Overview
This product is a fiber standard dissociator designed and manufactured according to ISO5263 "Pulp - Wet Dissociation in the Laboratory" and QB/T1462-1992 "Wet Dissociation in the Pulp Laboratory" standards. The model is ZY-XW, which is a special standard equipment for pulp dissociation in paper mills, scientific research institutions, and Quality control centers. Through this product, the interwoven fibers are mechanically treated in water, so that the original interwoven fibers are separated from each other in water, and the original appearance and properties of the fibers are kept unchanged as much as possible to ensure that the experiment obtains reliable data, guides scientific research and production, and effectively and economically uses Stock.
Features
1. Design and manufacture according to international and industry standards to ensure experimental reliability.
2. Equipped with preselection number display and automatic parking function, easy to operate.
3. Precise control of impeller rotation frequency to ensure fiber treatment conformity.
Compact structure, dimensions of 520 * 270 * 360mm, weight of about 45Kg, easy to use in the laboratory.
Principle
The fiber standard dissociator makes the interwoven fibers separate from each other in water by mechanical treatment, while maintaining the original appearance and properties of the fibers as much as possible. The impeller rotation frequency is controlled at 48.3 +/- 1.6655-1 to ensure that the fibers are uniformly dissociated in the container, providing reliable data support for the experiment.
Applications
Paper mills, research institutes, Quality control centers
Standards
ISO5263 "Pulp - Wet Dissociation in the Laboratory", QB/T1462-1992 "Wet Dissociation in the Pulp Laboratory"
Steps
1. Place the Pulp sample in a container.
2. Set the number of preselectors.
3. Start the device, and the impeller starts to rotate for fiber dissociation.
4. After the equipment automatically stops, remove the processed fiber sample.
Notice
• Make sure the equipment is well grounded before use to prevent leakage.
• Avoid overloading during operation to avoid damage to the equipment.
• Regularly inspect impellers and containers to ensure no abrasions or blockages.
• Follow standard operating procedures to ensure the accuracy of experimental data.