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  • The remanufacturing blanks with cracks were considered as irreparable. With utilization of detour effect and Joule heating of pulsed current, a technique to arrest the crack in martensitic stainless steel FV520B is developed. According to finite element theory, the finite element(FE) model of the cracked rectangular specimen is established firstly. Then, based on electro-thermo-structure coupled theory, the distributions of current density, temperature field, and stress field are calculated for the instant of energizing. Furthermore, the simulation results are verified by some corresponding experiments performed on high pulsed current discharge device of type HCPD-I. Morphology and microstructure around the crack tip before and after electro pulsing treatment are observed by optical microscope(OM) and scanning electron microscope(SEM), and then the diameters of fusion zone and heat affected zone(HAZ) are measured in order to contrast with numerical calculation results. Element distribution, nano-indentation hardness and residual stress in the vicinity of the crack tip are surveyed by energy dispersive spectrometer(EDS), scanning probe microscopy(SPM) and X-ray stress gauge, respectively. The results show that the obvious partition and refined grain around the crack tip can be observed due to the violent temperature change. The contents of carbon and oxygen in fusion zone and HAZ are higher than those in matrix, and however the hardness around the crack tip decreases. Large residual compressive stress is induced in the vicinity of the crack tip and it has the same order of magnitude for measured results and numerical calculation results that is 100 MPa. The relational curves between discharge energies and diameters of the fusion zone and HAZ are obtained by experiments. The difference of diameter of fusion zone between measured and calculated results is less than 18.3%. Numerical calculation is very useful to define the experimental parameters. An effective method to prevent further extension of the crack is presented and can provide a reference for the compressor rotor blade remanufacturing.
     - 中国机械工程学报
    文章来源: 万方数据
  • 脉搏信号调理电路设计

    脉搏作为人体重要的生理及病理指标之一,具有重要的医学研究价值.针对其信号微弱、频率低且易受干扰的特点,提出了信号调理电路设计的要求;针对性地选择元器件并设计硬件电路,其中包括:一级放大电路、调零电路、50 Hz限波电路、带通滤波电路及二级放大电路;最后对所设计的硬件电路进行实际测试.测试结果表明,该调理电路具有输出波形稳定、噪声小和共模抑制比高的特点,提高了脉搏信号采集的精度.
    张金榜,刘军,齐华 - 电子技术应用
    文章来源: 万方数据
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