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Analysis of the bond strength of voids closed by open-die forging

机译:开放式锻造封闭空隙的粘合强度分析

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摘要

Large components, for instance in the energy industry, mining and heavy machinery, are produced from high weight cast as ingots followed by open-die forging. Besides achieving a certain final geometry and microstructure, one of the main objectives during the forging process is the elimination of casting defects, like voids from the solidification shrinkage. This process is divided in the two stages of void closure and void healing. During the healing of the closed void a solid bond is established at high temperature. In literature void closure in open die forging is thoroughly investigated. Concerning the healing by solid bond generation there are only few studies related to voids in open die forging but there is substantial literature related to bond formation in roll hot bonding and diffusion bonding. Most of this work however determines the bond strength after cooling to room temperature. Concerning future appropriate modelling of the closure and healing process in open die forging, it is important to decide, whether a bond, which was established in one forging stroke, would be strong enough to withstand the following strokes. As a first step in this direction, this paper experimentally examines the bond strength directly after bond formation under conditions typical for open die forging strokes. The results quantitatively confirm the expected influence of forming temperature, surface enlargement, holding time and oxide films.
机译:例如,在能源行业,采矿和重型机械中,由高重量铸造为铸锭,然后采用开放式锻造。除了实现某种最终几何形状和微观结构之外,锻造过程中的主要目标之一是消除铸造缺陷,如空隙来自凝固收缩。该过程分为空隙闭合和空隙愈合的两个阶段。在闭合空隙的愈合过程中,在高温下建立固体键。在开放式锻造中的文献空隙闭合被彻底调查。关于通过固体键的愈合,只有很少有与开放模锻中的空隙有关的研究,但是存在与辊热粘合和扩散键合的键形成相关的重要文献。然而,大部分工作都决定了冷却至室温后的粘合强度。关于未来的未来封闭和愈合过程建模开放模具锻造,重要的是决定是否在一个锻造中风中建立的债券,足以承受以下笔触。作为朝着这个方向的第一步,本文通过典型的开放模锻冲程典型的条件下直接检查粘合强度。结果定量地确认了形成温度,表面放大,保持时间和氧化膜的预期影响。

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