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1)  hollow billet
空心管坯
1.
Study on soft-contact electromagnetic continuous casting of hollow billet;
空心管坯软接触电磁连铸技术研究
2.
5%Pb hollow billet under traveling magnetic field.
利用等轴球晶两相凝固模型计算了行波磁场作用下空心管坯的凝固过程。
3.
Distribution of magnetic field in electromagnetic continuous casting process of Al-alloy hollow billets is studied by way of numerical simulation.
采用数值模拟的方法研究了铝合金空心管坯电磁铸造中磁场的分布规律·建立了包括水冷芯、外结晶器、铸锭及内/外两个线圈的二维轴对称有限元模型·通过求解磁矢势微分方程,确定了磁感应强度在空间的分布·计算结果表明:铸造过程中内外线圈相互作用,外线圈电流约为内线圈的一半时,磁感应强度分布比较均匀;线圈电流频率和相位是空心管坯电磁铸造中重要的工艺参数,适当增加频率,管的内表面侧磁感应强度明显增强;相位影响磁感应强度梯度的大小和方向
2)  hollow billets
空心管坯
1.
Control of macrostructure and surface quality during electromagnetic continuous casting of Sn-Pb hollow billets;
电磁连续铸造Sn-Pb空心管坯质量控制
2.
Based on the solidification characters of hollow billets, a mathematical model was established to study numerically heat transfer during horizontal continuous casting of BFe30-1-1 alloy.
根据空心管坯的凝固传热特点建立了空心管坯水平连铸数值计算模型,采用ANSYS软件计算了水平连铸过程中浇注温度、冷却强度及拉坯速度对BFe30-1-1白铜合金管坯糊状区宽度和液穴深度的影响。
3.
In order to obtain hollow billets of BFe30-1-1 alloy, a new casting technology was investigated and hollow billets with size of φ83 mm×20 mm were produced in laboratory.
探索了用水平连铸的方法制备BFe30-1-1铜合金空心管坯的技术,在实验室成功制备了φ83mm×20mm空心管坯
3)  hollow billet
空心坯料
1.
With the increased inside diameter of hollow billet,the speed of extrusion force decreased,however,the maximum extrusion force will keep the same.
由模拟结果可知,在采用无芯轴凸模挤压时,挤压力随着行程的增加而增大,随着空心坯料内径的增大,挤压力增加的速度减慢,但最大挤压力变化不大。
2.
In view of the problem of magnesium alloy loading wheel forming force ,considering product structure property, the size request, the material use ratio and production efficiency\'s factor, proposed the hollow billet extrusion reducing forming force technology, and designed the formed technology .
首先针对镁合金负重轮挤压成形力大的问题,综合考虑产品组织性能、尺寸要求、材料利用率和生产效率的因素,提出空心坯料省力挤压成形工艺,并制定该零件的成形工艺方案。
4)  Ring stock
空心坯
5)  Solid bar
实心管坯
6)  blank tube centering machining
管坯冷定心
补充资料:天津钢管公司管坯在250连轧管机组的穿孔机上穿孔


天津钢管公司管坯在250连轧管机组的穿孔机上穿孔


天津钢管公司管坯在250连轧管机组的穿孔机上穿孔
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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