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Limitation of dieless forming technique and application to triple-layered heat exchangers: dieless forming technique for double-layered heat exchangers III

机译:无无体形成技术的限制及三层热交换器的应用:双层热交换器III的无无能成型技术

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A uniform moment bending method has been used in manufacturing a heat exchanger for packaged air conditioning units. This is because this method offers flexibility during the manufacturing process in terms of the bending radii and forming angles. It has already been adopted for double-layered heat exchangers, but to cope with the design changes on a number of layers or bending radii, limitations of the processing conditions had to be considered. Both sides of the portion of the workpiece to be bent have to be gripped to proceed with this method. The relationship between the grip length and the bending radius has been estimated through both experiments and calculations. As a result, for example, the minimum length of the gripper to form a 107.8 mm radius is considered to be 125 mm. As for triple-layered workpiece forming, a machine for practical use has been adopted in an actual manufacturing line. This can be accomplished using a four-axis controller as has been used previously for bending a double-layered workpiece. In this case, by controlling only the inner and outer layer positions, the middle layer position will be maintained by both controlled layers, which results in a simultaneous bending without workpiece damage.
机译:均匀的力矩弯曲方法已经用于制造用于包装空调单元的热交换器。这是因为该方法在弯曲半径和成角度方面提供了在制造过程中的灵活性。它已经采用双层热交换器,但要应对多个层或弯曲半径的设计变化,必须考虑处理条件的限制。必须抓住待弯曲的工件部分的两侧,以进行该方法。通过实验和计算估计了握持长度和弯曲半径之间的关系。结果,例如,形成107.8mm半径的夹具的最小长度被认为是125mm。对于三层工件成型,实际的生产线采用了一种用于实际使用的机器。这可以使用四轴控制器来完成,如前所述用于弯曲双层工件。在这种情况下,通过仅控制内层和外层位置,将通过两个受控层保持中间层位置,这导致没有工件损坏的同时弯曲。

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