首页> 外国专利> SOLIDIFICATION ANALYZING METHOD FOR CASTING, SOLIDIFICATION ANALYZING PROGRAM, RECORDING MEDIUM, MICROPOROSITY OCCURRENCE PREDICTING METHOD, MICROPOROSITY OCCURRENCE PREDICTING PROGRAM, AND RECORDING MEDIUM

SOLIDIFICATION ANALYZING METHOD FOR CASTING, SOLIDIFICATION ANALYZING PROGRAM, RECORDING MEDIUM, MICROPOROSITY OCCURRENCE PREDICTING METHOD, MICROPOROSITY OCCURRENCE PREDICTING PROGRAM, AND RECORDING MEDIUM

机译:铸件的凝固分析方法,凝固分析程序,记录介质,微孔率预测方法,微孔率预测程序和记录介质

摘要

PPROBLEM TO BE SOLVED: To precisely predict the occurrence position of microporosity in a casting. PSOLUTION: A step 205 where, regarding a casting as an analysis object, a flowing limit solid phase ratio fslim being a solid phase ratio at the time when the molten metal of metal or an alloy used for casting is made not to flow by its partial solidification, and a flowing resistance starting solid phase ratio fss being a solid phase ratio at the time when it shifts to a state in which resistance is produced in the flowing of the molten metal of the metal or alloy are beforehand set; steps 204 to 207 where, in all the positions of the casting, at the point of time in which the local solid phase ratio fs on each point reaches the flowing limit solid phase ratio fslim, the distance D to a closest place having the local solid phase ratio of the flowing resistance starting solid phase ratio fss from the position and a solidified boundary progression velocity V in the position are obtained; a step 208 where a parameter X=1/D/V is calculated from the distance D and solidified boundary progression velocity V; and a steps 210 to 12 where, on the basis of the calculated data of the parameter X, the solidification analysis of the casting is performed are carried out. PCOPYRIGHT: (C)2005,JPO&NCIPI
机译:

要解决的问题:精确预测铸件中微孔的出现位置。

解决方案:步骤205,将铸件作为分析对象,流动极限固相比fslim是使铸造用金属或合金的熔融金属不流动时的固相比。通过其部分凝固,预先设定流动阻力开始固相比fss为在金属或合金的熔融金属的流动中转变成在流动时产生阻力的状态时的固相比。步骤204至207,其中在铸件的所有位置中,在每个点上的局部固相比fs达到流动极限固相比fslim的时间点,到具有局部固体的最近位置的距离D得到从该位置开始的流动阻力的固相比fss的相位比和该位置的凝固边界行进速度V。步骤208,根据距离D和凝固边界行进速度V计算出参数X = 1 / D / V;步骤210至步骤12,根据参数X的计算数据,进行铸件的凝固分析。

版权:(C)2005,JPO&NCIPI

著录项

  • 公开/公告号JP2005111544A

    专利类型

  • 公开/公告日2005-04-28

    原文格式PDF

  • 申请/专利权人 MITSUBISHI MATERIALS CORP;

    申请/专利号JP20030351145

  • 发明设计人 SAKAMOTO TOSHIO;DOUTANI YASUO;

    申请日2003-10-09

  • 分类号B22D46/00;G01N33/20;

  • 国家 JP

  • 入库时间 2022-08-21 22:30:04

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