首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Evaluation of surface quality and mechanical properties of squeeze casted AA2026 aluminum alloy using response surface methodology
【24h】

Evaluation of surface quality and mechanical properties of squeeze casted AA2026 aluminum alloy using response surface methodology

机译:响应面法测定挤压AA2026铝合金表面质量和力学性能

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Aluminum-copper alloys are widely employed in automobile and aerospace industries owing to their marvelous mechanical and physical attributes. But the major hindrance in their application is that these materials are more susceptible to casting defects such as porosity, hot tears, and shrinkage occurring during solidification. The said issues have a negative impact on the mechanical properties of the casted materials and thus limit their use. Squeeze casting is a promising choice for these materials that has an ability to manufacture near-net shape parts with superior surface finish and better mechanical properties. Although, the potential of this method is tested for a variety of materials, but its capability for casting AA2026 alloy is yet to be comprehensively explored which is the primary focus of this research. Three key parameters of squeeze casting process, namely squeeze pressure, die temperature, and pouring temperature are selected for investigating their influence on surface roughness, ultimate tensile strength, and hardness using response surface methodology. Experimental results are analyzed using analysis of variance to find the control factor's significance and adequacy of models. It has been found that squeeze pressure is the most influencing parameter for surface roughness whereas for ultimate tensile strength and hardness, pouring temperature is the major contributing factor. SEM analysis is carried out to reveal the micro-details of the fractured samples. In addition to finding optimal ranges of control variables (using contour plot analysis) for each response individually, a multi-response optimization has also been carried out using desirability approach. Furthermore, mathematical models are also developed and validated through confirmatory tests. The results of confirmatory runs depict that the proposed models have a high degree of prediction accuracy.
机译:由于其奇妙的机械和物理属性,铝 - 铜合金广泛用于汽车和航空航天行业。但其应用中的主要障碍是这些材料更容易施放缺陷,如孔隙率,热撕裂和在凝固过程中发生的收缩。所述问题对铸造材料的机械性能产生负面影响,从而限制其使用。挤压铸件是有希望的这些材料的选择,具有制造具有优异表面光洁度和更好的机械性能的近净形状部件的能力。虽然,这种方法的潜力是针对各种材料进行测试的,但其用于铸造AA2026合金的能力尚未探索这项研究的主要重点。选择三个挤压铸造工艺的关键参数,即挤压压力,模具温度和浇注温度,用于使用响应表面方法研究对表面粗糙度,极限拉伸强度和硬度的影响。使用差异分析来分析实验结果,以找到控制因素的模型的意义和充分性。已经发现,挤压压力是表面粗糙度最大的参数,而对于极限拉伸强度和硬度,浇注温度是主要的贡献因子。进行SEM分析以揭示裂缝样品的微细节。除了单独找到每个响应的最佳控制变量(使用轮廓图分析)之外,还使用期望方法进行多响应优化。此外,还通过确认测试开发和验证数学模型。确认运行的结果描绘了所提出的模型具有高度预测精度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号