搜索到1334篇“ UNDERCOOLED“的相关文章
Refinement Mechanism of Microstructure of Undercooled Nickel Based Alloys
2024年
Through the use of purification and recirculation superheating techniques on molten glass,the Ni65Cu33Co2 alloy was successfully undercooled to a maximum temperature of 292 K.High-speed photography was employed to capture the process of interface migration of the alloy liquid,allowing for an analysis of the relationship between the morphological characteristics of the alloy liquid solidification front and the degree of undercooling.Additionally,the microstructure of the alloy was examined using metallographic microscopy,leading to a systematic study of the microscopic morphological characteristics and evolution laws of the refined structure during rapid solidification.The research reveals that the grain refining mechanism of the Ni-Cu-Co ternary alloy is consistent with that of the binary alloy(Ni-Cu).Specifically,under low undercooling conditions,intense dendritic remelting was found to cause grain refinement,while under high undercooling conditions,recrystallization driven by accumulated stress and plastic strain resulting from the interaction between the liquid flow and the primary dendrites caused by rapid solidification was identified as the main factor contributing to grain refinement.Furthermore,the study highlights the significant role of the Co element in influencing the solidification rate and reheat effect of the alloy.The addition of Co was also found to facilitate the formation of non-segregated solidification structure,indicating its importance in the overall solidification process.
杜文华HOU KaiXU XuguangIsmal SaadWilley Liew Yun HsienAN HongenNancy Julius SiambunBih-Lii Chuab王洪福
关键词:RECALESCENCERECRYSTALLIZATIONUNDERCOOLING
Subgrain-assisted spontaneous grain refinement in rapid solidification of undercooled melts
2024年
The grain refinement mechanism for rapid solidification of undercooled melts is still an open problem even after 60 years of on-going studies.In this work,rapid solidification of undercooled Ni and equi-atomic FeCoNiPd melts was studied and spontaneous grain refinement was found at both low and high undercooling.After a detailed electron backscattered diffraction analysis,subgrain-induced grain orien-tation scattering and splitting were found to occur along with the transition from coarse dendrites to fine equiaxed grains at low and high undercooling,respectively,indicating that subgrains play an im-portant role during the formation of fine equiaxed grains.On this basis,a compromise mechanism of subgrain-assisted spontaneous grain refinement was proposed.Because the dendrite re-melting induced thermo-mechanical process and fluid flow induced dendrite deformation occur simultaneously during the post-recalescence stage,stress accumulation would be maximum at both low and high undercooling,thus inducing dynamic recrystallization,during which the formation and rotation of subgrains make the grain orientations scattering and even splitting.Furthermore,the grain/subgrain size of undercooled FeCoNiPd ascribing to its unique co-segregation behavior keeps almost invariable from low to high undercooling,indicating that the co-segregation strategy would be effective to inhibit grain growth after rapid solidifi-cation and would be useful in practice.
Jianbao ZhangDongpeng HuaDexu CuiXin LiKe HuaYixuan HeHaifeng WangYuhong Zhao
关键词:UNDERCOOLING
Sn和Ni对过冷Ag-28.1Cu共晶合金凝固组织的影响
2024年
为了揭示在共晶相中具有不同固溶度的Sn和Ni元素对过冷共晶凝固组织的影响和作用机理,使用熔融玻璃净化和循环过热相结合的方法制备了过冷Ag-28.1Cu-xM(x=0%0.5%、1%,质量分数;M=Sn,Ni)共晶合金试样,分析了第3组元Sn和Ni对过冷Ag-Cu共晶合金凝固组织的影响。结果表明添加Sn元素不会改变宏观组织的分区特征,微观组织中出现反常共晶增多和粗化的现象,并具有随机的取向分布。凝固过程中Sn会形成垂直于固-液界面的浓度梯度,造成胞状界面失稳形成树枝状,但仍能够维持耦合共晶生长。而添加Ni元素会使宏观组织的分区特征消失,微观组织中则出现了单相枝晶,且表现出单一取向分布,原因是第3组元Ni平行于固-液界面扩散,使共晶合金生长方式从耦合生长转变为离异生长。
李宏金青林林水根
关键词:深过冷凝固组织EBSD
深过冷Co-B合金外源触发形核行为及组织研究
2024年
合金的形核机制及其控制方法是凝固理论的重要研究领域之一。触发形核方式可自主控制形核过冷度,对研究形核理论及组织演变具有极大帮助。但熔体具有亚稳性,在实际处理时,外源性杂质引入熔体后将作为触发形核异质点,改变过冷度ΔT和再辉度ΔT_(R),显著影响后续凝固行为,该种现象更为普遍。本文通过玻璃包覆结合循环过热过冷方式,获得两类不同形核模式凝固的Co_(80)B_(20)合金。自发形核模式下,ΔT及ΔT_(R)分别为280和199 K,组织组成为Co/Co_(3)B细小规则共晶。外源性触发形核模式下,ΔT和ΔT_(R)降至122和21 K。组织转变为初生Co枝晶及晶间的Co_(23)B_(6)基体相。外源性杂质将降低f(θ),减小临界形核半径,降低ΔT,使得组织更加不均匀,在实际的熔体处理过程中应予以控制。
张瑶清卜凡卜凡程宇豪贺一轩王军王军
关键词:凝固行为微观结构
BTP500钢板过冷奥氏体连续冷却转变行为
2024年
对高性能稀土微合金化BTP500钢板奥氏体连续冷却相变行为进行研究,明确所设计的BTP500钢板在不同冷却速率下获得的相种类和获得马氏体组织的具体条件,再根据结果进行小规模工业化试制。结果表明:不同冷速下稀土微合金化BTP500钢板在连续冷却过程中分别发生了铁素体+珠光体的转变(A→F+P)、贝氏体转变(A→B)和马氏体转变(A→M)。由CCT曲线确定BTP500钢板得到完全马氏体的临界冷速为7℃/s。采用780℃淬火+210℃回火工艺小规模工业化试制生产的BTP500钢板显微组织为马氏体,力学性能满足技术协议要求且综合性能优良。
董丽丽崔成波袁晓鸣刘泽田
关键词:显微组织马氏体CCT曲线
强磁场下过冷Cu-Co/Cu-Co-Fe合金的凝固组织和摩擦性能
2024年
少数相均匀分布的难混溶合金是应用于制造电接触器件材料以及耐磨汽车部件的潜在替代品,理解难混溶合金微观组织的演化及其与磨损行为的相互关系对其工业应用十分重要。由于二元Cu-Co和三元Cu-Co-Fe难混溶合金易于发生液相分离,采用传统的铸造方法难以获得均匀的微观组织。本工作在强磁场下调控难混溶合金的微观组织,进而研究合金组织演化行为对摩擦性能的影响。实验结果表明,无磁场小过冷度下,Cu_(50)Co_(50)和Cu_(52)Co_(24)Fe_(24)难混溶合金的微观组织为枝晶形貌,大过冷度下Cu_(50)Co_(50)合金的微观组织为标准的核-壳结构,Cu_(52)Fe_(24)Co_(24)合金则为偏心的核-壳结构。随着磁场的施加,Cu_(50)Co_(50)和Cu_(52)Co_(24)Fe_(24)合金中的第二相均沿磁场方向被拉长,垂直磁场方向上合金中第二相尺寸均显著减小,但Cu_(52)Co_(24)Fe_(24)合金的微观组织分布更为均匀。无论是否施加强磁场,Cu_(50)Co_(50)和Cu_(52)Co_(24)Fe_(24)合金中具有大过冷度的试样均具有较好的耐磨性能。Cu_(50)Co_(50)和Cu_(52)Co_(24)Fe_(24)难混溶合金在磨损实验中均存在磨粒磨损和粘着磨损机制,其特征是材料脱落产生的粗糙表面以及滑动方向上存在的平行划痕。此外,Cu_(52)Fe_(24)Co_(24)合金较高的硬度以及磁场下微观组织的相对均匀分布,使其具有较好的耐磨性能。
魏晨王军闫育洁范嘉懿李金山
关键词:难混溶合金凝固强磁场
Microstructure Transformation of Undercooled Cu-Ni-Co Alloy and Refinement Mechanism under High Undercooling
2023年
The molten Cu60Ni35Co5 ternary alloy was undercooled by fluxing method and solidified by natural cooling method.The microstructure of all undercooled samples were analyzed.It is found that the rapidly solidified Cu60Ni35Co5 alloy has undergone two grain refinement phenomena within the undercooling range,and its microstructure and morphology change with the undercooling through the transformation process of“coarse dendrite-equiaxed dendrite-oriented fine dendrite-equiaxed crystal”.The refined structure with the maximum undercooling?T of 253 K was selected for electron backscatter diffraction(EBSD)and transmission electron microscopy(TEM)tests.EBSD results show that the refined structure contains a high proportion of large angle grain boundaries(LAGBs),a large number of randomly oriented grains,and high proportion of twins,while TEM results show that the dislocation density in most areas is relatively low.The above characteristics confirm that the solidification structure is refined due to recrystallization behavior under high undercooling.
AN HongenWilley Liew Yun HsienNancy Julius SiambunBih-Li ChuabYANG MengmengYAN WeiLI Hongtao
关键词:MICROSTRUCTURERECRYSTALLIZATION
Effect of Co on Microstructure Transformation and Refinement Mechanism of Undercooled Cu-Ni Alloy
2023年
Both Cu60Ni38Co2 and Cu60Ni40 alloy were naturally cooled after rapid solidification from the liquid phase.The transformation law of the microstructure characteristics of the rapidly solidified alloy with the change of undercooling(DT)was systematically studied.It was found that the two alloys experienced the same transformation process.The refinement structures under different undercoolings were characterized by electron backscatter diffraction(EBSD).The experimental results show that the characteristics of the refinement structure of the two alloys with low undercooling are the same,whereas,the characteristics of the refinement structure with high undercooling are opposite.The transmission electron microscope(TEM)results of Cu60Ni38Co2 alloy show that the dislocation network density of low undercooled microstructure is lower than that of high undercooled microstructure.By combining EBSD and TEM,it can be confirmed that the dendrite remelting fracture is the reason for the refinement of the low undercooled structure,while the high undercooled structure is refined due to recrystallization.
Willey Liew Yun Hsien安洪恩Nancy Julius SiambunBih-Lii Chuab
关键词:UNDERCOOLINGMICROSTRUCTURE
Microstructure Transformation and Refinement Mechanism of Undercooled Cu-Ni-Co Alloy Based on Simulation of Critical Cutting Speed in Ultrasonic Machining
2023年
Both Cu60Ni38Co2 and Cu60Ni40 alloy were naturally cooled after rapid solidification from the liquid phase.The transformation law of the microstructure characteristics of the rapidly solidified alloy with the change of undercooling(ΔT)was systematically studied.It is found that the two alloys experience the same transformation process.The refinement structures under different undercoolings were characterized by electron backscatter diffraction(EBSD).The results show that the characteristics of the refinement structure of the two alloys with low undercooling are the same,but the characteristics of the refinement structure with high undercooling are opposite.The transmission electron microscopy(TEM)results of Cu60Ni38Co2 alloy show that the dislocation network density of low undercooled microstructure is lower than that of high undercooled microstructure.By combining EBSD and TEM,it could be confirmed that the dendrite remelting fracture is the reason for the refinement of the low undercooled structure,while the high undercooled structure is refined due to recrystallization.On this basis,in the processing of copper base alloys,there will be serious work hardening phenomenon and machining hard problem of consciousness problems caused by excessive cutting force.A twodimensional orthogonal turning finite element model was established using ABAQUS software to analyze the changes in cutting speed and tool trajectory in copper based alloy ultrasonic elliptical vibration turning.The results show that in copper based alloy ultrasonic elliptical vibration turning,cutting process parameters have a significant impact on cutting force.Choosing reasonable process parameters can effectively reduce cutting force and improve machining quality.
HE XiaoyuHOU KaiXU XuguangTANG ChengZHU Xijing
关键词:UNDERCOOLING
Ag-Cu/Co-Sn共晶合金深过冷快速凝固反常共晶的形成研究
2023年
利用熔融玻璃净化循环过热的方法进行了Ag-Cu/Co-Sn共晶合金的深过冷快速凝固实验,并系统研究了熔体过冷度和微量Nb添加对反常共晶形成的影响。结果表明,快速凝固过程中共晶枝晶内部首先重熔形成反常共晶,随着过冷度的增大,共晶相的形貌从蠕虫状转变为球形颗粒,被重熔形成的固相颗粒将作为剩余液相形核生长的基底,Ag-Cu共晶中共晶两相形核具有非互惠性。Co-Sn共晶合金中添加Nb元素后样品内部反常共晶形成的临界过冷度由23 K降低至15 K,而表面组织中过冷度从45 K降低至30 K。由于样品表面与坩埚壁接触有利于结晶潜热消散,反常共晶形成的临界过冷度较高。Ag-Cu共晶合金温度再辉曲线上慢速凝固阶段持续的时间较Co-Sn共晶合金要长。
康纪龙赵敏刘晨曦
关键词:共晶合金微量元素

相关作者

刘峰
作品数:102被引量:256H指数:8
供职机构:西北工业大学材料学院凝固技术国家重点实验室
研究主题:深过冷 过冷 非平衡凝固 动力学 凝固
王海丰
作品数:125被引量:34H指数:3
供职机构:西北工业大学
研究主题:高熵合金 合金 耐磨 合金铸锭 耐磨性
翟海民
作品数:2被引量:2H指数:1
供职机构:西北工业大学材料学院凝固技术国家重点实验室
研究主题:MECHANICAL_PROPERTY COMPOSITE BULK_METALLIC_GLASS ADDITION UNDERCOOLED
胡锐
作品数:335被引量:1,122H指数:16
供职机构:西北工业大学
研究主题:高温合金 合金 定向凝固 NI-CR 显微组织
张可人
作品数:7被引量:4H指数:1
供职机构:西北工业大学
研究主题:深过冷 液相线 高超声速飞行器 过冷度 多元合金