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Introduction to magnesium alloy processing technology and development of low-cost stir casting process for magnesium alloy and its composites 被引量:14
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作者 Anil Kumar Santosh Kumar N.K.Mukhopadhyay 《Journal of Magnesium and Alloys》 SCIE EI CAS 2018年第3期245-254,共10页
This paper presents the processing of magnesium alloys and its composite through different stir casting technologies.Design and devel-opment of stir casting technology that is suitable for processing of magnesium allo... This paper presents the processing of magnesium alloys and its composite through different stir casting technologies.Design and devel-opment of stir casting technology that is suitable for processing of magnesium alloys has been done in this study.The low-cost stir casting processing of magnesium alloy and its composite with flux and without flux has been explained.The magnesium alloy and its composite have been fabricated by both the stir casting process.The micro structural characterization and mechanical properties of the developed composites has been evaluated.The optical emission spectroscopy of the developed alloy and factography of the developed alloy as well as composite was also examined. 展开更多
关键词 Metal matrix composite Magnesium alloys Stir casting COMPOSITE
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Fabrication and characterization of GNPs and CNTs reinforced Al7075 matrix composites through the stir casting process 被引量:4
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作者 Siavash Imanian Ghazanlou Beitallah Eghbali 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2021年第7期1204-1214,共11页
This study investigated the effects of adding graphene nanoplates(GNPs)and carbon nanotubes(CNTs)into the Al7075 matrix via the stir casting method on the microstructure and mechanical properties of the fabricated com... This study investigated the effects of adding graphene nanoplates(GNPs)and carbon nanotubes(CNTs)into the Al7075 matrix via the stir casting method on the microstructure and mechanical properties of the fabricated composites.By increasing the volume fraction of rein-forcements,the fraction of porosity increased.The X-ray diffraction results showed that the addition of reinforcements into the Al7075 changed the dominant crystal orientation from(002)to(111).Field emission scanning electron microscopy images also showed the distribution of clustered reinforcements in the matrix.Between the two reinforcements,the addition of CNTs generated a lower fraction of porosities.Through the addition of 0.52vol%GNPs into the matrix,the hardness,ultimate tensile strength and uniform elongation increased by 44%,32%,and 180%,respectively.Meanwhile,the presence of 0.71vol%CNTs in the matrix increased the hardness,tensile strength and uniform elongation by 108%,129%,and 260%,respectively. 展开更多
关键词 Al7075 GNPs CNTS stir casting COMPOSITE
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Microstructure,mechanical response and fractography of AZ91E/Al_(2)O_(3)_(p) nano composite fabricated by semi solid stir casting method 被引量:4
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作者 Sameer Kumar D Suman K.N.S +2 位作者 Tara Sasanka C Ravindra K Palash Poddar 《Journal of Magnesium and Alloys》 SCIE EI CAS 2017年第1期48-55,共8页
The present study confers to the fabrication and its characterization of magnesium alloy(AZ91E)based nano composites with nano Al_(2)O_(3) particulate reinforcements.A novel Semi Solid stir casting technique was adopt... The present study confers to the fabrication and its characterization of magnesium alloy(AZ91E)based nano composites with nano Al_(2)O_(3) particulate reinforcements.A novel Semi Solid stir casting technique was adopted for the fabrication of the composite.An average particle size of 50 nm was used as reinforcement to disperse in matrix.The effects of change in weight fraction of reinforcements on the distribution of particles,particle–matrix interfacial reactions,physical as well as mechanical properties were reported.The SEM and EDS analysis has shown the uniform distribution of particles in the composite along with the presence of elements.The mechanical properties of reinforced and unreinforced composite were evaluated and presented.Fractography of tensile specimens was also discussed. 展开更多
关键词 Magnesium alloys Nano composites Semi solid stir casting Al_(2)O_(3)particle
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Effect of reinforcement content on the adhesive wear behavior of Cu10Sn5Ni/Si3N4 composites produced by stir casting 被引量:1
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作者 K.Sanesh S.Shiam Sunder N.Radhika 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第9期1052-1060,共9页
The main objective of this paper was to fabricate CuSnNi alloy and its composites reinforced with various contents of SiNparticles(5wt%, 10wt%, and 15wt%) and to investigate their dry sliding wear behavior using a pin... The main objective of this paper was to fabricate CuSnNi alloy and its composites reinforced with various contents of SiNparticles(5wt%, 10wt%, and 15wt%) and to investigate their dry sliding wear behavior using a pin-on-disk tribometer. Microstructural examinations of the specimens revealed a uniform dispersion of SiNparticles in the copper matrix. Wear experiments were performed for all combinations of parameters, such as load(10, 20, and 30 N), sliding distance(500, 1000, and 1500 m), and sliding velocity(1, 2, and 3 m/s), for the alloy and the composites. The results revealed that wear rate increased with increasing load and increasing sliding distance, whereas the wear rate decreased and then increased with increasing sliding velocity. The primary wear mechanism encountered at low loads was mild adhesive wear, whereas that at high loads was severe delamination wear. An oxide layer was formed at low velocities, whereas a combination of shear and plastic deformation occurred at high velocities. The mechanism at short sliding distances was ploughing action of SiNparticles, which act as protrusions; by contrast, at long sliding distances, direct metal–metal contact occurred. Among the investigated samples, the Cu/10wt% SiNcomposite exhibited the best wear resistance at a load of 10 N, a velocity of 2 m/s, and a sliding distance of 500 m. 展开更多
关键词 copper matrix composites stir casting adhesive wear wear mechanisms
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Properties of Dispersion Casting of Y2O3 Particles in Hypo,Hyper and Eutectic Binary Al-Cu Alloys
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作者 J.J.Park G.H.Kim S.M.Hong S.H.Lee M.K.Lee C.K.Rhee 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第1期57-59,共3页
In the present work,the dispersion casting of Y-2O-3 particles in aluminum-copper alloy was investigated in terms of microstructural changes with respect to Cu contents of 20 (hypo),33 (eutectic) and 40 (hyper) ... In the present work,the dispersion casting of Y-2O-3 particles in aluminum-copper alloy was investigated in terms of microstructural changes with respect to Cu contents of 20 (hypo),33 (eutectic) and 40 (hyper) wt pct by scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS).For the fabrication of Al-Cu alloy dispersed Y-2O-3 ceramic particles,stir casting method was employed.In case of Al-20 wt pct Cu alloy (hypoeutectic),SEM images revealed that primary Al was grown up in the beginning.After that,eutectic phase with well dispersed ceramic particles was formed.In case of eutectic composition,Y-2O-3 particles were uniformly dispersed in the matrix.When the Cu is added into Al up to 40 wt pct (hypereutectic),primary phase was grown up without any Y-2O-3 ceramic particles in the early stage of solidification.Thereafter, eutectic phase was formed with well dispersed ceramic particles.It can be concluded that Y-2O-3 ceramic particles is mostly dispersed in case of eutectic composition in Al-Cu alloy. 展开更多
关键词 Dispersion casting Y2O3 particles Stir casting Al-Cu alloy
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Machine Learning-Based Research on Tensile Strength of SiC-Reinforced Magnesium Matrix Composites via Stir Casting
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作者 Zhihong Zhu Wenhang Ning +1 位作者 Xuanyang Niu Yuhong Zhao 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2024年第3期453-466,共14页
SiC is the most common reinforcement in magnesium matrix composites,and the tensile strength of SiC-reinforced magnesium matrix composites is closely related to the distribution of SiC.Achieving a uniform distribution... SiC is the most common reinforcement in magnesium matrix composites,and the tensile strength of SiC-reinforced magnesium matrix composites is closely related to the distribution of SiC.Achieving a uniform distribution of SiC requires fine control over the parameters of SiC and the processing and preparation process.However,due to the numerous adjustable parameters,using traditional experimental methods requires a considerable amount of experimentation to obtain a uniformly distributed composite material.Therefore,this study adopts a machine learning approach to explore the tensile strength of SiC-reinforced magnesium matrix composites in the mechanical stirring casting process.By analyzing the influence of SiC parameters and processing parameters on composite material performance,we have established an effective predictive model.Furthermore,six different machine learning regression models have been developed to predict the tensile strength of SiC-reinforced magnesium matrix composites.Through validation and comparison,our models demonstrate good accuracy and reliability in predicting the tensile strength of the composite material.The research findings indicate that hot extrusion treatment,SiC content,and stirring time have a significant impact on the tensile strength. 展开更多
关键词 Machine learning stirring casting Magnesium matrix composite Tensile strength
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Effects of Processing Technologies on Mechanical Properties of SiC Particulate Reinforced Magnesium Matrix Composites 被引量:2
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作者 樊建锋 ZHANG Hua +3 位作者 DONG Hongbiao XU Bingshe ZHANG Zhifeng SHI Likai 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第4期769-772,共4页
Mg matrix composites with SiC particles ranging from 5vol%-25vol% were prepared using stirring casting method. Die casting, squeezing casting, and extrusion were applied for inhibiting or eliminating the defects such ... Mg matrix composites with SiC particles ranging from 5vol%-25vol% were prepared using stirring casting method. Die casting, squeezing casting, and extrusion were applied for inhibiting or eliminating the defects such as gas porosity and shrinkage void. Through die casting and squeezing casting, most of the defects in Mg matrix composites could be eliminated, but the mechanical properties were improved limitedly. On the other hand, after hot extrusion, not only most of the defects of as-cast composites ingots were eliminated, but also the mechanical properties were improved markedly. With the addition of SiC, the tensile strength, yield strength and elastic modulus of as extrusion SiCp/AZ61 composites increased remarkably, and the elongation decreased obviously. 展开更多
关键词 Mg matrix composites stirring casting forming technology mechanical property
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Mechanical and wear behaviour of AZ91D magnesium matrix hybrid composite reinforced with boron carbide and graphite 被引量:11
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作者 I.Aatthisugan A.Razal Rose D.Selwyn Jebadurai 《Journal of Magnesium and Alloys》 SCIE EI CAS 2017年第1期20-25,共6页
In this experimental study,magnesium(AZ91D)based boron carbide(B4C)and graphite(Gr)particle reinforced hybrid composite materials were manufactured by stir casting.The tribological and mechanical properties of these c... In this experimental study,magnesium(AZ91D)based boron carbide(B4C)and graphite(Gr)particle reinforced hybrid composite materials were manufactured by stir casting.The tribological and mechanical properties of these composite materials were investigated.The results of the tests revealed that the graphite reinforced hybrid composites exhibited a lower wear loss compared to the unreinforced AZ91D alloy and AZ91D–B4C composites.It was found that with an increase in the B4C content,the wear resistance increased monotonically with hardness and ultimate tensile strength decreased.This study revealed that the addition of both a hard reinforcement(e.g.,B4C)and soft reinforcement(e.g.,graphite)significantly improves the wear resistance of magnesium composites.These entire results designate that the hybrid magnesium composites can be considered as an excellent material where high strength,ultimate tensile strength and wear-resistant components are of major importance,primarily in the aerospace and automotive engineering sectors. 展开更多
关键词 Stir casting Hybrid composite Magnesium AZ91D MECHANICAL WEAR Boron carbide
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Influence of processing route on microstructure and wear resistance of fly ash reinforced AZ31 magnesium matrix composites 被引量:2
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作者 I.Dinaharan S.C.Vettivel +1 位作者 M.Balakrishnan E.T.Akinlabi 《Journal of Magnesium and Alloys》 SCIE EI CAS 2019年第1期155-165,共11页
Utilizing fly ash(FA)as reinforcement for magnesium matrix composites(MMCs)brings down the production cost and the land pollution.Magnesium alloy AZ31 was reinforced with FA particles(10 vol.%)successfully by two diff... Utilizing fly ash(FA)as reinforcement for magnesium matrix composites(MMCs)brings down the production cost and the land pollution.Magnesium alloy AZ31 was reinforced with FA particles(10 vol.%)successfully by two different processing methods namely conventional stir casting and friction stir processing(FSP).The microstructural features were observed using optical microscope,scanning electron microscope and electron backscatter diffraction.The sliding wear behavior was tested using a pin-on-disc wear apparatus.The stir cast composite showed inhomogeneous particle dispersion and coarse grain structure.Some of the FA particles decomposed and reacted with the matrix alloy to produce undesirable compounds.Conversely,FSP composite showed superior particle dispersion and fine,equiaxed grains by dynamic recrystallization.FA particles encountered disintegration but there was no interfacial reaction.FSP composite demonstrated higher strengthening and wear resistance to that of stir cast composite.The morphology of the worn surface and the wear debris were studied in detail. 展开更多
关键词 Magnesium matrix composite Stir casting Friction stir processing Fly ash WEAR
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Influence of carbon nano tubes on mechanical, metallurgical and tribological behavior of magnesium nanocomposites 被引量:1
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作者 S.T.Selvamani S.Premkumar +2 位作者 M.Vigneshwar P.Hariprasath K.Palanikumar 《Journal of Magnesium and Alloys》 SCIE EI CAS 2017年第3期326-335,共10页
In this research work,three different reinforcements of Carbon Nano Tubes(in weight%)such as 2%,3%and 4%were added to the magnesium AZ91D grade magnesium alloy to fabricate the Nanocomposites through stir casting meth... In this research work,three different reinforcements of Carbon Nano Tubes(in weight%)such as 2%,3%and 4%were added to the magnesium AZ91D grade magnesium alloy to fabricate the Nanocomposites through stir casting method.The effects of volume percentage on the mechanical,metallurgical and wear behavior were analyzed.The composites with 4%reinforcement show high hardness while the composites with 3%reinforcement show better tensile and yield strength and also an improved wear resistance compared to other.Also,the characterization of the Nanocomposites were made using Optical Microscopy,Scanning Electron Microscopy,Finite Element-Scanning Electron Microscopy and Transmission Electron Microscopy to understand its nature. 展开更多
关键词 CNT Magnesium alloy Stir casting Wear behavior
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Processing and characterization of the microstructure and mechanical properties of Al6061–TiB_(2) composite
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作者 Y.Pazhuhanfar B.Eghbali 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2021年第6期1080-1089,共10页
In the present research,aluminum metal matrix composites were processed by the stir casting technique.The effects of TiB2 reinforcement particles,severe plastic deformation through accumulative roll bonding(ARB),and a... In the present research,aluminum metal matrix composites were processed by the stir casting technique.The effects of TiB2 reinforcement particles,severe plastic deformation through accumulative roll bonding(ARB),and aging treatment on the microstructural characteristics and mechanical properties were also evaluated.Uniaxial tensile tests and microhardness measurements were conducted,and the microstructural characteristics were investigated.Notably,the important problems associated with cast samples,including nonuniformity of the reinforcement particles and high porosity content,were solved through the ARB process.At the initial stage,particle-free zones,as well as particle clusters,were observed on the microstructure of the composite.However,after the ARB process,fracturing phenomena occurred in brittle ceramic particles,followed by breaking down of the fragments into fine particles as the number of rolling cycles increased.Subsequently,composites with a uniform distribution of particles were produced.Moreover,the tensile strength and microhardness of the ARB-processed composites increased with the increase in the reinforcement mass fraction.However,their ductility exhibited a different trend.With post-deformation aging treatment(T6),the mechanical properties of composites were improved because of the formation of fine Mg2Si precipitates. 展开更多
关键词 stir casting accumulative roll bonding aging treatment mechanical properties microstructural characteristics TiB2 ceramic particle
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Effect of Reinforcement and Copper Chill on LM13/ZrSiO_(4)/C Hybrid Metal Matrix Composites(HMMCS)-An Experimental and Statistical Analysis
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作者 Yellampalli Prakash RAVITEJ Chikkamaranahalli Boganarasimhaiah MOHAN Maravanji Gangadharaiah ANANTHAPRASAD 《China's Refractories》 CAS 2021年第4期12-18,共7页
Composites place a vital role in the applications of material science,i.e.aerospace,automobile,marine,etc.Dual reinforcement composites are a trending research area in the field of metal matrix composites.In this rese... Composites place a vital role in the applications of material science,i.e.aerospace,automobile,marine,etc.Dual reinforcement composites are a trending research area in the field of metal matrix composites.In this research article dual reinforcement,i.e.zirconium silicate(ZrSiO4)and carbon,is added to molten LM13 using the stir casting process in terms of(as cast),(3+3)mass%,(6+3)mass%,(9+3)mass%and(12+3)mass%respectively,using copper as a chill kept toward one end.The tensile,the hardness,and the microstructure of the composite specimens at the chill end and non chill end are studied.Experimental results are compared with analytical results and tabulated.It is found an increase in reinforcement and chilling effect enhances the properties of the composite.The ultimate tensile strength(UTS)and the hardness increase gradually with the increase in ZrSiO4 addition.The maximum UTS,the hardness and the signal to noise ratio(S/N ratio)for mechanical characterizations are evaluated using Taguchi method.It is found that 9 mass%of ZrSiO4 yields better results than the other combinations.Results are tabulated and compared using statistical tools.Microscopic studies reveal the uniform distribution of matrix and reinforcements with negligible agglomeration. 展开更多
关键词 dual reinforcement copper chill stir casting tensile strength1
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Optimization of strand and final electromagnetic stirrers of round bloom casters with multiple sections
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作者 Rui Wang Yan-ping Bao +1 位作者 Yi-hong Li Hang-Hang An 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第10期1150-1156,共7页
Strand electromagnetic stirring(S-EMS) and final electromagnetic stirring(F-EMS) are the main methods used to improve the center porosity and segregation for round blooms. To optimize the stirring conditions, nail... Strand electromagnetic stirring(S-EMS) and final electromagnetic stirring(F-EMS) are the main methods used to improve the center porosity and segregation for round blooms. To optimize the stirring conditions, nail shooting tests were conducted for three sections of large round blooms with diameters of ф380 mm, ф450 mm, and ф600 mm. Acid leaching and sulfur print tests were used to investigate the shell thickness. Based on the results of nail shooting tests, a mathematical model of solidification was established, and the variation of shell thickness and the central solid fraction were exactly calculated by the model. By taking all sections into account, the locations of S-EMS and F-EMS were optimized for each section. In the results, the macro-segregation of various sections is improved after the locations of S-EMS and F-EMS systems are changed. 展开更多
关键词 continuous casting electromagnetic stirring blooms mathematical models optimization
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Stir casting process for manufacture of Al-SiC composites 被引量:7
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作者 Shahin Soltani Rasoul Azari Khosroshahi +3 位作者 Reza Taherzadeh Mousavian Zheng-Yi Jiang Alireza Fadavi Boostani Dermot Brabazon 《Rare Metals》 SCIE EI CAS CSCD 2017年第7期581-590,共10页
Stir casting is an economical process for the fabrication of aluminum matrix composites. There are many parameters in this process, which affect the final microstructure and mechanical properties of the compos- ites. ... Stir casting is an economical process for the fabrication of aluminum matrix composites. There are many parameters in this process, which affect the final microstructure and mechanical properties of the compos- ites. In this study, micron-sized SiC particles were used as reinforcement to fabricate A1-3 wt% SiC composites at two casting temperatures (680 and 850 ℃) and stirring periods (2 and 6 min). Factors of reaction at matrix/ceramic interface, porosity, ceramic incorporation, and agglomera- tion of the particles were evaluated by scanning electron microscope (SEM) and high-resolution transition electron microscope (HRTEM) studies. From microstructural char- acterizations, it is concluded that the shorter stirring period is required for ceramic incorporation to achieve metal/ce- ramic bonding at the interface. The higher stirring tem- perature (850 ℃) also leads to improved ceramic incorporation. In some cases, shrinkage porosity and intensive formation of A14C3 at the metal/ceramic interface are also observed. Finally, the mechanical properties of the composites were evaluated, and their relation with the corresponding microstructure and processing parameters of the composites was discussed. 展开更多
关键词 Aluminum matrix composite MICROSTRUCTURE Mechanical properties Stir casting
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Copper-Coated Graphene Nanoplatelets-Reinforced Al–Si Alloy Matrix Composites Fabricated by Stir Casting Method 被引量:2
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作者 Xiaoqi Han Lizhuang Yang +1 位作者 Naiqin Zhao Chunnian He 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第1期111-124,共14页
In this study,Cu nanoparticles-coated graphene nanoplatelets(Cu-NPs@GNPs)were synthesized by a simple in situ method with the assistance of Na Cl templates and used for reinforcing Al–10 Si composites through stir ca... In this study,Cu nanoparticles-coated graphene nanoplatelets(Cu-NPs@GNPs)were synthesized by a simple in situ method with the assistance of Na Cl templates and used for reinforcing Al–10 Si composites through stir casting process.The experimental results showed that the coating of Cu-NPs on the GNPs could compromise the density mismatch between GNPs and metal matrix and eff ectively hinder the float of GNPs during stirring.The reaction of Cu-NPs and Al matrix could protect the structural integrity of GNPs as well as improve the interfacial wettability between GNPs and the matrix,thus promoting the uniform dispersion of GNPs in the composites.As a result,the as-prepared 0.5 wt%Cu-NPs@GNPs/Al–10 Si composite exhibited a tensile strength of 251 MPa(45%higher than the Al–10 Si)with a total elongation of 15%.The strengthening eff ects were mainly attributed to the following three reasons:Firstly,the Cu-NPs coating improved the interfacial bonding between GNPs and Al matrix which promoted the load transfer from the matrix to the GNPs.Secondly,the nanoscale Al 2 Cu formed by the reaction of Cu-NPs and Al matrix played a role in precipitation strengthening.Thirdly,GNPs refined the silicon phases and improved the monolithic performances of the composites. 展开更多
关键词 Al–Si alloy GRAPHENE Stir casting WETTABILITY Si phase refinement
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Processing, Microstructure and Mechanical Properties of Ti6Al4V Particles-Reinforced Mg Matrix Composites 被引量:5
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作者 X.M.Wang X.J.Wang +2 位作者 X.S.Hu K.Wu M.Y.Zheng 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2016年第10期940-950,共11页
Novel Ti6Al4V particles-reinforced AZ91 Mg matrix composites were successfully fabricated by stir casting method. The stirring time in semisolid condition directly affected the particle distribution and the quality of... Novel Ti6Al4V particles-reinforced AZ91 Mg matrix composites were successfully fabricated by stir casting method. The stirring time in semisolid condition directly affected the particle distribution and the quality of the ingots. Furthermore, the optimal speed of the heating and the liquid stirring could overcome particle settlement caused by the density difference between the matrix and the particles. Ti6Al4V particles distributed uniformly in the composites with different particle contents. The average grain size decreased with the increase in the particle contents. The Ti6A14V particles bonded pretty well with the alloy matrix. In addition, there were some interfacial reactions in the composites. There were rod-like A13Ti phases at the interface. The precipitates extended from the particle surface to the matrix, and they might improve the interfacial bonding strength. The ultimate tensile strength, yield strength and elastic modulus were enhanced as the particle contents increased, and the elongation was much better than that of the same matrix material reinforced with SiC particles. Thus, the novel composites exhibit better comprehensive mechanical properties. 展开更多
关键词 Magnesium matrix composites Ti6Al4V particles Stir casting Microstructure Mechanicalproperties
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Hot Extrusion Process Effect on Mechanical Behavior of Stir Cast Al Based Composites Reinforced with Mechanically Milled B_4C Nanoparticles 被引量:5
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作者 A. Alizadeh E. Taheri-Nassaj M. Hajizamani 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2011年第12期1113-1119,共7页
In this study, aluminum alloy (Al-2 wt% Cu) matrix composites reinforced with I, 2 and 4 wt% boron carbide nanoparticles fabricated through mechanical milling with average size of 100 nm were fabricated via stir cas... In this study, aluminum alloy (Al-2 wt% Cu) matrix composites reinforced with I, 2 and 4 wt% boron carbide nanoparticles fabricated through mechanical milling with average size of 100 nm were fabricated via stir casting method at 850℃. Cast ingots of the matrix alloy and the composites were extruded at 500℃ at an extrusion ratio of 10:1 to investigate the effects of hot extrusion on the mechanical properties of the composites. The microstructures of the as-cast and the extruded composites were investigated by scanning electron microscopy (SEM). Density measurement, hardness and tensile tests were carried out to identify the mechanical properties of the composites. The extruded samples revealed a more uniform distribution of B4C nanoparticles. Also, the extruded samples had strength and ductility values superior to those of the as-cast counterparts. In the as-cast and the extruded samples, with increasing amount of B4C nanoparticles, yield strength and tensile strength increased but e^ongation to fracture decreased. 展开更多
关键词 Stir casting Hot extrusion Al matrix composite B4C nanoparticles Mechanicalmilling
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