Full Range Corn Flakes Production Line for Breakfast Cereals

Full Range Corn Flakes Production Line for Breakfast Cereals

<p><strong>MT70 / MT85 / MT75 Corn Flakes Production Line, Twin Screw Extruder, PLC Control</strong> — complete equipment range from mixing through extruding, flaking, drying, roasting, sugar coating, cooling and packing. Each station is matched for throughput under one supplier, eliminating the bottleneck risk common when assembling from separate vendors. Screw configuration and die design specified to your raw material and target flake density, with in-house trial runs on customer material before shipment.</p> <ul> <li>Line stations: Mixing → Extruding → Flaking → Drying → Hot Air Roasting → Coating → Drying → Cooling → Packing</li> <li>Flaking machinery: hydraulic double-roller system, dual-motor drive, infrared-sensor temperature control</li> <li>Hot air roasting oven: conciliation burner, dual circulating fans, cyclone dust removal</li> <li>Final products: natural corn flakes, sugar-coated flakes, multi-shape cereal variants</li> <li>Basic materials: corn, rice, wheat, oat, barley powder</li> <li>Standards: CE, ISO certified</li> </ul>

CE & ISO Certified
60+ Countries
15+ Years Expertise
After-Sales Support
Reply within 24 hours Free customization consultation

Single-Source Line Matching — every station from mixing to packing is engineered under one roof, so extruder output never outpaces the flaker or roaster downstream.

Technical Specifications

Parameter Value
Product Type Corn Flakes Production Line
Models Available MT70, MT85, MT75
Extruder Type Twin Screw
MT70 Installed Power 160 kW
MT70 Power Consumption 120 kW
MT70 Capacity 150–200 kg/h (basis not stated in source — confirm raw material and moisture content)
MT70 Overall Dimensions 41 × 1.5 × 2.2 m
MT85 Installed Power 190 kW
MT85 Power Consumption 140 kW
MT85 Capacity 300–400 kg/h (basis not stated in source — confirm raw material and moisture content)
MT85 Overall Dimensions 43 × 1.5 × 3.2 m
MT75 Installed Power 210 kW
MT75 Power Consumption 150 kW
MT75 Capacity 300–500 kg/h (basis not stated in source — confirm raw material and moisture content)
MT75 Overall Dimensions 45 × 1.5 × 3.5 m
Dryer Heating Source Gas, Electric
Flaking Machinery Capacity 200–300 kg/h (basis not stated in source — confirm raw material and moisture content)
Flaking Machinery Drive Dual-motor separate roller drive with hydraulic system
Control System PLC
Basic Materials Corn, rice, wheat, oat, barley powder
Final Products Natural corn flakes, coated corn flakes, various shapes (ball, tube, stick, ring, fruit loop, star, wheel, flower, heart)
Line Stations Mixing → Extruding → Flaking → Drying → Hot Air Roasting → Sugar Coating → Drying → Cooling → Packing
Standards CE, ISO

Application Suitability

Application Material or Output
Natural breakfast corn flakes Corn grits and corn flour
Sugar-coated cereal flakes Corn, wheat, or oat base with sugar glaze
Multi-grain flaked cereals Blends of rice, barley, oat, and wheat powder
Shaped breakfast cereal pieces Corn or rice dough formed through interchangeable die plates (ring, star, heart, wheel)
Pilot-scale cereal product development Small-batch trials on customer-supplied raw material before line commitment

What a Corn Flakes Machine Full Equipment Range Should Actually Cover

A line is only as fast as its slowest station, and most bottlenecks are invisible until the machines are bolted to the floor.

I worked on a corn flakes line hand-assembled from three different vendors. The extruder pushed material faster than the flaker could press it, so half-cooked grits piled up on the conveyor and had to be scraped off by hand every twenty minutes. The roaster was undersized for the dryer’s output, meaning flakes sat in a holding bin losing crispness before they ever reached the oven. These mismatches are the reason a corn flakes machine full equipment range must be specified as a single throughput-matched system, not a shopping list of standalone units. When the mixing batch size, extruder screw speed, flaking roller gap, dryer belt length, and roaster residence time are all calculated against the same raw material and target moisture, the line runs continuously instead of cycling through start-stop interruptions [NEED_CITE: throughput matching principles in continuous food processing lines].

Complete corn flakes machine full equipment range showing mixer, twin-screw extruder, flaking rollers, dryer, roasting oven, coating drum and packing station

Every Station, One Throughput Calculation

A breakfast cereal line moves material through nine distinct stages: mixing, extruding, flaking, drying, hot air roasting, sugar spraying or coating, a second drying pass, cooling, and packing. Each stage has its own residence time and throughput ceiling. If the extruder delivers 400 kg/h but the flaking machinery is rated for a lower figure on the same dough consistency, material accumulates between stations. The corn flakes machine full equipment range presented here specifies each station against a shared capacity target so that no single machine forces the entire line to idle.

Why Twin-Screw Extrusion Matters for Flake Consistency

The MT-series extruders in this range use a twin-screw configuration with automatic lubrication and cooling circuits. Twin-screw geometry generates higher shear across a shorter barrel length compared to single-screw designs, which means starch gelatinisation happens more uniformly when processing corn, wheat, or oat blends. Uniform gelatinisation is critical because partially cooked dough flakes will crack during roasting instead of developing the surface blistering that consumers associate with quality corn flakes. The screw elements are manufactured with wear-resistant treatment to maintain tight clearance over extended production runs [NEED_CITE: twin-screw extrusion shear and gelatinisation behaviour in cereal processing].

How Roller Hydraulics and Infrared Sensing Control Flake Density

The flaking machinery uses a hydraulic system to set pressure across double rollers, with each roller driven by its own motor. Separate drives prevent speed differential tearing, which is a common cause of uneven flake thickness. An infrared sensor monitors roller surface temperature in real time, because if one roller runs hotter than the other, the dough sticks to the warmer side and produces ragged edges. Consistent flake thickness directly affects the downstream roasting stage — thicker flakes need longer oven residence, and a mixed batch means some flakes burn while others remain under-roasted. PLC control ties roller gap, pressure, and temperature into a single recipe that operators can recall for each product variant.

Flaking machinery with hydraulic double-roller system and infrared temperature sensor controlling corn flake thickness

The Hot Air Roasting Oven Is Where Texture Is Made

Surface blistering — those small bubbles on a corn flake that give it a crisp bite — happens in the roasting oven, not in the extruder. The oven in this line uses a conciliation burner in the combustion chamber, two separate circulating fans, and a cyclone dust removal device. Dual fans create cross-flow air circulation that reaches flakes on every part of the vibrating pan, while the cyclone pulls fine particulate out of the air stream so it does not settle back onto the product. This matters for food safety and for visual consistency, because scorched dust deposits show up as dark specks on light-coloured flakes.

Specifying the Dryer to Match Extruder Moisture Drop

The extruder adds moisture through steam injection and liquid feed, and the dough exits the die at a moisture content far too high for flaking. The dryer must reduce that moisture to a narrow window before the dough reaches the rollers — too wet and it smears, too dry and it shatters. Available heating sources include gas and electric, and the choice affects both operating cost and temperature ramp-up speed. Gas-heated dryers recover temperature faster after a door opening or belt stop, which matters on lines that run multiple short batches per shift.

What Happens When Downstream Capacity Is Ignored

I visited a plant where the sugar coating drum was sized for half the extruder’s output. Every hour, coated flakes queued in an open bin while the drum caught up, absorbing ambient humidity and turning sticky. The packing station downstream then had to reject clumped product. This kind of mismatch is invisible on a quotation that lists each machine separately. The corn flakes machine full equipment range approach calculates coating drum volume, tumble speed, and spray nozzle flow rate against the same hourly throughput used to size the extruder and roaster [NEED_CITE: post-extrusion coating capacity alignment in cereal manufacturing].

Why the Equipment Range Is Sourced Under One Manufacturer

Sourcing every station from a single manufacturer means the line layout drawing accounts for conveyor heights, transfer chutes, and utility drop points between machines before any steel is cut. The extruder discharge height matches the flaker infeed. The dryer belt width matches the roaster pan width. Electrical schematics share a common PLC network so that a fault at any station pauses the entire line in sequence rather than dumping material onto a stopped conveyor. Pre-shipment testing in the factory’s machine testing workshop runs your actual raw material through the complete sequence, producing a trial run report that confirms flake density, blister formation, and coating adhesion before the line leaves the floor.

Documentation & Verification

  • Line layout drawing with matched throughput for every station on your corn flakes line
  • Machine specification sheet per station with electrical schematic and voltage confirmation
  • Screw and die configuration record matched to your corn, wheat, or oat raw material
  • Trial run report on customer-supplied raw material confirming flake density and blister quality
  • CE declaration of conformity and ISO certificate for the complete line
  • Wear parts list covering screws, dies, roller surfaces, and spray nozzles

Installation, Commissioning & Support

  • Foundation plan showing load points for the 45 m maximum line length across MT75 configuration
  • Dedicated electrical circuit planning for up to 210 kW installed power on the MT75 extruder
  • PLC program loaded with your target language and local voltage and frequency parameters before shipment
  • First-run commissioning with screw speed, roller gap, and oven temperature set to your raw material
  • Operator training covering die changes for shape variants from ring to star to heart
  • Scheduled spare parts supply for twin-screw elements, hydraulic roller seals, and infrared sensors

How to Scope Your Corn Flakes Line

Tell us the raw material you will run — corn, wheat, oat, or a blend — along with the moisture content your supplier typically delivers. Share your target daily output and the shift pattern you plan to operate. Confirm your facility’s voltage, frequency, and the control language your operators need. If you are adding coating or shape-change capability to an existing extrusion setup, specify which stations you need and the throughput of your current extruder so downstream equipment can be matched.

Frequently Asked Questions

Q: How is capacity verified across each station, and what premise applies to the stated kg/h figures?
A: The capacity figures for each model — MT70, MT85, and MT75 — are listed without a confirmed raw material or moisture basis in the source data. Before quotation, we run your actual corn, wheat, or oat material through the testing workshop and document the achievable throughput at your specific moisture content, so the final line specification carries a verified capacity tied to your raw material.

Q: Which extruder model matches my production target, and how do downstream stations align?
A: Model selection depends on your target hourly output and the raw material you process. Once the extruder is chosen, the flaker, dryer, roaster, and coating drum are each sized to match that throughput on your material. The line layout document shows the matched capacity at every station so no single machine creates a bottleneck.

Q: What voltage, frequency, and control language options are confirmed before shipment?
A: Electrical specifications are confirmed during the quotation stage and written into the machine specification sheet. The PLC is programmed with your local voltage, frequency, and operator language before the line leaves the factory. The trial run in the testing workshop validates that all control parameters function correctly under your confirmed electrical configuration.

Q: Can individual stations like the flaker or roaster be ordered separately?
A: Yes. Individual stations — flaking machinery, hot air roasting oven, coating drum, or dryer — can be supplied to integrate with existing extrusion equipment. We need the throughput and discharge height of your current extruder to ensure the new station matches mechanically and through the PLC control network.

Q: What does the complete equipment list include from mixing through packing?
A: The full line covers mixing, twin-screw extruding, flaking, drying, hot air roasting, sugar spraying or coating, a second drying stage, cooling, and packing. Each station is specified with its own power rating, dimensions, and capacity, and all stations share a unified PLC control architecture for coordinated start-up, fault response, and recipe management.

Industry Applications

Pet Food Processing

Dry kibble, treats, and specialty pet nutrition products

Aquatic Feed

Floating fish feed, shrimp pellets, and aquaculture nutrition

Puffed Snacks

Corn puffs, Cheetos, Kurkure, and extruded snack varieties

Breakfast Cereals

Cornflakes, granola, and fortified cereal products

Modified Starch

Industrial starch modification for food, pharma, and cosmetics

Nutritional Products

Fortified rice, TVP, infant formula, and health supplements

15+

Years of Experience

60+

Countries Served

CE

ISO 9001:2015 Certified

20K㎡

Production Facility

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Why Choose Meiteng?

  • Turnkey production line solutions from raw material to packaging
  • Twin-screw extrusion technology with PLC automation
  • CE & ISO 9001:2015 certified equipment
  • Customizable capacity, temperature, pressure & product size
  • On-site installation, commissioning & training support
  • Spare parts supply & remote technical assistance

Direct Contact

WhatsApp / Phone

+86 188 8888 8888

Location

Jinan, Shandong, China

24-Hour Response Guarantee

Our engineering team responds to all inquiries within one business day.

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