Black Bitument Paint AC 14 Anchor for Marine Vessels and Boats Ship Building Ports
| Place of Origin | China |
|---|---|
| Brand Name | JC Maritime |
| Certification | CCS.ABS.LRS.BV.GL.DNV.NK.RMRS |
| Model Number | Admiralty Anchor |
| Minimum Order Quantity | 1PCS |
| Price | USD 800~1200 PER PIECE |
| Packaging Details | 1. Bare packed: packed in bundles 2. Packed in iron drums then on pallets 3. Packed in woodencase 4. Required by cllent shipping |
| Delivery Time | 10-45 Days |
| Payment Terms | T/T,Western Union,L/C,MoneyGram,D/A,D/P |
| Supply Ability | 15000 Metric Ton/Metric Tons Per Year |
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x| Product Name | Size 50-10000kg CJD-14 HHP Anchor High Holding Power Marine Anchor | Material | High - Strength Alloy Steel/Stainless Steel/Carbon Steel |
|---|---|---|---|
| Surface Finishing | Polished,Spray Paint,Galvanized | Color | Black/Red/Yellow Or Customer Demand |
| Certificate | ABS,BV,DNVGL,KR,LR,NK,RINA,CCS,PRS,IRS,RS,CRS Certificated | Design | Simple And Sturdy |
| Port Of Loading | Qingdao, China | ||
| Highlight | black bitumen paint AC 14,marine vessel anchor paint,boat ship building bitumen |
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Black Bitument Paint AC 14 Anchor for Marine Vessels and Boats Ship Building Ports
The AC-14 anchor is a high-performance poleless anchor. Here is its detailed product description:
General Information:
Type: High-pull anchor, known as the second-generation poleless anchor.
Material: Usually made of ZG200-400 cast steel.
Surface Treatment: There are two common methods: black paint coating or hot-dip galvanizing, which can effectively prevent the anchor body from rusting and enhance its corrosion resistance in marine environments.
Certificates: It can obtain certifications from multiple classification societies such as DNV-GL, BV, ABS, LRS, RINA, IRS, RS, CCS, KR, NK, etc.
Product Description:
Material Advantages:
Stable pulling force: On regular seabeds (sand, mud), the pulling force performance is reliable, meeting the daily anchoring needs of merchant ships, with high cost-effectiveness.
Easy operation: The absence of cross-bar design simplifies the retraction, storage and reassembly process, reducing the operational intensity of crew members and improving work efficiency.
Low maintenance cost: The cast steel structure is sturdy and durable, with adequate surface protection treatment. Daily maintenance only requires regular inspection of accessories and surface coatings, making the maintenance simple.
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Manufacturing Process:
The production process of Admiralty Anchors strictly adheres to marine anchor casting standards and offshore mooring equipment strength requirements, centered on “structural precision, material strength and toughness, and corrosion resistance compliance.” Specific steps are as follows:
### 1. Raw Material Preparation and Mold Design
- Select high-strength cast steel (ZG230-450) or premium marine carbon steel. Ingredients are blended according to chemical composition requirements to ensure compliance with carbon, manganese, and other elemental content standards, enhancing tensile strength and toughness.
- Design sand molds based on anchor specifications (weights ranging from 500kg to 50t). The mold cavity precisely replicates the naval anchor's “four-fluke crown + crossbar” structure. Thickened sections are incorporated at the anchor fluke-to-shank junctions. Mold inner walls undergo polishing to prevent surface defects in castings.
### 2. Monolithic Casting
- Molten cast steel (1500-1600°C) is injected into the mold via a pouring system using gravity casting. This ensures uniform filling without dead zones or porosity.
- After natural cooling to room temperature, the mold is opened to remove the anchor blank. Gates, risers, flash, and other excess material are trimmed to prevent residual stress-induced cracking.
### 3. Structural Reinforcement and Precision Machining
- Critical load-bearing areas like anchor claws and crown undergo forging reinforcement to enhance localized hardness and impact resistance. Claw edges are ground to ensure sharpness and improve seabed gripping efficiency.
- Machine the connection hole at the top of the anchor body (to match anchor chain specifications). Bore the hole walls smooth to ensure secure chain attachment. Secure the crossbar via welding or integral casting. Apply full-penetration welding at joints and perform non-destructive testing.
### 4. Surface Anti-Corrosion Treatment
- Perform sandblasting rust removal first to thoroughly eliminate surface scale, rust, and oil contamination, achieving Sa2.5 standard to enhance coating adhesion.
- Apply a dual-layer coating of “epoxy zinc-rich primer + marine-grade topcoat” (total thickness ≥150μm) or utilize hot-dip galvanizing (zinc coating thickness ≥85μm). Both methods effectively resist offshore seawater corrosion and salt spray erosion.
### 5. Finished Product Inspection and Quality Control
- Visual Inspection: Verify anchor body is free of cracks, pores, pinholes, or other defects. Structural dimensional deviation ≤ ±3%. Anchor fluke symmetry and crossbar verticality meet design requirements.
- Performance Testing: Conduct tensile strength testing (≥400MPa) and impact toughness testing. Perform simulated holding force tests on samples to verify holding force meets standards (≥8 times its own weight).
- Corrosion Resistance Testing: Pass salt spray testing (1000 hours continuous) to evaluate coating or galvanized layer durability, meeting offshore long-term service requirements.
- Compliance Certification: Products must obtain certification from classification societies such as CCS and ABS, ensuring compliance with GB/T 5468-2019 “General Technical Conditions for Marine Anchors” and offshore mooring equipment standards.
### 6. Packaging and Shipping
- Packaged securely on wooden pallets or steel frames to prevent deformation during transit. Anchor bodies are wrapped in moisture-proof film to protect anti-corrosion coatings.
- Includes product inspection reports, certification documents, and installation manuals for seamless offshore project integration or on-site deployment.
Features:
Structural features: The anchor head is very wide, the anchor claws are thick and long, and there are longitudinal edges. This structural design enables the anchor to have excellent stability and grip, and can quickly embed into various seabeds.
Performance advantages:
High grip force: The grip coefficient is high, reaching around 14, and it can withstand a tensile force 15 times its own weight, ensuring the safety of the vessel in various sea conditions.
Light weight: Compared to traditional anchors, the weight is reduced by 25%, which can save space on the ship and reduce the ship's own weight.
Wide applicability: It is suitable for various seabeds, including mud, soil, sand, and sandstone.
Quick deployment: Its structural design facilitates quick anchoring and unanchoring, improving the operational efficiency of the vessel.
Technical Parameters:
Applications:
Applicable scenarios
It is usually used as the bow anchor and is often employed as the main anchor by large container ships, cargo transport ships and large oil tankers, etc.
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Support and Services:
After-sales consultation: We provide 24/7 customer service to answer customer questions , such as specification selection, usage methods, and maintenance points.
Backed by decades of marine hardware manufacturing expertise, our anchors comply with international marine standards and undergo rigorous quality testing—including load-bearing tests, corrosion resistance tests, and seabed simulation trials—to ensure reliability. We offer customization services for size, material, and surface treatment to meet the unique requirements of different vessels and marine projects.
Trust our Marine Anchor to secure your vessel with uncompromising strength and stability, even in the most challenging marine conditions.
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