Introducing the state-of-the-art Flexible Paddle-Massaged PUR Hopper LIW Feeder: a powerhouse of efficiency and durability, meticulously engineered to elevate your material handling with its exceptional precision.
General Introduction
Loss-in-weight feeders are a paramount choice for small to medium feeding needs, delivering unmatched accuracy in optimal ambient settings. Their adaptability shines as they seamlessly manage bulk solids, liquids, and even challenging flow materials. These feeders are vital in continuous processes, particularly in feeding extruders requiring precise short-term consistency. They are extensively utilized in the food industry and laboratories, facilitated by appropriate storage solutions and customized feeding mechanisms. Designs range from compact units to modular structures, catering to a variety of operational needs.
Principle
In the dynamic flow of materials through the feeder, the system's weight gradually decreases. The loss-in-weight feeder's intelligent controls fine-tune the feed rate to ensure the weight loss aligns perfectly with the desired feed rate, perpetually monitoring material flow for unparalleled accuracy.
Every integral component, from the feeder to the hopper and material, is continuously weighed during operation, assuring the utmost precision in feeding.
Gravimetric feeders may encounter slight feed rate variations due to changes in auger filling capacity and material bulk density. These are expertly managed by adjusting auger speed, ensuring consistent and steady product dispensing.
Composition of Loss-in-Weight Feeder
Loss-in-weight feeders for bulk materials are comprised of storage hoppers, advanced feeding mechanisms like augers, screws, agitators, and pumps. They are also equipped with scales or load cells and sophisticated loss-in-weight controllers to maintain peak precision.
Nanjing Pege's loss-in-weight feeders are precisely optimized for the compound industry. They offer versatile installation solutions and come in a wide range of feeder and hopper sizes to accommodate any spatial requirements. Vertical container walls enhance space utilization and optimize bulk material flow. The off-center auger design allows for the placement of up to six feeders side by side. Furthermore, drive and auger configurations are customizable during assembly.
Material Applicable
Perfectly suited for Resin Particles, Resin Powder, Calcium Carbonate, and Glass Fibers.
Expertly designed to handle Talcum Powder and Titanium White Powder.
Highly effective for Carbon Black and Flame Retardant Antioxidants.
Features
Suitable for all-purpose bulk material, especially for the powder material with humidity and low flowability. The cantilever sling-type weighing scale supports the storage hopper, which has the characteristics of vibration reduction and anti-level interference. This design can effectively shield the non-weight value interference from the vibrator and measure the flow of the system more accurately. All contact with materials is SUS304 with inner mirror surface. Gentle feed capability by paddling flexible hopper with external agitation. Easy to disassemble and to clean, convenient for maintenance. No direct touch between stirring unit and material ensures no damage on the materials. The stirring and feeding motors are separated, and the speed can be adjusted separately. The electronic control system reserves an Ethernet communication interface for remote control.
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Specifications
Parameters/Model |
PG-FP-48 |
PG-FP-57 |
PG-FP-89 |
Capacity range |
20-100kg/h |
50-300kg/h |
200-1200kg/h |
Hopper Volume |
40L |
100L |
240L |
Load Cell Range |
50kg |
100kg |
300kg |
Net Weight |
86kg |
140kg |
200kg |
Dimension |
550x340x680 |
680x430x900 |
820x490x1150 |
Power |
AC380V 3ph Feeding Motor 0.25kw Stirring Motor 0.15kw |
AC380V 3ph Feeding Motor 0.37kw Stirring Motor 0.2kw |
AC380V 3ph Feeding Motor 0.37kw Stirring Motor 0.0.37kw |
Output method |
Spring Screw or Solid Single Screw |
Spring Screw or Solid Single Screw |
Spring Screw or Solid Single Screw |
Dynamic accuracy |
±0.5% |
±0.5% |
±0.5% |
Resolution |
1/100000 |
1/100000 |
1/100000 |
Discharge tube |
Φ48x3 |
Φ63x3 |
Φ89x3 |
1
,
Capacity range values are determined based on materials with a stacking density of 0.6 g/cm³.
g/m
2
,
Dynamic accuracy values are rigorously tested under working conditions lasting no less than 30 seconds.
Some cases
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