• The notch sensitivity of AZ31 magnesium alloy was studied.

    研究了AZ31镁合金板材缺口敏感性

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  • The microstructure of AZ31 magnesium alloy strip has been analyzed.

    铸轧状态AZ 31镁合金显微组织进行分析。

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  • AZ31 magnesium alloy was circularly pressed by continuous variable cross-section recycled extrusion (CVCE) technology.

    采用连续断面循环挤压技术(CVCE)对AZ31镁合金进行循环挤压

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  • First of all, pretreatment process of commercial AZ31 magnesium alloy-extruded was optimized with orthogonal experiment.

    首先利用正交试验方法,对工业挤压态az31镁合金预处理工艺进行优化研究。

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  • The deep drawing process of AZ31 magnesium alloy rectangular parts was researched by numerical simulation and experiments.

    采用数值模拟实验相结合方法研究了AZ31镁合金板料分块压边力矩形过程

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  • AZ31 magnesium alloy, one of the most widely used commercial deforming magnesium alloys, has good strength and ductility as well.

    AZ 31镁合金具有良好延展率较高强度,是目前商业化应用广变形镁合金。

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  • A thin Cu coating was deposited on both sides of AZ31 magnesium alloy to be joined to study the material flow in friction stir welding.

    AZ31镁合金表面镀层很薄研究塑性材料流动情况

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  • The expert had finished AZ31 magnesium alloy experimentation of isothermal extrusion, it has proved that the way is validity and utility.

    通过对AZ31镁合金实验证实方法可行的,有效的。

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  • The effect of activating fluxes with single component on weld forming during the A-TIG welding of AZ31 magnesium alloy is studied in this paper.

    文摘针对AZ31镁合金研究了在A-TIG单一成分活性剂涂敷量焊缝成形影响

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  • The effect of extrusion ratio, temperature and electric field annealing on microstructure and texture of AZ31 magnesium alloy were investigated.

    研究了挤压、挤压温度电场退火AZ31镁合金组织织构影响

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  • The mechanical property of AZ31 magnesium alloy rolling sheet under different temperatures and strain rates was studied through uniaxial tensile test.

    通过单向拉伸试验研究了AZ31镁合金轧制不同温度应变速率力学性能

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  • The annealing process was made under different temperature and holding time to the cold forging AZ31 magnesium alloy with different deformation ratio.

    不同变形az31镁合金在不同温度保温时间进行退火

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  • AZ31 magnesium alloy was accelerated as anode coupled with dissimilar alloys. The rimous corrosion products sticked to the surface of magnesium alloy.

    镁合金异种合金偶接后,作为阳极加速腐蚀,腐蚀产物龟裂状附着在镁合金基体表面

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  • AZ31 magnesium alloy sheets were rolled by applying a circumferential velocity ratio of 1.125 between the upper and lower rolls in different diameter rolling.

    采用上下轧辊速比1.125的异步轧制方法对AZ31镁合金板材进行轧制

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  • The effect of deformation temperature and deformation speed on the limit drawing ratio (LDR) and microstructure of the roll-casting AZ31 magnesium alloy sheet.

    研究变形温度、变形速度铸轧az31镁合金极限拉深(ldr)组织影响。

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  • Further, deep drawing speeds and punch temperatures during deep drawing process can also exert significant influence on the deep drawing of AZ31 magnesium alloy.

    此外速度冲头温度AZ31镁合金成形重要影响

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  • The Bauschinger effect (BE) of AZ31 magnesium alloy was tested by the experiment of cyclical tension and compression, and the mechanisms of BE were investigated.

    采用循环试验测试了AZ31镁合金包辛格效应(BE),研究了BE机制

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  • Through the microstructure observation and hardness test of extrusion specimen, the grain refinement effect of AZ31 magnesium alloy under ECAP process was studied.

    挤压试样进行显微组织观察硬度测试,研究等通道挤压工艺ECAPAZ31镁合金的晶粒细化效果

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  • The He-Ar mixed gas TIG welding for AZ31 magnesium alloy plate by was carried out. The surface of observed joint is smooth free from heap high and appearance defects.

    氦-混合气体保护条件下,AZ31镁合金板材进行TIG焊接,获得表面光滑堆高无变形等缺陷的焊缝。

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  • A new environmentally friendly anodizing process for AZ31 magnesium alloy was established based on orthogonal tests so as to increase the corrosion protection of the magnesium alloys.

    为了提高AZ 31镁合金的耐蚀性,采用微弧阳极氧化技术并通过正交试验法开发出环保型的镁合金微弧氧化工艺。

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  • The deformation mechanism of the compression superplasticity of commercial AZ31 magnesium alloy-extruded is grain boundary sliding mechanism in coordination with the dynamic recrystallization.

    工业挤压态az31镁合金压缩超塑性变形机制动态再结晶协调下的晶界滑移机制。

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  • Taking the He-Ar mixed gas as protected atmosphere, TIG welding process parameters for AZ31 magnesium alloy plates was optimized by using the method of the orthogonal experiment and variance analysis.

    氦-氩混合气体保护气氛采用正交试验方差分析方法AZ31镁合金板材进行了TIG工艺参数优化

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  • In the base of the flow stress model of AZ31, finite element analysis software DEFORM was used to research the drawing of the notebook PC case with magnesium alloy AZ31 sheet.

    材料模型基础上,利用DEFORM有限元软件AZ 31变形镁合金拉深笔记本外壳实验做了模拟。

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  • The twinning process in a magnesium AZ31 alloy with initial texture is quantitatively analyzed during plane-strain compression by means of orientation mapping based on EBSD technique.

    利用背散射电子衍射取向成像技术,定量分析了具有初始AZ31镁合金平面应变压缩孪生过程

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  • In this paper, magnesium alloy AZ31 has been treated by nitrogen-plasma based ion implantation (N-PBII). And we deposited DLC on a part of the nitrogen-implanted samples.

    本文等离子体基离子注氮技术(N -PBII)对AZ31镁合金进行了表面改性处理,部分注氮样品上沉积dlc膜。

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  • For AZ31 and AZ61 magnesium alloy, effects of activating fluxes with hybrid component on weld forming in the a - TIG butt joint welding of are studied.

    对接实验针对AZ31AZ61镁合金材料,研究了A-TIG混合成分活性剂焊缝成形影响

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  • The superplastic gas bulging forming of a rolled magnesium alloy AZ31 at different temperature and gas pressure was researched.

    研究了AZ31镁合金板材不同工艺条件下成形性能。

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  • Using ODF's analysis, the micro-orientated flowing behavior of magnesium alloy AZ31 by forging was investigate, and using optical microscopy, the grain size and microstructure were measured.

    为了解az31镁合金自由过程中织构形成变化,odf分析AZ31镁合金自由锻时的微曲向流变行为进行了分析;用光学显微镜对其显微组织和晶粒尺寸进行了测定。

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  • Using ODF's analysis, the micro-orientated flowing behavior of magnesium alloy AZ31 by forging was investigate, and using optical microscopy, the grain size and microstructure were measured.

    为了解az31镁合金自由过程中织构形成变化,odf分析AZ31镁合金自由锻时的微曲向流变行为进行了分析;用光学显微镜对其显微组织和晶粒尺寸进行了测定。

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