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AN INTELLIGENT KNOWLEDGE - BASED CONCURRENT ENGINEERING MODEL FOR THE DECISION ANALYSIS OF DEFECT - FREE CASTINGS AND FORGINGS

机译:一种基于智能知识的缺陷铸件和铸件缺陷决策的并行工程模型。

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As the market becomes more complex with innumerable parameters changing the complexion and making it dynamic, an absolute decision-making model turns out to be obsolete even1 time one seeks to get advice from it. To this effect, a dynamic decision-making model is the need of the hour which would consider every conceivable change resultant of every probable effect of any one of the known parameters. It is a general perception that remedial measures to large extent can be directly found from the decision analysis of the causes investigated. Instead of having an instant temporary remedial measure for defects, a concurrent engineering model is proposed and developed starting from defect interpretation where critical distinction of various NDT methods is made and a suitable NDT method is suggested to suit the requirement along with identifying the defect from the huge database in which types of defects and its characteristic appearances are stored. It indeed identifies the defect based iterative approach leading to systematic investigation into possible causes, there by setting up the base for remedial measures taking into consideration primarily from the material selection, processing and heat treatment thus suggesting optimum design of gating and risering, pattern in case of castings and forging dies, flash and gutter in case of forgings. Of all the processes heat treatment in general and, tempering, hardening in particular has been short listed for detailed investigation. These processes have been modeled mathematically for variations of various mechanical properties by the use of practical data. The results in the form of equations and graphs have been documented in the manuscript and were also incorporated in the automated format.
机译:随着市场变得越来越复杂,无数的参数改变了肤色并使其动态变化,即使有人试图从中寻求建议,一种绝对的决策模型也变得过时了。为此,需要一个小时的动态决策模型,该模型将考虑任何已知参数的每种可能影响的每种可能发生的变化。人们普遍认为,在很大程度上可以从对所调查原因的决策分析中找到补救措施。从缺陷解释开始,提出并开发了并发工程模型,而不是立即对缺陷采取临时补救措施,在该模型中,对各种无损检测方法进行了严格区分,并提出了一种适合的无损检测方法来满足要求,同时从缺陷中识别出缺陷。巨大的数据库,用于存储缺陷类型及其特征外观。它确实确定了基于缺陷的迭代方法,从而导致了对可能原因的系统研究,在此基础上,建立了主要考虑材料选择,加工和热处理的补救措施基础,从而提出了最佳的浇口设计和冒口设计,以防万一铸件和锻模,如果有锻件,会有飞边和檐槽。在所有过程中,一般都会进行热处理,尤其是回火,淬火,以进行详细研究。通过使用实际数据,对这些过程进行了数学建模,以了解各种机械性能的变化。方程和图形形式的结果已记录在手稿中,并以自动格式包含在内。

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