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Defect Recovery and Control in Heavy Forgings by Two Times Upsetting and Stretching Process

机译:两次镦粗锻造和伸展过程中重锻件的缺陷恢复和控制

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In practical production, the heavy forgings of the largest diameter 1225 mm larger than its length 905 mm are unqualified for supersonic inspection. By means of acid-eroding, scanning electron microscopy and energy spectrum analysis on defects, it is shown that the defects are originated from inclusions made up of Al_2O_3, Fe_2O_3 and a little CaO. In order to improve forging quality, the controlling mechanism of defects is analyzed, and forging process of two times upsetting and stretching process is researched to eliminate the cracks originated from inclusions. The result shows that the inclusions in forgings can be controlled and the inner cracks recovered effectively by two times upsetting and stretching process. All of the forgings meet the supersonic standard which indicates that this process is better fit for heavy forgings with largest diameter larger than its length.
机译:在实际生产中,大于其长度的最大直径1225毫米的重锻件对于超音速检测不合格。通过酸性侵蚀,扫描电子显微镜和能谱分析缺陷,示出了缺陷源于由Al_2O_3,Fe_2O_3和一点CaO组成的夹杂物。为了提高锻造质量,分析了缺陷的控制机制,研究了两次镦粗和拉伸过程的锻造过程,以消除源自夹杂物的裂缝。结果表明,可以控制锻件中的夹杂物,并且通过镦粗镦粗和拉伸过程有效地回收内裂纹。所有锻件都符合超音速标准,表明该过程更好地适合具有比其长度大的最大直径大的重型锻件。

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