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Microstructure simulation of rapidly solidified ASP30 high-speed steel particles by gas atomization
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作者 Jie Ma Bo Wang +3 位作者 Zhi-liang Yang Guang-xin Wu Jie-yu Zhang Shun-li Zhao 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第3期294-302,共9页
In this study, the microstructure evolution of rapidly solidified ASP30 high-speed steel particles was predicted using a simulation method based on the cellular automaton-finite element (CAFE) model. The dendritic g... In this study, the microstructure evolution of rapidly solidified ASP30 high-speed steel particles was predicted using a simulation method based on the cellular automaton-finite element (CAFE) model. The dendritic growth kinetics, in view of the characteristics of ASP30 steel, were calculated and combined with macro heat transfer calculations by user-defined functions (UDFs) to simulate the microstructure of gas-atomized particles. The relationship among particle diameter, undercooling, and the convection heat transfer coefficient was also inves- tigated to provide cooling conditions for simulations. The simulated results indicated that a columnar grain microstructure was observed in small particles, whereas an equiaxed microstructure was observed in large particles. In addition, the morphologies and microstructures of gas-atomized ASP30 steel particles were also investigated experimentally using scanning electron microscopy (SEM). The experimental re- suits showed that four major types ofmicrostructures were formed: dendritic, equiaxed, mixed, and multi-droplet microstructures. The simu- lated results and the available experimental data are in good agreement. 展开更多
关键词 high-speed steel rapid solidification MICROSTRUCTURE grain growth gas atomization
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Effect of closed-couple gas atomization pressure on the performances of Al-20Sn-1Cu powders 被引量:1
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作者 ZHAO Xinming XU Jun ZHU Xuexin ZHANG Shaoming 《Rare Metals》 SCIE EI CAS CSCD 2008年第4期439-443,共5页
Al-20Sn-1Cu powders were prepared by gas atomization in an argon atmosphere with atomizing pressures of 1.1 and 1.6 MPa. The characteristics of the powders are determined by means of dry sieving, scanning electron mic... Al-20Sn-1Cu powders were prepared by gas atomization in an argon atmosphere with atomizing pressures of 1.1 and 1.6 MPa. The characteristics of the powders are determined by means of dry sieving, scanning electron microscopy (SEM), optical microscopy (OM), and X-ray diffractometry (XRD). The results show that the powders exhibit a bimodal size distribution and a higher gas pressure results in a broad size distribution. All particles in both cases are spherical or nearly spherical and satellites form on the surface of coarse particles. Dendritic and cellular structures coexist in the particle. With decreasing particle diameter, the secondary dendrite arm spacing (SDAS) decreases and the cooling rate increases. The particles processed under high gas atomization pressure (1.6 MPa) exhibit a lower SDAS value and a higher cooling rate than those of the same size under low gas atomization pressure (1.1 MPa). The XRD results show that the Sn content increases with decreasing particle size. 展开更多
关键词 powder production Al-Sn-Cu alloy gas atomization rapid solidification particle size distribution
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快速凝固过程中纯铜相结构转变的分子动力学模拟 被引量:7
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作者 李小平 韩其勇 +2 位作者 刘洪波 陈魁英 胡壮麒 《金属学报》 SCIE EI CAS CSCD 北大核心 1995年第8期A356-A362,共7页
采用分子动力学方法模拟了纯铜的凝固过程,考察了在不同冷却速度条件下纯铜相转变过程中的结构变化特点。原子间相互作用势采用EAM势结构分析采用键取向序和对分析技术.计算结果表明,EAM势完全适用于处理较复杂的无序体系.液... 采用分子动力学方法模拟了纯铜的凝固过程,考察了在不同冷却速度条件下纯铜相转变过程中的结构变化特点。原子间相互作用势采用EAM势结构分析采用键取向序和对分析技术.计算结果表明,EAM势完全适用于处理较复杂的无序体系.液态的偶关联函数计算与实验结果符合的很好。非晶转变点的计算值与其它理论方法得出的预测值十分接近。给出了液态、过冷液态、非晶态和晶态转变时的微观结构信息。 展开更多
关键词 快速凝固 分子动力学 相变
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磁性磨料制备技术的研究 被引量:8
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作者 高玉龙 赵玉刚 滕一宁 《山东理工大学学报(自然科学版)》 CAS 2009年第3期32-35,共4页
磁性磨料的制备问题是制约磁力研磨光整加工技术发展的瓶颈,为了促进磁力光整加工技术的发展,需要制备价格低、磨削性能好、使用寿命长的磁性磨料.在系统介绍各种磁性磨料制备方法的基础上,提出了利用雾化快凝法制备磁性磨料的新方法,... 磁性磨料的制备问题是制约磁力研磨光整加工技术发展的瓶颈,为了促进磁力光整加工技术的发展,需要制备价格低、磨削性能好、使用寿命长的磁性磨料.在系统介绍各种磁性磨料制备方法的基础上,提出了利用雾化快凝法制备磁性磨料的新方法,得到了一些有参考价值的实验数据,为磁性磨料的制备提供了重要的参考依据. 展开更多
关键词 磁性磨料 制备方法 雾化快凝 润湿性
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基于镶嵌原子势的纯Al快速凝固过程分子动力学模拟 被引量:1
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作者 李小平 韩其勇 +2 位作者 刘洪波 陈魁英 胡壮麒 《材料研究学报》 EI CAS CSCD 1996年第4期368-372,共5页
采用镶嵌原子势(EAM)和分子动力学方法模拟了纯Al的液态。
关键词 镶嵌原子势 快速凝固 微观结构
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气雾化快凝磁性磨料陶瓷颗粒增强相分布的研究
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作者 姜文革 赵玉刚 +2 位作者 孙浩 李业富 蔡天赐 《机械设计与制造》 北大核心 2013年第10期267-269,共3页
以铁合金作为基体,刚玉粉为磨粒,在雾化快凝装置中采用气雾化快凝法制备不同粒度的磁性磨料;在经过镶嵌、研磨、抛光、酸洗之后,采用热场发射扫描电子显微镜(SEM)观察磁性磨料的剖面形貌,结果表明刚玉粉在磁性磨料中的分布具有一定规律... 以铁合金作为基体,刚玉粉为磨粒,在雾化快凝装置中采用气雾化快凝法制备不同粒度的磁性磨料;在经过镶嵌、研磨、抛光、酸洗之后,采用热场发射扫描电子显微镜(SEM)观察磁性磨料的剖面形貌,结果表明刚玉粉在磁性磨料中的分布具有一定规律,绝大部分刚玉粉均匀牢固致密地嵌于铁磁性基体表层,且嵌入基体的深度大于自身半径,而基体内部基本无刚玉粉颗粒分布,对这一现象产生的原因利用陶瓷颗粒穿透模型和机械作用机制进行系统的计算与分析。 展开更多
关键词 气雾化快凝法 磁性磨料 刚玉粉
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SiC磁性磨料陶瓷颗粒增强相分布研究
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作者 赵玉刚 姜文革 +1 位作者 李业富 孙浩 《机械设计与制造》 北大核心 2013年第12期125-126,130,共3页
以铁合金作为基体,刚玉粉为磨粒,在雾化快凝装置中采用气雾化快凝法制备不同粒度的磁性磨料;在经过镶嵌、研磨、抛光、酸洗之后,采用热场发射扫描电子显微镜(SEM)观察磁性磨料的剖面形貌,结果发现当陶瓷颗粒增强相为Al2O3时磁性磨料表... 以铁合金作为基体,刚玉粉为磨粒,在雾化快凝装置中采用气雾化快凝法制备不同粒度的磁性磨料;在经过镶嵌、研磨、抛光、酸洗之后,采用热场发射扫描电子显微镜(SEM)观察磁性磨料的剖面形貌,结果发现当陶瓷颗粒增强相为Al2O3时磁性磨料表层有大量均匀的硬质磨粒相分布,而当陶瓷颗粒增强相为SiC时磁性磨料中的硬质磨粒数量则很少,甚至没有陶瓷颗粒分布。以喷射沉积增强相分布模型为依据,分析研究SiC磁性磨料中陶瓷颗粒分布较少的原因,并提出解决方案。 展开更多
关键词 气雾化快凝法 陶瓷颗粒增强相 喷射沉积增强相分布的模型
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双级雾化快凝磁性磨料制备工艺系统的研制(英文) 被引量:2
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作者 张桂冠 赵玉刚 +1 位作者 高跃武 张桂香 《机床与液压》 北大核心 2018年第6期170-176,共7页
为了获得混粉雾化快凝中的工艺参数,制备性能优良的球形磁性磨料,提高制备工艺系统的稳定性。通过对雾化快凝工艺的分析,设计了双级雾化器、设计了气力送混粉装置与控制系统、设计了雾化水冷室的结构与冷却供水系统。通过FLUENT流体分... 为了获得混粉雾化快凝中的工艺参数,制备性能优良的球形磁性磨料,提高制备工艺系统的稳定性。通过对雾化快凝工艺的分析,设计了双级雾化器、设计了气力送混粉装置与控制系统、设计了雾化水冷室的结构与冷却供水系统。通过FLUENT流体分析软件,对双级雾化器在不同压力配比下的数值分析,模拟出在上级雾化压力为1.2MPa、下级雾化压力为2.5MPa时得到均匀的速度流场,保证雾化过程的持续性。在现有设计的基础上,通过实验验证了上述设备与工艺参数准确性,制备出了陶瓷硬质磨料颗粒牢固地镶嵌在铁基体表层的球形磁性磨料。 展开更多
关键词 雾化法 快凝法 气固两相流 磁性磨料 FLUENT 控制系统
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New Iron-based SiC Spherical Composite Magnetic Abrasive for Magnetic Abrasive Finishing 被引量:12
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作者 ZHANG Guixiang ZHAO Yugang +2 位作者 ZHAO Dongbiao ZUO Dunwen YIN Fengshi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第2期377-383,共7页
SiC magnetic abrasive is used to polish surfaces of precise, complex parts which are hard, brittle and highly corrosion-resistant in magnetic abrasive finishing(MAF). Various techniques are employed to produce this ... SiC magnetic abrasive is used to polish surfaces of precise, complex parts which are hard, brittle and highly corrosion-resistant in magnetic abrasive finishing(MAF). Various techniques are employed to produce this magnetic abrasive, but few can meet production demands because they are usually time-consuming, complex with high cost, and the magnetic abrasives made by these techniques have irregular shape and low bonding strength that result in low processing efficiency and shorter service life. Therefore, an attempt is made by combining gas atomization and rapid solidification to fabricate a new iron-based SiC spherical composite magnetic abrasive. The experimental system to prepare this new magnetic abrasive is constructed according to the characteristics of gas atomization and rapid solidification process and the performance requirements of magnetic abrasive. The new iron-based SiC spherical composite magnetic abrasive is prepared successfully when the machining parameters and the composition proportion of the raw materials are controlled properly. Its morphology, microstructure, phase composition are characterized by scanning electron microscope(SEM) and X-ray diffraction(XRD) analysis. The MAF tests on plate of mold steel S136 are carried out without grinding lubricant to assess the finishing performance and service life of this new SiC magnetic abrasive. The surface roughness(Ra) of the plate worked is rapidly reduced to 0.051 μm from an initial value of 0.372 μm within 5 min. The MAF test is carried on to find that the service life of this new SiC magnetic abrasive reaches to 155 min. The results indicate that this process presented is feasible to prepare the new SiC magnetic abrasive; and compared with previous magnetic abrasives, the new SiC spherical composite magnetic abrasive has excellent finishing performance, high processing efficiency and longer service life. The presented method to fabricate magnetic abrasive through gas atomization and rapid solidification presented can significantly improve the finishing performance and service life of magnetic abrasive, and provide a more practical approach for large-scale industrial production of magnetic abrasive. 展开更多
关键词 iron-based SiC composite powder gas atomization and rapid solidification spherical composite magnetic abrasive magnetic abrasive finishing(MAF)
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Microstructural Evolution of Gas Atomized Fe-25Cr-3.2C Alloy Powders 被引量:1
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作者 YANG Min SONG Chang-jiang DAI Yong-xiang ZHU Liang LI Ke-feng ZHAI Qi-jie 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第2期75-78,共4页
The microstructural evolution of the gas atomized Fe-25Cr-3.2C powders was investigated by using optical microscope, scanning electron microscope, and X-ray diffraction. The experimental results showed that the atomiz... The microstructural evolution of the gas atomized Fe-25Cr-3.2C powders was investigated by using optical microscope, scanning electron microscope, and X-ray diffraction. The experimental results showed that the atomized Fe-25Cr-3.2C powders were mainly composed of austenite and (Fe,Cr)7 C3 carbide. Eutectic microstructure was developed in the larger particles, whereas dendritic microstrueture was obtained in the particles with diameter less than 38 μm. The reason for microstructure change should be the difference of nucleation undercooling for particles. 展开更多
关键词 gas atomization Fe-Cr-C alloy microstructure UNDERCOOLING rapid solidification
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