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   磁感应强度. 在 冶金工业 分类中 的翻译结果: 查询用时:1.731秒
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  magnetic induction
    Influence Factors on Magnetic Induction of Traveling Wave Electromagnetic Stirrer for Slab Concasting
    连铸板坯行波电磁搅拌器磁感应强度的影响因素
短句来源
    In condition of commercial production at Maanshan Steel,with electric current parameter within limits 400~510 A and 2.0~2.5 Hz,the distribution characteristics of magnetic induction intensity in concasting mould with M-EMS for Φ380 mm round bloom has been measured by using Gauss-meter.
    在马钢工业生产条件下,用高斯计空载测量Φ380 mm圆坯连铸结晶器内在电流参数400~510A、2.0~2.5 Hz的范围内磁感应强度的分布特性。
短句来源
    The test results showed that the magnetic induction of developed two-side stirrer linearly increased with increasing input current at given input frequency and distance between relative magnetic pole pairs,and as the input current was ~600 A,the magnetic induction at center of stirrer was up to 600×10~(-4) T.
    结果表明,在给定输入频率与两相对磁极间距下研制的双侧搅拌器的磁感应强度随输入电流的增加呈线性增加,为了使搅拌器中心的磁感应强度达到600×10-4T,输入电流约为600 A。
短句来源
    The measured results using single side secondary cooling magnetic stirring in situ of(180~220) mm×(900~(1 630)) mm slab concaster obtained that as input current only is 445~595 A developed two side stirrer the magnetic induction at center magnetic field shall be up to(450~600)×10~(-4) T, it is available to increase stirring efficiency.
    在(180~220)mm×(900~1 630)mm板坯连铸机单侧二冷电磁搅拌现场测试结果表明,如采用所研制的双侧直线型电磁搅拌器时,输入电流只要445~595 A,中心磁场的磁感应强度即可达(450~600)×10-4T,有效地提高了搅拌效率。
短句来源
    Compared with traditional silicon steel, Fe-6.5wt%Si in theory is considered as an excellent property soft magnetism alloy. It has such excellent soft magnetism properties as higher permeability higher saturation magnetic induction near-zero magnetostriction and low core loss.
    Fe-6.5wt%Si硅钢是一种性能优异的软磁合金,与传统硅钢材料相比,它具有高磁导率、高饱和磁感应强度、低磁致伸缩和低铁损等更优异的性能。
短句来源
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  magnetic induction intensity
    In condition of commercial production at Maanshan Steel,with electric current parameter within limits 400~510 A and 2.0~2.5 Hz,the distribution characteristics of magnetic induction intensity in concasting mould with M-EMS for Φ380 mm round bloom has been measured by using Gauss-meter.
    在马钢工业生产条件下,用高斯计空载测量Φ380 mm圆坯连铸结晶器内在电流参数400~510A、2.0~2.5 Hz的范围内磁感应强度的分布特性。
短句来源
    The results showed that the curve of magnetic induction intensity along vertical direction of mould center had a peak shape and the maximum value was at M-EMS stirrer center and a distance 530 mm from top of mould;
    结果表明,结晶器中心垂直方向磁感应强度变化曲线呈波峰状,在离结晶器上口约530 mm的电磁搅拌器中心处有最大值;
短句来源
    The magnetic induction intensity at meniscus was about 10% of that maximum value at mould middle section.
    钢液弯月面处的磁感应强度是结晶器中心最大值的10%左右。
短句来源
    The running currents have been established by controlling the magnetic induction intensity nearby the meniscus when protection casting.
    通过控制保护浇注时弯月面附近的磁感应强度来确定工作电流。
  magnetic flux density
    In electromagnetic stirring the magnetic flux density and magnetic force inside the liquid steel have been numerically calculated and analyzed by means of finite element analytic soft ware ANSYS under the conditions of 150 A current and frequency variation in a 150 mm×150 mm billet continuous caster,and then the effect of mold wall thickness on the magnetic flux density as well as distribution of the magnetic forces in the liquid steel at different time analyzed.
    借助有限元分析软件ANSYS,对150mm×150mm小方坯连铸结晶器电磁搅拌在电流为150A,频率变化情况下的钢液内部磁感应强度和电磁力进行了数值分析,并分析了结晶器厚度对钢液内部磁场的影响以及不同时刻钢液内部电磁力的分布。
短句来源
    Numerical simulation on the distribution of magnetic flux density in a electromagnetic soft-contact mold
    电磁软接触结晶器磁感应强度分布的数值模拟
短句来源
    that control effectiveness is obvious when magnetic flux density is more than 0. 2T;
    当磁感应强度B≥0.2T时,控制效果明显;
短句来源
    The results show that the magnetic properties of the silicon steel sheet produced by the technique, 1.8T (Bs) of saturation magnetic flux density, 69W/kg (W2/10k) of iron loss, have been improved.
    研究表明:在一定的轧制成形和烧结条件下,所制备的Fe-6.5%Si硅钢片的饱和磁感应强度Bs为1.8T; 高频铁损W2/10k为69W/kg。
短句来源
    Influence of Induced Current on Magnetic Flux Density in Soft-Contact Mold
    感生电流对软接触结晶器内磁感应强度的影响
短句来源
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