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1)  Al-Mg-Si based alloy
Al-Mg-Si基合金
1.
The forming limit of Al-Mg-Si based alloy sheet was tested and the forming limit diagram(FLD) was determined by using FLD test and automated strain analysis and measurement system(ASAME).
采用成形极限图(FLD)试验,运用网格应变自动测试分析系统ASAME,对Al-Mg-Si基合金车身板的成形极限进行了检测,同时,将FLD应用于有限元分析作为成形时出现破裂缺陷的判据,并分析车门外板在冲压成形过程中破裂危险部位主应变在FLD上分布。
2.
Based on nonlinear elastic-plastic finite element theory,this paper has investigated the forming process of a new type Al-Mg-Si based alloy auto door panel by means of numerical simulation.
采用非线性弹塑性有限元法对Al-Mg-Si基合金车门外板冲压成形过程进行了数值模拟,分析了车门在成形过程中的应力、应变、厚度分布以及成形安全裕度的部位和规律,为Al-Mg-Si基合金车身板冲压成形工艺设计及模具设计提供了科学依据。
3.
Al-Mg-Si based alloy auto body sheet will be used widely in the future, but, in the recent, one of the difficulty in practice is its poor formability.
Al-Mg-Si基合金车身板材具有广阔的应用前景,其应用的难点之一是成形性能较差。
2)  Al-Mg-Si-Cu based alloy
Al-Mg-Si-Cu基合金
1.
Effect of microelement Sr on corrosion properties of Al-Mg-Si-Cu based alloy auto sheets;
微量元素Sr对Al-Mg-Si-Cu基合金车身板腐蚀性能的影响
2.
Effect of heat treatment between cold rolling on rolling textures of Al-Mg-Si-Cu based alloy sheets
冷轧间热处理对Al-Mg-Si-Cu基合金板材轧制织构的影响
3)  Al-Mg-Si Alloy
Al-Mg-Si合金
1.
Influence of Er Content on Microstructure of As-cast Al-Mg-Si Alloys;
稀土Er对Al-Mg-Si合金铸态微观组织的影响
2.
Bond analysis of interface for strengthening in Al-Mg-Si alloy;
Al-Mg-Si合金相界面的键特征与强化作用
3.
Valence electronic structure of Al-Mg-Si alloy in initial age strengthening stages;
Al-Mg-Si合金时效强化初期的价电子理论研究
4)  Mg-Al-Si alloy
Mg-Al-Si合金
5)  Al-Mg-Si alloys
Al-Mg-Si合金
1.
Research on resistivity of solution-treated Al-Mg-Si alloys;
固溶态Al-Mg-Si合金的电阻变化研究
2.
Heat treatment of four new Al-Mg-Si alloys designed by thermodynamic calculation was studied.
对4种通过热力学计算优化选出的Al-Mg-Si合金进行了电磁搅拌及热处理试验研究。
3.
In this paper, the Al-Mg-Si alloys with Mg and Si contents higher than those in conventional Al-Mg-Si alloys (Si: 0.
金属间化合物Mg2Si作为Al-Mg-Si合金中的增强相,通常可以使合金的强度得到提高,合金中一定量的Mg2Si相的存在是提高该类合金强度的前提,但粗大的汉字状或骨骼状Mg2Si对合金基体有极大的割裂作用,使合金的强度和塑性变差,且Mg2Si含量越多对合金基体的割裂作用越严重。
6)  Al-Si-Mg alloy
Al-Si-Mg合金
1.
The Al-Si-Mg alloy was cooled and solidified under the different condition of air, water and liquid nitrogen after composite modification by the addition of the refiner (Al-1Ti-1B or Al-3Ti-3B master alloy) and the modification agent (Al-9Sr master alloy).
Al-Si-Mg合金通过加入细化剂Al-1Ti-1B中间合金或细化剂Al-3Ti-3B中间合金及变质剂Al-9Sr中间合金进行复合变质后,分别在空气中、水中和液氮中冷却凝固。
2.
The results show that the Al-5Ti-1B master alloy can refine grain of Al-Si-Mg alloy,improve mechanical properties especially for elongation and has long fading effect.
通过对Al-5Ti-1B中间合金细化作用的实验研究发现,Al-Si-Mg合金晶粒尺寸明显减小,合金的力学性能提高,尤其是伸长率,并且具有很好的抗衰退能力。
3.
Based on the resin bonded sand casting process,the effects of chill processes on the secondary dendrite arm spacing(SDAS) and densification of Al-Si-Mg alloy were studied.
基于Al-Si-Mg合金的树脂砂铸造过程,研究了冷铁工艺对Al-Si-Mg合金铸件二次枝晶间距(SDAS)及致密度的影响。
补充资料:Ti_(3)Al基合金(金属间化合物)涡轮导风板


Ti_(3)Al基合金(金属间化合物)涡轮导风板


  TiaA,基合金(金属间化合物)涡、、风*。利;:,
  
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