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THEORETICAL AND EXPERIMENTAL RESEARCH ON FORGE ROLLING PROCESS OF PREFORMS FROM MAGNESIUM ALLOY AZ31

机译:镁合金AZ31锻造坯料锻造工艺的理论与实验研究

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摘要

This paper presents results of theoretical and experimental research works on the rolling process of a lever preform from magnesium alloy AZ31. The forge rolling process of the preform was realized in the system oval-circle. The paper focuses mainly on kinematics of material flow and proper filling of rolling impressions. Research aiming at determining possibilities of faults presence in the form of cracks, overlapping and improper filling of the impressions were also conducted. During experimental research it was noticed that material cracking took place at the moment of material clamping by rolls. Moreover, it was stated that this cracking may be the result of large shearing stresses action, appearing at the moment of material clamping by rolls. Shearing stresses values were determined on the basis of numerical calculations. Next, tools were modified in order to lower tangential stresses at the moment of material clamping by rolls. The further experimental research with modified tools confirmed the rightness of the assumptions. On the basis of conducted works on the forge rolling process of magnesium alloy AZ31, it was stated that when material is clamped by tools tangential stresses intensification should not take place.
机译:本文介绍了理论和实验研究的结果,对镁合金AZ31的杠杆预制件的轧制过程有效。预制件的锻造轧制过程在系统椭圆形圆圈中实现。本文主要侧重于物质流动的运动学和轧制印象的适当填充。还进行了针对裂缝,重叠和不当填充裂缝形式的故障存在的可能性的研究。在实验研究期间,注意到材料裂纹在材料夹紧时发生了裂缝。此外,据说该裂缝可能是大剪切应力作用的结果,在辊子的材料夹紧时出现。基于数值计算确定剪切应力值。接下来,修改工具以降低通过辊的材料夹紧时的切向应力。改进工具的进一步实验研究证实了假设的正确性。在镁合金AZ31的锻造轧制过程中进行的作品的基础上,据说,当材料通过工具夹紧时,不应发生切向应力。

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