The Milk Powder Production Line can utilize rice, corn, beans, and various grains as raw materials to produce nutritional powders.
The production line has different models with capacities ranging from 100-120 kg/h to 500-700 kg/h, depending on the specific model chosen.
The production line is designed with features to prevent powder dust leakage and uses stainless steel materials in its construction to maintain cleanliness and sanitation.
You can produce a variety of nutritional powders, including baby rice powder, sesame paste, and bean powder, among others.
Yes, the production line is designed for easy operation, allowing for automated processing from feeding to the final product.
Yes, the production line can be customized to accommodate different local voltages, including options for 380V/50Hz and 220V/50Hz.
The main components include a mixer, screw conveyor, twin-screw extruder, air conveyor, dryer, and milling system.
The twin-screw extruder is responsible for feeding, extruding, cutting, and heating the raw materials, allowing them to be transformed into a safe, sterilized product.
The multi-layer dryer features adjustable layers and heating methods (electric, fuel, gas, steam) to adapt to different products and ensure efficient drying.
The production line can also create various fried snacks, including rice crusts, chips, bulges, pizza rolls, and doritos, depending on the die molds used.
The milling machine reduces the size of raw materials into smaller particles or powders, making them easier to store, transport, and process further.
The twin-screw extruder provides high automation, stable performance, and the ability to handle a wide range of materials and produce multi-shaped products.
Yes, the production line is flexible and can process various recipes by adjusting the ingredients and production parameters.
The production line includes high temperature and pressure conditions in the extruder for sterilization, ensuring that the final products are safe for consumption.
Regular maintenance includes cleaning the components, checking for wear and tear, and ensuring that all systems are functioning correctly to maintain optimal performance.
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