基于干涉法的活塞式液体超微流量标准装置研究

Study on a piston-type liquid ultra-microflow standard device based on the interference method

  • 摘要: 为实现nL/min量级超微液体流量的计量校准,开发了一种基于干涉法的活塞式液体超微流量标准装置。该装置通过激光干涉测量技术,确保注射器活塞微米级位移的精确捕捉;结合注射器内径与活塞位移的关系,建立了流量计算的数学模型,并通过该模型对装置各部分的不确定度进行了分析与评定。为测试装置性能,研究采用多种规格注射器对1~1000 nL/min区间的超微流量开展测试,实验结果显示,该装置可识别超微流量的细微变化,具备良好的流量响应能力,且校准注射泵所得误差均小于1%,扩展不确定度小于4%(k = 2)。最后,通过质量法标准装置与干涉法标准装置进行比对实验,结果表明两套装置校准注射泵的误差一致,并通过计算归一化偏差验证了干涉法装置的准确性与不确定度评定结果的有效性。

     

    Abstract: To achieve metrological calibration of nL/min-level liquid ultra-microflow, a piston-type liquid ultra-microflow standard device based on the interference method has been developed. This device employs laser interference measurement technology to ensure precise capture of the syringe piston’s micrometer-level displacement. By establishing a flow calculation model based on the syringe's inner diameter and piston displacement, the uncertainty of each component in the device is analyzed and evaluated. The study used syringes of various specifications to test ultra-microflows in the range of 1–1000 nL/min. Experimental results demonstrate that the device can detect microscopic changes in ultra-microflow, exhibitings excellent flow response capability. Calibration errors for the syringe pump were below 1%, with an expanded uncertainty of less than 4% (k = 2). Finally, comparative experiments between gravimetric and interference method standard devices demonstrated consistent error trends in syringe pump calibration. Further calculation of normalized deviation validated the accuracy of the interference method device and the validity of its uncertainty assessment results.

     

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