不同浇注模式下铸件运行行为率的仿真与实验分析

IF 0.9 Q3 ENGINEERING, MULTIDISCIPLINARY
T. Deepthi, K. Balamurugan, M. Uthayakumar
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引用次数: 1

摘要

由于铸件的不透明性和工作温度高,目测评定是困难的。利用仿真工具,通过对型腔内熔体流动、压力变化、浇注框架不同区域内流动速度的检测,可以避免这种情况的发生。对确定的浇口设计和短跑运动员的比例进行评估。MAGMASOFT是一种仿真工具,用于研究特殊的门控比例,以获得速度,在短跑运动员位置施加的力和门。设计了一种回归模型,用于提取模具空心空间中存在的液态金属的实际速度和压力。此外,对于不同的浇注命题,熔体速度被分解为与浇口有关的覆盖距离的细节。利用高速热像仪对不同浇注系统的实际熔体运动进行了验证,并与模拟观测结果进行了对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation and experimental analysis on cast metal runs behaviour rate at different gating models
Visual assessment in casting is difficult to assess due to the opacity and the high working temperature. By using the simulation tool, it can be avoided through an examination on the melt runs inside the mould cavity, pressure variation, and runs velocity in the different areas of the gating framework. Assessments are conducted for decided gating design and the sprinter aspect proportions. The MAGMASOFT, a simulation tool is preferred to study the exceptional gating proportions to achieve the velocity, force exerted at the sprinter location, and ingates. A regression version is designed to pick out the real speed and the pressure of liquid metal exists in the mould hollow space. Further, the melt velocity dissected as a detail of distance covered concerning ingate for the distinct gating propositions. A high-speed thermal camera is used to verify the actual melt motion in different gating systems and contrasted with the simulated observation.
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来源期刊
CiteScore
2.00
自引率
27.30%
发文量
53
期刊介绍: Most of the research and experiments in the field of engineering have devoted significant efforts to modelling and simulation of various complicated phenomena and processes occurring in engineering systems. IJESMS provides an international forum and refereed authoritative source of information on the development and advances in modelling and simulation, contributing to the understanding of different complex engineering systems. IJESMS is designed to be a multi-disciplinary, fully refereed, international journal.
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