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Practical limitations to the influence of through-thickness normal stress on sheet metal formability

机译:贯穿厚度法向应力对钣金成形性影响的实际限制

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According to a recent (original) model, when hardening properties and the ratio of through-thickness normal stress to the first principal stress (gamma equivalent to sigma(3)/sigma(1)) are held constant, sheet metal formability can be increased dramatically through the introduction of a compressive throughthickness normal stress, sigma(3). In practice, however, both the hardening properties and gamma evolve with the progression of deformation. To manage most efficiently the evolution of the hardening properties and gamma, the original model is cast into a more compact form and presented as a proposed alternative form (proposed model). When the evolution of the hardening properties and gamma is considered, the proposed model is shown to be in very good agreement with observed data; the influence of through-thickness normal stress on sheet metal formability is quite small for all practical purposes. Because the structure of the original model is similar to that of the proposed model, the original model is also validated. Ultimately, it is verified that although the theory of the original and proposed model may be acceptable, the implications of such theories are less profound than those first proposed when practical limitations are considered. This work serves as a useful basis for: (1) further understanding the limitations of the influence of compressive through-thickness normal stress on sheet metal formability and (2) exploring opportunities for improving sheet metal formability. (C) 2004 Elsevier Ltd. All rights reserved.
机译:根据最新的(原始)模型,当硬化特性和贯穿厚度的法向应力与第一主应力之比(伽玛等效于sigma(3)/ sigma(1))保持恒定时,可以提高钣金成形性通过引入压缩厚度法向应力sigma(3)来显着提高。然而,实际上,硬化性能和伽马值都随变形的进行而发展。为了最有效地管理硬化特性和伽马的演变,将原始模型转换为更紧凑的形式,并以提议的替代形式(提议的模型)形式提供。考虑到硬化性能和伽马的演变,建议的模型与观察到的数据非常吻合。对于所有实际目的,厚度方向上的正应力对钣金成形性的影响都很小。由于原始模型的结构与所提出的模型相似,因此也对原始模型进行了验证。最终,可以证明,尽管原始模型和提出的模型的理论是可以接受的,但是当考虑到实际限制时,这些理论的含义并不像最初提出的那样深刻。这项工作为以下方面提供了有用的基础:(1)进一步了解厚度方向的正压力对钣金成形性的影响的局限性;(2)探索改善钣金成形性的机会。 (C)2004 Elsevier Ltd.保留所有权利。

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