Every infrastructure project begins with a commitment to quality. Yet, corrosion, high maintenance, and material fatigue are costly setbacks. What if there was a way to eliminate these issues from the start?
CFCC® from Tokyo Rope is designed to be the solution for professionals who demand more—high tensile strength, zero rust, and minimal relaxation loss. CFCC® reduces the need for repairs, saving time, money, and resources.
The advanced technology used for traditional iron ropes is fully compatible with carbon fiber composite cables, meaning no new equipment or infrastructure is required. You can seamlessly upgrade to the superior performance of CFCC® without any added implementation expenses, maximizing your ROI from day one.

Lifecycle Cost Analysis Highlight the Savings: “With its corrosion resistance and low maintenance, CFCC® offers up to 30% savings in lifecycle costs compared to steel. Less upkeep means fewer expenses, allowing you to allocate resources where they matter most.”
Comparison Chart: Simple visualization comparing lifecycle costs of CFCC, black steel, and epoxy-coated steel, showing the savings potential.
Eco-Friendly Benefits Durable and Sustainable: CFCC® contributes to eco-friendly construction by reducing the need for replacements and lowering resource consumption. Longer-lasting infrastructure equates to less waste and fewer resources spent on repairs.
Supporting Quote: “CFCC® allows infrastructure to be built once and built to last, minimizing environmental impact.”
| Name | Weight (g/m) | Diameter (mm) | Material |
|---|---|---|---|
CFCC 1x7 D12,5 |
146 | 12,5 | Carbon |
Performans Kanıtı – CFCC® Gerçek Yaşam Projeleri
Vaka Çalışması #1 – Beddington Trail Köprüsü
Zorluk: Şiddetli aşındırıcı ortam, yüksek dirençli ve uzun ömürlü bir malzeme gerektiriyordu.
Çözüm: Köprü kirişlerine CFCC® uygulanarak korozyon riski ortadan kaldırıldı ve bakım ihtiyaçları azaltıldı.
Sonuçlar: Yapısal bütünlük, bozulma olmadan yıllarca korundu ve CFCC'nin olağanüstü dayanıklılığını gösterdi.
Case Study #1 – Beddington Trail Bridge
Case Study #2 – Yamanashi Maglev Test Line
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