首页> 外文会议>ASME biennial conference on engineering systems design and analysis >NUMERICAL SIMULATIONS OF FILLING FLOWS IN DIE-CASTING MOLDING OF THE THIN-WALLED LED HEAT SINK
【24h】

NUMERICAL SIMULATIONS OF FILLING FLOWS IN DIE-CASTING MOLDING OF THE THIN-WALLED LED HEAT SINK

机译:薄壁LED散热片压铸充型流动的数值模拟。

获取原文

摘要

In this study, the mold filling analyses of a thin-walled LED heat sink combined with the vacuum valve runner are simulated by FLOW-3D software. Two topics are analyzed and discussed. First, numerical simulations for variety of molding conditions, including effects of thermal conductivity, vacuum pumping pressure, mold temperature, filling velocity, respectively, are conducted for the computational model of the thin-walled LED heat sink connected with the vacuum shut-off valve. Second, effects of several geometrical parameters, including fin thicknesses of the LED heat sink and dimensions of the vacuum shut-off valve are explored. In these two topics, melts are set to liquid metal of Al 384.0 materials. The first topic of analysis mainly to investigate the effects of molding parameters based upon the same computational model of the thin-walled LED heat sink connected with a vacuum valve runner. The simulated results show if molding conditions are changed, different sizes of defects are appeared in castings; if vacuum pumping pressure is higher, the casting is also firmness, density prone to increase; if vacuum pumping pressure is too low, then pumping efficiency of mold cavity is low and it will be easy to form the casting porosity defects. For the second topic of analysis, molding conditions are hold constantly, and effects of different geometrical dimensions to castings qualifications are simulated. Characteristic dimension of trigger mechanism can effectively operate the vacuum shut-off function; but too thin or too thick of channel, it will affect the pumping time if different degrees of vacuum is imposed. Decreasing of gas residuals in castings for the vacuum pumping pressures of 760Torr, 200Torr, 100Torr compared with 10Torr, were 0.311%, 0.174%, 0.008%, respectively. It shows the appropriate and effective vacuum level for vacuum die-casting of the thin-walled LED heat sink is in the range of 100Torr.
机译:在这项研究中,通过FLOW-3D软件模拟了结合了真空阀流道的薄壁LED散热器的模具填充分析。分析和讨论了两个主题。首先,针对与真空截止阀连接的薄壁LED散热器的计算模型,分别进行了包括热导率,真空泵送压力,模具温度,填充速度的影响在内的各种成型条件的数值模拟。 。其次,探讨了几个几何参数的影响,包括LED散热片的翅片厚度和真空截止阀的尺寸。在这两个主题中,将熔体设置为Al 384.0材料的液态金属。分析的第一个主题主要是基于与真空阀流道相连的薄壁LED散热器的相同计算模型来研究成型参数的影响。模拟结果表明,如果改变成型条件,铸件中会出现不同尺寸的缺陷;如果真空抽气压力较高,铸件也牢固,密度容易增加;如果真空抽气压力过低,则型腔的抽气效率低,容易形成铸件孔隙缺陷。对于分析的第二个主题,铸型条件保持不变,并且模拟了不同几何尺寸对铸件质量的影响。触发机构的特征尺寸可以有效地操作真空关闭功能;但通道太细或太厚,如果施加不同程度的真空,则会影响泵送时间。与760Torr,200Torr,100Torr的真空泵送压力相比,铸件中气体残留的减少分别为10Torr的0.311%,0.174%和0.008%。它显示了用于薄壁LED散热器的真空压铸的合适和有效的真空度在100Torr的范围内。

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