Factory Supply Artificial Rice Processing Line for Fortified Rice

Factory Supply Artificial Rice Processing Line for Fortified Rice

<p><strong>MT65 / MT70 / MT85 / MT75 / MT95 Fortified Rice Kernel Extrusion Line, Twin-Screw, Multi-Layer Dryer</strong> — full equipment range from mixing through extrusion, drying, cooling and packing, with each station's throughput balanced to prevent line bottlenecks. Screw configuration and die design matched to broken rice, corn, millet or starch-based formulations for consistent kernel density and shape.</p> <ul> <li>Selectable single or double screw feeding system ensures material uniformity across varying raw material blends.</li> <li>Multi-layer mesh belt dryer with frequency motor control allows flexible drying adjustment for different moisture targets.</li> <li>Automatic lubricating and cooling systems support continuous safe operation across the five-model capacity range.</li> </ul> <p>In-house testing workshop runs trial production on your raw material before shipment, with a full trial run report and machine specification sheet provided for verification.</p>

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

Complete Turnkey Integration — throughput matching across every station from batching through packing, verified on customer raw material before dispatch.

Technical Specifications

Parameter Value
Product Type Fortified Rice Kernel Extrusion Line
Model MT65 / MT70 / MT85 / MT75 / MT95
Rated Power MT65: 85 kW; MT70: 120 kW; MT85: 235 kW; MT75: 180 kW; MT95: 260 kW
Power Consumption MT65: 60 kW; MT70: 85 kW; MT85: 165 kW; MT75: 135 kW; MT95: 195 kW
Output Capacity MT65: 80–100 kg/h (basis not stated in source — confirm raw material formulation / moisture); MT70: 100–120 kg/h (basis not stated in source); MT85: 200–300 kg/h (basis not stated in source); MT75: 300–500 kg/h (basis not stated in source); MT95: 800–1000 kg/h (basis not stated in source)
Overall Dimensions (L×W×H) MT65: 28 × 1.2 × 2.2 m; MT70: 30 × 1.5 × 2.2 m; MT85: 34 × 3.5 × 4.3 m; MT75: 32 × 3.5 × 4.3 m; MT95: 36 × 3.5 × 4.3 m
Screw Type Twin-screw
Feeding System Single or double screw feeding system selectable
Control System Frequency speed controlling (PLC / MCC architecture to be confirmed)
Screw Material Wear-resistant alloy
Lubrication & Cooling Automatic lubricating system and automatic cooling system
Dryer Type Multi-layer mesh belt dryer with frequency motor speed control
Dryer Heating Source Electric or gas
Certification CE, ISO

Application Suitability

Application Material or Output
Fortified rice kernel production Broken rice, rice flour blended with vitamin and mineral premix
Artificial rice for food security programs Corn, millet, wheat, oats formulated into rice-shaped kernels
High-value grain by-product conversion Buckwheat, bean, starch processed into extruded nutritional kernels
Fortified breakfast and infant nutrition ingredients Cereal and starch blends with supplementary micronutrients

When the Dryer Cannot Keep Up with the Extruder

An extruder that outpaces its downstream dryer creates a bottleneck that forces the whole fortified rice extruder full equipment range to idle while operators clear the backlog.

We see this mismatch on nearly every line audit. A buyer selects an extruder based on rated output, then pairs it with a dryer sized for a different material or moisture load. The result is kernels that exit the dryer still holding excess moisture, leading to spoilage or cracking during storage. The dryer becomes the constraint, and the extruder never reaches its actual throughput. Sizing each station to the material’s real drying curve — not just the extruder’s nameplate capacity — is the only way to avoid this. [NEED_CITE: moisture equilibrium targets for extruded cereal kernels]

Fortified rice extruder full equipment range showing twin-screw extruder, mesh belt dryer and cooling conveyor in sequence

Matching Every Station to the Material Profile

A fortified rice extruder full equipment range must handle raw materials that vary widely in starch content, fiber ratio, and moisture absorption. Broken rice behaves differently from corn or buckwheat when it enters the barrel. The twin-screw configuration with selectable single or double screw feeding allows the operator to match feed uniformity to the specific blend, preventing surging or starvation at the die plate.

Die Design and Kernel Geometry

The final kernel shape and density depend on die aperture geometry and the cut-off mechanism speed. If the die is specified for a standard rice shape but the formulation includes a high proportion of bean or oat flour, the extrudate may swell beyond the intended profile. Die design must be matched to the buyer’s exact formulation before production begins, not adjusted empirically after installation. [NEED_CITE: die land length and extrudate swell in starch-based extrusion]

Reading the Specs Beyond Nameplate Numbers

The five models in this range span rated power from 85 kW on the MT65 to 260 kW on the MT95. Power consumption figures are correspondingly lower — 60 kW to 195 kW — which reflects the difference between installed motor capacity and actual energy draw under load. The multi-layer mesh belt dryer with frequency motor speed control allows the operator to adjust dwell time without changing belt length, which is critical when switching between a high-moisture corn blend and a low-moisture broken rice formulation. Automatic lubricating and cooling systems reduce unplanned stops during long production runs, and the wear-resistant alloy screw material extends the interval between screw and barrel replacements. The overall line length ranges from 28 meters to 36 meters depending on model, which affects workshop layout planning and utility routing.

Control cabinet with frequency drives and operator interface for extruder and dryer coordination

The Hidden Cost of Skipping the Trial Run

Lines shipped without a trial run on the buyer’s actual raw material almost always require extended on-site commissioning. The screw combination that works on the manufacturer’s test material may not gelatinise starch correctly when the buyer adds a 30%杂粮 premix or alters the moisture ratio. Remote troubleshooting then stretches into days of video calls adjusting barrel temperature zones and feed rates. This delay costs the buyer production time and may push delivery commitments to their own customers. [NEED_CITE: typical commissioning duration when trial runs are omitted]

Why Source the Full Range Here

Every station in the fortified rice extruder full equipment range is specified under one supplier, so throughput calculations are consistent from the mixer to the packing station. Screw configuration and die design are documented against the buyer’s raw material formulation rather than pulled from a generic build library. The in-house testing workshop runs the buyer’s actual material before shipment, generating a trial report that becomes the baseline for commissioning. Electrical schematics and voltage confirmation are completed before production starts, preventing delays at the destination site. Wear parts lists and spare screw sets are included with the first order so the first replacement cycle does not halt production.

Documentation & Verification

  • Line layout drawing showing each station footprint and throughput match
  • Screw and die configuration record tied to your raw material formulation
  • Trial run report on your material from the in-house testing workshop
  • Electrical schematic with voltage and frequency confirmed for your market
  • Factory test record documenting output and kernel geometry before dispatch
  • Operation and maintenance manual with wear parts replacement intervals

Installation, Commissioning & Support

  • Workshop floor must accommodate line lengths up to 36 meters with utility drops at each station
  • Dedicated circuit required matching the model’s rated power from 85 kW to 260 kW
  • Line arrives in modular sections for staged assembly and belt alignment
  • First run includes screw combination verification against trial run baseline
  • Operator training covers dryer frequency adjustment and moisture monitoring
  • Spare screw and die sets ship with initial order to cover first replacement cycle

What We Need to Specify Your Line

To size each station correctly, share your raw material formulation including the ratio of broken rice or alternative grains to any vitamin and mineral premix. Provide your target daily output and the moisture content you expect at the dryer exit. Confirm the voltage and frequency at your facility, the preferred control language for the operator interface, and whether your dryer heating source will be electric or gas. If you can send a sample of your raw material, we will run a trial in our testing workshop and include the results with the proposal.

Frequently Asked Questions

Q: What stations are included in the full line and how is throughput matched?
A: The line includes mixing, twin-screw extruding, vibrating, low-temperature drying, cooling, high-temperature roasting, a second cooling stage, and packing. Each station is sized so that its maximum throughput matches the extruder’s actual output on your specific material, preventing bottlenecks at any single point.

Q: Which raw materials are compatible with this extrusion line?
A: The line processes broken rice, rice, corn, millet, wheat, oats, buckwheat, bean, and starch as main ingredients, with vitamins and minerals as supplementary ingredients. The screw combination and die design are adjusted to match the starch and fiber profile of your specific blend.

Q: What dryer heating source options are available?
A: The multi-layer mesh belt dryer can be configured for electric or gas heating. The choice depends on local energy costs and available utility infrastructure at your facility. Frequency motor speed control on the dryer belt allows dwell time adjustment regardless of heating source.

Q: How are voltage and control language confirmed before shipment?
A: Electrical schematics are reviewed with the buyer during the specification stage. The destination market voltage, frequency, and preferred operator interface language are documented and confirmed before production begins, so the control cabinet arrives ready for connection.

Q: What spare wear parts ship with the first order?
A: The initial shipment includes a documented wear parts list and a set of replacement screws and dies so the first scheduled maintenance cycle does not require an emergency order. Additional spares can be quoted based on your projected annual running hours.

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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