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Effect of manganese on the ferrum phases of B319 aluminum alloy in lost foam casting
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作者 Guohua WU Min XIE +1 位作者 Yangping ZHU Wenjiang DING 《China Foundry》 SCIE CAS 2004年第2期127-131,共5页
By using ICP spectroscopy, energy dispersive spectroscopy (EDS) analysis, X-ray diffraction, SEM and microscope analysis, the effects of Mn on the structure of B319 aluminum alloy are studied. The results show that wi... By using ICP spectroscopy, energy dispersive spectroscopy (EDS) analysis, X-ray diffraction, SEM and microscope analysis, the effects of Mn on the structure of B319 aluminum alloy are studied. The results show that without the addition of Mn, there are coral-like Al_2Cu phase and needle-like β-Fe (Al_5FeSi)in the structure of casting with lost foam casting (LFC). Precipitation of Al_2Cu can take place along the long sides of the β needles. Under the rapid cooling rates, such as ones in metallic mold, the Fe phase appears in the form of Chinese script α-Fe. With the addition of Mn, there are Chinese script α-Fe phases(Al_(15) (Mn, Fe)_3Si_2)in the structure of LFC casting. When Fe/Mn≤1.5, the needle-like β-Fe phases transform to Chinese script α-Fe completely. With the decrease of Fe/Mn ratio, the tensile strength σ_b and elongation δ increase, especially the elongation δ increases greatly. When Fe/Mn ratio decreases from 2.5 to 1, the δ increases from 1.2% to 1.9% by 58%. 展开更多
关键词 aluminum alloy STRUCTURE lost foam casting(LFC) MN
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Porosity of aluminum alloy in lost foam casting process
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作者 吴国华 罗吉荣 谢敏 《中国有色金属学会会刊:英文版》 CSCD 2000年第5期645-649,共5页
The effects of modification, grain refinement, polystyrene pattern, pouring temperature and reduced pressure degree on aluminum alloy porosity in lost foam casting (LFC) process were studied. The results show that the... The effects of modification, grain refinement, polystyrene pattern, pouring temperature and reduced pressure degree on aluminum alloy porosity in lost foam casting (LFC) process were studied. The results show that the solidification rate of LFC process is slower than that of resin sand process or clay sand process. The effect of modification and grain refinement on the aluminum alloy casting density in LFC is greater than that on resin sand process. Through α Al phase refinement process with 0.2%Ti for aluminum melt, the subversive effect of Sr modification in LFC process is decreased greatly, and the aluminum casting density in LFC process is nearly equal to that in resin sand process. To decrease the porosity of aluminum castings in LFC process, lower density of polystyrene pattern, higher pouring temperature (760~780 ℃) and lower reduced pressure degree (≤20 kPa) should be applied.[ 展开更多
关键词 aluminum alloy lost foam casting process POROSITY MODIFICATION
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A study on the effect of coating's sorption capacity on the porosity in lost foam aluminum alloy casting 被引量:2
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作者 G.H.Wu M.Xie +1 位作者 W.J.Ding J.R.Luo 《China Foundry》 SCIE CAS 2004年第S1期58-61,共4页
Effects of coating constituent, coating density, coating layer thickness and temperature on coating sorption capacity for polystyrene decomposition products have been studied systematically. It has been found that the... Effects of coating constituent, coating density, coating layer thickness and temperature on coating sorption capacity for polystyrene decomposition products have been studied systematically. It has been found that the effect of attapulgite clay on sorption capacity is the largest among coating constituents. The sorption capacity of the coating with 2% attapulgite clay is elevated by 81%. The relationship between casting porosity and coating sorption capacity has been studied. It has been pointed out that higher coating sorption capacity for polystyrene decomposition products is helpful to decrease the casting porosity. Results also show that the sorption capacity of self-developed HW-1 coating for polystyrene decomposition products is as good as that of Ashland coating from America. 展开更多
关键词 lost foam casting aluminum alloy COATING POROSITY
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Microstructure and mechanical properties of Mg-Gd-Y-Zr alloy cast by metal mould and lost foam casting 被引量:15
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作者 李吉林 陈荣石 柯伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第4期761-766,共6页
The microstructure and mechanical properties of Mg-10.1Gd-3.74Y-0.25Zr (mass fraction, %) alloy (GW104 alloy) cast by metal mould casting (MMC) and lost foam casting (LFC) were evaluated, respectively. It is r... The microstructure and mechanical properties of Mg-10.1Gd-3.74Y-0.25Zr (mass fraction, %) alloy (GW104 alloy) cast by metal mould casting (MMC) and lost foam casting (LFC) were evaluated, respectively. It is revealed that different forming modes do not influence the phase composition of as-cast alloy. In the as-cast specimens, the microstructures are similar and composed of α-Mg solid solution, eutectic compound of α-Mg+Mg 24 (Gd, Y) 5 and cuboid-shaped Mg 5 (Gd, Y) phase; whereas the average grain size of the alloy produced by metal mould casting is smaller than that by lost foam casting. The eutectic compound of the alloy is completely dissolved after solution treatment at 525 ℃for 6 h, while the Mg 5 (Gd, Y) phase still exists after solution treatment. After peak-ageing, the lost foam cast alloy exhibits the maximum ultimate tensile strength of 285 MPa, and metal mould cast specimen 325 MPa at room temperature, while the tensile yield strengths of them are comparable. It can be concluded that GW104 alloy cast by lost foam casting possesses similar microstructure and evidently lower mechanical strength compared with metal mould cast alloy, due to slow solidification rate and proneness to form shrinkage porosities during lost foam casting process. 展开更多
关键词 Mg-Gd-Y-Zr alloy lost foam casting metal mould casting MICROSTRUCTURE mechanical property
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EFFECT OF La-RICH RE ON THE STRUCTURE AND PROPERTIES OF B319 ALLOY IN LOST FOAM CASTING
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作者 WU Guo-hua XIE Min +3 位作者 WANG Ye-shuang MA Chun-jiang ZHU Yan-ping DING Wen-jiang 《Journal of Shanghai Jiaotong university(Science)》 EI 2002年第2期179-184,共6页
By use of ICP spectroscopy,energy spectrum analysis,hydrogen tester,image analyzer,the differential scanning calorimetric(DSC)and microscope analysis,the effects of RE on the Porosity,structure and properties of B319 ... By use of ICP spectroscopy,energy spectrum analysis,hydrogen tester,image analyzer,the differential scanning calorimetric(DSC)and microscope analysis,the effects of RE on the Porosity,structure and properties of B319 aluminum alloy were studied.The results show that under the 0.3°C/s slow cooling rate in lost foam casting,the effect of RE on modification and grain size of B319 aluminum alloy is little.With the increase of RE master alloy,the tensile strength and elongation increase.When RE>0.15%,block like La_(2)Si_(2)Al_(3)phase appear,and the tensile strength and elongation decrease.The results also show that the melt hydrogen content and casting porosity can be decreased greatly by adding 0.15%RE to aluminum melt.This is the important reason why RE improves the mechanical properties of casting under lost foam casting condition. 展开更多
关键词 RE master alloy aluminum alloy structure lost foam casting
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Study on typical hole defects in AZ91D magnesium alloy prepared by low pressure lost foam casting 被引量:6
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作者 Li Jiqiang Zhao zhong +2 位作者 Fan Zitian Dong Xuanpu Shi Hualiang 《China Foundry》 SCIE CAS 2013年第4期232-236,共5页
The hole defects can easily occur in magnesium alloy castings that are prepared by low pressure lost foam casting(LP-LFC)process when the process parameters such as vacuum,pouring temperature and f illing velocity are... The hole defects can easily occur in magnesium alloy castings that are prepared by low pressure lost foam casting(LP-LFC)process when the process parameters such as vacuum,pouring temperature and f illing velocity are not properly selected.In this study,the forming mechanism of the hole defects in AZ91D magnesium castings by LP-LFC process was investigated.The shape,location and surface appearance of the hole defects were observed using optical microscopy and scanning electron microscopy,and the chemical composition on the surface of the holes was analyzed using energy spectrometer.The result indicates that there are two types of hole defects,i.e.,the pyrolysis products related hole defects,including concentrative hole and blow hole defects,and slag related hole defects.The concentrative hole and the blow-hole defects were formed either by the liquidEPS degradation products entrapped in the molten metal under the condition that the pouring temperature is equal to or lower than 730℃,or by the hindered transport of EPS pyrolysis products.Some irregular shape hole defects were caused by slag or by coating slough entrapment when the pouring temperature is equal to 750℃and the f illing velocity is equal to or greater than 100 mm·s-1.To reduce or eliminate the hole defects,the vacuum and f illing velocity must be properly chosen to ensure that the metal front prof ile exhibits convex shape and in laminar current state,and the pouring temperature should be just high enough to ensure that the molten melt has adequate heat energy to complete the foam pyrolysis and to fully occupy the mould.For AZ91D magnesium castings in this study,the parameters should be 730℃pouring temperature,0.02-0.03 MPa vacuum and 80mm·s-1f illing velocity. 展开更多
关键词 magnesium alloy low-pressure lost foam casting hole defects
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Evaluation of significant manufacturing parameters in lost foam casting of thin-wall Al-Si-Cu alloy using full factorial design of experiment 被引量:4
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作者 Hassan JAFARI Mohd Hsbullah IDRIS Amirreza SHAYGANPOUR 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第10期2843-2851,共9页
Controlling process parameters of lost foam casting (LFC) enables this process to produce defect-free complex shape castings. An experimental investigation on lost foam casting of an A1-Si-Cu cast alloy was carried ... Controlling process parameters of lost foam casting (LFC) enables this process to produce defect-free complex shape castings. An experimental investigation on lost foam casting of an A1-Si-Cu cast alloy was carried out. The effects of pouting temperature, slurry viscosity, vibration time and sand size on surface finish, shrinkage porosity and eutectic silicon spacing of thin-wall casting were investigated. A full two-level factorial design of experimental technique was used to identify the significant manufacturing factors affecting the properties of casting. Pouring temperature was found as the most significant factor affecting A1-Si-Cu lost foam casting quality. It was shown that flask vibration time interacted with pouring temperature influenced euteetic silicon spacing and porosity percentage significantly. The results also revealed that the surface quality of the samples cast in fine sand moulds at higher pouring temperatures was almost unchanged, while those cast in coarse sand moulds possessed lower surface qualities. Furthermore, variation in slurry viscosity showed no significant effect on the evaluated properties compared to other parameters. 展开更多
关键词 Al-Si-Cu alloy lost foam casting full factorial design surface finish POROSITY silicon spacing
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Status quo and development trend of lost foam casting technology 被引量:7
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作者 Fan Zitian Jiang Wenming +1 位作者 Liu Fuchu Xiao Botao 《China Foundry》 SCIE CAS 2014年第4期296-307,共12页
Lost foam casting(LFC)technology has been widely applied to cast iron and cast steel.However,the development of LFC for Al and Mg alloys was relatively slower than that for cast iron and cast steel.The application of ... Lost foam casting(LFC)technology has been widely applied to cast iron and cast steel.However,the development of LFC for Al and Mg alloys was relatively slower than that for cast iron and cast steel.The application of LFC to Al and Mg alloys needs more effort,especially in China.In this paper,the development history of LFC is reviewed,and the application situations of LFC to Al and Mg alloys are mainly discussed.Meanwhile,the key problems of LFC for Al and Mg alloys are also pointed out.Finally,the prospects for LFC technology are discussed,and some special new LFC technologies are introduced for casting Al and Mg alloys.In future,the development trends of green LFC technology mainly focus on the special new LFC methods,metal material,coating,heat treatment,new foam materials as well as purification technology of tail gas,etc. 展开更多
关键词 lost foam casting(LFC) technology actuality development trend aluminum alloy magnesium alloy
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Microstructural evolution of Mg9AlZnY alloy with vibration in lost foam casting during semi-solid isothermal heat treatment 被引量:4
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作者 赵忠 樊自田 +1 位作者 蒋文明 董选普 《中国有色金属学会会刊:英文版》 CSCD 2010年第S3期768-773,共6页
The nearly equiaxed grains of Mg9AlZnY alloy were obtained by vibrating solidification in lost foam casting(LFC) and the microstructure of Mg9AlZnY alloy was analyzed.On this basis,the morphology and size of α-Mg gra... The nearly equiaxed grains of Mg9AlZnY alloy were obtained by vibrating solidification in lost foam casting(LFC) and the microstructure of Mg9AlZnY alloy was analyzed.On this basis,the morphology and size of α-Mg grains fabricated by semi-solid isothermal heat treatment(SSIT) at 530 ℃ and 570 ℃ holding different time were studied.The results show that the main constituent phases of Mg9AlZnY alloy are α-Mg,β-Mg17Al12 and Al2Y,and the Y can greatly refine α-Mg grains.The distribution of α-Mg grains equivalent diameters between 20 and 100 μm is up to 87%,and the average roundness of α-Mg grains reaches 1.37 in the specimen obtained at 570 ℃ and holding time 60 min.According to the analysis of solidification kinetics and thermodynamic,binary eutectic with low melting point melts firstly on SSIT process.As the liquid fraction increases with the solute diffusibility,both of the shape and size of α-Mg grains change ceaselessly.When the liquid fraction reaches equilibrium,the α-Mg grains are gradually spheroidized under the interfacial tension,and then the α-Mg grains begin to combine and grow.Evolution of α-Mg dendritic grains on SSIT process is obviously different from that of equiaxed grains. 展开更多
关键词 lost foam casting(LFC) SEMI-SOLID ISOTHERMAL heat treatment(SSIT) MICROSTRUCTURAL evolution magnesium alloy
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Heat transfer characteristics of lost foam casting process of magnesium alloy 被引量:2
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作者 刘子利 潘青林 +2 位作者 陈照峰 刘希琴 陶杰 《中国有色金属学会会刊:英文版》 EI CSCD 2006年第2期445-451,共7页
Effects of vacuum, pouring temperature and pattern thickness on the heat transfer of magnesium alloy lost foam casting(LFC) process were explored. The results indicate that without vacuum a positive thermal gradient f... Effects of vacuum, pouring temperature and pattern thickness on the heat transfer of magnesium alloy lost foam casting(LFC) process were explored. The results indicate that without vacuum a positive thermal gradient from the gate to the end of the casting was formed immediately after the mold filling. The average temperature of the casting, the temperature gradient and solidification times increase significantly with pouring temperature and pattern thickness. Vacuum plays a quite different role in the heat transfer during mould filling and solidification periods: it significantly increases the cooling rate of the filling melt, but decreases the cooling rate of the casting during solidification period. The temperature of the liquid metal drops sharply and varies greatly with no apparent mode in the casting after the mold filling. The amplitude of temperature fluctuations in the casting increases with vacuum, pouring temperature and pattern thickness. The average temperature increases with pouring temperature and pattern thickness, but less rapidly than that without vacuum. The effect of vacuum on the solidification times of castings is found to depend on pouring temperature, vacuum makes solidification times increase greatly at high pouring temperature, while decreases slightly at low pouring temperature. 展开更多
关键词 镁合金 消失模铸造 热转变 热分析
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Microstructure and mechanical properties of magnesium alloy prepared by lost foam casting 被引量:2
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作者 田学锋 樊自田 +2 位作者 黄乃瑜 吴和保 董选普 《中国有色金属学会会刊:英文版》 CSCD 2005年第1期7-13,共7页
The microstructure and mechanical properties of AZ91 alloy prepared by lost foam casting(LFC) and various heat treatments have been investigated. The microstructure of the AZ91 alloy via LFC consists of dominant α-... The microstructure and mechanical properties of AZ91 alloy prepared by lost foam casting(LFC) and various heat treatments have been investigated. The microstructure of the AZ91 alloy via LFC consists of dominant α-Mg and β-Mg17Al12 as well as a new phase Al32Mn25 with size of about 550 μm, which has not been detected in AZ91 alloy prepared by other casting processes. The tests demonstrate that the as-cast mechanical properties are higher than those of sand gravity casting because of chilling and cushioning effect of foam pattern during the mould filling. The solution kinetics and the aging processes at different temperatures were also investigated by hardness and electrical resistivity measurements. The kinetics of aging are faster at the high temperature due to enhanced diffusion of atoms in the matrix, so the hardness peak at 380 ℃ occurs after 10 h; while at the lower aging temperature(150 ℃), the peak is not reached in the time(24 h) considered. 展开更多
关键词 镁合金 泡沫铸造 力学性质 微观结构
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Effects of Parameters on Formation and Microstructure of Surface Composite Layer Prepared by Lost Foam Casting Technique
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作者 CHEN Dongfeng DONG Xuanpu FAN Zitian 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第1期82-87,共6页
Surface composite layer was fabricated on the AZ91D substrate using the lost foam casting (LFC) process. The pre-coating layer reacted with melt substrate and formed the composite layer, and the coating was mainly c... Surface composite layer was fabricated on the AZ91D substrate using the lost foam casting (LFC) process. The pre-coating layer reacted with melt substrate and formed the composite layer, and the coating was mainly consist of alloying aluminum powder and low-temperature glass powder (PbO-ZnO-Na20). The vacuum degree, pouring temperature, mold filling process of melt, and pre-coating thickness played an important role during the formation process of composite layer. The results show that surface morphology of composite layer can be divided into three categories: alloying effect of bad and good ceramic layer, alloying effect of good and bad ceramic layer, composite layer of good quality. The main reason for bad alloying layer is that alloying pre-coating thickness is so thin that it is scoured easily and involved in the melt, in addition, it is difficult for melt to infiltrate into the alloying coating owing to the surface tension of coating when the vacuum degree is excessively low. Bad ceramic layer is because of somewhat lower pouring temperature and the thicker alloying coating, due to the absorption of heat from the melt, making low temperature glass powder pre-coating layer fuse inadequate. Thus, to get good quality composite layer, the process conditions must be appropriate, the result shows that the optimum process parameters are as follows: at a pouring temperature of 800 ~C, vacuum degree of -0.06 MPa, alloying pre-coating thickness ofO.4 mm, and low glass powder pre-coating layer thickness ofl mm. 展开更多
关键词 lost foam casting aluminum powder low temperature glass powder surface compositelayer pre-coating thickness
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Effect of pattern coating thickness on characteristics of lost foam Al-Si-Cu alloy casting 被引量:6
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作者 Majid KARIMIAN Ali OURDJINI +1 位作者 Mohd HASBULLAH IDRIS Hassan JAFARI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第9期2092-2097,共6页
An experimental study on lost foam casting of an Al-Si-Cu alloy was conducted. The main objective was to study the effect of pattern coating thickness on casting imperfection and porosity percentage as well as eutecti... An experimental study on lost foam casting of an Al-Si-Cu alloy was conducted. The main objective was to study the effect of pattern coating thickness on casting imperfection and porosity percentage as well as eutectic silicon spacing of the alloy. The results showed that increasing slurry viscosity and flask dipping time influenced the casting integrity and microstructural characteristics. It was found that thinner pattern coating produced improved mould filling, refined microstructure and higher quality castings containing less porosity. 展开更多
关键词 aluminum alloy lost foam casting coating thickness slurry viscosity dipping time POROSITY
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Influence of mechanical vibration on the solidification of a lost foam cast 356 alloy 被引量:7
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作者 Zhao Zhong Fan Zitian +3 位作者 Dong Xuanpu Tang Bo Pan Di Li Jiqiang 《China Foundry》 SCIE CAS 2010年第1期24-29,共6页
Mechanical vibration was applied to the solidification of a lost foam cast(LFC) 356 aluminum alloy.Effects of mechanical vibration,with different peak acceleration,on the size and morphology of α-Al phase,and also on... Mechanical vibration was applied to the solidification of a lost foam cast(LFC) 356 aluminum alloy.Effects of mechanical vibration,with different peak acceleration,on the size and morphology of α-Al phase,and also on the mechanical properties of the castings were studied.Results indicated that α-Al dendrites gradually grow into equiaxed grains as the peak acceleration of vibration is increased.When the peak acceleration is between about 1 to 4 g,α-Al phase distribution is uniform and is refined obviously.α-Al dendrites are reduced and the mechanical properties of the castings are improved significantly when compared to those of the castings that are produced without vibration.However,when the peak acceleration is higher than 4 g,strong vibration will lead to defects formation,such as sand adhesion,while the amount and size of pores will be increased.And due to the turbulent flow that caused by strong vibration,the chance of forming large pores in the matrix has been increased significantly.The increase in defects will result in the deterioration of mechanical properties. 展开更多
关键词 aluminum alloy microstructure mechanical property lost foam casting mechanical vibration
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Microstructure and mechanical properties of lost foam cast 356 alloys
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作者 Qi-gui Wang 《China Foundry》 SCIE CAS 2015年第3期214-221,共8页
Microstructure and mechanical properties of lost foam cast aluminum alloys have been investigated in both primary A356(0.13% Fe) and secondary 356(0.47%). As expected, secondary 356 shows much higher content of Fe-ric... Microstructure and mechanical properties of lost foam cast aluminum alloys have been investigated in both primary A356(0.13% Fe) and secondary 356(0.47%). As expected, secondary 356 shows much higher content of Fe-rich intermetallic phases, and in particular the porosity in comparison with primary A356. The average area percent and size(length) of Fe-rich intermetallics change from about 0.5% and 6 μm in A356 to 2% and 25 μm in 356 alloy. The average area percent and maximum size of porosity also increase from about 0.4% and 420 μm to 1.4% and 600 μm, respectively. As a result, tensile ductility decreases about 60% and ultimate tensile strength declines about 8%. Lower fatigue strength was also experienced in the secondary 356 alloy. Low cycle fatigue(LCF) strength decreased from 187 MPa in A356 to 159 MPa in 356 and high cycle fatigue(HCF) strength also declined slightly from 68 MPa to 64 MPa. 展开更多
关键词 lost foam casting aluminum alloys microstructure mechanical properties FATIGUE Weibull linear elastic fracture mechanics 356 alloy
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INVESTIGATION OF FOAM-METAL INTERFACE BEHAVIORS DURING MOLD FILLING OF MAGNESIUM ALLOY LFC PROCESS 被引量:1
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作者 刘子利 潘青林 +2 位作者 陈照峰 刘希琴 陶杰 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2006年第1期72-80,共9页
The visual observation of the mold filling and the standard analysis-of-variance (ANOVA) for the velocity of the filling metal are conducted to study foam-metal interface behaviors during the mold filling of the los... The visual observation of the mold filling and the standard analysis-of-variance (ANOVA) for the velocity of the filling metal are conducted to study foam-metal interface behaviors during the mold filling of the lost foam casting (LFC) process of the magnesium alloy. Results show that the foam primarily melts into liquid products instead of gasifying at the pouring temperature of the magnesium alloy. Without the vacuum, the metal fills smoothly with a slightly convex metal front, and the velocity of the filling metal is low and continually decreases as the foam is displaced. The mold filling is governed by the removal of foam decomposition products at the foam-metal interface. However, when the vacuum is applied, the mold filling is controlled by the foam decomposition rate at the foam-metal interface. A pronounced irregular and concave metal front is formed. The velocity of the metal front varies tremendously during the mold filling process and is ruleless. The metal velocity increases rapidly, and the vacuum shows a strong interaction effect with the pouring temperature on the metal velocity. As the vacuum continues to increase, the pouring temperature becomes the most significant factor for the mold filling, while both the vacuum effect and the interaction effect between the vacuum and the pouring temperature on the metal velocity are substantially reduced. Based on experimental results, a model for the foam thermal degradation and the removal of decomposition products occurred at the foam-metal interface is presented during the mold filling of the magnesium alloy LFC process under the vacuum. 展开更多
关键词 magnesium alloy lost foam casting VACUUM foam-melt interface
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超高铬合金叶轮消失模铸造工艺开发
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作者 张静慧 吴延青 +2 位作者 史彩云 郭志民 张晓鹏 《铸造工程》 2024年第6期35-38,共4页
介绍了超高铬合金叶轮的消失模铸造工艺,采用合金成分优化、大口出流底注式浇注系统和合理设置冒口、内冷铁以及细晶强化等措施,铸件实现了顺序凝固,消除了缩孔及裂纹等缺陷,提高了抗磨蚀性能。最终产品质量满足渣浆泵设备酸蚀工况的使... 介绍了超高铬合金叶轮的消失模铸造工艺,采用合金成分优化、大口出流底注式浇注系统和合理设置冒口、内冷铁以及细晶强化等措施,铸件实现了顺序凝固,消除了缩孔及裂纹等缺陷,提高了抗磨蚀性能。最终产品质量满足渣浆泵设备酸蚀工况的使用要求。 展开更多
关键词 超高铬合金 叶轮 消失模铸造 工艺设计 缺陷
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Effect of vacuum on solidification process and microstructure of LFC magnesium alloy
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作者 刘子利 刘希琴 +3 位作者 徐江 郭华明 潘青林 周海涛 《中国有色金属学会会刊:英文版》 CSCD 2006年第A03期1685-1689,共5页
Lost foam casting (LFC) is regarded as a cost-effective, environment-friendly vital option to the conventional casting process for production of near-net shape castings with high quality. Effect of vacuum on the solid... Lost foam casting (LFC) is regarded as a cost-effective, environment-friendly vital option to the conventional casting process for production of near-net shape castings with high quality. Effect of vacuum on the solidification process and microstructure of LFC magnesium alloy were explored. The results indicate that vacuum plays a very important role in the heat transfer during mould filling and solidification periods, it increases the cooling rate of the filling melt, but greatly decreases the cooling rate of the casting during solidification period, and the solidification time of the casting is greater than that without vacuum. The microstructure of LFC magnesium alloy is rather coarse. Compared with that without vacuum, the microstructure of the LFC magnesium alloy under vacuum is more refined and has less precipitatedβ-phase, which is formed at the grain boundry and around the Al-Mn compound particle. 展开更多
关键词 凝固作用 真空技术 微观结构 镁合金 金属铸造
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机械振动对消失模壳型铸造A357合金显微组织和力学性能的影响 被引量:1
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作者 杨琪琳 王月雷 +1 位作者 陈隆波 曾效舒 《铸造》 北大核心 2023年第12期1607-1613,共7页
对A357铝合金消失模壳型铸造铸件凝固过程中的机械振动频率如何影响合金的显微组织、力学性能和断裂行为进行了研究。试验结果表明:不同频率下的机械振动显著改善了A357合金α-Al初生相和共晶硅颗粒的尺寸和形貌,提高了A357合金的力学... 对A357铝合金消失模壳型铸造铸件凝固过程中的机械振动频率如何影响合金的显微组织、力学性能和断裂行为进行了研究。试验结果表明:不同频率下的机械振动显著改善了A357合金α-Al初生相和共晶硅颗粒的尺寸和形貌,提高了A357合金的力学性能和密度。随着振动频率的逐渐增加,A357合金的晶粒尺寸和二次枝晶臂间距逐渐减小,力学性能和密度逐渐提高。α-Al相和共晶硅颗粒的形貌分别由粗枝晶向等轴晶和粗片状结构向纤维状结构演变,振幅越强,平均晶粒尺寸越大,合金的力学性能随着振幅的增加而不断下降。此外,机械振动使A357合金的断口形貌由无振动时的脆性断裂转变为明显的塑性断裂,且随着振动频率的增加,韧窝加深且分布更加均匀。 展开更多
关键词 A357铝合金 消失模壳型铸造 机械振动 显微组织 力学性能
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稀土对B319铝合金组织性能的影响 被引量:13
20
作者 吴国华 马春江 +2 位作者 王叶双 朱燕萍 丁文江 《金属学报》 SCIE EI CAS CSCD 北大核心 2002年第7期703-708,共6页
利用等离子发射光谱仪、能谱仪、图像分析仪、差分扫描量热仪(DSC)以及金相分析等手段,研究了稀土(RE)对消失模铸造B319铝合金孔隙率、组织和性能的影响.研究结果表明,在铸件冷却速度为0.2℃/s的消失模铸造条件下,B319铝熔体中加入0... 利用等离子发射光谱仪、能谱仪、图像分析仪、差分扫描量热仪(DSC)以及金相分析等手段,研究了稀土(RE)对消失模铸造B319铝合金孔隙率、组织和性能的影响.研究结果表明,在铸件冷却速度为0.2℃/s的消失模铸造条件下,B319铝熔体中加入0.15%RE(质量分数),可以使Si相得到一定程度的变质.并可使消失模铸造铝件的孔隙率明显降低.这是消失模铸造慢冷条件下RE提高合金力学性能的重要原因.随着RE加入量的增加,合金的抗拉强度和延伸率得以提高,当RE含量为0.15%时,相对于未加RE时的情况,σb和δ分别增加了14%和23.5%.当RE含量>0.15%时,出现富稀土的块状金属间化合物Ti2LaAl20,使合金的机械性能,尤其是塑性降低. 展开更多
关键词 稀土合金 铝合金 组织 孔隙率 消失模铸造
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