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Knowledge-based Design Method of Forging Dies based on the Stereotypes of Die Structures and the Functions of Forming Surfaces

机译:基于知识的锻造模具设计方法,基于模具结构的刻板印象及成形表面的功能

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The die design of forged products greatly affects the quality, cost, and delivery of cold- and warm-forged products. However, such design is often not easy even for experienced engineers because extensive knowledge and experience of plastic forming, forging, blanking, and punching are required. This paper proposes a general forging die design method termed GeneDie on the basis of the basic die structure and the forming surfaces configuration which are introduced as basic concepts for the support of simple but general die design. The basic die structure is the relative positional inter-relationship among the components of forging dies and is used to represent the structure of forging dies simply. Meanwhile, the forming surfaces configuration is the correspondence between functions allocated to the surfaces of forging dies and the surfaces of a forged product and used to represent the shapes of forming dies concisely. Die design plans are generated by exhaustively assuming a basic die structure and a forming surfaces configuration that satisfy design requirements and then verifying design constraints regarding formability, workability, and economy. An experimental knowledge base is implemented adopting the GeneDie method and applied to a forging process plan for an electrical connector. Experimental results show that die design plans that are functionally equivalent to those of an experienced engineer are included in the plans generated for all forming steps of the forging process plan.
机译:锻造产品的模具设计极大地影响了冷和锻造产品的质量,成本和交付。然而,即使对于经验丰富的工程师而言,这种设计往往并不容易,因为需要塑性成型,锻造,消隐和冲压的广泛知识和经验。本文提出了一种基本芯片结构和成形表面配置的一般锻造模具设计方法,其被引入为简单但一般模具​​设计的支持基本概念。基本模具结构是锻模部件之间的相对位置相互关系,并且用于表示锻造模具的结构。同时,形成表面配置是分配给锻造模具的表面的功能与锻造产品的表面之间的对应关系,并用于表示成形模具的形状。模具设计计划是通过粗加的基本模具结构和满足设计要求的形成表面配置而产生的,然后验证关于可成形性,可加工性和经济性的设计限制。实验知识底座采用基因法实施,并应用于电连接器的锻造过程计划。实验结果表明,模具设计计划在功能上等同于经验丰富的工程师的设计计划包含在为锻造过程计划的所有形成步骤产生的计划中。

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