The relationship between the values ​​of the weight of the container and the moisture guides rice production
Distilled water was sprayed evenly on the surface of corn kernels with a sprayer in an amount of 5 mL per kg of the sample. The mixture was well-mixed and allowed to increase by about 0.5% each time. The sample was sealed in a sealed bag for more than 6 days so that the water was uniformly absorbed. After adding water to the water and bulk density data, repeat the above test for a total of 12 times until the moisture of the corn has increased to 18.0% or more. The error of the parallel test of the above test does not exceed the international regulations: moisture ± 0.2%, bulk density ± 3g/ The test results of the L.GHCS-1000 receiver were concluded after analysis of the data transmission.
The measured data of the GHCS-1000 container weight test showed that with the increase of water content, the bulk density of the same sample decreased significantly. The change of the two samples has strong regularity. We conducted a more in-depth study on its correlation, first using the minimum two. The multiplicative method was used to obtain the empirical regression equation for each sample, and the correlation coefficient γ was calculated to test its significance.
The GHCS-1000 load cell performs mathematical statistics analysis on the measured data, and finds that the data changes have a good regularity. The results show that there is a significant linear correlation between the bulk density and moisture of corn. With the increase of moisture in corn, the bulk density shows a declining trend. The amplitude is approximately 1.0% for water, and the bulk density is reduced by 4~6g/L; otherwise, the bulk density will increase by 4~6g/L.
In the actual production, some important conclusions of the data analysis of the above GHCS-1000 can also be used as reference for the analysis of theoretical results to guide production. This will help make the rice bulk density value in a more appropriate optimal state. The lower the water content of rice, the more beneficial it is to store food and improve the quality of food. In practical work, through a certain amount of technology to reduce the water content of rice, it is possible to increase the bulk density of grain more clearly.
1. Description of M mddium duty Slurry Pump
Naipu NP-M series centrifugal slurry pumps and spare parts could fully interchange with world famous brand.These pumps are of heavy-duty construction, designed for continuous pumping of highly abrasive and corrosive slurries. They feature a wide choice of replaceable abrasion resistant metal casting liners and Impellers, which are all interchangeable within a common casting assembly.
Typical Applications---
Dense media transfer
Dense media make-up
Bottom boiler and fly ash
Ferrosilicon make up
Thickener underflow
Dewatering
2.Construction drawing of M Medium Duty Slurry Pump
Main Part Number At The Drawing
032:Frame Plate
132:Discharge Joint
110:Volute Liner
041:Frame Plate Liner Insert
124: Volute Cover Seal
122: Stuffing Box Seal
147:Impeller
013:Cover Plate
083:Throat bush
060: Intake Joint
Material of Construction
LINERS
IMPELLERS
CASING
BASE
EXPELLER
EXPELLER RING
SHAFT SLEEVE
SEALS
Standard
Chrome Alloy
Chrome Alloy
SG Iron
SG Iron
Chrome Alloy
Chrome Alloy
SG Iron
Rubber
or
SG Iron
or
SG Iron
3.M Medium duty slurry pump select Chart
M Medium Duty Slurry Pump
M Medium Duty Slurry Pump, Heavy Duty Slurry Pump, Warman Slurry Pump
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