Magnetic suspension thermobalance measurement method based on rapid photothermal heating
A measurement method and magnetic levitation technology, applied in the direction of weighing by removing certain components, can solve the problems of slow heating rate, air flow, the influence of temperature measurement is not considered, heating rate is difficult to control, etc., to achieve the effect of accurate temperature control
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Embodiment 1
[0057] Such as Figure 1~5 As shown, this embodiment discloses a magnetic levitation thermal balance based on photothermal rapid temperature rise specially designed for realizing the method of the present invention, which includes a closed container 1, a reaction pool 601, a magnetic levitation device 6, a stator lifting assembly 8, a laser displacement Monitoring component 10, photothermal heating component 9 and photothermal heating component displacement device 903, wherein:
[0058] The airtight container 1 is cylindrical, with a gas inlet 2 at the center of the top end, and a detachable cover plate 12 (fixed by bolts) at the lower end. Two gas outlets 11 are symmetrically arranged on the cover plate 12. The airtight container 1 The interior is provided with a pressure monitoring component 4, an airflow stabilizing device 3, and an infrared temperature measuring component 5, and the side wall is provided with a displacement monitoring window 102 made of a transparent mater...
Embodiment 2
[0066] This embodiment discloses a method for measuring the quality change of materials under temperature control conditions using the magnetic levitation thermobalance in Embodiment 1, and the steps are as follows:
[0067] 1) Weigh the mass as g 0 The measured materials are sent to the reaction pool 601;
[0068] 2) Remove the cover plate 12, place the reaction pool 601 on the support frame 602 of the magnetic levitation float 603, then place the magnetic levitation float 603 on the center of the cover plate 12, install the cover plate 12 on the airtight container 1, and adjust the magnetic levitation stator 7 The position makes it be located directly below the center of the rear cover plate 12 after installation;
[0069] 3) Start the magnetic levitation device 6, and after the magnetic field is stable, move the magnetic levitation stator 7 upwards, so that the magnetic levitation float 603 is suspended in the airtight container 1;
[0070] 4) Continuously feed the gas ne...
Embodiment 3
[0084] This embodiment discloses the method for establishing a database using multiple groups of controlled experiments, and the specific steps are as follows:
[0085] 1) Determine the mass range of the thermobalance according to the needs of the experiment. Within this range, select the initial mass g at equidistant distances 0 , recorded as g from the minimum value to the maximum value 01 ,..., g 0i ,..., g 0m , i is an integer, and 1<i<m;
[0086] 2) Determine the range of gas flow velocity according to the needs of the experiment. Within this range, select the calibration flow velocity v equidistantly, and record it as v in sequence from the minimum value to the maximum value 1 ,...,v j ,...,v n , j is an integer, and 1<j<n;
[0087] 3) Take a set of v j , g 0i , use another analytical balance to weigh the mass as g 0i The measured material is put into the reaction tank, and then the reaction tank is placed in the thermal balance, and the magnetic levitation floa...
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