1. 北京理工大学唐山研究院,唐山,063015
2. 北华航天工业学院机电工程学院,廊坊,065000
3. 北京理工大学机械与车辆学院,北京,100081
4. 内蒙古第一机械集团股份有限公司,包头,014030
纸质出版:2025
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王金强, 王国栋, 王绪嘉, 等. 基于超声波声弹法的螺栓预紧力精确测量系统研究[J]. 航空制造技术, 2025,68(18).
WANG Jinqiang, WANG Guodong, WANG Xujia, et al. Research on Ultrasonic Acoustoelastic-Based Precise Measurement System of Bolt Preload[J]. Aeronautical Manufacturing Technology, 2025, 68(18).
王金强, 王国栋, 王绪嘉, 等. 基于超声波声弹法的螺栓预紧力精确测量系统研究[J]. 航空制造技术, 2025,68(18). DOI: 10.16080/j.issn1671-833x.2025.18.133.
WANG Jinqiang, WANG Guodong, WANG Xujia, et al. Research on Ultrasonic Acoustoelastic-Based Precise Measurement System of Bolt Preload[J]. Aeronautical Manufacturing Technology, 2025, 68(18). DOI: 10.16080/j.issn1671-833x.2025.18.133.
螺栓连接在航空、航天、铁路、汽车等领域应用广泛,螺栓预紧力精确控制直接保障连接结构的可靠性与安全性。为精确测量螺栓预紧力,基于超声波声弹性效应,结合超声波飞行时间精确测量技术,设计并开发了一套螺栓预紧力精确测量系统。首先建立了螺栓预紧力与超声波飞行时间差的精确理论模型;其次,搭建高压尖脉冲信号生成的超声发射电路,实现超声波换能器的有效激励,通过设计发射/ 接收切换电路和级联信号放大电路,得到明显的回波信号;随后,提出使用时间数字转换芯片粗计算与精计算相结合以精确测量螺栓内超声波飞行时间的方法,并搭建了超声波飞行时间测量的软硬件系统,实现螺栓内部超声波飞行时间的精确测量;最后,通过万能试验机对M12和M14的螺栓预紧力进行标定试验,建立了螺栓预紧力与超声波飞行时间差的线性关系。试验结果表明,预紧力大于15 kN时,螺栓预紧力测量误差在5%以内,且随着预紧力增大,测量误差下降。
Bolted joints are extensively utilized in aviation
aerospace
railway
and automotive engineering
where accurate control of preload is essential to ensure the structural integrity and operational safety of assemblies. To accurately measure the bolt preload
a bolt preload accurate measurement system was designed and developed based on the ultrasonic acoustoelastic effect
combined with the ultrasonic time-of-flight (TOF) accurate measurement technology. A refined theoretical model was first established to quantify the relationship between bolt preload and the variation in ultrasonic TOF. Subsequently
a high-voltage spike pulse excitation circuit was designed to effectively drive the ultrasonic transducer. A transmit/receive switching module and a cascaded amplification circuit were developed to obtain distinct echo signals. To achieve high-resolution temporal measurement
a method combining coarse and fine time conversion based on a time-todigital converter (TDC) chip was proposed. A dedicated hardware/software platform was implemented for ultrasonic TOF acquisition inside bolts. Finally
calibration experiments on M12 and M14 bolts were conducted using a universal testing machine
and a linear correlation between bolt preload and ultrasonic TOF variation was established. Experimental results validate that the proposed system achieves a preload measurement error of less than 5% when preload is greater than 15 kN. Moreover
the measurement error decreases as preload increases.
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