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首页> 外文期刊>Journal of Manufacturing Processes >Forming study on a tailor rolled blank (TRB) structure- formability evaluation and model verification
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Forming study on a tailor rolled blank (TRB) structure- formability evaluation and model verification

机译:定制轧制坯料(TRB)的成形研究-成形性评估和模型验证

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摘要

Tailor rolled blank (TRB) technique, as a relatively novel configuration, is of potential to fulfill the lightweight design. The examination of TRB defects in stamping process using traditional forming limit curve (FLC) is challenging. In this paper, the forming limit surface (FLS), which considers thickness changes, was used to evaluate the formability of front longitudinal beam (FLB) with TRB structure. A numerical model was developed to study the strain distributions and thickness transition zone (TTZ) movements during the TRB forming process. The effects of tool parameters (die clearance and draw-bead) on formability and TTZ movement were investigated. Results showed that the adaptive die gaps and segmented draw-beads were required in tool design to reach a better forming quality in the formed part. Besides, TTZ movement appears to be more structural dependent because the movements near the area with transition corner were larger and suffered smaller impact from parameter changes. The measured thicknesses of typical sections from formed part agree well with those predicted by simulation. This result confirms that the simulation strain used in formability evaluation was relatively reliable.
机译:定制轧制毛坯(TRB)技术是一种相对新颖的配置,具有实现轻量化设计的潜力。使用传统的成形极限曲线(FLC)在冲压过程中检查TRB缺陷具有挑战性。在本文中,考虑厚度变化的成形极限面(FLS)用于评估具有TRB结构的前纵梁(FLB)的可成形性。开发了一个数值模型来研究TRB形成过程中的应变分布和厚度过渡区(TTZ)运动。研究了工具参数(模具间隙和拉延筋)对可成形性和TTZ运动的影响。结果表明,在模具设计中需要自适应模具间隙和分段拉延筋,以在成型零件中获得更好的成型质量。此外,TTZ运动似乎更依赖于结构,因为带有过渡角的区域附近的运动较大,并且受到参数变化的影响较小。从成型零件测得的典型截面厚度与模拟预测的厚度非常吻合。该结果证实了在可成形性评估中使用的模拟应变是相对可靠的。

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