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1.
通过OM、SEM、TEM及EDS分析,研究MgGdYNdZr镁合金中β相的形貌、成分和晶体学特征,分析连续冷却与等温时效两种方式对β相析出行为的影响规律。结果表明,合金在400°C过时效阶段的沉淀相为(1100)面上的板状和块状β相。β相以(1100)为惯习面,与基体的取向关系为(211)//(0110),[011]//[0001]。根据EDS统计分析确定β相的成分为Mg5(Y0.4Gd0.4Nd0.2),与Mg5Gd同型。在连续冷却方式中,相变驱动力较小,晶界等缺陷处结构紊乱,易于松弛、应变,因而优先在晶界附近形核。  相似文献   

2.
Zhan  Liang  Le  Yi-zhi  Feng  Zhi-jun  Lou  Yan-chun  Ruan  Ming  Li  Hua-wen 《中国铸造》2020,17(3):212-218
The Mg-xGd-2.6Nd-0.5Zn-0.5Zr(x=0,3.0,4.5 and 6.0,wt.%) alloys were prepared by gravity casting and then T6 treatment.Microstructures of the alloy were observed using optical microscopy and scanning electron microscopy.Results show that the as-cast alloys contained network Mg_3Gd phases,blocky and needle-like Mg_(12)(Nd,Gd) phases.The a(Zr) particle inclusions in the a(Mg) matrix are also observed.Content of the secondary phases decreases as Gd content increases.Tensile test results show that the tensile and yield strengths of all the alloys increase as Gd content increases under the as-cast and T6 conditions,but the elongation exhibits the opposite trend.The blocky Mg_(12)(Nd,Gd) phases appear and act as crack initiator and deteriorates the experimental alloys' ductility with the increase of Gd content,especially as Gd content increases to 6.0 wt.%,so the Mg-6.0Gd-2.6Nd-0.5Zn-0.5Zr alloy has the lowest elongation value compared to the other alloys studied.After T6 treatment,the Mg-4.5Gd-2.6Nd-0.5Zn-0.5Zr alloy exhibits the optimal mechanical properties both at room temperature and 250℃.  相似文献   

3.
为获得高强耐蚀的镁稀土合金,采用扫描电镜、X射线衍射分析、腐蚀失重法、电化学阻抗和动电位极化等研究了元素Ce对Mg-9Gd-4Y-1Nd-0.6Zr合金微观组织和耐蚀性的影响。结果表明添加0.5% Ce后合金耐腐蚀性能较好,合金的腐蚀电流密度为不含铈合金的55.6%,腐蚀电位正移约141 mV。适量Ce元素的加入导致其他稀土元素在晶界处富集并呈网状分布,使第二相粒子尺寸变小,体积分数变大。  相似文献   

4.
采用扫描电子显微镜、电子背散射衍射、透射电子显微镜、高角度环形暗场-扫描透射,分析了Mg-7Gd-5Y-1Nd-xZn-0.5Zr(x=0,1,2,质量分数,%)挤压态合金微观组织结构和力学性能,旨在探索Zn对于合金性能影响的微观机制.结果表明:在Mg-7Gd-5Y-1Nd-0.5Zr合金中添加Zn元素,不仅形成LPS...  相似文献   

5.
变形态Mg-Nd合金的组织转变和拉伸性能特征   总被引:4,自引:0,他引:4  
研究不同变形条件对Mg-2.2Nd-0.5Zn-0.5Zr合金室温拉伸性能和组织的影响.经过不同条件的热挤压变形后,该合金的强度和延性都有不同程度的增加,屈强比从0.58提高到0.87左右.固定变形温度时,强度随变形速率增大而降低,延性反之.固定变形速率时,升高变形温度则强度降低,延性增加.弥散于晶界的Mg9Nd化合物细化了晶粒.变形态Mg-Nd合金的高温超塑拉伸研究发现,375℃是该合金的最佳超塑变形温度,应变速率在1×10-2s-1时,延伸率达到329%;当变形速率提高到2×10-2s-1时,该合金的延伸率仍可达到213%.分析不同真应变下的组织发现,在变形初期发生动态再结晶,晶粒得到破碎而变得细小,随着变形程度的增加,晶粒长大程度较小.在变形后的断口形貌中发现,Mg-Nd合金的超塑变形机制为晶界滑移控制下的孔洞连接协调机制.  相似文献   

6.
在5%NaCl水溶液中通过浸泡和电化学测试研究铸态与挤压态Mg-5Y-7Gd-1Nd-0.5Zr镁合金的腐蚀性能。铸态和挤压态Mg-5Y-7Gd-1Nd-0.5Zr镁合金的平均晶粒尺寸分别为100μm和15μm。在腐蚀初期,铸态合金的腐蚀形貌为点蚀和少量丝状腐蚀,挤压态合金的腐蚀形貌为点蚀。挤压态合金的腐蚀速率大于铸态合金的腐蚀速率。包含稀土的第二相在合金中作为阴极,改善了合金的腐蚀性能。铸态与挤压态合金的腐蚀电位分别为-1.658V和-1.591V。探讨了铸态与挤压态合金腐蚀性能不同的原因。  相似文献   

7.
研究热处理工艺对砂型铸造Mg-4Y-2Nd-1Gd-0.4Zr镁合金显微组织和力学性能的影响,分析不同热处理条件下合金的断裂机制,获得最佳热处理工艺。结果表明:Mg–4Y–2Nd–1Gd–0.4Zr合金的最佳T4和T6热处理工艺分别为525°C,8 h和(525°C,8 h)+(225°C,16 h)。在最佳T6热处理条件下,Mg-4Y-2Nd-1Gd-0.4Zr合金的硬度、屈服强度、抗拉强度和伸长率分别为HV91、180 MPa、297 MPa和7.4%。此外,不同状态的Mg-4Y-2Nd-1Gd-0.4Zr镁合金也显示出不同的拉伸断裂方式。  相似文献   

8.
对Mg-Zn-Y-Nd-Zr合金的显微组织和力学性能进行了研究。结果表明,Nd元素的加入部分取代了W相(Mg3Zn3Y2)中的Y元素,形成了新的第二相Mg3Zn3(Y, Nd)2。热挤压后观察到由细小的等轴再结晶晶粒和粗大的细长未再结晶晶粒组成的典型双峰结构。Nd元素的加入促进了热挤压过程中的动态再结晶,随着Nd含量的增加,动态再结晶率增加,挤压态合金的整体织构强度减弱。Nd的加入细化了晶粒并改善了合金的力学性能。添加0.5%(质量分数)Nd时,挤压态合金表现出高强度和高塑性的良好结合:屈服强度为362 MPa,极限抗拉伸强度为404 MPa,延伸率为10.2%。时效处理后合金的抗拉伸强度进一步提高,峰值时效极限抗拉伸强度可达421 MPa。合金的高强度主要归功于超细再结晶晶粒和析出强化。  相似文献   

9.
研究了新型铸造镁合金Mg-3.0Nd-1.5Gd-0.25Zn-0.45Zr的组织和力学性能。研究表明,试验合金的铸态组织为近等轴晶,主要由α-Mg基体和晶界处的(α-Mg+Mg12Nd)共晶组成。试验确定了固溶试验合金的较优时效处理工艺。试验合金经T6热处理后,室温屈服强度较ZM6合金显著提高。同时,试验合金的高温瞬时抗拉强度、屈服强度以及抗蠕变性能均显著优于ZM6合金。  相似文献   

10.
设计了新型Mg-6Gd-3Y-2Zn-0.5Zr镁合金,并用光学显微镜、扫描电镜及拉伸试验机对合金铸态、均匀化态及挤压态的显微组织特征和力学性能进行了研究。结果表明,铸态Mg-6Gd-3Y-2Zn-0.5Zr合金组织主要由α-Mg基体和沿晶界分布的块状长周期堆垛有序结构相组成,均匀化处理(450℃×16h)促使细小层片状的长周期堆垛有序结构相由晶界向晶内生长。挤压态Mg-6Gd-3Y-2Zn-0.5Zr合金在200℃下时效处理,无明显时效硬化现象,但挤压态合金具有优良的强韧性能,室温抗拉强度、屈服强度和伸长率分别为335MPa、276MPa和17%。  相似文献   

11.
采用熔炼铸造法制备了添加0~2%Zn(质量分数)的Mg-10Gd-3Sm-0.5Zr合金,通过X射线衍射、扫描电镜和拉伸性能测试等分析了Zn对铸态Mg-10Gd-3Sm-0.5Zr合金组织与性能的影响。结果表明:铸态Mg-10Gd-3Sm-0.5Zr合金由粗大枝晶α-Mg基体和晶界处半连续分布稀土相Mg41(Sm,Gd)5和Mg5Gd(Sm)组成,加入Zn元素后,在合金中产生了新相(Mg,Zn)3(Sm,Gd)1;铸态Mg-10Gd-3Sm-xZn-0.5Zr合金室温拉伸力学性能随着Zn元素含量的增加先升高后降低,当Zn的添加量为1%时,综合力学性能最好,其抗拉强度、屈服强度、伸长率分别为215 MPa、173 MPa和5.5%;合金的断裂方式主要为脆性断裂,加入Zn元素后有向韧性断裂转变的趋势。  相似文献   

12.
Microstructure and mechanical properties of Mg-10Gd-3.8Y-xZn-0.5Zr (x?=?0, 1, 3?wt.%) alloys during extrusion and following isothermal aging at 200?°C were investigated using digital microhardness testing, mechanical testing, optical microscopy (OM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and x-ray diffraction (XRD). The results showed that Zn can refine grains of the alloy, and improved mechanical properties of the as-extruded alloys. In T5 (peak-aging) condition, the average grains of the alloy without Zn addition were about 20.10???m; the average grains of the alloys with 1?wt.% Zn addition and 3?wt.% Zn addition were about 15.35 and 10.04???m, respectively. For the alloy with 1?wt.% Zn addition in as-extruded and peak-aged states, the values of tensile strength reached 345 and 429?MPa, yield strength reached 260 and 342?MPa, as well as ductility rate reached 10.8 and 5.7%, respectively, exhibiting superior mechanical properties.  相似文献   

13.
The effect of Nd addition and the in?uence of extrusion processes on the microstructure and mechanical properties of Mg–6Zn–0.5Zr(ZK60) and Mg–6Zn–1.5Nd–0.5Zr(ZKNd602) alloys were investigated. Nd element can obviously re?ne the microstructure of both as-cast and asextruded Mg–Zn–Nd–Zr alloy. All of the extruded alloys exhibit a bimodal grain structure composed of equiaxed?ne recrystallized(DRXed) grains and elongated coarse un DRXed grains. It is necessary to achieve high strength,particularly the yield strength, for ZKNd602 alloy, when it is extruded with a lower extrusion temperature, a suitable extrusion ratio and a relatively lower extrusion ram speed. In this study, the ultimate tensile strength(UTS),yield strength(YS) and elongation(El) of the extruded ZKNd602 alloy were 421 MPa, 402 MPa and 6.7 %,respectively, with extrusion temperature of 290 °C, extrusion ratio of 18:1 and a ram speed of approximate0.4 mm·s~(-1). Meanwhile, the extrusion process has obvious effects on the room-temperature properties but weak effects on the high-temperature properties.  相似文献   

14.
Mg alloys containing high rare earth (RE) elements are hard to be rolled due to their low ductility and high strength at low temperatures. Therefore, rolling at high temperatures is necessary for these alloys. In this work, a Mg-14Gd-0.5Zr (wt%) alloy was rolled one pass with 40% reduction at high temperatures over 450 °C. The effects of rolling temperature on the microstructure and dynamic recrystallization behavior were analyzed in detail by the electron backscattered diffraction (EBSD) method. The results revealed that the alloy shows good rollability at high temperature due to the activity of non-basal dislocations and twins. However, dynamic recrystallization is difficult to take place because of the easy activation of multi-slip system and thus more accumulated strain energy. However, Gd segregation was observed at the grain boundary and it is inferred that the segregation can partially enhance the dynamic recrystallization ratio. Statically recrystallized grains with large size took place after short-term inter-pass annealing treatment ranging from 450 °C to 500 °C, and formed basal texture. The result suggests that the formation of basal texture during short-term annealing treatment was attributed to the growth of dynamic recrystallized grains caused by weakened Gd segregation.  相似文献   

15.
研究多循环低温交变(液氮浸泡处理)和拉伸温度对挤压态Mg10Gd3Y0.5Zr镁合金的微观组织、力学性能以及断裂机制的影响。结果表明,Mg10Gd3Y0.5Zr合金经10d液氮浸泡或10个周期高低温交变循环后,合金室温力学性能基本不变;而经过20个周期高低温循环后,合金的室温抗拉强度由398MPa升高到417MPa。在196°C下拉伸时,挤压态Mg10Gd3Y0.5Zr镁合金的屈服强度和抗拉强度均大幅度提高,分别为349MPa和506MPa,分别增长了18%和27%。合金室温断裂机制为穿晶解理断裂,而低温条件下为韧性断裂和解理断裂并存的混合断裂机制。  相似文献   

16.
采用金相分析、SEM、硬度试验和拉伸试验等方法分析和测试砂型铸造 Mg-10Gd-3Y-0.5Zr 镁合金在T6态(固溶后空冷然后时效)下的显微组织和室温力学性能,讨论该合金的断裂机理。结果表明,砂铸Mg-10Gd-3Y-0.5Zr合金在225℃和250℃时效下的最优T6热处理工艺分别为(525℃,12 h+225℃,14 h)和(525℃,12 h+250℃,12 h)。峰时效下T6态Mg-10Gd-3Y-0.5Zr合金主要由α-Mg+γ+β′相组成,2种峰时效热处理工艺下合金的抗拉强度、屈服强度和伸长率分别为339.9 MPa、251.6 MPa、1.5%及359.6 MPa、247.3 MPa、2.7%。在不同热处理工艺下Mg-10Gd-3Y-0.5Zr合金断裂的类型不同,峰时效态合金的断裂方式为穿晶准解理断裂。  相似文献   

17.
通过调整元素Y的含量,制备了多种Mg-Y-RE-Zr镁合金,对合金不同状态下微观组织和力学性能进行了分析和测试.结果表明,不同合金晶界上的化合物以Mg24Y5,Mg41Nd5,Mg5Gd等为主,随着元素Y含量的增加,晶界上的化合物数量和尺寸增加,晶粒平均尺寸变化较小,保持在50~60μm;经过均匀化处理(535℃×24 h)后,合金中化合物的分布由铸态时连续的岛状分布变为弥散细小的颗粒状分布,Mg5Gd相基本上全部分解并溶入基体中,合金中弥散分布的点状颗粒相主要为Mg24Y5和Mg41Nd5相;经过挤压变形后,合金的组织得到细化,平均晶粒尺寸在20μm左右,合金的抗拉强度、屈服强度和伸长率都有大幅度的提高,其中Mg-5Gd-5Y-3Nd.0.5Zr合金表现出了较好的综合力学性能;在设计的合金中,元素Y的含量(质量分数)应控制在5%以下.  相似文献   

18.
The microstructural evolution and mechanical properties of Mg-5Y-5Gd-xNd-0.5Zr magnesium alloys at different states were studied.The results reveal that island compounds at the grain boundaries of the as-cast alloys mainly were Mg24Y5,Mg41Nd5,and Mg5Gd phases.After homogenization at 808 K for 24 h,the distribution of the island compounds became discrete and Mg5Gd phases mostly decomposed and dissolved.With hot extrusion,the grain size was refined to about 20 μm on average,and both the strength and elongatio...  相似文献   

19.
通过在Mg-10Gd-2Y-0.5Zr合金中添加Zn,采用SEM、XRD及万能拉伸试验机,研究了Zn添加对其铸态组织和力学性能的影响。结果表明,Mg-10Gd-2Y-0.5Zr合金的铸态组织主要由α-Mg、Mg5(Gd,Y)和Mg24(Y,Gd)5相组成,而添加质量分数为0.5%~1.5%的Zn后,合金的铸态组织主要由α-Mg、Mg5(Gd,Y,Zn)、Mg24(Y,Gd,Zn)5及Mg12(Gd,Y)Zn相组成。添加0.5%的Zn后,合金的室温力学性能明显提高,当Zn含量高于1.0%后,镁合金的室温力学性能开始逐步降低。当Zn含量为0.5%时,合金具有较佳的综合力学性能,其抗拉强度、屈服强度和伸长率分别为197 MPa、160 MPa和4.37%。Zn对Mg-10Gd-2Y-0.5Zr合金铸态力学性能的影响与其铸态组织中Mg5(Gd,Y,Zn)、Mg24(Y,Gd,Zn)5和Mg12(Gd,Y)Zn第二相及其数量有关。  相似文献   

20.
The effects of second phases on the fracture behavior of Mg-10Gd-3Y-0.6Zr alloy were investigated. The results show that the fracture mode can be generally described as ductile transgranular fracture in as-extruded condition and intergranular fracture in peak-aged condition. In as-extruded condition, the ductile transgranular fracture occurs by the formation and transgranular propagation of the microcrack from the broken primary phases. However, as the collaboration effects of precipitates inside grains and on the grain boundaries have the tendency to reduce the cohesive strength of the grain boundary, and make the grain boundaries the favorable path for crack propagation, the intergranular fracture occurs in peak-aged condition.  相似文献   

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