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Experimental research on the high accuracy mass determination between stainless and silicon sphere mass standards

机译:不锈钢和硅球质量标准高精度质量测定的实验研究

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After the redefinition of kilogram, the mass determination process may carry out in many conditions, such as vacuum, normal air condition or inert gases. To achieve high accuracy and stability mass determination process, not only the influences of environmental factors such as temperature, humidity, air pressure and contents of CO_2 need to be carefully evaluated, the shape of weights can affect the stability of weighing process. The standard deviation of weighing process is a very important parameter to evaluate the stability and reliability of weighing process. This paper continually compare and analysis the weighing process between cylindrical stainless weight and silicon sphere with nominal value of 1kg under the same air condition. And the experimental results demonstrate that the air flow near the weighing area can affect the weighing process. When all the other air conditions such as temperature, humidity and pressure, are well controlled and keep stable, comparing with others shapes of weights, the ball shape weights have the biggest deviation of weighing process.
机译:在千克重新定义之后,质量测定过程可以在许多条件下进行,例如真空,正常空调或惰性气体。为了实现高精度和稳定性的质量测定方法,不仅需要仔细评估温度,湿度,空气压力和CO_2的气压和含量的环境因素的影响,重量的形状会影响称量过程的稳定性。称重过程的标准偏差是评估称量过程的稳定性和可靠性的非常重要的参数。本文不断比较和分析圆柱形不锈钢和硅球之间的称重过程,在相同的空气条件下具有1kg的标称值。实验结果表明,称重区域附近的空气流动会影响称重过程。当所有其他空气条件如温度,湿度和压力等均匀控制并保持稳定,与其他重量的形状相比,球形重量具有称重过程的最大偏差。

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