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Elastically averaged precision alignment

机译:弹性平均精度对准

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摘要

One of the most important steps in designing a machine is the consideration of the effect of interfaces between components. A badly designed interface can vary from costly difficulties such as additional control or calibration to machine failure. For precision assemblies such as automobile engines, robotics, and many measurement devices, exact constraint techniques have been used to align removable components. Exact constraint typically requires controlled precision machining to allow an interface to be repeatable and interchangeable. Elastic averaging techniques can be used instead of exact constraint to create less repeatable interfaces with more generous machining requirements. Elastic averaging represents a subset of coupling types where improved accuracy is derived from the averaging of errors over a large number of relatively compliant contacting members. Repeatability and accuracy obtained through elastic averaging can be nearly as high as in deterministic systems, elastic averaging design allows for higher stiffness and lower local stress when compared to kinematic couplings. In this thesis, a model of elastic averaging has been developed to predict the effects of manufacturing variations on design. To demonstrate the capabilities of this model, a new fiber optic connector has been designed with elastic averaging and precision injection molding in mind. Simulations predict repeatability of approximately 5 micrometers for a 5X scale version, which agreed with experimental measurements. Fidelity parts were produced using the Silicon Insert Molded Plastics process (SIMP). SIMP uses microfabricated silicon inserts in a traditional injection mold to create parts with micro-scale features.
机译:设计机器中最重要的步骤之一是考虑组件之间的接口效果。设计不良的界面可能会因昂贵的困难(如额外的控制或校准)到机器故障而变化。对于诸如汽车发动机,机器人和许多测量设备之类的精密组件,已经使用精确的约束技术来对齐可移动部件。精确约束通常需要受控的精密加工,以使界面可重复和可互换。可以使用弹性平均技术来代替精确约束,以创建对可加工性要求更高的可重复性较低的界面。弹性平均表示耦合类型的子集,其中,通过对大量相对顺应的接触构件上的误差进行平均,可以提高精度。通过弹性平均获得的可重复性和准确性几乎可以与确定性系统中的一样高,与运动耦合相比,弹性平均设计可实现更高的刚度和更低的局部应力。本文提出了一种弹性平均模型来预测制造偏差对设计的影响。为了演示该模型的功能,设计了一种新的光纤连接器,同时考虑了弹性平均和精密注塑成型。仿真预测5X刻度版本的可重复性约为5微米,与实验测量结果一致。保真度零件是使用硅嵌件成型塑料工艺(SIMP)生产的。 SIMP在传统的注塑模具中使用微细加工的硅插件来制造具有微尺度特征的零件。

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