Study on transverse wall thickness variation of thick-walled seamless steel tubes during stretch-reducing hot rolling
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摘要: 為解決熱軋厚壁無縫鋼管橫向壁厚分布不均的問題,建立三維熱力耦合有限元模型,對張力減徑軋制過程進行了動態模擬,并結合工業試驗驗證仿真模型.根據仿真結果分析了軋制過程中溫度、應變和摩擦力的分布,研究了單道次軋制時金屬的徑向和周向流動規律,并結合整個軋制過程對金屬的橫向流動及壁厚不均的形成過程進行了分析,研究了軋制過程中溫度對金屬流動行為的影響,從而總結出橫向壁厚分布不均的原因.結果表明:(1)在經過單道次軋制時,金屬的周向流動為從孔型頂部流向輥縫,對應孔型角±30°位置處金屬的周向流動最活躍,靠近孔型頂部和輥縫位置的金屬周向流動性較差.但從整個軋制過程來看,金屬總的周向流動為從孔型頂部和輥縫向孔型角±30°位置處流動,從而導致孔型角±30°位置處的壁厚比孔型頂部和輥縫位置要厚.(2)溫度分布對金屬橫向流動有重大影響.由于塑性功換熱的原因,孔型角±30°位置處金屬的溫度比輥縫和孔型頂部處高,此處金屬較軟,阻力較小,孔型頂部和輥縫處金屬向此處的流動性增強,導致鋼管截面呈內邊方形.Abstract: In order to solve the transverse wall thickness variation problem of thick-walled seamless steel tubes produced by hot rolling, a coupled thermo-mechanical finite element model was established to simulate the stretch reducing hot rolling process, and industrial trials were performed to verify the model. Based on simulation results, the authors analyzed temperature, strain and friction force distributions in the rolling process, studied the radial and circumferential flow laws of metal in single pass rolling, the transverse flow law in the whole rolling process and the formation of thickness variation, discussed the influence of temperature on metal flow behavior, and finally summarized the reasons of transverse wall thickness variation. The metal circumferential flow direction is from the roller top to roller gap after rolled by a single pass. Circumferential flow of metal near the ±30℃ position of roller groove angle is the most active, and circumferential flow of metal near the roller top and gap positions is much weaker. However, after the whole rolling process, metal flows from the roller top and gap position to the ±30℃ position of roller groove angle along circumference. This causes that the thickness of the ±30℃ position is bigger than the roller top and gap position. Temperature has huge influence on metal transverse flow behavior. Because of plastic work, metal temperature at the ±30℃ position of roller groove angle increases higher than other positions, which softens and lowers the resistance of this place. So the metal fluidity of the roller top and gap positions toward the ±30℃ position is strengthened, leading to tube cross section appearing a hexagonal bore.
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Key words:
- seamless tubes /
- hot rolling /
- thickness control /
- simulation
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