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基于熱連軋精軋生產(chǎn)的純鈦TA1變形抗力模型研究
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昆明理工大學(xué)材料科學(xué)與工程學(xué)院,燕山大學(xué)國(guó)家冷軋板帶裝備及工藝工程技術(shù)研究中心,四川省攀枝花市東區(qū)桃源街90號(hào)鞍鋼集團(tuán)釩鈦(鋼鐵)研究院,四川省攀枝花市東區(qū)桃源街90號(hào)鞍鋼集團(tuán)釩鈦(鋼鐵)研究院

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四川省重大科技攻關(guān)項(xiàng)目(11RZ02)


Research on Deformation Resistance Model for Pure Titanium TA1 Based on the Hot Continuous Finish Rolling Process
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Northwest Institute for Nonferrous Metal Research,Xi’an;School of Materials Science and Engineering,Kunming University of Science and Technology,,,

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    摘要:

    為了研究某廠熱連軋純鈦卷精軋段的變形抗力問(wèn)題,根據(jù)工業(yè)生產(chǎn)的實(shí)際軋制工藝,確定該精軋段的軋件形變行為條件為:變形溫度范圍為700~800℃,應(yīng)變速率為5~25s-1,最大變形量為0.8,對(duì)純鈦進(jìn)行熱壓縮試驗(yàn)。結(jié)果表明純鈦的流變應(yīng)力隨變形溫度升高而降低,隨應(yīng)變速率升高而升高,變形機(jī)制受到溫度和應(yīng)變速率的影響較大,溫度為700℃、應(yīng)變速率為1s-1時(shí)主要以動(dòng)態(tài)回復(fù)為主,隨著溫度和應(yīng)變速率的增加,動(dòng)態(tài)再結(jié)晶程度不斷增加,當(dāng)溫度為800℃、應(yīng)變速率為20s-1時(shí),再結(jié)晶比較充分,組織均勻性良好。根據(jù)熱模擬實(shí)驗(yàn)得到的真應(yīng)力-應(yīng)變數(shù)據(jù),同時(shí)考慮化學(xué)成分的影響,基于Johnson-Cook模型建立了能夠綜合反映諸多因素的變形抗力模型,由變形抗力模型得到的軋制力計(jì)算值與實(shí)際值的比較驗(yàn)證了模型可靠性,為熱連軋純鈦卷精軋生產(chǎn)的工藝控制提供了有效依據(jù)。

    Abstract:

    In order to study the deformation resistance problem of a pure titanium coil of the finishing rolling section of hot continuous rolling process, according to the actual rolling process of industrial production, a hot compression test on pure titanium was carried out in the following conditions: the deformation temperature range was 700~800℃, the strain rate was 5~25s-1, the maximum deformation was 0.8. The results show that the flow stress of pure titanium decreases with the increase of deformation temperature, while increases with the increase of strain rate. The effect of temperature and strain rateon thedeformation mechanism was higher. The deformation was mainly dynamic recovery when the temperature was 700℃and the strain rate was 1s-1. The degree of dynamic recrystallizationincreased continuouslywith the increase of temperature and strain rate. the dynamic recrystallizationwas the most complete at the temperature of 800 ℃and the strain rate of 20s-1, whose microstructure wasthe most homogeneous. According to the true stress-strain data obtained from thermal simulation experiment, as well as considering the influence of chemical composition, and based on the deformation resistance model of Johnson-Cook model, a deformation resistance model was developed, which can reflect many factors. Comparing the calculated value of rolling force based on the deformation resistance model with the actual value verified the reliability of the model. The model provides an effective basis for finishing rolling technical control of pure titanium coil in the hot continuous rolling process.

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李軍,于輝,程興德,彭琳.基于熱連軋精軋生產(chǎn)的純鈦TA1變形抗力模型研究[J].稀有金屬材料與工程,2016,45(2):393~398.[LI Jun, YU Hui, CHENG Xingde, PENG Lin. Research on Deformation Resistance Model for Pure Titanium TA1 Based on the Hot Continuous Finish Rolling Process[J]. Rare Metal Materials and Engineering,2016,45(2):393~398.]
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  • 收稿日期:2015-05-06
  • 最后修改日期:2015-06-17
  • 錄用日期:2015-12-11
  • 在線發(fā)布日期: 2016-07-19
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