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压制压力 meaning in English

pressing pressure

Examples

  1. Dense lsco ceramic targets without cracks were prepared with cobalt nitrate excess coefficient 1 . 05 and pressing pressure 8mp , sintered at 1350 for 3h . the xrd spectrum is consistent with the standard cards of lsco powder
    通过大量实验,确定了最佳烧结工艺:烧结温度为1350 、保温3小时,硝酸钴过量系数为1 . 05 ,压制压力为8mp 。
  2. We analyze the microstrain and density changing of the composite powders during pressing . the density evolution of ti / al composite billet became calm when the pressure get to 1000mp . the technique of vacuum degassing can reduce the content of atmosphere
    分析了复合粉在冷压制过程中的微观变形过程,不同压力下的密度变化趋势,表明在冷压制压力达到1000mpa后复合粉预制坯密度变化趋于平稳。
  3. The studies indicated that the rigidity of the copper billet was enhanced a lot with different pressure and different forms of pressure , and by the obvertion of the microscopic structure , we find that the aluminizing formations had different thickness with different pressure
    研究结果表明:对不同压制压力下及不同压制方式的纯铜渗铝后,铜坯的硬度得到很大的提高,对显微组织观察可知,在不同压力下渗铝其渗层厚度明显不同。
  4. By analyzing microstructure and morphology of the composites at the different pressure and different sintering temperature , optimal craft parameters of primary pressing - sintering were ascertained : 350mpa ( pressing ) + 400 c + lh ( clearing gas ) + 800 c + 40min ( sintering ) . after primary press , the carbon fibers showed some directional distribution
    通过对比不同压制压力和烧结温度下复合材料的显微组织形貌,确定初压烧结的最佳工艺参数为: 350mpa压制+ 400 1h除气+ 800 40min烧结。初压后,碳纤维在基体中的分布产生了一定的取向性。
  5. Remarkably , the temperature must be limited between softening point and solidification value , at which the bond can get perfect fluidity and stickiness . effects of bond content and pressure on magnet product during heating - pressing process are the same with effects during common - pressing process . fourthly , it is more than 250 hours before magnet is eroded when it is coated with lacquer by way of cathode electrophoresis
    温度对温压效果影响明显,应当选择在粘结剂软化点以上、固化反应前的某一点,保证粘结剂具有适当的粘度和良好的流动性;与普通压制工艺相同,温压工艺制备的粘结磁体密度和磁性能均随压制压力的增大而提高,磁体性能和磁粉体积分数随粘结剂含量变化的规律一致。
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