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  1. Effects of Cryogenic Treatment on Mechanical Properties of SiCp / A356 Composites

    深冷处理对SiCp/A356复合材料力学性能的影响

  2. The reheating process for A356 aluminum alloy was conducted with main frequency induction furnace .

    以A356合金为对象,采用中频电磁感应器进行了二次加热工艺的研究。

  3. Research on Thermal Fatigue Evaluation Method of SiCp / A356 Composite Brake Disc for High-speed Train

    高速列车SiCp/A356复合材料制动盘热疲劳评价方法研究

  4. Study on SiCp / A356 Aluminum Matrix Composites Fabricated by Stir Casting

    搅拌铸造法制备SiCp/A356铝基复合材料的研究

  5. Microcosmic Thermal Fatigue Simulation of SiCp / A356 Brake Disc Material for High Speed Train

    高速客车制动盘材料SiCp/A356细观热疲劳仿真

  6. Numerical and Experimental Research on Micro-damage of SiC_p / A356 Composites

    颗粒增强铝基复合材料微观损伤仿真及实验研究

  7. In this study , the effect of spinning process on microstructure and mechanical properties of A356 alloy were investigated .

    本文将运用旋压成型技术对A356合金进行加工,探讨此加工制程对A356合金微结构与机械性质之影响。

  8. Quality and Control of SiC_p / A356 Composites

    SiCp/A356复合材料的制备质量检验及控制

  9. The effects of the mixed RE contents and heat treatment on mechanical properties and structure of A356 alloy were studied .

    研究了混合稀土的加入量及合金的热处理工艺对A356合金的组织及力学性能的影响。

  10. Semi-solid slurry of A356 alloy was prepared by a self-developed cooling slope method .

    利用自主开发的倾斜管制浆工艺制备了A356合金半固态浆料。

  11. Microstructure and mechanical properties of the in-situ synthesized A356 / TiB_2 composites have been investigated .

    对原位反应合成TiB2/A356铝基复合材料微观组织和力学拉伸性能进行了研究。

  12. Microstructure and Wear-resistance of SiC p / A356 Functionally Graded Material by Centrifugal Casting

    离心铸造SiCp/A356功能梯度材料的组织结构与耐磨性

  13. The thixo-formed A356 alloy parts were investigated by micro-defects analysis , mechanical properties testing and numerical simulation .

    通过缺陷显微分析、力学性能测试以及计算机模拟对A356铝合金触变成形的样件进行了详细分析。

  14. In this paper , the microstructural evolution of non dendrite Aluminum alloys A356 during induction heating was studied .

    研究了非枝晶A356铝合金在感应加热时的组织演变。

  15. Solidification Microstructure of ( Al_2O_3 + Al_3Zr ) p / A356 Composites Synthesized by Electromagnetic Stirring

    电磁搅拌法合成(Al2O3+Al3Zr)p/A356复合材料的凝固组织

  16. Typical heating curve and its derivative curve for A356 alloy were measured and the relationship between fraction solid and temperature was calculated .

    通过热分析确定了重熔过程温度-时间曲线及温度对时间的导数,计算了重熔过程中温度与固相分数之间的关系。

  17. The effect of forming temperature , injection pressure and piston velocity on the filling ability of semi-solid A356 aluminum alloy slurry were investigated .

    研究了半固态A356铝合金浆料的成形温度、压射比压和压射冲头速度对半固态A356铝合金流变压铸充填性的影响。

  18. The rheological behavior and microstructure of the semi-solid A356 Aluminum alloy slurry were studied by using a self-designed viscometer .

    用自行研制的同轴圆柱旋转流变仪对半固态A356铝合金浆料的流变特性及组织演变进行研究。

  19. Traditional static shear tester was revised so as to study the rheological behavior of A356 alloy with different microstructure morphology in semisolid state .

    对传统的静态剪切试验装置进行改进,研究了不同初生相形态半固态A356合金的流变性能。

  20. The engendering rule of organism of liquidus casting aluminum alloy A356 at different heat preservation temperature , different heat preservation time was investigated .

    研究了液相线铸造A356铝合金在不同保温温度、不同保温时间下的组织形成规律。

  21. Semi-solid slurry of A356 alloy is prepared by compound process , and the fractal characteristic of morphology in semi-solid primary phase is studied .

    利用复合工艺制备了A356铝合金半固态浆料,研究了半固态A356铝合金初生相形貌的分形特征。

  22. The results show that the apparent viscosity of A356 alloy slurry in steady-state decreases with the shear rate increasing under isothermal shearing condition .

    结果表明:等温剪切时,浆料稳态表观粘度随着剪切速率的增大而下降,半固态A356铝合金具有明显的触变性。

  23. The effect of strontium modification and its fading behavior on the microstructure and mechanical properties of the direct electrolytic A356 alloys were investigated .

    研究了直接电解低钛A356合金锶变质处理及其衰退行为对合金组织及性能的影响。

  24. Research method and main results is as following : Using electrical resistance furnace and cooling slope to melt A356 aluminum alloy and gain the semi-solid slurry .

    研究方法和主要成果如下:使用电阻炉熔炼A356铝合金,并采用斜坡冷却法进行半固态熔体的制备。

  25. The study was carried out to investigate the effect of compound field which is a combination of electromagnetic field and power ultrasonic field on solidification process of A356 alloy .

    研究了复合场(功率超声场和旋转电磁场复合)对A356合金凝固行为的影响。

  26. After that , the industrial test production of A356 alloy with electrolytic low content titanium melt produced in industrial aluminum electrolyzer was conducted in factory .

    进行了利用工业铝电解槽生产的电解低钛铝合金熔体直接生产A356合金的工业试验。

  27. The billets with uniformly distributed microstructure in rheo-casting are beneficial to obtaining the A356 alloy die castings with perfect quality .

    流变压铸试片的组织分布很均匀,利于获得高质量的半固态A356合金压铸件。

  28. Optimization of Process Parameters on the Semisolid Slurry of Aluminum Alloy A356 ; The optimize of fire resistant α - amylase on cotton desizing

    LSPSF法制备半固态A356浆料工艺参数的优化耐高温α-淀粉酶用于全棉织物退浆工艺优化

  29. The effects of painting technology on mechanical properties and structures of low pressure die casting of A356 alloy wheel with T6 and double aging heat-treatment were studied .

    研究了三级涂装工艺对T6处理和双级时效工艺下的低压铸造A356合金轮毂力学性能和组织的影响。

  30. Unsprung weight can be reduced by using SiCp / A356 brake disc , so as to reduce the weight of high-speed trains .

    SiC颗粒增强铝基复合材料用于高速列车制动盘可减少簧下重量、实现轻量化。