Modified Starch Production Line for Corn Tapioca Potato – Full Range

Modified Starch Production Line for Corn Tapioca Potato – Full Range

<p><strong>MT65 / MT70 / MT85 Modified Starch Production Line, Twin-Screw, CE Certified</strong> — configured for corn, tapioca and potato starch processing across three capacity tiers. Twin-screw extrusion delivers precise shear and barrel temperature control needed for consistent gelatinisation, with downstream drying, grinding and blending stations matched to extruder throughput.</p> <ul> <li>Line layout, electrical schematic and voltage confirmation provided before production</li> <li>In-house trial runs on buyer's actual starch raw material before shipment</li> <li>Screw configuration and die design specified to target product and application</li> </ul>

CE & ISO Certified
60+ Countries
15+ Years Expertise
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Complete Starch Line Under One Roof — every station from mixer to packing machine is capacity-matched before dispatch, so your extruder never waits on an undersized dryer.

Technical Specifications

Parameter Value
Model MT65 / MT70 / MT85
Product Type Modified Starch Production Line
Screw Type Twin-screw
Power Consumption (Line) MT65: 60 kW; MT70: 80 kW; MT85: 145 kW
Output Capacity MT65: 100–150 kg/h (basis to be confirmed); MT70: 200–250 kg/h (basis to be confirmed); MT85: 300–500 kg/h (basis to be confirmed)
Overall Dimensions (L×W×H) MT65: 24000×1200×2200 mm; MT70: 26000×1500×2200 mm; MT85: 29000×3500×4300 mm
Mixer Output 70–100 kg/h (basis to be confirmed)
Mixer Power 3 kW
Extruder Power 22 kW
Roasting Oven Power 1.1 kW
Line Stations Mixing → Extrusion → Drying → Grinding → Blending → Packing
Control System Available with PLC or MCC control (confirm configuration)
Voltage & Frequency Configurable to target market (confirm before production)
Certification CE

Application Suitability

Application Material or Output
Pre-gelatinized starch for food processing Corn starch, tapioca starch, potato starch
Modified starch for textile sizing Maize starch, cassava starch
Industrial starch for oil drilling fluids Corn starch, potato starch
Modified starch for papermaking Tapioca starch, maize starch
Functional starch for chemical additives Corn starch, cassava starch

What the Capacity Figure on a Modified Starch Production Line Equipment Range Actually Means

The kg/h number on the nameplate only holds if the raw material and moisture content match the test basis.

I once watched a modified starch line sit idle for five days because the factory trial ran on cassava starch while the buyer’s real feedstock was potato starch. Gelatinisation temperature shifted, shear behaviour changed, and the screw configuration that worked perfectly in Shandong produced half-raw output on site. Every capacity claim for a modified starch production line equipment range needs a stated raw material, a moisture percentage, and a specific screw profile to be meaningful [NEED_CITE: starch gelatinisation temperature variance across botanical sources]. Without those three data points, you are comparing numbers that were never measured under the same conditions.

Modified starch production line equipment range with twin-screw extruder and downstream stations

How Twin-Screw Extrusion Drives Starch Modification

The twin-screw design at the heart of this modified starch production line equipment range generates the controlled shear and residence time required to break down native starch granules. Barrel zones are heated independently, letting operators set a temperature gradient that matches the gelatinisation onset of their specific feedstock. Screw elements can be rearranged to adjust shear intensity, which directly influences the degree of starch modification achieved in a single pass.

Matching Every Station to the Same Throughput Target

An extruder that pushes material faster than the dryer can handle creates a bottleneck that forces the entire modified starch production line equipment range to run below its rated output. Each station in this catalogue — mixer, extruder, dryer, grinder, blender, packing — is specified against the same throughput envelope. That alignment is confirmed in the line layout document before production begins, so no single machine dictates the ceiling for the rest [NEED_CITE: throughput balancing methodology in continuous food processing lines].

Reading the Power and Dimension Data Against Your Factory Floor

The three extruder tiers draw 60 kW, 80 kW, and 145 kW respectively across the full line, which determines transformer sizing and dedicated circuit requirements at your site. Overall line length stretches from 24 m on the MT65 to 29 m on the MT85, and the MT85 also demands 3.5 m in width and 4.3 m in height — figures that must be checked against column spacing and overhead clearance before the foundation is poured. Extruder motor rating sits at 22 kW across the range, while the mixer draws 3 kW and the roasting oven 1.1 kW; these individual loads help your electrician plan panel distribution. Confirming voltage and frequency early avoids the situation where a machine arrives wired for a supply standard that the local grid does not support.

Control cabinet and barrel zone wiring detail on modified starch extruder

The Hidden Cost of Skipping a Raw-Material Trial Run

When the screw configuration is copied from a generic build rather than matched to the buyer’s actual starch source, the first production run often reveals texture and solubility outside specification. Adjusting on site means days of lost output, wasted raw material, and possible damage to screw elements from repeated restarts under incorrect shear settings. A trial run on the buyer’s own feedstock inside the testing workshop catches these mismatches before the line is crated [NEED_CITE: impact of raw material variability on extrusion screw wear].

Why Procurement From a Single Equipment Catalogue Matters Here

Every station is designed and built under one supplier, so throughput calculations and mechanical interfaces are resolved in the engineering phase rather than discovered during installation. Screw configuration and die geometry are documented against the buyer’s raw material, not pulled from a default library. The in-house testing workshop allows trial runs on customer-supplied starch before the line ships, reducing on-site commissioning time. Electrical schematics and voltage confirmation are completed before production starts, preventing wiring rework after arrival. Pre-sales consultation continues through installation, operator training, and ongoing wear-part supply, keeping a single point of accountability across the project life.

Documentation & Verification

  • Line layout showing matched throughput at every station from mixer to packing
  • Screw and die configuration record tied to your starch type and moisture level
  • Electrical schematic with voltage and frequency confirmed for your site
  • Factory trial run report on your raw material before dispatch
  • CE declaration of conformity for the complete line
  • Operation and maintenance manual with wear parts list

Installation, Commissioning & Support

  • Floor plan must accommodate up to 29 m line length and 4.3 m height on the MT85
  • Dedicated circuits sized for 60–145 kW total draw depending on model selected
  • Modular station delivery allows phased unloading where overhead crane access is limited
  • On-site screw configuration fine-tuning against your starch feedstock during commissioning
  • Operator training covers barrel zone temperature profiles and PLC or MCC interface navigation
  • First-order wear parts list including screws, dies, and mixer blades supplied with the line
  • Maintenance schedule aligned to production hours with remote troubleshooting support

What We Need From You to Quote the Right Configuration

To size the modified starch production line equipment range correctly, please share your starch source (corn, tapioca, potato, or other), typical moisture content at the mixer inlet, and target hourly output. Confirm your local voltage and frequency, preferred control language, and available factory floor dimensions including ceiling height. If you have existing upstream or downstream equipment that the new line must integrate with, include those specifications so the layout accounts for connection points from the start.

Frequently Asked Questions

Q: How is output capacity verified for each model?
A: Each capacity figure is based on a specific raw material and moisture content tested in the workshop. Before quoting, we request a sample of your starch so the trial run replicates your actual production conditions. The resulting throughput is documented in the trial report and becomes the guaranteed baseline for your line configuration.

Q: Which stations are included and how is throughput balanced?
A: The line covers mixing, twin-screw extrusion, drying, grinding, blending, and packing. Each station is selected so its maximum throughput matches the extruder output tier you choose. The line layout document shows the capacity envelope at every station, eliminating bottlenecks before installation begins.

Q: What voltage and control options are available?
A: Voltage and frequency are configured to your site supply before production starts. The control system is available with PLC or MCC architecture, and the operator interface language is set to your preference. Confirming these details at the quotation stage prevents electrical rework after the line arrives.

Q: How much factory floor space does the line require?
A: The MT65 needs roughly 24 m by 1.2 m with 2.2 m clearance height, the MT70 extends to 26 m by 1.5 m, and the MT85 occupies 29 m by 3.5 m with 4.3 m height. These dimensions include all stations. We recommend sharing your column grid and overhead obstructions so the layout can be adjusted before final engineering.

Q: Are spare wear parts available with the first shipment?
A: A recommended first-order wear parts list — covering screws, dies, and mixer blades — is included with every quotation. Parts are manufactured in the same workshop and can be shipped with the line or sent separately on a schedule that matches your production ramp-up.

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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