatments Grain structure
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激光功率对选区激光熔化IN 738LC合金致密度的影响 被引量:2
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作者 胡捷 《材料导报》 EI CAS CSCD 北大核心 2022年第S02期418-421,共4页
IN 738LC合金常用于工业燃机和航空发动机等高温部件,采用选区激光熔化工艺(SLM)制备IN 738LC合金零部件已经受到产业界和学术界密切关注。在此背景下,本工作研究了不同激光功率参数下,IN 738LC成形试样的致密度变化情况,并对内部缺陷... IN 738LC合金常用于工业燃机和航空发动机等高温部件,采用选区激光熔化工艺(SLM)制备IN 738LC合金零部件已经受到产业界和学术界密切关注。在此背景下,本工作研究了不同激光功率参数下,IN 738LC成形试样的致密度变化情况,并对内部缺陷情况进行了表征和分析。结果表明,在激光功率值过低时,试样内部会出现大面积未熔合气孔,大幅降低其致密度;在激光功率值过高时,成形试样内部会出现细小微裂纹,但其致密度未受到显著影响。当在扫描速度1000 mm/s、铺粉层厚40μm、扫描间距0.09 mm和激光功率220~260 W的工艺条件下,成形试样的致密度可以达到99.9%。之后对致密度较优的试棒进行室温、高温拉伸测试和高温持久测试。结果显示,竖直试棒的综合静力学性能优于水平试棒,存在明显各向异性;而试棒的高温持久性能与传统指标有较大差距。 展开更多
关键词 激光选区熔化 IN 738lc 激光功率 致密度 微裂纹 力学性能
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Surface Integrity of Inconel 738LC Parts Manufactured by Selective Laser Melting Followed by High-speed Milling 被引量:1
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作者 Guanhui Ren Sai Guo Bi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第1期65-79,共15页
This study is concerned with the surface integrity of Inconel 738LC parts manufactured by selective laser melting(SLM)followed by high-speed milling(HSM).In the investigation process of surface integrity,the study emp... This study is concerned with the surface integrity of Inconel 738LC parts manufactured by selective laser melting(SLM)followed by high-speed milling(HSM).In the investigation process of surface integrity,the study employs ultradepth three-dimensional microscopy,laser scanning confocal microscopy,scanning electron microscopy,electron backscatter diffractometry,and energy dispersive spectroscopy to characterize the evolution of material microstructure,work hardening,residual stress coupling,and anisotropic effect of the building direction on surface integrity of the samples.The results show that SLM/HSM hybrid manufacturing can be an effective method to obtain better surface quality with a thinner machining metamorphic layer.High-speed machining is adopted to reduce cutting force and suppress machining heat,which is an effective way to produce better surface mechanical properties during the SLM/HSM hybrid manufacturing process.In general,high-speed milling of the SLM-built Inconel 738LC samples offers better surface integrity,compared to simplex additive manufacturing or casting. 展开更多
关键词 Surface integrity Inconel 738lc Selective laser melting High-speed milling
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Formation and Characterization of Titanium Modified Aluminide Coatings on IN738LC
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作者 Mohammad Moradi Fakhreddin Ashrafizadeh 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第05B期661-665,共5页
Up to now, the aluminide coatings used to protect industrial components at high temperature and corrosive environments have been modified by Pt, Cr, Si and Ni. In this investigation, aluminide coatings were modified b... Up to now, the aluminide coatings used to protect industrial components at high temperature and corrosive environments have been modified by Pt, Cr, Si and Ni. In this investigation, aluminide coatings were modified by titanium and the microstructural feature and formation mechanism were evaluated. The coatings were formed on a Ni-based superalloy(IN738LC) by a two stage process including titanizing at first and aluminizing thereafter. Pack cementation titanizing performed at temperatures 950° C and 1050° C in several mixtures of Ti, A12O3 and NH^Cl. At the second stage, aluminum diffused into surface of the specimens by an industrial aluminizing process known as Elcoatl01(4 hrs at 1050° C). The modified coatings were characterized by means of standard optical microscopy, scanning electron microscopy, energy dispersive spectroscopy and X-Ray diffraction methods. The results show that Ti in the coatings is mainly present in the form of TiNi and Al67Cr8Ti25. Titanium modified coatings grew with a mechanism similar to simple aluminizing; this includes inward diffusion of Al from the pack to the substrate and then outward diffusion of Ni from the substrate to the coating. The advantages and characteristics of this two-stage modified coating is discussed and the process parameters are proposed to obtain a coating of optimum microstructure. 展开更多
关键词 扩散涂层 钛铝涂层 IN738lc 超级合金 扩散渗碳处理
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Formation and Microstructural Characterization of Silicon-modified Aluminide Coating on Nickel-based Superalloy IN738LC
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作者 F. Shahriari F. Ashrafizadeh A. Monshi 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第05B期657-660,共4页
In this investigation, aluminide coatings used to protect industrial components at high temperature and corrosive environments were modified with silicon addition and the microstructural features and formation mechani... In this investigation, aluminide coatings used to protect industrial components at high temperature and corrosive environments were modified with silicon addition and the microstructural features and formation mechanism were evaluated. The coating on the nickel-based superalloy IN738LC was carried out by a two stage process including siliconizing at first and aluminizing thereafter. Pack cementation siliconizing performed at 950C for 2, 4 and 6 hours in several powder mixtures of Si, A12O3 and NHiCl, then aluminum was diffused into the surface of the specimens by an industrial aluminizing process. The modified coatings were characterized by means of standard metallography, scanning electron microscopy, energy dispersive spectroscopy and X-ray diffraction methods. The results show that Si in the coatings mainly presents in the form of secondary phases including Cr3Si, Mo5Si3 and Nii6Ti6Si7, well distributed within the NiAl matrix. The advantages of this two stage modified coating is discussed. 展开更多
关键词 显微结构 IN738lc 镍超级合金 扩散渗碳处理 生长机制
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耐蚀涂层对燃气轮机动叶片材料IN738LC热疲劳寿命的影响
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作者 刘兴跃 《国外金属热处理》 2004年第3期9-15,共7页
关键词 耐蚀涂层 燃气轮机 动叶片 IN738lc 热疲劳寿命 多轴热疲劳试验
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