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Processing of Threads on a Magnesium Alloy Using a Special Process

机译:使用特殊工艺在镁合金上加工螺纹

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Tapping is a complex process largely applied on metal cutting industry. The tapping process can be carried out using cutting or forming tools. This work presents a study of the form tapping process using a tool without cutting edge and helix angle and with external diameter much smaller than the final thread. The experimental tests were carried out with three forming speeds and three helical feed rates to produce M12 threads into the AM60 Magnesium alloy. The results showed that these specfic forming taps provided internal threads with good thread shapes and finishing forms that were as good as the traditional forming tap, which uses tools with the same final thread hole diameter. In addition, the increase of helical feed rate decreases the torque and thrust force, but the differences were greater in torque than in thrust force. The greatest decrease of torque occurred for the lowest forming speed, and the lowest decrease of torque occurred for the highest forming speed. Moreover, the thrust force and torque recorded in the experimental tests were lesser than in. traditional form tapping for the same thread area, at least for the magnesiun alloy used.
机译:攻丝是一个复杂的过程,主要应用于金属切削行业。攻丝过程可以使用切割或成型工具进行。这项工作提出了使用没有切削刃和螺旋角且外径比最终螺纹小得多的工具进行攻丝过程的研究。以三种成形速度和三种螺旋进给速率进行了实验测试,以将M12螺纹生产到AM60镁合金中。结果表明,这些特殊的成型丝锥提供的内螺纹具有良好的螺纹形状和精加工形状,与传统的成型丝锥一样,传统的成型丝锥使用具有相同最终螺纹孔直径的工具。另外,螺旋进给速度的增加减小了扭矩和推力,但是扭矩上的差异大于推力上的差异。转矩的最大降低发生在最低的成型速度,而转矩的最小降低发生在最高的成型速度。此外,对于相同的螺纹面积,至少对于所用的镁锡合金,在实验测试中记录的推力和扭矩要小于传统的形式攻丝。

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