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Disposable Plastic Thermoforming Machine Mold for Food for Making Boxes for Cake Lunch Sweet Sushi Fruit

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Disposable Food Box Production: Designed for thermoforming and vacuum forming processes to create lightweight, durable disposable food boxes for cakes, lunches, sweets, sushi, and fruits.
  • Modular Precision: Features a cold runner system and CNC-machined aluminum/plastic components for high-precision shaping and minimal material waste.

Key features

  • 1. Material Technology

  • With CNC-machined aluminum alloy construction, achieve high precision and corrosion resistance for durable, long-lasting use in food packaging production.

  • 2. Interactive Design

  • With a modular cold runner system, customize mold configurations to produce different disposable food box designs while minimizing material waste.

  • 3. Performance Parameters

  • With vacuum forming technology and cold runner efficiency, reduce material waste by up to 20% compared to hot runner systems* [*Disclaimer: Based on internal testing; actual results may vary].

  • 4. Scenario Solutions

  • Designed for commercial food packaging, the modular structure enables quick adjustments to produce diverse containers for cakes, sushi, and fruits, meeting varied customer demands.

  • 5. Certification Standards

  • Constructed with FDA-approved food-grade plastic components, ensuring compliance with safety standards for disposable food containers.

Product details

Disposable Plastic Thermoforming Machine Mold for Food for Making Boxes for Cake Lunch Sweet Sushi Fruit

The Plastic Disposable Food Box Making Thermoforming Machine Mold is designed for high-precision production of eco-friendly food containers. Crafted from aluminum and plastic composites, it supports thermoforming and vacuum forming processes, with a cold runner system optimizing material efficiency. Its modular structure and polished finish ensure versatility and durability for applications like cake trays, lunch boxes, and sushi containers.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialAluminum (frame) + Plastic (cavities)Lightweight yet durable for food-grade packaging
ProcessThermoforming & Vacuum FormingEfficient production of heat-resistant containers
FinishCNC-Machined Polished SurfaceSmooth surface for hygienic food contact
Runner SystemCold RunnerReduces material waste in high-volume production
CompatibilityCustomizable Cavity DesignsAdaptable to cakes, fruits, and sushi trays

Customization guide

Adjustable parameters include cavity depth/shape for different food item sizes and material ratios (aluminum/plastic) to balance cost and thermal resistance. For specialized needs, the cold runner system can be optimized for faster cycle times or lower energy consumption.

Get inspired

From sushi boxes to fruit containers, this mold enables precise, cost-effective production of disposable food packaging. Its modular design allows rapid reconfiguration to meet evolving market demands, ensuring your products stay fresh and visually appealing.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Material DurabilityAluminum 6061Aluminum 7075 (+20% strength)Aluminum-Composite (+40% heat resistance)*
Cooling EfficiencyStandard FansEnhanced Heat SinksLiquid Cooling (+30% speed)
Precision Tolerance±0.5mm±0.3mm±0.1mm
Runner OptimizationBasic Cold RunnerSplit Cold RunnerDual-Zone Cold Runner

Supplier's note

  1. Technical Breakthroughs:

    • Cold Runner Design: Reduces material waste by 15% compared to hot runners.
    • CNC Machining: Achieves ±0.1mm precision in Pro models, enabling intricate food box designs.
    • Aluminum-Plastic Hybrid: Balances thermal conductivity (aluminum) with lightweight durability (plastic).
  2. Version Selection Guide:

    • Base Model: Ideal for SMEs needing cost-effective production of standard lunch boxes.
    • Advanced Model: Suitable for mid-volume manufacturers requiring faster cooling and tighter tolerances for sushi/sweet containers.
    • Pro Model: Best for high-volume producers needing triple-industry-standard chemical resistance (e.g., for acidic fruit packaging) and seamless integration with automation lines.

With the Pro Model’s dual-zone cold runner, you can reduce cycle times by 25% while maintaining structural integrity for delicate food trays. Pair its heat-resistant composite material with precise cavities to ensure zero warping during high-temperature forming.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionMass production of food packagingAluminum alloy (6061-T6, per ASTM B221) ▲
Plastic (PP/PE, food-grade FDA 21 CFR)
High thermal stability (±2°C deviation) for consistent forming
Lightweight, cost-effective for disposable items
Limited durability for ultra-high-temperature applications
Runner SystemHigh-volume thermoformingCold runner system (reduces material waste by 15% vs hot runners)Minimizes scrap, lowers per-unit cost for bulk productionRequires complex mold design, higher initial setup cost
Machining PrecisionPrecision part manufacturingCNC-machined (tolerances ±0.02mm, ISO 2768-M) ▲▲Ensures dimensional accuracy for tight-fitting boxes (e.g., sushi trays)Slower production speed compared to conventional molds
Surface FinishClear/transparent packaging (e.g., fruit boxes)Polished finish (Ra ≤0.8μm, ISO 1302) ▲Achieves glossy surfaces for aesthetic appealSusceptible to scratches during handling; requires protective coating
Process CompatibilityMulti-material thermoformingDual-material cavities (aluminum core + plastic inserts)Supports both rigid (aluminum) and flexible (plastic) part designsLimited to thermoforming/vacuum forming; incompatible with injection molding
Customization FlexibilityRapid prototyping of new food containersModular design (swappable cavities, ISO 9001-certified interchangeability)Enables quick design updates without full mold replacementHigher maintenance complexity for disassembly/assembly

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.