Numerical simulation of residual stress field in an oil casing during quenching process
-
摘要: 為降低P110級石油套管淬火冷卻過程中的內應力,提出"水淬—空冷—水淬"的優化冷卻方式,并利用有限元方法對冷卻過程中溫度、應力場的變化規律和分布狀態進行了模擬.模擬結果表明:冷卻至7.5s出水時,橫截面上最大溫差為104℃,空冷結束時斷面溫度均勻;再次水冷的最大溫差為80℃,與7.5s時相比,溫差降低了24℃.對于應力,在最初的水冷階段,從開始到2.5s,切向應力增大,2.5~5.5s,切向應力降低,冷卻至5.5s時發生組織轉變,此后熱應力和組織應力共存,切向應力隨冷卻進行迅速升高,并在7.5s時達到最大,為563MPa;出水空冷階段,熱應力減小,組織應力消失,13s空冷結束時切向應力分布較均勻,為-11~27MPa;再次入水冷卻至13.6s,切向應力再次達到最大,為451MPa,比7.5s時的563MPa降低了112MPa,達到了優化冷卻工藝的目的.Abstract: In order to reduce the internal stress of a P110 oil casing during quenching,an optimized cooling process "water-quenching→air-cooling→water-quenching" was proposed.The change and distribution of temperature and stress field of the casing during cooling process were simulated by finite element method.The simulated results show that the maximum temperature difference is 104℃ after water-quenching for 7.5s,and the distribution of cross-section temperature is uniform at the end of air-cooling.When the casing is quenched by water again,the temperature difference is 80℃,which is 24℃ lower than that of 7.5s.For the stress,at the first water-quenching stage,the tangential stress increases from the beginning to 2.5s and then decreases form 2.5 to 5.5s.At 5.5s phase transformation occurs.After that there are both thermal stress and structural stress in the casing,hence the tangential stress increases sharply and peaks at 563MPa at 7.5s.At the air-cooling stage,as the thermal stress decreases and the structural stress disappears,the distribution of tangential stress becomes uniform and levels off at-11 to 27MPa at the end.When the casing is quenched in water again,the tangential stress increases and reaches the peak again at 451MPa at 13.6s,which is 112MPa lower than 563MPa at 7.5s,thereby optimizing the cooling process.
-
Key words:
- oil casing /
- quenching /
- finite element method /
- temperature field /
- stress field
-

計量
- 文章訪問數: 128
- HTML全文瀏覽量: 21
- PDF下載量: 4
- 被引次數: 0