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  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
  • Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple
Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple

Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple

$110.00-$386.00/ Piece|30 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 100 pieces)
Graphic customization(Min.Order: 100 pieces)

Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Precision Tetrapod Production: Designed to manufacture reinforced beach breakwater tetrapods using C20/C30 grade concrete, ensuring structural integrity and durability for coastal protection.
  • Reusable Modular Construction: Combines metal (steel) and plastic components to enable efficient injection molding of triangular pier segments, supporting multi-stage production and cost-effective reuse.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With corrosion-resistant stainless steel and durable plastic construction, ensure long-lasting performance in harsh marine environments. The combination of metal and plastic materials enhances durability against saltwater corrosion and abrasion, ideal for beach breakwater applications.

  • 2. Modular & Reusable Interactive Design

  • With a modular and reusable design, streamline assembly/disassembly for easy maintenance and cost-effective reuse. The plastic and steel components allow flexible customization to adapt to varying project requirements, reducing downtime and operational costs.

  • 3. High-Precision Performance Parameters

  • With high-precision injection molding technology, achieve ±0.5mm accuracy—20% more precise than standard molds*. The C20/C30 grade concrete compatibility ensures uniform shape and structural integrity for tetrapods, critical for stable coastal protection.

  • 4. Scenario-Specific Marine Solutions

  • Engineered for coastal breakwaters, withstands high-pressure waves and saltwater corrosion, ideal for commercial and large-scale marine projects. The triangular pier design optimizes water flow distribution, enhancing durability in dynamic tidal conditions.

  • 5. Compliance with Environmental Certification Standards

  • Complies with EPR standards in France and Germany, ensuring environmental responsibility and regulatory compliance. This certification supports sustainable waste management and reduces ecological impact during production and disposal.

Product details

Reinforced Beach Breakwater Tetrapod Injection Mold C20 C30 Grade Concrete Metal Steel Triangular Pier Reusable Plastic Multiple

The Reinforced Beach Breakwater Tetrapod Injection Mold is a high-precision industrial tool designed for manufacturing durable concrete tetrapods used in coastal protection and marine infrastructure. Crafted from corrosion-resistant stainless steel and high-density plastic, this mold ensures longevity in harsh environments while maintaining structural integrity. Certified to EPR standards in France and Germany, it prioritizes environmental compliance and safety in packaging applications.

Technical specifications

FeatureSpecificationBenefit
Material CompositionStainless Steel & High-Density PlasticCorrosion resistance for marine/chemical use
Precision±0.5mm Tolerance (ISO 2768-m)Ensures uniform tetrapod shapes for stability
CertificationsEPR_France_Packing, EPR_Germany_PackingMeets EU environmental and safety standards
ProcessInjection MoldingEfficient mass production of complex geometries
Shaping ModePlastic Injection MouldScalable production for varying concrete grades (C20/C30)

Customization guide

Adjustable parameters include mold dimensions (to accommodate C20/C30 concrete grades) and material ratios (balancing steel reinforcement and plastic durability). For specialized needs, customize flange connections or outlet configurations to optimize fluid distribution in high-pressure scenarios.

Get inspired

With this mold, you can create robust tetrapods for breakwaters that withstand oceanic forces and corrosive saltwater. The modular design allows easy scaling to meet project-specific requirements, while EPR certifications ensure compliance with global environmental regulations.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Tolerance Accuracy±1.0mm±0.8mm (+20%)±0.5mm (+50%)*
Corrosion ResistanceASTM A260 Grade 1ASTM A260 Grade 2ASTM A260 Grade 3
Max Operating Pressure15 MPa20 MPa (+33%)25 MPa (+66%)*

Supplier's note

  1. Three Breakthroughs:

    • Precision Engineering: ±0.5mm tolerance ensures tetrapods fit seamlessly in breakwater systems.
    • Corrosion-Resistant Materials: ASTM A260 Grade 3 steel in the Pro model triples durability in marine environments.
    • Modular Design: Customizable flange connections reduce assembly time by 40% compared to traditional molds.
  2. Version Selection Guide:

    • Base Model: Ideal for standard coastal projects with moderate pressure (e.g., riverbank reinforcement).
    • Advanced Model: Suitable for industrial applications requiring corrosion resistance (e.g., chemical plant infrastructure).
    • Pro Model: Designed for extreme marine environments—its 25 MPa pressure rating and triple corrosion resistance enable safe use in open-ocean breakwaters.

With the Pro version’s ASTM A260 Grade 3 steel, you can ensure tetrapods withstand decades of saltwater exposure. Pair this with its 25 MPa pressure capacity to handle high-tide forces, creating a cost-effective solution for long-term coastal protection.

Frequently asked questions

  • Which Reinforced Beach Breakwater Tetrapod Injection Mold model suits C20/C30 grade concrete applications?

  • How to maintain the metal and plastic components of the Injection Mold for longevity?

  • Metal vs Plastic in Injection Molds: Which material is better for marine breakwater projects?

  • Can the Tetrapod Mold be customized for non-standard concrete mix ratios?

  • Is the Reinforced Breakwater Mold EPR-compliant for European marine projects?

  • What makes the Injection Mold suitable for high-pressure marine environments?

  • Does the mold support mass production of triangular pier components for breakwaters?

  • Can the mold be adapted for eco-friendly geopolymer concrete instead of traditional cement?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionCoastal infrastructure projectsIndustry: Standard steel & plastic (ASTM A36) ▲ Base: Stainless steel 304 + HDPE (ISO 3506) ▲ Advanced: Duplex steel 2205 + GF nylon (ISO 1043)Enhanced corrosion resistanceHigher cost for advanced materials
Precision StandardsHigh-precision manufacturingIndustry: ±0.5mm (ISO 10360) ▲ Base: ±0.3mm ▲ Advanced: ±0.1mmReduced material wasteIncreased tooling costs
Environmental CertificationsCompliance-driven industriesIndustry: No EPR ▲ Base: EPR France (2019/904) ▲ Advanced: EPR France + Germany (2022/25)Regulatory complianceHigher certification costs
Mold Material QualityHeavy industrial applicationsIndustry: ABS plastic ▲ Base: Steel core + plastic (ASTM A36) ▲ Advanced: S45C steel + GF nylon (ASTM D638)Longer mold lifespanHigher initial investment
Manufacturing ProcessMass production environmentsIndustry: Conventional (ASTM D1600) ▲ Base: Pressure-controlled (ASTM D3326) ▲ Advanced: Multi-cavity (ASTM D4286)Faster production cyclesRequires specialized machinery
Reusability & DurabilityCost-sensitive projectsIndustry: 5-10 cycles ▲ Base: 50 cycles (ISO 2768) ▲ Advanced: 200 cycles (ISO 2768)Lower long-term costsRegular maintenance needed

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