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EFFECT OF CONTINUOUS DIRECT CURRENT ON THE YIELD STRESS OF STAINLESS STEEL 304 MICRO TUBES DURING HYDROFORMING OPERATIONS

机译:连续直流对液压成形操作期间不锈钢304微管屈服应力的影响

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Hydroforming at the macro scale offers the opportunity to create products that have superior mechanical properties and intricate complex geometries. Micro tube hydroforming is a process that is gaining popularity for similar reasons. At the same time, due to the physical size of the operations, there are many challenges including working with extremely high pressures and available materials that are typically difficult to form. Increasing the formability of micro tubes during the hydroforming process is desired. Being able to increase the formability is essential because as the tube diameters decrease in size, the required forming pressure increases. As a result, it is important to explore methods to decrease the yield stress during forming operations. Traditional methods for decreasing the materials yield stress typically involve heating either the sample or the process equipment. Using traditional methods typically sacrifice dimensional quality of the part, alter the mechanical properties and also raise the costs of the operations. Electrically Assisted Manufacturing (EAM) is a non-traditional method that is gaining popularity by reducing the necessary forces and pressures required in metal forming operations.
机译:宏观尺度的液压成形提供了创建具有优越机械性能和复杂复杂几何形状的产品的机会。微管液压成形是出于类似原因获得普及的过程。同时,由于操作的物理尺寸,存在许多挑战,包括使用极高的压力和通常难以形成的可用材料。期望增加微管的可成形性。能够提高可成形性是必要的,因为随着管直径的尺寸减小,所需的成形压力增加。结果,重要的是探索在形成操作期间降低屈服应力的方法。用于降低材料的传统方法屈服应力通常涉及加热样品或工艺设备。使用传统方法通常牺牲尺寸质量,改变机械性能并提高了操作的成本。电辅助制造(EAM)是一种非传统方法,通过减少金属成形操作所需的必要力和压力来获得普及。

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