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INFLUENCE OF SELECTIVE LASER HEAT TREATMENT PATTERN POSITION ON GEOMETRICAL VARIATION

机译:选择性激光热处理模式位置对几何变化的影响

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Selective laser heat treatment allows local modification of material properties and can have wide range of applications within the automotive industry. Enhanced formability and strength are possible to achieve. As the process involves selective heating, positioning of the heat treatment pattern in local areas is vital. Pattern positioning is often suggested based on the part design and forming aspects of the material to avoid failures during manufacturing. Along with improving material properties in desired local areas, the process also produces unwanted distortion in the material. Such effects on variation should be considered and minimized. In this paper, heat treatment pattern is offset from its original position and its effect on geometrical variation is investigated. Boron steel blanks are selectively laser heat treated with a specific heat treatment pattern and then stamped to desired shape. Two heat treatment pattern dimensions are examined. Variation at blank level and after stamping, and springback after stamping is observed. Results show that pattern offsetting leads to higher geometrical variation. Therefore, correct positioning of heat treatment pattern is important to minimize its effect on geometrical variation along with enhancing the material properties. Knowledge from this study will contribute to various stages of the geometrical assurance process.
机译:选择性激光热处理允许局部改装材料性能,可在汽车行业内具有广泛的应用。可以实现增强的可成型性和强度。随着该过程涉及选择性加热,在局部区域中的热处理模式的定位至关重要。通常基于材料的部件设计和形成方面来建议图案定位,以避免在制造期间的故障。随着改善所需局部区域的材料特性,该过程也产生了材料中的不希望的变形。应考虑和最小化对变化的影响。在本文中,研究了热处理图案偏离其原始位置,并研究了其对几何变化的影响。硼钢坯是用特定的热处理图案进行选择性激光热处理,然后冲压到所需的形状。检查两个热处理图案尺寸。空白水平和冲压后的变化,并观察到冲压后的回弹。结果表明,图案偏移导致较高的几何变化。因此,热处理图案的正确定位对于最小化其对几何变化的影响以及提高材料特性。本研究的知识将有助于几何保证过程的各个阶段。

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