首页> 外文期刊>Materials transactions >Effects of Titanium and Boron Additions with Cooling Rates on Solidification Behavior in Aluminum Alloys for Automotive Applications
【24h】

Effects of Titanium and Boron Additions with Cooling Rates on Solidification Behavior in Aluminum Alloys for Automotive Applications

机译:冷却速率中钛和硼的添加对汽车用铝合金凝固行为的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Al-Si based alloys are used to automobile parts for weight reduction. The engine block and chain cover were fabricated using the ADC12 and newly developed ADC12-M1 alloys through the high pressure die-casting. The ADC12-M1 alloy was fabricated by the addition of titanium and boron into the ADC12 alloy. Computational science such as JMatPro and Thermo-Calc was utilized in order to estimate the solidification behavior since the mechanical property of as-cast material is affected by the solidification behavior. The ADC12 and newly developed ADC12-M1 alloys belong to eutectic and hypo-eutectic alloys calculated by Thermo-Calc software, respectively. The cooling curves with the different cooling rates, fraction liquid and latent heat generation are estimated using JMatPro based on the Al-Si binary alloys in order to understand the solidification behavior between the eutectic and hypo-eutectic chemical composition. The cooling curves, fraction liquid and latent heat generation are more sensitive in the hypo-eutectic chemical composition than that in the eutectic one. The eutectic chemical composition is shifted into the higher concentration of silicon by the titanium and boron additions, resulting in that the higher difference of the yield strength is obtained in the hypo-eutectic ADC12-M1 alloy than that in the eutectic ADC12 alloy.
机译:Al-Si基合金用于汽车零件以减轻重量。通过高压压铸,使用ADC12和新开发的ADC12-M1合金制造了发动机缸体和链条盖。 ADC12-M1合金是通过将钛和硼添加到ADC12合金中制成的。由于铸态材料的机械性能受固化行为的影响,因此使用诸如JMatPro和Thermo-Calc之类的计算科学来估算固化行为。 ADC12和新开发的ADC12-M1合金分别属于通过Thermo-Calc软件计算出的低共熔和低共熔合金。为了了解共晶和次共晶化学成分之间的凝固行为,使用基于Al-Si二元合金的JMatPro估算了不同冷却速率,分馏液和潜热产生的冷却曲线。次共晶化学组成中的冷却曲线,液体分馏物和潜热生成比共晶中的更为敏感。通过添加钛和硼,将低共熔化学成分转移到较高的硅浓度中,导致低共熔ADC12-M1合金获得的屈服强度差异高于低共熔ADC12合金。

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