Technical Specification (Full English Translation)
Part 1 — General Specifications**
Production capacity: 400–580 t/h (rated conditions, continuous feeding)
Fuel consumption: ≤ 6.5 kg/t (rated conditions)
Rated working conditions include:
Aggregate moisture content: 3 percent
Finished material temperature: 140°C
Ambient temperature: 20°C
Site elevation: below 1000 m
Fuel type: heavy oil or natural gas, heating value 9800 kcal/kg
Aggregate gradation entering the mixer must be correct and meet specification requirements
Measurement accuracy:
Aggregate: ±0.5 percent
Mineral powder: ±0.5 percent
Asphalt: ±0.25 percent
Dust removal performance after baghouse filtration:
Dust emission: < 50 mg/Nm3
Ringelmann blackness: < Grade 1
Environmental noise: < 70 dB(A), measured 20 m from the maximum noise source
Other parameters:
Total installed power: approx. 1300 kW
Total equipment weight: approx. 590 t
Required site area: length 58 m, width 52 m
Six bins
Each bin capacity: 10 m³
Feeding port size: 3.6 m × 2.45 m
Loading height: 4.32 m
Note: Each bin is equipped with a grizzly screen to prevent oversized material from entering.
Six units
Belt size: 650 mm × 2.79 m
Production capacity:
Sand: 100 t/h
Aggregate: 100 t/h (aggregate size < 40 mm)
Variable‑frequency motor:
Motor power: 2.2 kW
Adjustment ratio: 20:1
Accuracy: ±2 percent
Two units installed on sand bins
Motor power: 750 W
Motor power: 15 kW (gear reducer)
Belt width: 800 mm
Production capacity: > 480 t/h
Motor power: 15 kW (gear reducer)
Belt width: 800 mm
Production capacity: > 480 t/h
Two bins
Each bin capacity: 15.5 m³
Feeding port: 3.6 m × 2.45 m
Loading height: 4.32 m
With protective grizzly screen
Two units
Belt size: 650 mm × 2.79 m
Variable‑frequency motor: 4 kW
Adjustment ratio: 20:1
Accuracy: ±2 percent
Two units
Motor power: 750 W
Baghouse dust collector: 200 filter bags
Induced draft fan power: 22 kW
Axial fans and ducting: included
Drum dimensions:
Diameter: 2.9 m
Length: 12 m
Shell thickness: 18 mm
Drive method: four friction‑drive rollers
Drive motors: 4 × 37 kW
Insulation: 50 mm high‑temperature insulation felt, stainless steel outer cladding
Production capacity: > 480 t/h
Sensor type: thermal resistance
Measurement error: < ±5°C
Maximum output power: 33 MW
Maximum fuel consumption: 2800 kg/h
Turn‑down ratio: 1:4
Main fuel: diesel, heavy oil, fuel oil
Ignition fuel: acetylene
Flame length: approx. 6.5 m
Flame diameter: approx. 1.4 m
Flame temperature: approx. 1300°C
Combustion efficiency: > 99 percent
Electrical power consumption: ≤ 50 kW
Compressed air consumption: ≤ 6.5 m³/min
Supporting asphalt plant capacity: 400 t/h
Fuel tanks: 2 × 50 t
Silencing method: reflective muffler
Air delivery: 6 m³/min
Pressure: 0.85 MPa
Motor power: 37 kW
Drum diameter: 2500 mm
Drum length: 13 m
Inclination: 3 degrees
Drive motor power: 4 × 22 kW
Temperature rise: 120–140°C
Maximum aggregate size: 40 mm
Rated RAP drying capacity:
1 percent moisture: 180 t/h
3 percent moisture: 120 t/h
The drum uses four‑wheel friction drive.
The support frame is welded from H‑beam steel and bolted to the platform to form the drum inclination.
Four sets of support rollers with roller bearings support the drum.
Two sets of thrust rollers at the inlet end prevent axial movement.
Inside the drum, materials first pass through guide blades in the flame zone to prevent material curtains.
After the flame zone, special lifting blades form a uniform curtain for efficient heat exchange.
Maximum output power: 20 MW
Maximum fuel consumption: 1700 kg/h
Turn‑down ratio: 1:4
Main fuel: diesel, heavy oil, fuel oil
Ignition fuel: acetylene
Flame length: approx. 4.6 m
Flame diameter: approx. 1.1 m
Flame temperature: approx. 1300°C
Combustion efficiency: > 99 percent
Electrical power consumption: ≤ 30 kW
Compressed air consumption: ≤ 4.5 m³/min
Supporting asphalt plant capacity: 240 t/h
The burner control system supports remote automatic ignition, monitoring, automatic shutdown on fault, fault diagnosis, and safety protection.
RAP temporary storage bin: 9 m³
RAP weighing hopper: 2 m³
Weighing method: three‑point load cell
Discharge gate: pneumatic
Environmental sealing: color steel enclosure
Type: vertical, fully enclosed, double‑row ring chain, equipped with anti‑reverse braking motor
Lifting capacity: > 480 t/h
Drive motor power: 45 kW (gear reducer)
Type: vertical, fully enclosed, double‑row ring chain
Lifting capacity: 240 t/h
Type: high‑speed inclined vibrating screen, six‑deck configuration
Screening capacity: 480 t/h
Number of aggregate fractions: six
Drive motor power: 2 × 13 kW
Type: six‑compartment insulated storage bins with 50 mm insulation
Total storage capacity: 100 t
Level detection: inductive level sensors
Temperature detection: temperature sensor installed in sand bin
Additional features: overflow pipe
Control system: electro‑pneumatic discharge system with coarse and fine weighing for each aggregate size
Type: single‑hopper, four‑point load‑cell weighing
Weighing capacity: 7500 kg
Load cells: four units with transport locking bolts
Maintenance access: dust‑proof chamber with service manhole
Control: electro‑pneumatic discharge system
Discharge chute dimensions: 5500 × 1500 × 600 mm
Type: single‑hopper, insulated, heated by thermal oil, three‑point load‑cell weighing
Capacity: 600 kg
Load cells: three units with transport locking bolts
Asphalt feeding method: gravity flow into mixer
Control: electro‑pneumatic discharge system
Additional feature: automatic asphalt over‑fill protection
Type: single‑hopper, sealed, three‑point load‑cell weighing
Capacity: 700 kg
Load cells: three units with transport locking bolts
Control: electro‑pneumatic discharge system
All weighing hoppers are mounted on independent load‑cell groups.
Weight signals are transmitted to the control room via shielded cables.
Processed signals support both manual and automatic operation modes.
Digital display and automatic in‑flight compensation are included.
Type: twin‑shaft paddle mixer with thermal‑oil‑heated mixing chamber
Rated mixing capacity: 5000 kg per batch
Drive method: dual‑motor synchronous drive for both shafts
Drive motor power: 2 × 90 kW (gear reducers)
Mixing cycle time: 45 seconds
Mixing capacity: 400 t/h
The mixing tower assembly includes built‑in lifting equipment for maintenance.
Truck passage under the tower: width 6.9 m, height 3.9 m
Configuration:
Three standard asphalt tanks
Two mixing asphalt tanks
All tanks heated indirectly by thermal oil with automatic temperature control
Tank quantity and capacity: 5 × 50,000 L
Heating method: thermal‑oil coil heat exchanger
Insulation: thermal insulation with corrugated steel outer cladding
Level detection: continuous level indicators
Mixing system: two tanks equipped with dual agitators
Capacity: 1.6 m³
Pump type: thermal‑oil‑heated screw pump
Motor power: 11 kW
Pump insulation: thermal‑oil heating
Type: thermal‑oil‑heated screw pump
Flow rate: 35 m³/min
Motor power: 15 kW
Pump insulation: thermal‑oil heating
Model: RL130L.C
Burner: fully automatic ignition and monitoring, diesel‑fired, automatic temperature control and protection
Heating capacity: 1,200,000 kcal/h
Maximum oil temperature: ≤ 260°C
Thermal oil circulation pump:
High‑temperature centrifugal type
Flow rate: 30 m³/h
Pressure: 1.6 MPa
Motor power: 7.5 kW
Control system:
Programmable computer control
Automatic monitoring of temperature, circulation, oil level, and pressure
Automatic alarms and burner start/stop control
Thermal oil: supplied by user (recommendations available upon request)
Capacity: 60 m³
Feeding method: pneumatic feeding from bulk powder truck
Over‑pressure protection: automatic relief valve on silo top
Level detection: inductive level sensors
Anti‑arching system: compressed‑air arch‑breaking device
Capacity: 88 m³
Feeding method: elevator feeding
Over‑pressure protection: automatic relief valve on silo top
Level detection: inductive level sensors
Anti‑arching system: compressed‑air floating device
Excess powder handling: elevator return and humidified discharge
Three units with the following specifications:
273 mm × 4000 mm, 7.5 kW
273 mm × 3500 mm, 5.5 kW
323 mm × 4000 mm, 11 kW
Type: primary gravity settling chamber plus secondary baghouse dust collector
Primary dust removal performance: separation of particles ≥ 75 μm
Secondary dust removal performance: dust emission ≤ 50 mg/Nm³
(Washed aggregates can achieve 15 mg/Nm³)
Maximum air handling capacity: 167,000 m³/h at 115°C
Normal operating temperature: 100–150°C
Type: gravity‑type dust separator
Features:
Installed at the inlet of the secondary dust collector
Equipped with wear‑resistant plates and adjustable guide vanes
Guide vanes allow adjustment of settling particle size (normally ≥ 75 μm)
Collected dust is returned to the hot elevator via screw conveyors
Two units
Dimensions:
273 mm × 4000 mm, 7.5 kW
273 mm × 3500 mm, 5.5 kW
Type: atmospheric reverse‑pulse cleaning system
Filter bag material: NOMEX, 500 g/m², silicon‑treated
Number of filter bags: 1550
Total filtration area: 1690 m²
Bag replacement: top‑extraction type
Cleaning method: electromagnetic pulse jet, group‑timed, adjustable
Temperature monitoring: thermocouple with display, control, and over‑temperature protection
Adjustable airflow restrictor: multi‑blade type, remotely controlled
Pressure differential monitoring: differential pressure gauge with remote display
Structure: rain‑proof insulated enclosure with corrugated steel cladding
Maintenance access: cage ladder, platforms, guardrails
Type: centrifugal
Motor power: 250 kW
Air volume: 167,000 m³/h at 115°C
Dust return method: pneumatic conveying
Dust is lifted into the reclaimed powder silo
Elevator motor power: 11 kW
One unit
Motor power: 15 kW
Main silo type: bottom‑mounted storage silo
Main silo capacity: 150 t
Waste/overflow silo capacity: 10 t
A fully enclosed receiving corridor is installed beneath the silo discharge area.
Features include:
Front and rear high‑speed rolling doors
Remote‑controlled opening and closing
Sealed structure to prevent asphalt fume leakage
Structural frame made of square steel tubing
Exterior cladding made of 1 mm corrugated steel sheets
Purpose:
To prevent asphalt fumes and dust from escaping during truck loading.
The silo discharge area is equipped with:
Photo‑ion oxidation processor for asphalt fume decomposition
Axial fans and ducting
22 kW induced draft fan
Purpose:
To extract and purify asphalt fumes generated during silo discharge.
Type: large‑screen LCD computer control system
Configuration:
One display for plant operation
One display for management and monitoring
Control modes: manual, semi‑automatic, and fully automatic
Power supply: 380 V / 220 V (±5 percent), 50 Hz, three‑phase four‑wire
Protection:
Circuit breaker
Short‑circuit protection
Overload protection
Contactor
Operation: push‑button operation with automatic protection
Features:
Computer‑based weighing control
Color display
Automatic weighing
Automatic in‑flight compensation
Asphalt over‑weigh protection
Recipe input and printout functions
Control method: computer automatic program control
Operation modes: manual or fully automatic
Recipe temperature input supported
Control method: computer automatic program control
Functions:
Automatic start
Automatic ignition
Safety monitoring
Automatic shutdown on fault
Fault diagnosis and protection
Standard plant color: gray
Dust collection system color: silver‑white
Other colors available upon request at time of order
The following items must be supplied by the user:
Transformer and cables from transformer to control room
Lubricating oil, grease, and thermal oil
Foundation materials: sand, stone, cement
Power system: single‑circuit three‑phase four‑wire unless otherwise specified
Lightning protection system
This section translates the entire purchased‑components list into clean engineering English, without tables.
Cold aggregate bins: six units, 10 m³ each, Shandong Zhenhua
Feeder motor and reducer: 2.2 kW, six units, Guomao
Vibration motors: 750 W, two units
Frequency inverters: six units, Delta Taiwan
Belts: 650 mm endless type, six units, Qingdao
Flat belt conveyor: > 600 t/h, one unit, Shandong Zhenhua
Flat belt motor and reducer: 11 kW, one unit, Guomao
Inclined belt conveyor: > 600 t/h, one unit, Shandong Zhenhua
Inclined belt motor and reducer: 11 kW, one unit, Guomao
Grizzly screens: 60 × 80 mm, six units
Drying drum: 2.9 m × 12 m, one unit, Shandong Zhenhua
Drive motor and reducer: 37 kW, four units, Guomao
Support roller bearings: 22324CC/C3W33, eight units, TMK USA
Thrust roller bearings: 6326 GB/T 276, two units, TMK USA
Thermocouple: Pt100, one unit, Shanghai
Heavy‑oil burner: FRD‑5000, one unit, FuruiDa Wuhan
Heavy‑oil tanks: 50 m³ × 2, Shandong Luhong
Insulation material: aluminum silicate, Shandong Luhong
Hot aggregate elevator: > 600 t/h, one unit, Shandong Zhenhua
Elevator motor and reducer: 45 kW, one unit, Guomao
Sprockets: quenched 45# steel, two units
Ring chain: double‑ring chain
Vibrating screen motors: MVE17500/1 (11 kW), two units, OLI‑Wolong Italy
Screen meshes: six‑layer configuration, eleven sets, Beijing Hongxing
Hot aggregate bins: six compartments with large and small discharge gates
Bin cylinders: twelve units, Xinyi Shanghai
Bin level sensors: six units, Liaoyang
Mixer reducers: 90 kW, two units, Guomao
Load cells: pressure type, ten units, Ruima
Mixer discharge cylinder: one unit, Xinyi Shanghai
Finished material silo: 130 t, bottom‑mounted
Silo cylinders: two units, Xinyi Shanghai
Induced draft fan: 250 kW, one unit, Jinan Chuangke
Baghouse dust collector: pulse‑jet type, 1690 m² filtration area, Hebei Huanke
Internal dust screw conveyor: one unit
Screw conveyors: 5.5 kW, two units
Waste powder humidifier: one unit
Humidifier motor and reducer: 15 kW
Cylinder: one unit, Xinyi Shanghai
Thermocouple: Pt100, one unit, Shanghai
New powder silo: 60 m³, one unit
Level sensor: one unit, Liaoyang
Butterfly valve: DN300, one unit
Silo top dust collector: one unit
Screw conveyor: 11 kW, one unit
Reclaimed powder silo: 88 m³, one unit
Waste powder elevator: one unit
Elevator motor and reducer: 11 kW, one unit
Ring chain: double‑ring chain
Screw conveyors: 7.5 kW, two units
Screw‑type air compressor: 6 m³/min, 37 kW, two units, Kaishan Zhejiang
Air storage tank: 1 m³, two units, Kaishan Zhejiang
Control room: one unit
Main electrical components: Schneider France
Computer: Lenovo business desktop
Monitor: 21‑inch Lenovo
Printer: HP
Air conditioner: 3‑ton cabinet type, AUX
Cables: Liaocheng Yanggu
Asphalt storage tanks: 5 × 50 m³, Shandong Luhong
Thermal oil heater: 1,200,000 kcal/h, Hebei
Insulation material: aluminum silicate
Burner: Riello
Asphalt pump: three‑screw pump, 15 kW
Insulated three‑way valve: DN80, five units
High‑temperature shut‑off valve: DN50, eight units
Asphalt unloading pit pump: three‑screw pump, 7.5 kW
Fuel tanks: 50 m³ × 2
Cold feeding dust collection: baghouse with 200 filter bags, 22 kW fan, axial fans
Main tower fume extraction: sealed discharge corridor, spray tower, plasma photo‑ion unit, axial fans, 22 kW induced fan
RAP cold bins: 2 × 10 m³
Feeder motor and reducer: 2.2 kW, two units
Vibration motors: 750 W, two units
Frequency inverters: two units, Delta Taiwan
Belts: 650 mm, two units
Flat belt conveyor: 800 mm, one unit
Flat belt motor and reducer: 11 kW, one unit
Inclined belt conveyor: 800 mm, one unit
Capacity: 160–240 t/h
Elevator motor and reducer: 30 kW
Sprockets: quenched 45# steel
Ring chain: double‑ring chain
Drum size: 2.2 m × 13 m
Drive motor and reducer: 22 kW × 4
Support roller bearings: 22319CA, eight units
Thrust roller bearings: 7214AC, four units
Burner: FRD2000, FuruiDa Wuhan
RAP temporary storage bin: 5 m³
RAP weighing hopper: 2 m³
Load cells: pressure type, three units
Discharge cylinders: four units, Xinyi Shanghai
Double‑ended box wrench set, eight pieces
Double‑ended open wrench set, eight pieces
Adjustable wrench 36 × 300 mm
Adjustable wrench 55 × 450 mm
Combination pliers 200 mm
Pipe wrench 45 × 350 mm
Flat file 250‑II
Flat‑head screwdriver 200 × 8 mm
Phillips screwdriver 200 × 8 mm
Electrician’s screwdriver 100 × 5 mm
Machinist hammer 0.5 kg
Octagonal hammer 8.2 kg
High‑pressure grease gun
Oil can, 1 kg capacity
This section includes:
Main tower fume extraction
Sealed truck loading corridor
Photo‑ion plasma purification system
Cold feeding dust collection
All ducts, fans, valves, and structural components
A complete fume extraction and purification system is installed around the mixer discharge area.
Its purpose is to capture asphalt fumes and dust generated during material discharge and truck loading.
Multiple extraction ducts and axial fans are installed around the discharge gates.
These components continuously draw asphalt fumes and dust from the discharge zone and deliver them to the purification system.
A fully enclosed corridor approximately 15 meters long is installed beneath the discharge area.
The corridor includes:
Front and rear high‑speed stacking doors
Remote‑controlled opening and closing
Fully sealed structure to prevent fume leakage
Structural frame made of 100 × 100 mm and 60 × 40 mm square tubing
Exterior cladding made of 1 mm corrugated steel sheets
Purpose:
To ensure asphalt fumes and dust remain contained during truck loading.
A dedicated extraction system is installed at the silo discharge point.
A ring‑shaped duct with a cross‑section of 300 × 500 mm and a length of approximately 15 meters is installed around the discharge area.
Constructed from 3 mm steel plate.
Two connection ducts, each 4.5 meters long, cross‑section 300 × 500 mm, made from 3 mm steel plate.
Eighteen axial fans, each rated at 0.37 kW, provide distributed suction along the duct.
Two ducts, each 3.5 meters long, cross‑section 300 × 500 mm, constructed from 3 mm steel plate.
Purpose:
To ensure uniform suction and prevent fume accumulation.
This is the core environmental protection device for asphalt fume treatment.
The system includes:
Primary connection duct (300 × 500 mm, 1.5 m long)
Secondary connection duct (800 mm diameter, 6.8 m long)
Water spray tower
Three quick‑connect couplings (800 mm diameter, 0.5 m long)
Four 90‑degree elbows (800 mm diameter)
Straight duct (800 mm diameter, 3.8 m long)
Photo‑ion purification unit
Induced draft fan (22 kW)
Chimney connection duct (430 × 500 mm, 1.2 m long)
Chimney (800 mm diameter, 7.5 m long)
Fumes are extracted from the discharge area.
Fumes pass through the spray tower for cooling and particulate removal.
Fumes enter the photo‑ion plasma reactor, where high‑energy ions break down asphalt fume molecules.
Purified air is discharged through the chimney.
High decomposition efficiency for asphalt fumes
Low maintenance requirements
Stable long‑term operation
Suitable for continuous high‑temperature environments
This system handles dust generated at the cold aggregate feeding area.
The cold bins and inclined belt conveyor are fully sealed using:
100 × 100 mm and 60 × 40 mm steel tubing
1 mm corrugated steel sheets
Purpose:
To prevent dust escape during loader feeding.
A separate baghouse with approximately 100 filter bags is installed for the cold feeding area.
It captures dust generated during aggregate loading and belt transfer.
Each cold bin is equipped with an automatic butterfly valve.
When the system detects loader feeding, the corresponding valve opens and dust is extracted into the baghouse.
The system includes:
Sixteen axial fans (0.37 kW each)
Multiple extraction ducts (500–600 mm diameter)
Pneumatic flap valves
Pneumatic cylinders (QSC80 × 200)
Baghouse dust collector
Induced draft fan
Chimney and connection ducts
Purpose:
To ensure dust is captured at the source and does not escape into the environment.
The manufacturer provides:
Free installation
Free commissioning
On‑site adjustment of all environmental protection systems
Training for operators