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Leistungsstarke landwirtschaftliche Erntemaschine aus Kohlefaser

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Leistungsstarke landwirtschaftliche Erntemaschine aus Kohlefaser

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Leistungsstarke landwirtschaftliche Erntemaschine aus Kohlefaser

High-Performance Carbon Fiber Agricultural Harvester: Redefine Crop Harvesting Efficiency

1. Carbon Fiber Material Advantages: Built for Tough Agricultural Environments

Our agricultural harvester integrates high-grade carbon fiber composites (T700/T800 grade with anti-wear resin coating) into core components (cutting headers, conveyor belts, chassis parts, grain tanks), solving pain points of traditional steel/iron harvesters—delivering superior performance for large-scale crop harvesting:
  • Ultraleicht und energiesparend: 30%-40% lighter than all-steel harvesters. A 4-row corn harvester’s total weight is reduced by 800-1200kg, cutting fuel consumption by 15%-20% (saves 5-8L diesel per working hour) and reducing tractor pulling load. Ideal for small-to-medium tractors (50-80HP) to handle large-area harvesting, lowering equipment investment costs for farmers.
  • Superior Wear & Impact Resistance: Carbon fiber components have a surface hardness of 10H and tensile strength of 3600MPa—2.5x more wear-resistant than manganese steel. The cutting header (key component) withstands impacts from stones, stubble, and hard soil clods during harvesting, avoiding blade deformation or header cracking (common in steel harvesters). Service life of core parts extends to 5-8 years (vs. 2-3 years for steel).
  • Korrosionsbeständigkeit gegenüber Agro-Chemikalien: Carbon fiber is immune to corrosion from crop residues, fertilizers, pesticides, and wet soil. Unlike steel parts that rust after exposure to rain or crop moisture, carbon fiber components stay intact—no need for regular anti-rust painting or part replacement, reducing maintenance costs by 40%.
  • High Strength-to-Weight Ratio: Carbon fiber conveyor belts and grain tanks have high load-bearing capacity (grain tank holds up to 1500kg) while remaining lightweight. The rigid chassis parts (made of carbon fiber honeycomb structure) resist bending under heavy loads (e.g., full grain tanks) and maintain stability on uneven farmland, avoiding chassis deformation that affects harvesting accuracy.
  • Weather Adaptability: Maintains performance in -20°C to 60°C—adapts to cold northern wheat harvesting (spring frost) and hot southern rice harvesting (high temperature/humidity). No material brittleness (cold) or softening (heat), ensuring consistent operation during critical harvest windows.

2. Versatile Applications Across Crop Types & Farming Scenarios

Our carbon fiber agricultural harvester is engineered to handle multiple crops and farm environments, meeting the needs of large-scale farms, agricultural cooperatives, and professional harvesting services:
  • Grain Crops (Wheat, Rice, Barley):
  • 6-12 row cutting headers (made of carbon fiber composite) with adjustable cutting height (5-30cm). The lightweight header reduces vibration during high-speed harvesting (8-12km/h), improving cutting accuracy (less grain loss, <2% loss rate) and avoiding crop lodging. The anti-clogging conveyor belt (carbon fiber + TPU coating) ensures smooth grain transport, even in wet rice paddies.
  • Compatible with both dryland and paddy fields—carbon fiber chassis parts resist mud adhesion and corrosion, reducing downtime for cleaning.
  • Cash Crops (Corn, Soybeans, Rapeseed):
  • Corn harvester: Carbon fiber ear-picking rollers (lightweight, high grip) avoid ear damage (reducing loss rate to <1.5%) and withstand stalk toughness. The adjustable threshing drum (carbon fiber blades) adapts to different corn varieties (sweet corn, feed corn) without changing parts.
  • Soybean/rapeseed harvester: The carbon fiber screening system (high airflow permeability) separates seeds from straw efficiently, improving cleaning rate (>98%) and reducing seed breakage—critical for high-value cash crops.
  • Large-Scale & Mechanized Farming:
  • The lightweight design allows for fast road transportation (no need for heavy-duty trailers) and easy maneuvering in narrow farm lanes. For agricultural cooperatives covering 500+ acres, the harvester’s fuel efficiency and low maintenance mean 30% lower operating costs per acre vs. traditional steel harvesters.
  • Optional GPS positioning and yield monitoring (integrated into the carbon fiber control panel) for precision harvesting—farmers can track yield per field, optimize fertilizer use, and improve overall farm management.

 

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