Modified Starch Production Line for Wheat – Full Range

Modified Starch Production Line for Wheat – Full Range

<p><strong>MT85 / MT100 / MT110 / MT135 Modified Starch Production Line</strong> — twin-screw extrusion, PLC control, 90–240 kW installed power.</p> <ul> <li>Screw and barrel configuration matched to corn, tapioca or potato starch and target gelatinisation degree, with moisture, shear and temperature profile set for precise thermal viscosity and film-forming properties in the final product.</li> <li>Dryer heating source configurable to electric, steam or gas to suit site utilities; grinding station built with SS304 food-contact surfaces and bottom butterfly valve discharge.</li> <li>Every station — mixing, extruding, drying, grinding, packing — sized to the same capacity band, backed by in-house trial runs on your raw material before shipment.</li> </ul>

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

Matched Throughput Across Stations — Every mixing, extrusion, drying, and grinding unit in this modified starch production line is sized to the same capacity band, preventing mid-line bottlenecks that stall output.

Technical Specifications

Parameter Value
Model MT85 / MT100 / MT110 / MT135
Product Type Modified Starch Production Line / Pregelatinized Starch Processing Line
Extruder Type Twin-screw
Installed Power (MT85) 90 kW
Installed Power (MT100) 180 kW
Installed Power (MT110) 200 kW
Installed Power (MT135) 240 kW
Real Consumption (MT85) 63 kW
Real Consumption (MT100) 120 kW
Real Consumption (MT110) 150 kW
Real Consumption (MT135) 165 kW
Output Capacity (MT85) 100–200 kg/h (basis not stated in source — confirm raw material type, moisture content, target gelatinisation degree)
Output Capacity (MT100) 500–600 kg/h (basis not stated in source — confirm raw material type, moisture content, target gelatinisation degree)
Output Capacity (MT110) 500–600 kg/h (basis not stated in source — confirm raw material type, moisture content, target gelatinisation degree)
Output Capacity (MT135) 1000–1500 kg/h (basis not stated in source — confirm raw material type, moisture content, target gelatinisation degree)
Line Stations Materials preparation → Material blending → Mixing → Extruding → Drying → Grinding → Packing
Dryer Heating Source Electric / Steam / Gas (configured to site conditions)
Grinding Contact Material Stainless steel 304 (food-contact parts)
Grinding Discharge Bottom butterfly valve
Grinding Particle Fineness Less than 10 mm
Control System Frequency speed controlling system
Barrel & Screw Design Changeable configuration for modified or denatured starch variants
Lubrication Automatic lubricating and cooling system
Warranty 1 year
Standards CE, ISO

Application Suitability

Application Material or Output
Textile sizing and warp yarn treatment Pregelatinized corn starch with controlled thermal viscosity
Paper surface coating and corrugating adhesive Modified tapioca starch with film-forming properties
Oil drilling fluid viscosity control Denatured potato or corn starch with high water-binding capacity
Construction gypsum board and mortar additive Pregelatinized starch providing freeze-thaw stability
Food ingredient blending for bakery and sauce Modified starch with specific gelatinisation degree and cold-water solubility

What "Nominal Capacity" Ignores About Starch Gelatinisation

Real output depends on your raw material’s protein content, moisture level, and target gelatinisation degree — not the nameplate.

A twin screw extruder for modified starch might be rated at a given throughput on standard corn starch at controlled moisture. Swap to a wheat starch with higher protein, or a tapioca starch with different gelatinisation kinetics, and the same screw speed, barrel temperature profile, and die geometry may deliver a different product density or fall short of expected throughput. I once saw a line configured on standard test starch that needed a full parameter rewrite when the customer’s actual feedstock arrived with higher protein content than anticipated. That kind of mismatch delays commissioning by weeks [NEED_CITE: variability of starch gelatinisation behaviour across raw material sources].

Twin screw extruder for modified starch processing line with barrel and die assembly

How Screw Configuration Shapes Pregelatinised Starch Properties

The twin-screw extruder at the heart of this pregelatinized starch processing machine relies on a barrel and screw arrangement that can be changed to suit different starch sources. Corn, tapioca, and potato starches each have distinct granule sizes and gelatinisation temperatures. Matching the screw element sequence — kneading blocks, conveying sections, reverse elements — to the raw material determines shear intensity and residence time inside the barrel, which directly controls the degree of starch modification achieved in a single pass.

Throughput Matching Between Extrusion and Downstream Stations

A common failure in modified starch production line equipment is sizing the extruder correctly but undersizing the dryer or grinder. When the extruder pushes output at full rate but the dryer cannot remove moisture fast enough, material backs up and the line stalls. On these MT-series lines, mixing, extruding, drying, and grinding stations are selected within the same capacity band so that material flows continuously from one stage to the next without accumulation or idle time [NEED_CITE: importance of line-wide throughput matching in continuous processing].

Reading the Power and Capacity Figures Correctly

Installed power and real consumption tell different stories. The MT135 draws 240 kW on paper but runs around 165 kW under typical load, because motors do not operate at peak draw continuously. The frequency speed controlling system adjusts motor speed to actual demand, so energy use tracks with the material load in the barrel rather than staying at maximum. Barrel and screw wear also affects power draw over time; as clearances increase, the extruder works harder to maintain the same shear level, which is why the automatic lubricating and cooling system matters for long-term consistency. Grinding fineness below 10 mm through the stainless steel 304 contact surfaces ensures the final powder meets the particle size expectations of downstream users in textile or paper applications.

Grinding station with stainless steel contact surfaces and butterfly valve discharge

The Hidden Cost of Skipping Raw Material Confirmation

When a line ships without a trial run on the buyer’s actual starch, the first weeks of production become an expensive experiment. Screw speed, barrel temperature zones, and moisture addition all need adjustment once real feedstock behaves differently from the test material. Operators unfamiliar with the process may push the extruder beyond safe parameters trying to hit output targets, accelerating wear on screws and dies. Correcting these issues on-site costs more in downtime and replacement parts than a pre-shipment trial run ever would [NEED_CITE: commissioning delays caused by unverified raw material behaviour].

Why Procurement Through This Channel Works

Every station from material blending through packing is supplied under one responsible source, meaning throughput calculations and layout drawings are coordinated before fabrication rather than reconciled after delivery. The in-house testing workshop runs your actual raw material through the configured extruder before the line ships, so screw and die settings are documented in a trial report rather than guessed on your factory floor. Dryer heating is specified to your available utility — electric, steam, or gas — avoiding last-minute conversions. Electrical schematics and voltage confirmation are locked in before production starts, matching your market’s frequency and plug standards. CE and ISO documentation accompanies every shipment for customs and compliance purposes.

Documentation & Verification

  • Line layout drawing showing station throughput matching across the full MT85–MT135 range
  • Screw and die configuration record tied to your starch type and target gelatinisation property
  • Trial run report on customer-supplied raw material before dispatch
  • Electrical schematic with confirmed voltage and frequency for destination market
  • Wear parts list covering screws, dies, and barrel sections with replacement intervals
  • Operation and maintenance manual for all line stations

Installation, Commissioning & Support

  • Power supply circuit sized to the confirmed real consumption figure, up to 165 kW for the MT135 line
  • Foundation and floor plan aligned with the full station sequence from mixing through packing
  • Dryer utility connection matched to the configured heating source — electric, steam, or gas
  • First-run parameter setting based on the pre-shipment trial report data
  • Operator training covering screw configuration changes for different starch variants
  • Spare screw and die elements stocked for the initial replacement cycle

Preparing Your Inquiry

To configure the right modified starch production line equipment for your operation, share the type of native starch you will process, the target modification properties, and the output range you need per hour. Confirm your site’s available power supply voltage and frequency, and let us know which dryer heating source your facility supports. If you have a specific particle fineness requirement for the ground final product, include that in your specification so the grinding station can be matched accordingly.

Frequently Asked Questions

Q: How is line capacity verified on my specific starch raw material?
A: Before shipment, your raw material runs through the configured twin-screw extruder in the in-house testing workshop. The trial covers screw speed, barrel temperature profile, moisture addition, and die geometry against your target gelatinisation degree. Results are documented in a report so settings are known before installation, not discovered during commissioning.

Q: How are the extruder, dryer, and grinder matched to avoid bottlenecks?
A: Each station is selected within the same MT-series capacity band. The dryer’s residence time and heating capacity are calculated against the extruder’s moisture output, and the grinder is sized to handle the dried material flow rate. This prevents accumulation between stations and keeps the line running continuously.

Q: Can the dryer heating source be configured to my site utility?
A: Yes. The dryer is available with electric, steam, or gas heating. Your site conditions determine which option is specified during the line configuration stage, so the correct heat exchangers, burners, or electrical elements are installed before the dryer leaves the factory.

Q: What electrical details are confirmed before production begins?
A: Voltage, frequency, control language, and plug standards are confirmed against your destination market requirements. An electrical schematic is provided for approval before manufacturing starts, ensuring the frequency speed controlling system and all motor ratings match your facility’s power supply.

Q: What does the pre-shipment trial run cover?
A: The trial uses your supplied raw material and tests the barrel and screw configuration, temperature zones, and moisture levels to produce modified starch matching your specification. The resulting report records all parameters so your team can replicate the settings immediately after installation.

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

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+86 188 8888 8888

Location

Jinan, Shandong, China

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