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1.
AZ91D镁合金的触变成形及其磨损性能的研究   总被引:6,自引:0,他引:6  
研究了加热时间和模具预热温度对AZ91D镁合金触变成形性、组织和磨损性能的影响。结果表明,适合AZ91D镁合金触变成形的最佳加热时间为90min(在585℃),模具预热温度为350℃;在此工艺条件下,初生相颗粒较圆整、粒度较小,组织最致密,相应地,其耐磨性也最好;与金属型铸造相比,明显地提高了耐磨性。  相似文献   

2.
消失模铸造AZ91镁合金的研究   总被引:12,自引:1,他引:12  
研究了ZA91镁合金消失模铸造时铸件的厚度,位置和真空度对铸件质量,组织及力学性能的影响,真空度是决定铸件质量的一个关键的工艺因素,无真空时浇注铸件易产生浇不足缺陷,但真空度过大又会导致形成粘砂和气孔等缺陷,真空浇注射明显细化组织,但真空度进一步增大时细化效果野 不明显,铸件显微组织具有很大的壁厚效应,然 位置对组织的影响与是否采用抽真空措施有关,铸件壁厚较小时,铸件的力学性能总体较差,断裂源自Mg/Mg17Al12界面、且主要是以解决理形式的脆性断裂。  相似文献   

3.
AZ91D is a widely used magnesium alloy, but its application is generally limited to below 150 °C because of its weak creep resistance and tensile properties at elevated temperatures. In this study, high temperature (200 °C) tensile properties including yield strength and tensile strength of AZ91D are much improved by adding only about 1.0 wt% AlN nanoparticles in the AZ91D matrix through an innovative ultrasonic cavitation based dispersion of nanoparticles. The good ductility of AZ91D is also retained in AZ91D/1%AlN nanocomposites. It is found that ultrasonic cavitation based solidification processing is very effective to disperse AlN nanoparticles in AZ91D melts, which is difficult to obtain by traditional mechanical stirring methods. With a good combination of high temperature yield strength, tensile strength and ductility, AZ91D/1%AlN nanocomposite is promising as a new class of structural materials to be used at temperatures up to 200 °C or higher.  相似文献   

4.
To investigate the thixotropic fluidities, microstructures and mechanical properties of semi-solid AZ91D magnesium alloy during reheating, a self-made die set with channels of different sizes were used. The results show that critical forming forces and maximal forming forces could be obtained and related to the holding times in the semi-solid forming process. In the holding time of 0-2700 s, with increasing the holding time, maximal forming force decreased sharply and critical forming force decreased slowly. In the whole thixotropic flowing process, the filling-in was steady and the surface fineness was good. The forming force increased when the slurry changed the flowing direction or flowed from the big-diameter chamber to the small-diameter one. The tensile strength and elongation to failure of the sample after holding time for 2700 s, compared to as-cast sample, are increased by approximately 42.7% and 180%, respectively, and the fractured surfaces presented dimple-like pattern.  相似文献   

5.
为了掌握半固态触变模锻中工艺参数对成形零件的微观组织和力学性能的影响规律,借助拉伸试验机和金相显微镜对AZ91D镁合金托弹板的半固态触变模锻过程进行了研究.AZ91D镁合金半固态坯料分别采用传统SIMA法和新SIMA法制备.结果表明:压力对托弹板零件的充型过程有很大影响,当压力为500 kN,托弹板零件充型不满;当压力为2000 kN,托弹板零件充型良好.坯料加热温度和保温时间对托弹板零件的力学性能有一定影响.当压力为2000 kN,模具预热温度为450 ℃,坯料在545 ℃保温20 min时,新SIMA法制备的半固态坯半固态触变模锻成形的托弹板零件获得最佳的力学性能.与传统SIMA法相比,新SIMA法制备的半固态坯成形的托弹板零件的室温力学性能和100℃的高温力学性有很大提高.  相似文献   

6.
Selective laser melting technology is used to manufacture porous and solid AZ91D alloys. The effects of laser power and hatch spacing on the density, blowholes, microstructure and mechanical properties of AZ91D alloy are studied. The laser power and hatch spacing play a significant role in the density and blowholes of AZ91D specimens. The grains size of specimens increases from 1 μm–2 μm to 8 μm–10 μm from the bottom to the top in single molten pool. Compared with grain size of die‐casting alloy (30 μm), that of selective laser melted gets refinement. There is no significant change in microstructure in the bottom, middle and top of specimens. The micro‐hardness of AZ91D alloy, reaching up to 115.3 HV 0.1, is superior to that of die‐casting alloy (56 HV 0.1). The compression properties of porous and solid specimens reach the degree of die‐casting solid magnesium alloy. AZ91D alloy shows the potential in the application of medical biodegradable materials.  相似文献   

7.
AZ91D镁合金化学镀Ni-P/Ni-W-P双层镀层研究   总被引:1,自引:0,他引:1  
为了提高镁合金的耐磨耐蚀性,研究了一种镁合金直接化学镀Ni-P/Ni-W-P双层镀层的方法.采用扫描电镜(SEM)和X-射线衍分析射仪(XRD)分析了镀层的微观结构.对镀层进行了极化曲线分析,并进行了盐酸腐蚀试验和结合力试验.结果表明,该复合镀层组织致密无孔,具有较高的显微硬度和高耐蚀性.镀层硬度可达622HKV,试样在10%的HCl溶液中可保持近3h不腐蚀基体,对镁合金起到很好的保护作用.  相似文献   

8.
以锌系磷酸盐化学转化膜为研究体系,采用SEM,XRD分析方法及检测手段,研究乙醇胺(MEA)添加剂及其浓度对AZ91D镁合金锌系磷酸盐化学转化膜微观结构的影响.研究发现由于锌系磷化液中乙醇胺的添加:(1)改变了AZ91D镁合金锌系磷化膜晶体层的微观结构,促进了晶核的形成和晶粒细化,晶簇间隙中晶核的形成对晶体膜层完整性和致密度起着关键作用;(2)对(Zn_3(PO_4)_2·_4H_2O)晶体的取向有影响,有控制晶簇尺寸使磷化结晶组织更均匀的作用;(3)MEA在1.2g/L时磷化膜层平整致密、晶簇的尺寸均匀缺陷最少;(4)锌系磷化膜有两层结构:(Zn_3(PO_4)_2·_4H_2O)晶体外层和非晶态内层;(5)MEA的不同添加量对晶体层孔隙的影响有3种类型:表面浅孔(a型),晶簇间缝隙或微裂纹(b型),开放缺陷(c型).  相似文献   

9.
AZ91D镁合金超疏水膜层的制备及其表征   总被引:1,自引:0,他引:1  
采用简单易行的化学刻蚀方法,通过硝酸刻蚀、化学镀银和硬脂酸自组装改性处理,在AZ91D镁合金表面上成功制备出了超疏水膜层,进一步解释了该制备工艺的化学反应机理。利用扫描电子显微镜和视频光学接触角测量仪对AZ91D镁合金表面超疏水膜层的微观形貌和润湿性能进行了表征,利用能谱仪和光谱仪测定了膜层的表面化学组成。结果显示,釆用上述方法处理后的AZ91D镁合金表面呈现出良好的疏水性,水滴在试样表面的表观接触角为153°,滚动角为4°。  相似文献   

10.
电磁搅拌对半固态AZ91D镁合金组织的影响   总被引:11,自引:3,他引:11  
研究了电磁搅拌参数对连续冷却条件下AZ91D镁合金组织的影响.结果表明:当电磁搅拌的频率达到或高于50 Hz时,半固态AZ91D镁合金浆料或坯料组织中的球状初生固相越来越多,越来越圆整;在电磁搅拌频率为200 Hz和冷却速率较低的条件下,搅拌的功率越大,半固态AZ91D镁合金组织中的球状初生固相越多,晶粒也越细小.在电磁搅拌条件下,AZ91D镁合金熔体的激烈流动导致较为均匀的温度场和溶质场、更加剧烈的温度起伏,促进了半固态AZ91D镁合金球状组织的形成.半固态重熔加热使半固态AZ91D镁合金坯料初生固相的形态发生进一步的球化.  相似文献   

11.
The compression tests of semi-solid AZ91D Mg alloy have been conducted on a parallel-plate viscometer. The results are as follows. With increasing the compression temperature, the deformation rate or the strain rate of the specimens rises, but the compressive stress continuously decreases; the deformation strain is obviously linear with the compressive stress and independent on compression temperature under a given compression load. In the wake of the compression load being added, the compressive strain increases but the compressive stress decreases clearly; the deformation strain is obviously linear with the compressive stress under different compression load. The mathematical apparent viscosity model about the semi-solid compressed AZ91D Mg alloy has been established, i.e. ηapp=2004.2exp(15.61fs)γ1.317fs-1.3511.  相似文献   

12.
为了探索细晶Mg-Ce中间合金对AZ91D的变质效果,通过铜模喷铸法制备了细晶Mg-Ce中间合金,在此基础上研究了其对AZ91D组织和性能的影响。结果表明:经过铜模喷铸获得的细晶Mg-Ce中间合金中Mg_(12)Ce相的平均尺寸由50μm下降至10μm,相比于粗晶Mg-Ce中间合金,组织显著细化;细晶Mg-Ce中间合金的变质效果好于粗晶Mg-Ce中间合金,采用细晶MgCe中间合金变质的AZ91D相较于粗晶Mg-Ce中间合金变质的AZ91D,抗拉强度提高了5.23%,延伸率提高了15.14%,维氏硬度提高了6.92%,腐蚀速率降低了44.62%。因此,铜模喷铸是提高Mg-Ce中间合金变质效果的有效手段。  相似文献   

13.
AZ91D镁合金的晶粒细化   总被引:4,自引:0,他引:4  
AZ91D镁合金属于密排六方结构,它在塑性变形性能和力学性能上呈现较低的特征。采用晶粒细化的方法可在很大程度上改善镁合金的力学性能。选用MgCO3,La2(CO3)3及两者的混和物分别作为AZ91D镁合金的细化剂。实验结果表明,MgCO3和La2(CO3)3作为镁合金的细化剂各有特点,而用MgCO3与La2(CO3)3的混和物细化效果更好。  相似文献   

14.
AZ91D镁合金阳极氧化与热扩散渗铝复合膜层的研究   总被引:1,自引:0,他引:1  
将阳极氧化与热扩散相结合对AZ91D镁合金表面进行低温渗铝处理,利用扫描电镜、光学显微镜和X射线衍射仪对所得膜层的形貌、相结构及耐腐蚀性能进行了研究,并对复合膜层改善镁合金基体耐腐蚀性能的过程进行了分析.研究表明,该复合膜层是由MgO和金属间化合物Mg17Al12以及被γ相(Mg17Al12)包裹住的α-Mg晶粒共同组成;AZ91D镁合金表面的阳极氧化和热扩散渗铝复合膜层能显著提高镁合金基体材料的耐腐蚀性能.  相似文献   

15.
以磷酸盐化学转化膜为研究体系,采用动电位极化和交流阻抗分析方法及检测手段,研究乙醇胺添加剂及其浓度对AZ91D镁合金磷化膜耐蚀性能的影响.研究发现,(1)乙醇胺(MEA)作为添加剂可有效改善AZ91D镁合金表面磷化膜的耐蚀性能.在MEA添加量为1.2g/L时,磷化膜的耐蚀性最好.添加乙醇胺1.2g/L时制备的磷化膜,在3.5%(质量分数)NaCl溶液中的耐蚀性能比AZ91D镁合金基体提高了10倍;(2)MEA浓度在0.4~1.2g/L时,磷化膜的R_(ct)随MEA浓度增加成线性增长关系.MEA浓度1.2g/L时达到最大值.磷化膜的R_p在MEA浓度为1.2g/L时达到最高值.当MEA浓度继续增加时,R_p明显下降.MEA浓度控制在0.8<C_(MEA)<1.6g/L时获得的磷化膜的耐蚀性能最好.  相似文献   

16.
旨在优化AZ91镁合金凝固组织,通过OM和XRD设备研究了不同离心压力和冷却速度对AZ91镁合金凝固组织演变的影响,结果表明,随着离心压力的增大,合金晶粒尺寸细化,第二相β(Mg12Al17)析出量减少,不保温试样,β相形态由粗大连续网状向细小断续状转变,保温试样,β相为粒状弥散分布晶内,压力增大,颗粒数量减小,粒径细化.同等凝固压力下,增大冷速,一次β相析出量增多,二次β相析出量减少.XRD分析表明,增大离心压力β相峰值略微减弱,α-Mg的晶格常数减小.  相似文献   

17.
为了了解等径道角挤压(ECAE)的AZ91D镁合金在半固态压缩变形中的力学特征,利用半固态温压缩实验、Gleeble1500实验机和金相显微镜对其在半固态压缩变形中的力学行为进行了研究.结果表明:ECAE的AZ91D镁合金在半固态等温压缩中变形由固相晶粒本身的塑性变形、液相包围着固相晶粒的滑动和转动构成;该材料的真应力-真应变曲线由应力激增阶段、应力下降阶段、稳态阶段和应力增加阶段组成;随保温时间的增加或变形温度的升高,获得相同应变量的真应力明显下降,稳态应力和峰值应力也明显下降;随应变速率的增加,稳态应力增加.  相似文献   

18.
AZ91D镁合金锌系磷化膜成膜机理和生长过程的研究   总被引:1,自引:0,他引:1  
以磷酸盐化学转化膜为研究体系,采用SEM、XRD、OCP等分析方法及检测手段,研究AZ91D镁合金系磷酸盐化学转化膜的成膜机理、膜层结构及生长过程。研究发现AZ91D镁合金在磷化液中成膜过程分5个阶段:初始成核(1~5s)、基体快速溶解(5~60s)、晶体快速生长(1~2min)、膜层稳态生长(2~10min)和膜层沉积溶解平衡阶段(10min以后)。AZ91D镁合金表面的磷酸盐晶核的形成并非在金属进入溶液的最初时刻一次形成,是分批形成。最先形成的晶核逐渐长大,新的晶核不断生成,磷酸盐晶粒对其表面的覆盖度逐渐增大,直至各个晶粒逐渐长大相互接界,将其表面完全覆盖,结晶过程结束。晶核的形成未优先发生在基体金属的晶界上,随着晶核的生长和外延而形成磷化膜。  相似文献   

19.
Abstract

Weight reduction to improve automobile fuel economy has triggered renewed interest in magnesium. The effects of Ca/Sr separate and composite additions to AZ91D magnesium alloy on its microstructure and mechanical properties have been investigated. The results indicate Ca can refine both the grain and eutectic phase of AZ91D magnesium alloy. Sr hampers microstructure refinement when composite Ca/Sr additions are made. In addition, separate Ca additions to AZ91D magnesium alloy increase yield strength but decrease elongation of this alloy. By adjusting the Ca/Sr composite proportions, additions to AZ91D magnesium alloy are able to improve both microstructure and mechanical properties of the alloy.  相似文献   

20.
Abstract

Reactions at the mould/metal interface play an important role in determining the quality of investment castings. They are particularly critical in the case of magnesium alloys cast in industrial plaster moulds. In this work, reactions of molten magnesium alloy with plaster mould were studied. First the potential interactions with mould materials (including gases) were examined using thermodynamic considerations. Then thin sheets of AZ91D magnesium alloy were cast in industrial plaster moulds using vacuum assistance: the surface of sheets and plaster mould were characterised. The analysis of reaction products indicates that magnesium vapours diffuse through the plaster and reduce the silica present in the investment material according to the following reaction: 4Mg + SiO2=2MgO + Mg2Si. The extent of reactions is controlled by mould temperature and thickness of castings.  相似文献   

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