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首页> 外文期刊>International Journal of Manufacturing Research >Numerical and experimental study on the effect of die shape and billet size in the forging process of axi-symmetric parts
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Numerical and experimental study on the effect of die shape and billet size in the forging process of axi-symmetric parts

机译:模具形状和坯料尺寸对轴对称零件锻造过程影响的数值和实验研究

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摘要

Precision forging is defined as a flashless near-net-shape forging process which produces parts with high surface quality and with dimensional accuracy. This technique has become a key method in the field of manufacturing to improve productivity and to challenge in these competitive market conditions. This paper presents the effect of die shape and initial billet size on the parameters of axi-symmetrical precision forging including forging force, stress-strain distribution, material flow pattern, and contact pressure between the die and the billet. The less forging force, the cheaper the equipment needed. More homogeneous strain distribution leads to higher reliability of products as well as smoother mechanical properties. Material flow pattern is a shortcut to predicting final grain order and die wear pattern. Contact pressure directly affects the die wear and life. By controlling these parameters, some factors like die life, mechanical properties of product, and equipment costs could be optimised. Results prove that the appropriate billet diameter (D_b/D_d) can be effective factor on the forging force, lower required materials and material flow. A comparison has been done between numerical and experimental results. A good agreement was achieved between theory and practice.
机译:精密锻造被定义为一种无飞边的近净形锻造工艺,该工艺可生产具有高表面质量和尺寸精度的零件。该技术已成为制造领域中提高生产率并在竞争激烈的市场条件下挑战的关键方法。本文介绍了模具形状和初始坯料尺寸对轴对称精密锻造参数的影响,这些参数包括锻造力,应力-应变分布,材料流型以及模具与坯料之间的接触压力。锻造力越小,所需设备越便宜。更均匀的应变分布导致产品更高的可靠性以及更平滑的机械性能。物料流型是预测最终晶粒次序和模具磨损型式的捷径。接触压力直接影响模具的磨损和寿命。通过控制这些参数,可以优化某些因素,例如模具寿命,产品的机械性能和设备成本。结果证明,合适的钢坯直径(D_b / D_d)是影响锻造力,降低所需材料和材料流量的有效因素。在数值和实验结果之间进行了比较。理论与实践之间达成了良好的共识。

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