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Injection forging of solid asymmetric branched components

机译:固体不对称支化组分的注射锻造

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摘要

Injection forging allows producing near-net or net-shape asymmetric branched components with geometries that are difficult or impossible to fabricate by means of conventional impression die forging. On the contrary to previous research work in the field that was mainly focused on proposing methodologies for shape classification, systematization of forming defects, definition of workability ranges and evaluation of the overall performance of finite element predictions against experiments, the aims and scope of this article are centred in material flow and forging load requirements that result from double-acting tool concepts with closing spring elements. The presentation includes details on the active tool parts that were utilized for producing solid branched components with different numbers of radial straight legs, on the mechanical characterization of the material and on the numerical simulation and experiments that were performed with selected test cases. Results and observations confirm that double-acting tool concept with closing spring elements is a flexible and efficient manufacturing process for producing injection forged components because it can eliminate the formability problems and defects that are commonly found in single-acting tool concepts and can avoid the need for employing multi-acting presses with counteracting punches.
机译:注射锻造允许制造具有几何形状的近净或净形状的不对称分支部件,这些几何形状难以或不可能通过传统的压模锻造来制造。与以前在该领域的研究工作相反,该领域的工作主要集中在提出形状分类的方法,成形缺陷的系统化,可加工性范围的定义以及针对实验的有限元预测总体性能的评估,本文的目的和范围集中于物料流动和锻造载荷要求,这是由于双作用工具概念与闭合弹簧元件共同导致的。演示内容包括用于生产具有不同数量的径向直脚的实心分支部件的活动工具零件,材料的机械特性以及在选定测试用例下进行的数值模拟和实验的详细信息。结果和观察结果证实,带有闭合弹簧元件的双作用工具概念是生产注塑件的灵活而有效的制造过程,因为它可以消除单作用工具概念中常见的可成型性问题和缺陷,并且可以避免使用用于带有冲头的多作用压力机。

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