The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.

Product Details
Customization: Available
Capacity(t/h): 150-300
Feeder Type: Mechanical Feeder

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  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
  • The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
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  • Overview
  • Product Description
Overview

Basic Info.

Feeding Accuracy
�0.2mm
Feeding Speed
Low Speed
Motor Power(kw)
10~20
Usage
Building Materials, Chemical Industry, Mine
Color
Can Be Customized According to Customer Requiremen
Goods Specifications
Special Requirements Can Be Customized According T
Quantities
Merchandise
Wrap
The Package Is in Good Condition.
Transport Package
Stander Packing
Specification
RD125A
Trademark
LONGCHENG
Origin
Shandong

Product Description

Product Description

rotary feeder
 

Principle of operation and main features
Rotary feeder is also known as rotary valve, star feeder, and air lock. The usual rotary feeder structure (as shown in the figure) is a rotor with several blades rotating in the circular and simple shell. The materials falling from the upper hopper are stuffed in the space between the blades and discharged with the rotation of the blades to the lower part.
The high-pressure gas brought by the impeller rotation can be sucked away from the mouth, reducing the phenomenon of gas topping, which is conducive to the smooth fall of the material.
For the pneumatic conveying system of pressure and suction, the rotary feeder is one of the main components, which can supply material uniformly and continuously to the conveying tube, and in the separation and dust collection part of the system, it has the function of air lock and discharge.
The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
Main features
As feeders, rotary feeders are used in a wide range of applications. It is used for discharging materials and dust in the lower part of the separator and dust collector in the suction-fed pneumatic conveying system; it is used for feeding materials at the beginning of the conveying end in the pressure-fed pneumatic conveying system. The reliability of our company's rotary valve comes from nearly thirty years of experience and professional development, with the most reasonable structure and high quality material manufacturing, can effectively transport powder and granular materials with the following characteristics:
1.Simple structure, easy to use and maintain
2.Compact structure, small external dimensions, small installation space
3.Easily changeable feeding volume by adjusting the speed
4.The discharge volume changes very little as the material changes and the amount of material stored in the upper separator, etc.
5.Airtightness with a certain number of layers
6.Virtually no breakage of conveyed materials
7.The material can be transported when the temperature is less than 500ºC
8.Highly padded, patented anti-seize, abrasion-resistant, specific models for safe pneumatic movement under load
   Usually, it is applied to powder and small lumps with good flowability and less abrasiveness.

Selection instructions
1.Use
2.Place of use
3.Hourly material supply (kg/h)
4.Characteristics and temperature of the material
5.Name of conveying gas and pressure difference between upper and lower flanges of feeder
6.Painting color (standard color of the company's products if not specified)
7.Reducer and motor brand requirements
8.Accessories: acceleration chamber, pumping chamber, shaft air sealing

Rotary feeder construction diagram and material
1.RD and RDS type feeder structure and material
The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.

serial number

name (of a thing)

material (that sth is made of)

quantities
1
Bearing gland A
HT200 1
2
round nut
35 1
3
stop washer
Q235A 1
4
bear

bearing steel
2
5
Simmerring Oil Seal

fluoroelastomer
2
6
rotor section

axle
45 1

rotors
Q235A 1
7
side panel
 
HT200 2
8
Seal Gland
HT200 2
9
Packing Seal

polytetrafluoroethylene
2
10
spacer
Q235A 2
11
seals

polytetrafluoroethylene
2
12
O-ring

fluoroelastomer
2
13
housings
HT200 1
14
Bearing gland B
HT200 1
15
linchpin
45 1
2.ARD type feeder construction diagram and material
The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.

serial number

name (of a thing)

material (that sth is made of)

quantities
1
Bearing gland A
HT200 1
2
round nut
35 1
3
stop washer
Q235A 1
4
bear

bearing steel
2
5
Simmerring Oil Seal

fluoroelastomer
2
6
housings
HT200 1
7
bushings
QT600 1
8
side panel
HT200 2
9
Seal Gland
HT200 2
10
Packing Seal

polytetrafluoroethylene
2
11
spacer
Q235A 2
12
seals

polytetrafluoroethylene
2
13
O-ring

fluoroelastomer
2
14
rotor section

axle
45 1

rotors

Q235A+wear-resistant material
1
15
linchpin
45 1
16
Bearing gland B
HT200 1
3.Structure and material of high pressure type feederThe Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.

serial number

name (of a thing)

material (that sth is made of)

quantities
1
housings
HT250 1
2
rotor section
HT250+45 1
3
side panel 1
HT250 1
4
linchpin
45 1
5
side panel 2
HT250 1
6
Bearing gland
HT250 2
7
Elastic Retaining Ring for Shaft
45 1
8
bear

bearing steel
4
9
O-ring

fluoroelastomer
2
10
Packing Seal

polytetrafluoroethylene
2
11
Countersunk Bolt Sleeve
Q235 8
12
Sealing Gland
Q235 2
13
Elastic Retaining Ring for Hole
45 2
14
sprung
Q235 12
15
air inlet port
   
16
O-ring

fluoroelastomer
4
17
Sealing bushings
Q235 2
18
Piston bi-directional seals

polytetrafluoroethylene
4
19
O-ring

fluoroelastomer
2
20
bushing
Q235 2
 
  1. Outline dimension drawing of feeder
Standard Vertical Feeder Dimensions
The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
The Rotary Feeder Is Characterized by High Overload Capacity and Low Impact Inertia Force, Which Is Suitable for Frequent Start-up and Rotating Conditions.
Structural characteristics
1.compact structure, small size, good sealing performance, low rotary leakage.
2. feeding capacity performance: volume efficiency changes with the speed is small, adapt to the speed range is wide.
3.pressure adaptability: volume efficiency changes little with the operating pressure, and ADAPTS to the working range from low pressure to medium pressure.
4. high speed, up to 60rpm, breaking through the world problem of high speed feed capacity decline, increase the feed capacity.
5.can use proprietary anti-card technology, even in the high-speed state of conveying granular materials, can also run smoothly, and the material breakage rate is reduced.


 Ordering Information
Material Characteristics
Material Name   proportion  
particle diameter ( ) microns    ( ) mesh       ( ) mm        Other ( )
Material Shape () Powdered () Granular () Cylindrical () Mixed powder and granules       () Flaky   () Others
Nature of material True density () t/m³   Stacked density () t/m³    Angle of repose () Angle of collapse ()
material temperature ()ºC moisture content ()%
Material Fluidity ( ) Liquid  ( ) Fairly liquid  ( ) Illiquid   Other ( )
Material Characteristics ( ) Adhesive ( ) Abrasive ( ) Friable ( ) Flammable ( ) Corrosive PH ( ) Volatile  ( ) Heat Sensitive  ( ) Toxic  ( ) Static  ( ) Hygroscopic ( ) Explosive  ( ) Agglomerative  ( ) Individual products available   Other ( )
Conveying requirements
conveying capacity () T/h   () m³/h   () T/times
Conveying distance Horizontal: ( ) meters    Vertical ( ) meters
Number of elbows Approximately ( )   ( ) depending on the site
Conveying method ( ) Gap  ( ) Continuous ( ) Rotational switching ( ) Multipoint simultaneous feeding     Other ( )
Measurement requirements ( ) No metering  ( ) Starting device metering  ( ) End device metering Weight measurement ( )   Metering accuracy ( )
Weighing requirements () Static weighing  () Dynamic weighing  () Connection with PLC
Conveying type ()Selection of Designer ()Positive Pressure Dilute Phase ()positive pressure dense phase (physics)  ()negative pressure dilute phase (physics)
Starting and ending conditions
Materialrunning point Starting point ( ) m   Height of the flange of the feeder's lower opening from the ground ( ) m
Feeder () Silo () Dryer () Mixer () Crusher () Vibrating Screen () Labeled Bag () Ton Bag     Others ( )
Material receiving point End point ( ) pcs   Effective space at the top end of the flange of the receiving unit's feed pocket ( ) meters
Receiver () Silos () Reactors () Mixers () Vibrating screens () Dryers () Packers Others ()
precipitator () sets   Filtered area ()  Space limitations: () no () yes
site conditions
Air supply conditions ( ) No ( ) Yes   Pressure: ( ) MPa Flow rate ( ) m³/min    Other ( )
Power conditions Voltage: ( ) V  Current frequency: ( ) Hz  Other ( )
Electrical Requirements ( ) Conventional  ( ) Dust explosion-proof  ( ) Gas explosion-proof  ( ) Explosion-proof  Explosion-proof class ( )
Plant Space Length ( ) m  Width ( ) m  Height ( ) m  ( ) Arbitrary arrangement  ( ) According to the scope of the drawings
Operation mode () Fully automatic () Semi-automatic () Manual () DCS operation
(sth. or sb) else
special specification      
 

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