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变接触长度支承辊
相关语句
  varying contact length back-up roll
     Roll deformation rule of varying contact length back-up roll under the condition of equal contact pressure between rolls
     变接触长度支承辊间等接触压力时轧辊变形规律
短句来源
  “变接触长度支承辊”译为未确定词的双语例句
     APPLYING VCL BACK-UP ROLL TORAISE THE CONTROL LEVEL OF STRIP SHAPE
     应用变接触长度支承辊提高板形综合调控能力
短句来源
     Improvement on Shape and Transverse Error of Plate by Backup Rolls with Variable Contacting Length
     应用变接触长度支承辊改善中厚板板形及横向同板差
短句来源
     Improvement in shape and transverse error of plate by backup rolls with variable contacting length
     应用变接触长度支承辊改善中厚板板形及横向同板差
短句来源
     The technology of VCL backup roll has been applied to a 3500 mm plate rolling mill based on the research and analysis. The controlling abilities of the transverse error and shape of plate were improved obviously, and the transverse error was reduced by about 60 %.
     在研究和分析变接触长度支承辊新技术的基础上,将其应用于3500mm厚板轧机,使中厚板板形及横向同板差的控制能力显著提高,钢板的横向同板差下降约60%。
短句来源
     The technology of VCL backup roll has been applied to a 3500 mm plate rolling mill based on the research and analysis. The controlling abilities of the transverse error and shape of plate were improved obviously,and the transverse error was reduced by about 60%.
     在研究和分析变接触长度支承辊新技术的基础上 ,将其应用于 350 0mm厚板轧机 ,使中厚板板形及横向同板差的控制能力显著提高 ,钢板的横向同板差下降约 60 % .
短句来源
  相似匹配句对
     APPLYING VCL BACK-UP ROLL TORAISE THE CONTROL LEVEL OF STRIP SHAPE
     应用接触长度支承提高板形综合调控能力
短句来源
     Roll deformation rule of varying contact length back-up roll under the condition of equal contact pressure between rolls
     接触长度支承间等接触压力时轧形规律
短句来源
     Improvement on Shape and Transverse Error of Plate by Backup Rolls with Variable Contacting Length
     应用接触长度支承改善中厚板板形及横向同板差
短句来源
     Improvement in shape and transverse error of plate by backup rolls with variable contacting length
     应用接触长度支承改善中厚板板形及横向同板差
短句来源
     This paper introduces the VCL(Varying Contact Length) back-up roll technology in 2030mm continuous cold rolling mill at Baosteel.
     介绍用于宝钢冷轧厂2030mm全连续冷轧机上的接触长度(VCL)支承新技术及其生产实绩。
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The technology of VCL backup roll has been applied to a 3500 mm plate rolling mill based on the research and analysis. The controlling abilities of the transverse error and shape of plate were improved obviously, and the transverse error was reduced by about 60 %. This technology is worth spreading in plate rolling mills.

在研究和分析变接触长度支承辊新技术的基础上,将其应用于3500mm厚板轧机,使中厚板板形及横向同板差的控制能力显著提高,钢板的横向同板差下降约60%。该技术对新旧钢板轧机的技术改造均有推广价值。

The technology of VCL backup roll has been applied to a 3500 mm plate rolling mill based on the research and analysis.The controlling abilities of the transverse error and shape of plate were improved obviously,and the transverse error was reduced by about 60%.This technology is worth spreading in plate rolling mills.

在研究和分析变接触长度支承辊新技术的基础上 ,将其应用于 350 0mm厚板轧机 ,使中厚板板形及横向同板差的控制能力显著提高 ,钢板的横向同板差下降约 60 % .该技术对新旧钢板轧机的技术改造均有推广价值

According to the equipment features of the 180/400×320 and 100/300×350 4 h mill and the product requirement,a curve as the contour of the backup roll with variable contacting length was developed to be fit automatically for the strip width variation and to improve the shape controlling ability of the mill.Substantial results were achieved that the transverse thickness difference on the same place of strip decreased by about 45%,thickness precision increased by about 40%,the lateral crack obviously reduced...

According to the equipment features of the 180/400×320 and 100/300×350 4 h mill and the product requirement,a curve as the contour of the backup roll with variable contacting length was developed to be fit automatically for the strip width variation and to improve the shape controlling ability of the mill.Substantial results were achieved that the transverse thickness difference on the same place of strip decreased by about 45%,thickness precision increased by about 40%,the lateral crack obviously reduced and no flaking from the backup roll surface occurred.

根据180 /40 0× 32 0及10 0 30 0× 35 0四辊轧机的设备特点和产品情况 ,研究开发了能自动适应轧件宽度变化的变接触长度支承辊辊型曲线 ,以提高轧机的板型控制能力 ,使冷轧带钢的横向同板差下降约 45 % ,轧制厚度精度提高 40 % ,边裂现象明显减少 ,并有效防止支承辊辊面剥落 ,取得明显实效

 
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