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Optimization of the design of a plastic instrument panel push-nut opening using finite element analysis

机译:使用有限元分析优化塑料仪表板推动螺母开口设计

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One of the methods used to mechanically fasten a component such as a radio, cluster or finish panel to a plastic instrument panel substrate involves driving a screw through a metal push-nut which has been inserted into an opening in the plastic instrument panel substrate. A primary failure mode which has been observed for this type of joint is cracking of the plastic substrate surrounding the metal push-nut. Finite Element Analysis (FEA) has been employed to optimize the design of the push-nut opening in a polycarbonate substrate and minimize the potential for cracking of the plastic. For the FEA, the implicit version of the ABAQUS program was used. It was determine that the induced stress in the plastic instrument panel substrate from the fastening process can be minimized by controlling the dimensions of the push-nut opening such that push-nut recess is minimized and the thickness of the substrate in the region whether the push-nut engages is optimized. Manufacturing tolerances were also considered. By minimizing the induced stress in the joint, it is expected that the potential for cracking is also minimized.
机译:用于机械地将诸如无线电,簇或饰面面板的部件机械固定到塑料仪表板基板的方法之一包括将螺钉驱动穿过已经插入塑料仪表板基板中的开口中的金属推螺母。已经针对这种关节观察的初级故障模式是围绕金属推螺母的塑料基板的破裂。已经采用有限元分析(FEA)来优化聚碳酸酯基材中的推动螺母开口的设计,并最大限度地减少塑料开裂的电位。对于FEA,使用了ABAQUS程序的隐式版本。通过控制推动螺母开口的尺寸,可以最小化塑料仪表板基板中的诱导应力,使得推动螺母凹陷最小化并且该区域中的基板的厚度是推动 - 没有优化NUT参与。还考虑了制造公差。通过最小化接头中的诱导应力,预期裂缝的可能性也会最小化。

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