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国家自然科学基金(51001054)

作品数:6 被引量:14H指数:3
相关作者:王宏明李桂荣更多>>
相关机构:江苏大学江苏共昌轧辊有限公司更多>>
发文基金:国家自然科学基金中国博士后科学基金江苏省博士后科研资助计划项目更多>>
相关领域:一般工业技术金属学及工艺理学更多>>

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静磁场处理对7055铝合金显微组织和性能的影响(英文)被引量:4
2019年
研究了不同静磁场强度对7055铝合金显微组织和力学性能的影响,其中,位错特征、相变、织构、拉伸性能、断口形貌和残余应力都用先进检测技术进行了分析。结果表明:试样中的位错密度随着磁感应强度B的增加而呈上升趋势,位错由原来的低能胞状向网络状转变;此外,磁场也促进了晶粒的细化和η(MgZn_2)向η'的转变,这有益于材料综合性能的提高。当B=3 T时,磁场弱化了晶粒择优取向且重新调整了晶粒结构,此时,材料获得最优性能,延伸率,残余应力,抗拉强度分别为10.5%,38 MPa,,555 MPa。断口形貌也通过扫描电镜进行了分析,其特征与材料塑性增强一致。
李桂荣程江峰王宏明李超群
关键词:7055铝合金显微组织力学性能静磁场
Influence of extrusion methods on microstructure of Mg-Al-Zn alloy
The correlation between the deformation behavior and the microstructure of AZ31 magnesium alloy processed by a...
Yun CaiGuirong LiXueting YuanHongming WangYutao ZhaoJunjie Wang
电磁场下离心复合制备高速钢轧辊和力学性能
2013年
本文提出在离心铸造过程中施加脉冲电磁场,目的在于改善传统离心铸造容易造成元素和碳化物偏析的问题。高速钢中主要元素的设计含量为:1.5%~2.5%C,4.0~6.0%V,4.0%~6.0%W,1.5%~4.5%Mo,2.0%~4.0%Cr和0.04%~0.18%Zr。对脉冲电磁场主要参数进行调控和优化,脉冲磁场频率分别设定为1、2、4、6、8、10Hz六个水平,对应铸型中心磁场的峰值强度范围为0.2~5T,经淬火和回火热处理后进行轧辊中元素含量和力学性能测试,并用方差来表征轧辊工作层径向方向元素含量波动及偏析情况。研究结果显示,在离心铸造过程中施加电磁场后,能起到抑制合金元素和碳化物偏析的作用,与未加磁场相比,硬度、抗拉强度、抗弯强度和冲击韧性等常规力学性能约提高10%。
李桂荣王宏明申国庆邵黎军步小平许晓静
关键词:高速钢轧辊离心铸造脉冲磁场力学性能
Tensile properties and microstructure of 2024 aluminum alloy subjected to the high magnetic field and external stress被引量:3
2016年
In order to explore the dependence of plasticity of metallic material on a high magnetic held,the effects of the different magnetic induction intensities(H = 0 T,0.5 T,1 T,3 T,and 5 T) and pulses number(N = 0,10,20,30,40,and 50) on tensile strength(σ;) and elongation(δ) of 2024 aluminum alloy are investigated in the synchronous presences of a high magnetic held and external stress.The results show that the magnetic held exerts apparent and positive effects on the tensile properties of the alloy.Especially under the optimized condition of H;=1 T and N;=30,the σ;and 8 are 410 MPa and 17% that are enhanced by 9.3% and 30.8% respectively in comparison to those of the untreated sample.The synchronous increases of tensile properties are attributed to the magneto-plasticity effect on a quantum scale.That is,the magnetic held will accelerate the state conversion of radical pair generated between the dislocation and obstacles from singlet to the triplet state.The bonding energy between them is meanwhile lowered and the moving flexibility of dislocations will be enhanced.At H;= 1 T and N;= 30,the dislocation density is enhanced by 1.28 times.The relevant minimum grain size is 266.1 nm,which is reduced by 35.2%.The grain rehning is attributed to the dislocation accumulation and subsequent dynamic recrystallization.The(211) and(220) peak intensities are weakened.It is deduced that together with the recrystallization,the hne grains will transfer towards the slip plane and contribute to the slipping deformation.
李桂荣薛飞王宏明郑瑞朱弋储强泽程江峰
关键词:ELONGATION
Microstructure and properties of Al_3Zr/2024Al in situ composites after forging被引量:3
2016年
To research the influencing rule of severe plastic deformation on Al matrix in situ composites, 10wt%Al3Zr/2024Al in situ particle-reinforced composite was prepared by direct melt reaction (DMR), and then, the composite was hot-forged by one direction with 90% plastic deformation. Then, the microstructure of the forging state composite was observed, and the change law of mechanical properties and friction performances after and before plastic deforming was compared. The results indicate that the Al3Zr-reinforced particle rotates and breaks into smaller size of 10-20μm with the matrix flow; in addition, these smaller particles distribute more orderly in orientation and dispersedly. The 2024 matrix grain changes from as-cast tissue to fibrous tissue with length of 100 μm along the forging direction. Some mechanical properties of composites hot-forged by one direction with 90 % plastic deformation are improved much obviously. For example, the tensile strength is improved by 39.75 %, reaching 225 MPa, and the hardness is improved by 35.84 %, reaching HBW 76.83. Besides, the wear rate reduces, wear depth and area decline, and the wear-resisting property is improved after hot forging.
Lei JiaoYu-Tao ZhaoJian-Chao ChenLong Chen
关键词:FORGINGMICROSTRUCTURE
静磁场深冷处理对TC4钛合金性能和组织的影响被引量:4
2019年
采用扫描电镜(SEM)、电子背散射衍射(EBSD)和X射线衍射(XRD)检测技术研究了深冷处理(DCT)和静磁场深冷处理(MDCT)条件下TC4钛合金的力学性能和组织的变化。结果表明:在处理时间为12 h的时候DCT和MDCT试样的拉伸性能均为最优,其中DCT12的抗拉强度和延伸率较空白样分别提高了2.6%和8.1%, MDCT12的抗拉强度和延伸率较空白样分别提高了3.00%和11.29%。深冷处理和静磁场深冷处理在TC4钛合金的改性方面都具有一定的效果,且静磁场深冷处理对拉伸性能的提升效果要强于单独的深冷处理。深冷处理使晶粒从(110)转向(100)和(101)方向。施加静磁场后,磁场增加了晶粒向(100)和(101)方向转动的阻力,(002)晶面表现出择优取向。钛合金晶体结构发生变化的原因是晶粒由于冷缩力和磁性附加驱动力的作用。此外,通过EBSD的检测,发现深冷和静磁场深冷处理都促进了钛合金中α→β的转变,且深冷处理弱化了{0001}方向的织构,而静磁场深冷处理强化了该方向的织构。
王宏明费爱庚李桂荣杨广林
关键词:TC4钛合金力学性能晶体结构
Influence of high pulsed magnetic field on tensile properties of TC4 alloy被引量:1
2017年
The tensile tests of TC4 alloy are carried on electronic universal testing machine in the synchronous presence of high pulsed magnetic field(HPMF) parallel to the axial direction.The effects of magnetic induction intensity(5 = 0,1 T,3 T,and 5 T) on elongation(5) of TC4 alloy are investigated.At 3 T,the elongation arrives at a maximum value of12.41%,which is enhanced by 23.98%in comparison with that of initial sample.The elongation curve shows that 3 T is a critical point.With B increasing,the volume fraction of α phase is enhanced from 49.7%to 55.9%,which demonstrates that the HPMF can induce the phase transformation from β phase to α phase.Furthermore,the magnetic field not only promotes the orientation preference of crystal plane along the slipping direction,but also has the effect on increasing the dislocation density.The dislocation density increases with the enhancement of magnetic induction intensity and the 3-T parameter is ascertained as a turning point from increase to decrease tendency.When B is larger than 3 T,the dislocation density decreases with the enhancement of B.The influence of magnetic field is analyzed on the basis of magneto-plasticity effect.The high magnetic field will enhance the dislocation strain energy and promote the state conversion of radical pair generated between the dislocation and obstacles from singlet into triplet state,in which is analyzed the phenomenon that the dislocation density is at an utmost with B = 3 T.Finally,the inevitability of optimized 3-T parameter is further discussed on a quantum scale.
李桂荣王芳芳王宏明郑瑞薛飞程江峰
关键词:MICROSTRUCTURE
Dislocation Character and Evolution Mechanism of Particles Reinforced Aluminum Matrix Composites Impacted by Pulsed Electromagnetic Field
Under the condition of different magnetic induced intensity as1.5T, 2.0T and2.5T, AlTiZr particles reinforced ...
Yuan Xue-tingLi Gui-rongWang Hong-mingCai YunZhao Yu-taoZhang Xun-yin
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