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Principle and simulation of fixture configuration design for sheet metal assembly with laser welding. Part 1: finite-element modelling and a prediction and correction method

机译:激光焊接钣金装配夹具配置设计的原理和仿真。第1部分:有限元建模以及预测和校正方法

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摘要

The quality of the stamping process has a direct effect on laser welded sheet metal assembly. The fixture plays an important role in the satisfactory metal fit-up that laser welding requires. The traditional "3-2-1" locating scheme will no longer suffice for the deformable laser sheet metal assembly process. Because of the often poor stamping quality, a complex die fixture has to be employed to meet the metal fit-up requirements. The die fixture corresponds to an "infinite-2-1" locating scheme where the tooling cost is very high and yet lacks flexibility. This limits the application of laser welding. In this paper, a new locating scheme with both total locating and direct locating for welds is proposed. A total locating scheme is used to locate the overall assembly, and a direct locating scheme is used to locate the weld location, which is critical for ensuring correct metal fit-up. A finite-element model and a prediction and correction method for the direct locator configuration are developed in this paper. A case study is used to show that the proposed method is effective for sheet metal assembly for laser welding.
机译:冲压工艺的质量直接影响激光焊接的钣金组件。夹具在激光焊接所需的令人满意的金属装配中起着重要作用。传统的“ 3-2-1”定位方案将不再足以满足可变形激光钣金装配过程的需要。由于通常较差的冲压质量,必须使用复杂的模具夹具来满足金属装配要求。模具夹具对应于“无限2-1”定位方案,其中模具成本很高,但缺乏灵活性。这限制了激光焊接的应用。本文提出了一种新的定位方案,该方案包括焊缝的全定位和直接定位。使用总定位方案来定位整个组件,并使用直接定位方案来定位焊接位置,这对于确保正确的金属装配至关重要。本文建立了直接定位仪配置的有限元模型和预测与校正方法。案例研究表明,该方法对激光焊接的钣金件是有效的。

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