The phenomenon of uneven density distribution is inevitable in the process of preparing bonded magnets with complicated shape or with large geometric size by compression molding due to the friction among magnetic powd...The phenomenon of uneven density distribution is inevitable in the process of preparing bonded magnets with complicated shape or with large geometric size by compression molding due to the friction among magnetic powder grains and between magnetic powder and the die wall, which reduces the pressure along the compression direction. In order to improve the density distribution homogeneity, the thin wall rings with composition of HDDR NdFeB prepared by compression molding were selected as the investigated object in this study. It was systematically investigated on the effect of addition level of lubricants and the addition methods of lubricants and strengthener on magnet density, density distribution and on magnet strength. By means of joint addition of lubricants and strengthener, which increases the magnet density and improves the magnet density distribution under the precondition of keeping the magnet strength unreduced. Thus the moldability of the bonded magnets is improved.展开更多
The mechanical property of a novel expanded polystyrene cement-based material (EPS-C), which was prepared by compressing semi-dry materials molding, was investigated. The compressive behavior was analyzed by compres...The mechanical property of a novel expanded polystyrene cement-based material (EPS-C), which was prepared by compressing semi-dry materials molding, was investigated. The compressive behavior was analyzed by compression tests to gain the energy absorbed during failure. Performance for impact resistance was tested by a self-made device. The results figures out that the EPS-C has good toughness and can reach swain of 0.7 without failure. The stress-strain curve is quite different from that of normal EPS concrete. It can be divided into three stages and in the third stage the compressing exhibits the highest energy absorption. With the rising of cement ratio, the impact force absorption (IEA) decreases first and then increases. The impact energy absorption (IEA) increases first and then decreases. The lowest IEA and the highest lEA appear at the cement dosage from 233 g/L to 267 g/L and from 233 g/L to 300 g/L, respectively.展开更多
以过氧化二异丙苯(DCP)为交联剂、三烯丙基异氰脲酸酯(TAIC)为助交联剂、偶氮二甲酰胺(AC)为发泡剂,采用一步法化学交联模压发泡制备聚丙烯发泡材料(EPP),考察不同塑化参数(温度和时间)与模压工艺(温度和时间)对EPP材料力学性能的影响...以过氧化二异丙苯(DCP)为交联剂、三烯丙基异氰脲酸酯(TAIC)为助交联剂、偶氮二甲酰胺(AC)为发泡剂,采用一步法化学交联模压发泡制备聚丙烯发泡材料(EPP),考察不同塑化参数(温度和时间)与模压工艺(温度和时间)对EPP材料力学性能的影响。结果表明,当DCP用量为1.2~1.4份,物料在130℃~140℃温度下塑化10 min 15min后,置于150℃~160℃平板硫化机中模压25 min~30min,可得到密度介于190 g/cm^3~240g/cm^3,且力学性能较优的EPP材料。偏光显微镜观察结果表明,当DCP用量为1.4份时,EPP材料的泡孔结构均匀且细密。展开更多
文摘The phenomenon of uneven density distribution is inevitable in the process of preparing bonded magnets with complicated shape or with large geometric size by compression molding due to the friction among magnetic powder grains and between magnetic powder and the die wall, which reduces the pressure along the compression direction. In order to improve the density distribution homogeneity, the thin wall rings with composition of HDDR NdFeB prepared by compression molding were selected as the investigated object in this study. It was systematically investigated on the effect of addition level of lubricants and the addition methods of lubricants and strengthener on magnet density, density distribution and on magnet strength. By means of joint addition of lubricants and strengthener, which increases the magnet density and improves the magnet density distribution under the precondition of keeping the magnet strength unreduced. Thus the moldability of the bonded magnets is improved.
基金Funded by the Kwang-Hua Fund for College of Civil Engineering,Tongji Universitythe National Natural Science Fundation of China(No.41002093)the National Science and Technology Support Project of China(No.2012BAK24B04)
文摘The mechanical property of a novel expanded polystyrene cement-based material (EPS-C), which was prepared by compressing semi-dry materials molding, was investigated. The compressive behavior was analyzed by compression tests to gain the energy absorbed during failure. Performance for impact resistance was tested by a self-made device. The results figures out that the EPS-C has good toughness and can reach swain of 0.7 without failure. The stress-strain curve is quite different from that of normal EPS concrete. It can be divided into three stages and in the third stage the compressing exhibits the highest energy absorption. With the rising of cement ratio, the impact force absorption (IEA) decreases first and then increases. The impact energy absorption (IEA) increases first and then decreases. The lowest IEA and the highest lEA appear at the cement dosage from 233 g/L to 267 g/L and from 233 g/L to 300 g/L, respectively.
文摘以过氧化二异丙苯(DCP)为交联剂、三烯丙基异氰脲酸酯(TAIC)为助交联剂、偶氮二甲酰胺(AC)为发泡剂,采用一步法化学交联模压发泡制备聚丙烯发泡材料(EPP),考察不同塑化参数(温度和时间)与模压工艺(温度和时间)对EPP材料力学性能的影响。结果表明,当DCP用量为1.2~1.4份,物料在130℃~140℃温度下塑化10 min 15min后,置于150℃~160℃平板硫化机中模压25 min~30min,可得到密度介于190 g/cm^3~240g/cm^3,且力学性能较优的EPP材料。偏光显微镜观察结果表明,当DCP用量为1.4份时,EPP材料的泡孔结构均匀且细密。