Case Studies
  • Oil Field Drilling Platform
  • Oil Field Drilling Platform
Oil Field Drilling PlatformOil Field Drilling Platform

Oil Field Drilling Platform

Completed in 2013, this Guangdong project applies professional heavy anti-corrosion coating to protect oilfield drilling platform tidal zones from severe marine alternating corrosion and abrasion damage.

Project Overview

Project Site: Guangdong, China
Construction Year: 2013
Applied Coating: Industrial Heavy-Duty Anti-Corrosion Coating System
Construction Scope: Specialized heavy anti-corrosion treatment for the tidal zone of offshore oilfield drilling platforms

Industry Challenges

The tidal zone of offshore oilfield drilling platforms is the most severely corroded part of marine industrial facilities. The steel structures in this area are repeatedly affected by tidal flooding, seawater soaking, air exposure, salt spray deposition and wave impact all year round. Alternating dry and wet working conditions will quickly cause ordinary coatings to blister, peel and fail, leading to steel rusting and structural damage, which seriously threatens the safe operation and service life of oil drilling platforms.

Customized Anti-Corrosion Solution

Aiming at the extreme alternating corrosion characteristics of the oil platform tidal zone, we adopted a customized industrial heavy-duty anti-corrosion coating system for targeted construction. The coating has ultra-strong substrate adhesion, excellent dry-wet cycle resistance and superior seawater corrosion resistance. It forms a tough, airtight protective barrier on the steel surface, which can effectively resist long-term tidal erosion, salt medium penetration and marine weather aging, making up for the durability defects of traditional coatings in tidal zone environments.

Project Operation Results

After the completion of construction, the heavy anti-corrosion coating stably protected the platform tidal zone steel structure for a long time. It effectively avoids common coating failure and steel corrosion problems in marine tidal zones, reduces frequent overhaul and maintenance costs of offshore oil facilities, improves the overall structural stability of the drilling platform, and provides reliable long-term safety guarantee for offshore oilfield production operations.


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