ASTM D4052-2016 用数字式密度计测定液体密度、相对密度和API重力的试验方法 Standard Test Method for Density,Relative Density,and API Gravity of Liquids by Digital Density Meter ASTM D4052-2016 用数字式密度计测定液体密度、相对密度和API重力的试验方法 Standard Test Method for Density,Relative Density,and API Gravity of Liquids by Digital Density Meter

ASTM D4052-2016 用数字式密度计测定液体密度、相对密度和API重力的试验方法 Standard Test Method for Density,Relative Density,and API Gravity of Liquids by Digital Density Meter

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  • 标准编号:ASTM D4052-2016
  • 标准状态:现行
  • 更新时间:2023-05-15
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标准简介

1.1 This test method covers the determination of the density, relative density, and API Gravity of petroleum distillates and viscous oils that can be handled in a normal fashion as liquids at the temperature of test, utilizing either manual or automated sample injection equipment. Its application is restricted to liquids with total vapor pressures (see Test Method D5191) typically below 100 kPa and viscosities (see Test Method D445 or D7042) typically below about 15 000 mm2/s at the temperature of test. The total vapor pressure limitation however can be extended to >100 kPa provided that it is first ascertained that no bubbles form in the U-shaped, oscillating tube, which can affect the density determination. Some examples of products that may be tested by this procedure include: gasoline and gasoline-oxygenate blends, diesel, jet, basestocks, waxes, and lubricating oils. 1.1.1 Waxes and highly viscous samples were not included in the 1999 interlaboratory study (ILS) sample set that was used to determine the current precision statements of the method, since all samples evaluated at the time were analyzed at a test temperature of 15 °C. Wax and highly viscous samples require a temperature cell operated at elevated temperatures necessary to ensure a liquid test specimen is introduced for analysis. Consult instrument manufacturer instructions for appropriate guidance and precautions when attempting to analyze wax or highly viscous samples. Refer to the Precision and Bias section of the method and Note 8 for more detailed information about the 1999 ILS that was conducted. 1.2 In cases of dispute, the referee method is the one where samples are introduced manually as in 6.3 or 6.4, as appropriate for sample type. 1.3 When testing opaque samples, and when not using equipment that is capable of automatic bubble detection, proper procedure shall be established so that the absence of air bubbles in the sa

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