Medicinal material moistening degree detection method based on moisture distribution state and texture change
A distribution state and detection method technology, applied in the direction of analysis materials, measuring devices, instruments, etc., can solve the problems of inability to accurately grasp the changes in the structure of water and medicinal materials, and the inability to detect the distribution of water fluidity, and achieve the effect of shortening the judgment time
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Embodiment 1
[0048] Embodiment 1 (determination of texture properties)
[0049] TA-HD plus physical property tester (texture analyzer) was used to measure the texture properties of Radix Paeoniae Alba during the moistening process, parameter setting: A / CKB cutter was selected, and the speed before testing: 1 mm s -1 , Test speed: 1 mm s -1 ; Speed after test: 5 mm s -1 ; Test deformation: 70%; Trigger force: 20 g; Shear distance: 9 mm; All tests were repeated 9 times, and the shear test curve of Radix Paeoniae Alba was drawn, such as figure 1 As shown, the section of the curve ABF is the change of the induction force value of the cutter during the cutting process of Radix Paeoniae Alba. The section of the curve AB indicates that the induction force value is small when the cutter cuts through the part of the medicinal material that has been infiltrated by water, and the slope of the curve is K 1 Smaller; point B is the inflection point of the curve, and the BF section of the curve indi...
Embodiment 2
[0051] Example 2 (transverse relaxation time T 2 Determination)
[0052] Drain the water on the surface of the sample, weigh it, and put it into a glass tube with a diameter of 25 mm at the center of the permanent magnetic field, and use the CPMG (carr-purcell-meiboom-gillsquence) pulse sequence to measure the sample T 2 , measured three times in a row, and took the average value. The multi-pulse echo sequence (CPMG) is used to scan and collect NMR signals. By adjusting the layer selection gradient, phase encoding gradient and frequency encoding gradient in the MSE (multi-slicespinechoes) sequence, the top view and view imaging data of the sample are obtained respectively, and then the sirt Algorithm, the number of iterations is 100,000 times for inversion to get T 2 Atlas. T 2 Main parameters of the test: SF=20 MHz (main frequency), O1=680 KHz (offset frequency), P1=6.52 μs (90° pulse width), P2=12 μs (180° pulse width), NS=16 (acquisition times), TE=0.2 ms (echo time), ...
Embodiment 3
[0053] Example 3 (measurement of water content)
[0054] Measured by LF-NMR method, respectively accurately weigh MnCl with pure water configuration mass concentration of 0.05% 2 Solution 0.1258, 0.5241, 1.0015, 2.0872, 3.0333, 4.0183, 4.8086 g, using the setting method of Example 2, the mass is the abscissa (X) (MnCl 2 The mass of the solvent in the solution is the weight of water), the amplitude of the frequency identification signal (FID) is the ordinate (Y), and a standard curve is established to obtain a regression equation, and then the water content of Radix Paeoniae Alba in different moistening times is calculated according to the equation. Water content = (m n -m o ) / m o ´100%, where m n is the water content weight of Radix Paeoniae Alba in different moistening time, m o is the initial weight of Paeoniae Alba. The test results are shown in Table 1;
[0055] Table 1 Relaxation time T during the moistening process of Radix Paeoniae Alba 2 and changes in moisture...
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