中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2014年
1期
115-121
,共7页
王志成%王卫领%罗森%朱苗勇
王誌成%王衛領%囉森%硃苗勇
왕지성%왕위령%라삼%주묘용
连铸结晶器%铜板%冷却结构%热-力学行为%有限元模型
連鑄結晶器%銅闆%冷卻結構%熱-力學行為%有限元模型
련주결정기%동판%냉각결구%열-역학행위%유한원모형
continuous casting mold%copper plate%cooling structure%thermo-mechanical behavior%finite element model
建立板坯连铸结晶器三维热力耦合有限元模型,通过比较结晶器铜板宽面弯月面处横截面的温度、热应力及变形分布,考察结晶器新型冷却结构对铜板热-力学行为的影响规律。结果表明:在弯月面处宽面热面,新型铜板的最高温度较传统铜板的低60℃,最大热应力小85 MPa,且新型铜板与传统铜板最大变形分别为0.21 mm和0.29 mm;新型铜板和传统铜板弯月面处宽面热面温度、热应力和法向变形波动幅度分别为12℃和67℃,33 MPa和113 MPa以及0.02 mm和0.09 mm。因此,新型结构铜板温度、热应力和变形量分布均匀性和合理性比传统的有明显改善,更适合裂纹敏感性钢种的浇铸。
建立闆坯連鑄結晶器三維熱力耦閤有限元模型,通過比較結晶器銅闆寬麵彎月麵處橫截麵的溫度、熱應力及變形分佈,攷察結晶器新型冷卻結構對銅闆熱-力學行為的影響規律。結果錶明:在彎月麵處寬麵熱麵,新型銅闆的最高溫度較傳統銅闆的低60℃,最大熱應力小85 MPa,且新型銅闆與傳統銅闆最大變形分彆為0.21 mm和0.29 mm;新型銅闆和傳統銅闆彎月麵處寬麵熱麵溫度、熱應力和法嚮變形波動幅度分彆為12℃和67℃,33 MPa和113 MPa以及0.02 mm和0.09 mm。因此,新型結構銅闆溫度、熱應力和變形量分佈均勻性和閤理性比傳統的有明顯改善,更適閤裂紋敏感性鋼種的澆鑄。
건립판배련주결정기삼유열력우합유한원모형,통과비교결정기동판관면만월면처횡절면적온도、열응력급변형분포,고찰결정기신형냉각결구대동판열-역학행위적영향규률。결과표명:재만월면처관면열면,신형동판적최고온도교전통동판적저60℃,최대열응력소85 MPa,차신형동판여전통동판최대변형분별위0.21 mm화0.29 mm;신형동판화전통동판만월면처관면열면온도、열응력화법향변형파동폭도분별위12℃화67℃,33 MPa화113 MPa이급0.02 mm화0.09 mm。인차,신형결구동판온도、열응력화변형량분포균균성화합이성비전통적유명현개선,경괄합렬문민감성강충적요주。
A three-dimensional thermo-mechanical coupled finite element model was established, the temperature, von Mises stress and displacement distribution of new cooling structure mold were compared, the effect of the new cooling structure mold on copper plate thermo-mechanical behavior was studied. The results show that in wide hot face of copper plate at meniscus, the highest temperature and the maximum von Mises stress of new mold are 60℃and 85 MPa lower than those of traditional mold, respectively. Meanwhile, the corresponding maximum norm displacements of new and traditional molds are 0.21 mm and 0.29 mm, respectively. The fluctuation range of temperature, von Mises stress and displacement of new and traditional mold at location mentioned above are 12℃and 67℃, 33 MPa and 113 MPa, 0.02 mm and 0.09 mm, respectively. Consequently, the temperature, von Mises stress and displacement distribution of new mold copper plate are more uniform and reasonable than those of traditional mold copper plate, indicating that the new mold copper plate is more suitable for the casting of cracking sensitive steel grade than traditional mold.