通过对传统Fe-Ga磁致伸缩位移传感器驱动脉冲电流输入端位置的改进,降低了驱动脉冲电流噪声对检测线圈输出电压的影响,并使检测线圈输出电压信噪比由15.5 d B提高至23.7 d B。基于应力波无阻尼反射原理提出一种新的回波速度校正法,确立...通过对传统Fe-Ga磁致伸缩位移传感器驱动脉冲电流输入端位置的改进,降低了驱动脉冲电流噪声对检测线圈输出电压的影响,并使检测线圈输出电压信噪比由15.5 d B提高至23.7 d B。基于应力波无阻尼反射原理提出一种新的回波速度校正法,确立了回波速度与波导丝长度、应力波传播时间、反射波传播时间的数学关系,并给出此表达式适用的驱动脉冲电流频率范围。制作了样机,通过实验验证了此方法最大位移测量误差减小到原来的1/5,为Fe-Ga磁致伸缩位移传感器输出性能研究提供了理论依据。展开更多
Thermal spraying technique is widely used in various mechanical parts as a surface reforming technique.However,as demand to maintain superior mechanical performance in harsh operating environment increases,the need fo...Thermal spraying technique is widely used in various mechanical parts as a surface reforming technique.However,as demand to maintain superior mechanical performance in harsh operating environment increases,the need for non-destructive evaluation method for thermal spray coating becomes more important.For this purpose,we thinned the thickness of the thermal sprayed coating by abrasion with blasting and used ultrasonic inspection by means of bottom echo reflection for effective measurement of abrasion quantity in thermal sprayed coating.The results obtained are summarized as follows.When the thickness of thermal sprayed coating becomes thin,the echo height increases.This is because thermal sprayed coatings absorb ultrasonic energy.Ultrasonic energy absorbed by Al2O3 is smaller compared with Fe-13Cr coating.Thermal sprayed coatings submerged in water have a lower echo height compared with air.As mentioned above,the thermal sprayed coating thickness can be estimated using ultrasonic inspection by means of bottom echo back reflection.展开更多
文摘通过对传统Fe-Ga磁致伸缩位移传感器驱动脉冲电流输入端位置的改进,降低了驱动脉冲电流噪声对检测线圈输出电压的影响,并使检测线圈输出电压信噪比由15.5 d B提高至23.7 d B。基于应力波无阻尼反射原理提出一种新的回波速度校正法,确立了回波速度与波导丝长度、应力波传播时间、反射波传播时间的数学关系,并给出此表达式适用的驱动脉冲电流频率范围。制作了样机,通过实验验证了此方法最大位移测量误差减小到原来的1/5,为Fe-Ga磁致伸缩位移传感器输出性能研究提供了理论依据。
文摘Thermal spraying technique is widely used in various mechanical parts as a surface reforming technique.However,as demand to maintain superior mechanical performance in harsh operating environment increases,the need for non-destructive evaluation method for thermal spray coating becomes more important.For this purpose,we thinned the thickness of the thermal sprayed coating by abrasion with blasting and used ultrasonic inspection by means of bottom echo reflection for effective measurement of abrasion quantity in thermal sprayed coating.The results obtained are summarized as follows.When the thickness of thermal sprayed coating becomes thin,the echo height increases.This is because thermal sprayed coatings absorb ultrasonic energy.Ultrasonic energy absorbed by Al2O3 is smaller compared with Fe-13Cr coating.Thermal sprayed coatings submerged in water have a lower echo height compared with air.As mentioned above,the thermal sprayed coating thickness can be estimated using ultrasonic inspection by means of bottom echo back reflection.