These devices are used to grind and pulverize large, hard bulk materials at high speeds. The blades inside this mill can be changed into two modes: hammer blade and cutting blade, each of which has its own unique uses and benefits. This mill model is designed and manufactured in the following two designs:
Application: These mills are widely used in the pharmaceutical, chemical and food industries for grinding large bulk and granular materials to reduce size and homogenize particles.
A material transfer device is used to automatically transfer pharmaceutical and food materials and granules from one point to another. This device can be installed on the hopper of tablet press, capsule filling machine, grinder, blender and sachet filling machine. This device operates using air pressure. After transferring the material to the machine's hopper and reaching the desired volume, the machine is stopped by the operator and waits for the next work cycle.
The barrel is used to transfer the material from the manufacturing section to the packaging section and should be placed at the material charging door of the high-speed mixer (RMG), double-cone blender and between the blender or tablet press or sachet filling machine. For this purpose, a barrel lifter should be used. The barrel can be rotated up to 180 degrees.
Barrels and bags of raw materials and sugar are transferred from the warehouse to the manufacturing department. It must be placed at the door of the manufacturing tank or the manufacturing platform of various devices, or it can be installed in the warehouse or other production departments.
One of the important and key parts of a manufacturing complex is the research and development (R&D) department. In this unit, the desired product is produced in small volumes and capacities (on an experimental and research basis). One of the most important equipment in this unit is the conical mixer (double cone mixer), which is used to mix and homogenize materials.
IBC BIN is used for storage and handling of special chemical powders, dust and granular materials, mainly in pharmaceutical industries. This process is done to create dust-free operations and ensure that there is no human contamination. These bins can be designed and manufactured in different designs and volumes according to customer orders.
What is a ribbon blender?
We should answer this by saying that a ribbon mixer is a chamber with two interlaced spirals on a shaft connected to an electric motor. This product is used to evenly disperse materials throughout the mixture. The ribbon blender is suitable for mixing solid materials and powdered ingredients. So that it offers you a quality and consistent mix. This device mixes materials with the highest degree of accuracy and efficiency.
What is the advantage of the Ribbon Mixer Blender?
The accuracy of the Ribbon Mixer Blender is extremely high with the lowest error rate of up to half a percent. Most industries with relatively high commercial production use industrial blenders. Ribbon mixers are capable of processing and blending materials in high volumes. This blender has a large tank for storing ingredients and also has blades that agitate the ingredients to break them down.
Now recognized for use in the pharmaceutical, food, chemical and cosmetic industries worldwide, the Ken Mill design is a favorite of process managers seeking to achieve optimal process efficiency and product consistency.
The Ken Mill has evolved since its original design, but is widely recognized as a leading milling technology commonly used for the following applications:
•Milling wet granulate particles prior to drying
•Milling dry granules prior to tableting
FBD nozzles are usually connected to a feed system that directs various types of fluids to the nozzle. The fluid can be fed to the nozzle through pipes or compressed air. The flow channel in an FBD nozzle usually becomes progressively narrower, usually in a conical or tapered shape. When the fluid enters the nozzle channel, the shape inside the channel increases the fluid velocity. By reducing the cross-sectional area of the flow channel, the fluid is forced to pass over a larger surface area. The small space increases its speed, and this velocity design helps form a high-speed fluid jet.
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