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    • 1. 发明授权
    • Method and apparatus for high resolution analysis
    • 高分辨率分析方法与装置
    • US5165792A
    • 1992-11-24
    • US663106
    • 1991-03-01
    • Benjamin S. CroweSteven R. Sauerbrunn
    • Benjamin S. CroweSteven R. Sauerbrunn
    • G01N21/76G01N5/04G01N25/00G01N25/20G01N25/48G06F17/10G06F17/14
    • G01N5/04G01N25/4833
    • The present invention relates to analytical methods for determining the composition of a material that undergoes a transition as a function of a driving variable. As applied to thermogravimetric analysis (TGA), a first preferred embodiment comprises (1) decreasing the heating rate when deviations from a baseline signal are detected; (2) establishing a minimum heating rate; (3) forcing the heating rate to a predetermined maximum whenever the rate of change of the weight change with respect to the temperature falls below a predetermined value; and (4) adjusting the heating rate according to the rate of change of the weight of the sample to track a predetermined rate of change of the weight of the sample. A second preferred embodiment comprises (1) selecting either a high-productivity or a high-resolution mode; (2) in both modes, controllingn the rate of temperature increase according to a function containing an exponential term, wherein the argument of the exponential term includes the percent weight change per unit time of the sample; (3) in the high-productivity mode, choosing the function so that when the percentage weight change per minute of the sample is small, the heating rate approaches the maximum allowed heating rate, and when the percentage weight change per minute is very large, the heating rate approaches zero; (4) in the high-resolution mode, choosing the function such that the heating rate is held at almost zero during a transition.
    • 2. 发明授权
    • Method and apparatus for high resolution analysis
    • 高分辨率分析方法和装置
    • US5368391A
    • 1994-11-29
    • US979168
    • 1992-11-18
    • Benjamin S. CroweSteven R. Sauerbrunn
    • Benjamin S. CroweSteven R. Sauerbrunn
    • G01N21/76G01N5/04G01N25/00G01N25/20G01N25/48G06F17/10G06F17/14G01N25/18
    • G01N5/04G01N25/4833
    • The present invention relates to analytical methods for determining the composition of a material that undergoes a transition as a function of a driving variable. As applied to thermogravimetric analysis (TGA), a first preferred embodiment comprises (1) decreasing the heating rate when deviations from a baseline signal are detected; (2) establishing a minimum heating rate; (3) forcing the heating rate to a predetermined maximum whenever the rate of change of the weight change with respect to the temperature falls below a predetermined value; and (4) adjusting the heating rate according to the rate of change of the weight of the sample to track a predetermined rate of change of the weight of the sample. A second preferred embodiment comprises (1) selecting either a high-productivity or a high-resolution mode; (2) in both modes, controlling the rate of temperature increase according to a function containing an exponential term, wherein the argument of the exponential term includes the percent weight change per unit time of the sample; (3) in the high-productivity mode, choosing the function so that when the percentage weight change per minute of the sample is small, the heating rate approaches the maximum allowed heating rate, and when the percentage weight change per minute is very large, the heating rate approaches zero; (4) in the high-resolution mode, choosing the function such that the heating rate is held at almost zero during a transition.
    • 本发明涉及用于确定作为驱动变量的函数的经历转变的材料的组成的分析方法。 如应用于热重分析(TGA),第一优选实施方案包括(1)当检测到与基线信号的偏离时降低加热速率; (2)建立最低加热速率; (3)当重量变化率相对于温度降低到预定值以下时,强制加热速率达到预定最大值; 和(4)根据样品重量的变化率来调节加热速率以跟踪样品重量的预定变化率。 第二优选实施例包括(1)选择高生产率或高分辨率模式; (2),根据包含指数项的函数控制温度升高速率,其中指数项的自变量包括样本每单位时间的百分比重量变化; (3)在高生产率模式下,选择功能使得当样品的每分钟重量变化百分比小时,加热速率接近最大允许加热速率,当每分钟重量变化百分比非常大时, 加热速率接近零; (4)在高分辨率模式下,选择功能,使得转换期间加热速率保持在几乎为零。