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Xtester-XR14 Latex High Speed Mechanical Stability Tester Mechanical Stability Test Machine for Synthetic Latex
Overview
Xtester-XR14 latex high-speed mechanical stability tester meets the requirements of "GBT 8301-2008 Determination of Mechanical Stability of Concentrated Natural Rubber Latex" and "SHT 1151-1998 High-speed Mechanical Stability Test of Synthetic Latex". This instrument is mainly suitable for latex production units and scientific research institutes to test the mechanical stability of natural latex and synthetic latex. It is an indispensable instrument for improving the quality of latex. |
Testing Method
First, dilute 100g of the sample with ammonia solution to make the solid content reach 55% of the total mass fraction, and then immediately heat the sample to 36~37℃ with a heating device while gently stirring. Then immediately filter the heated latex with a stainless steel wire mesh, weigh 80g of latex and place it in the container, verify that the temperature of the latex should be 35°C ± 1°C, put the latex in the specified position of the instrument for high-speed stirring, and Start timing until the end is reached. During the whole process, the agitator speed should be 14000r/min±200r/min. |
Judgment of the end point: Before reaching the end point, the vortex around the stirring rod becomes obviously shallow, and the sound of the stirring device also changes. You can use the following two methods to determine the end point:
1. Palm method: The judging method is to take a drop of latex sample with a clean glass rod every 15 seconds, and gently place the sample on the palm of the hand. The end point is when the flocs appear for the first time. In order to confirm that the end point is reached, let the stirring device stir for another 15 seconds and then take a sample. If the flocculent particles in the sample increase, the end point judgment is correct. |
2. Water surface dispersion method: Take a flat-bottomed dish containing 100~150mL of water and place it on the black surface. Use a sharp glass rod to take a small drop of sample and place it on the flat-bottomed water surface immediately. If the latex does not coagulate If the latex is flocculated, it will be easy to see the floccules after the sample is dispersed in the water. |
The main technical parameters:
1. Operating conditions: | temperature 10℃~40℃, humidity <85%RH |
2. Stirring speed: 14000rpm±200rpm | 2. Stirring speed: 14000rpm±200rpm |
3. Latex container: flat-bottomed glass bucket, height>100mm, inner diameter 58mm, outer diameter 63mm. | 3. Latex container: flat-bottomed glass bucket, height>100mm, inner diameter 58mm, outer diameter 63mm. |
4. Diameter of the low end of the stirring rod: 6.3mm | 4. Diameter of the low end of the stirring rod: 6.3mm |
5. Mixing plate: | 5. Mixing plate: 5.1 Diameter 36.12±0.03mm, thickness 1.57±0.05mm (suitable for synthetic latex) 5.2 Diameter 20.83±0.03mm, thickness 1.57±0.05mm (suitable for natural rubber latex) |
6. Indication error | ≤0.1% |
7. Measurement resolution: | 1 r/min |
8. Display mode: | inverter LED display |
9. Maximum speed: | 20000r/min |
10. Minimum speed: | 2000r/min |
11. Power supply: | 220V ± 10%, 50HZ, 1500W |
12. Dimensions: | 400mm×350mm×720mm |
Instrument usage guide:
After unpacking the instrument, place it on the workbench and rotate the feet to ensure that each foot is in stable contact with the workbench. Turn on the power, select the disk you need, tighten it to the mixing shaft, pour the tested latex into a glass cup, place the cup on the instrument cup holder, move the cup holder up to a fixed position and clamp it tightly. Click the "RUN" button on the controller to start the experiment. The default maximum speed of the instrument is 14000r/min (when the speed knob is adjusted to the maximum, it is 14000), and it can reach 24000r/min by setting it separately |
Instrument configuration:
1,Instrument host |
2, glass |
3, Natural latex mixer |
4, Synthetic latex mixer |
5, Speed measuring instrument |