AkzoNobel & Axalta Merge to Create $25 Billion Paint Company

PCN – Communicating News In Protective Coatings Globally in Real-Time

Leading Source of Industry News on Protective Coatings for Oil & Gas, Pipelines, Marine and Construction


NEWSMAKERS:  * Advanced Polymer Coatings (APC) * Akzo Nobel * ANIP * Anti-Dumping * Axalta * Chugoku Marine Paints (CMP) * Coating Condition Survey * Coating Failures * CUI * Dulux * Epoxy Coatings * Epoxy Phenolics * ExcelPlas Labs * Experts App * Failure Analysis * Hempel * Ichthys LNG Project * Inpex * International Paints * Jotun * LNG * Marine Coatings * Nippon Paints * Protective Coatings * Sparc Technologies

BREAKING NEWS

Akzo Nobel Buys Axalta to Build $25 Billion Paint Company

AkzoNobel & Axalta to Merge Creating $25 billion Paint Giant

AkzoNobel and Axalta to Combine in All-Stock Merger of Equals, Creating a Premier Global Coatings Company
This major M&A event will reshape the competitive dynamics in anti-corrosion + protective coatings markets

INDUSTRY NEWS

Advanced Polymer Coatings (APC) Clinches Two Tanker Deal with Oman’s Asyad Shipping Company

Chugoku Marine Paints (CMP) Stock Up 100% in Last 6 Months

Chugoku Marine Paints Shares Continue their Recent Momentum with a 27% Gain in the Last Month Alone

Hempel Launch New Water-repellent Coating System for Offshore Steel Structures in Harsh Marine Environments such as LNG Offshore

Effective CUI Mitigation in LNG Applications [PDF]

Jotun A/S Announces Extraordinary Dividend Boost Due to Particularly Good Results and High Cash Flow

India Imposes Anti-Dumping Duty on Liquid Epoxy Resin Imports from China

Sparc Technologies Advances Graphene Coating Manufacturing Applications in Dulux Partnership

PIPELINE COATINGS

Evaluation of Corrosion Protection of Pipeline Steel by Organic Coatings

Innovative Approaches for the Synthesis and Application of Anti- Corrosion Coatings for Pipeline Protection [PDF]

BRIDGE COATINGS

Research on the Performance of Different Waterproof Coatings for Steel Bridge Decks

NEW COATINGS RESEARCH

Research on the Mechanism of Improving the Corrosion Resistance of Waterborne Zinc-rich Coatings by Polydopamine-Modified Graphene (PGA-G)
PDA-G boosts the coating’s adhesion by 80% and effectively mitigates galvanic corrosion between zinc and graphene.

Epoxy Resin Coatings with the Competitive Relationship of Hydrophobic and Aerophilic for Anticorrosion Applications

Epoxy Resin Coatings with the Competitive Relationship of Hydrophobic and Aerophilic Properties for Anticorrosion Applications

Dual-Stimuli Triggered Lubrication and Barrier: A Synergistic Strategy for High-Performance Tribocorrosion Protection in MXene-Based Epoxy Coatings

Effect of ZrO2-MWCNTs Nanohybrid Materials on Corrosion Properties of Epoxy Resin Coatings

Fabrication of Functional Biobased Epoxy Coatings via Cinnamic Acid Grafting: Synergistic Antibacterial, Antifouling, UV-resistant, and Superhydrophobic Properties

Room-temperature Self-Healing Epoxy Coating Enhanced by Cerium-doped ZIF-8 Modified Graphene Oxide Nanosheets for Passive/Active Anti-corrosion Coatings

Effect of ZrO2-MWCNTs Nanohybrid Materials on Corrosion Properties of Epoxy Coatings

Effects of Polyethylene Glycol Molecular Weight and Content on the Properties of PEG-Block-Modified Epoxy Coatings

Natural Sustainable Coatings for Marine Applications: Advances, Challenges and Future Perspectives

COATINGS FAILURE ANALYSIS

Exploring Epoxy Coating Failures with ExcelPlas Labs
While epoxy coatings are generally durable and effective at preventing corrosion, there are a few common types of epoxy coating failures that can occur:

  • Adhesion failure: This occurs when the epoxy coating fails to properly adhere to the surface of the pipe, which can be caused by factors such as improper surface preparation or a poorly formulated coating. Adhesion failure can result in the coating peeling or flaking off, exposing the underlying steel surface to corrosion.
  • Blistering: This occurs when small bubbles or blisters form on the surface of the epoxy coating, which can be caused by improper surface preparation, moisture contamination, or excessive heat during curing.
  • Cracking: This occurs when the epoxy coating develops small cracks, which can be caused by factors such as thermal expansion and contraction, improper coating thickness, or exposure to chemicals.
  • Delamination: This occurs due to intercoat or interfacial adhesion failure due to the presence of a weak boundary layer such as silicone or hydrocarbon oil contamination.

Coatings Brochure

Failure Analysis and Investigation of Protective Coatings in Mining, Marine Offshore Oil & Gas Chemical Plants, Energy Infrastructure and Bridges (Ask the Experts)
Coatings Brochure

Critical Questions for Protective Coatings for Asset Protection in Oil & Gas, LNG:

  • Why is the coating not stopping corrosion?
  • Why is the coating delaminating or blistering?
  • Has the coating been correctly specified / applied?
  • Does the coating meet the manufacturing standard, including properties such as correct hardness/cure, adhesion and thickness?
  • What surface preparation and atmospheric conditions must be achieved to successfully apply the coating?
  • Does the coating have any defects in it? How will these affect performance?
  • Why did the coating fail? Root cause assessment.
  • How can the coating be successfully repaired/remediated so that it doesn’t fail again?

ExcelPlas Labs can answer these questions and more…
Coatings Brochure

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This newsletter is brought to you by ExcelPlas Coating Labs (http://www.excelplas.com/)

ExcelPlas Labs provides independent testing, analysis, and investigation on protective coatings to prevent corrosion.

ExcelPlas has extensive analytical capabilities for testing of Protective Coatings and Insulation Consulting for major oil and gas companies.

We conduct corrosion surveys, coating sampling, coating analysis, and testing to ensure coating specifications for a wide range of onshore and offshore clients in Australia and the Asia-Pacific Region.

ExcelPlas Labs offer a full range of coating testing and analytical services to Australia’s mining, oil, gas, and infrastructure sectors.

Forensic analysis for undertaking various coating-based failure investigations and problem-solving.

ExcelPlas Undertakes Analysis & Testing of Polymer Coating Systems including:

  • Epoxy Protective Coatings
  • Epoxy-Phenolic Protective Coatings
  • Fusion bonded epoxy (FBE) 
  • Dual-Layer Fusion bonded epoxy (DLFBE)
  • Liquid applied epoxy (LAE)
  • Abrasion-resistant overcoat (ARO)
  • Three-layer PE (3LPE)
  • Multi-component liquid spray  (MCL)
  • Heat shrink sleeves (HSS)

Testing on Coatings that ExcelPlas can Undertake includes:

  • Coating identification by Infra-red Analysis (FTIR)
  • Degree of Cure by Thermal Analysis (DSC)
  • Coating Filler Identification by X-ray Analysis (EDS/XRD)
  • Coating Microstructure by Embedding, Polishing, and Optical Microscopy (OM)
  • Coating Thermal Stability and Composition by Thermogravimetric Analysis (TGA)

DSC – Phase transition/volatiles / Tg / degree of cure/characterisation
TGA – Volatile compounds, inorganic mass % mix ratio
Element mapping for chlorides on paint flakes
Microscopy -Count layers and thickness of layers

  • Assess porosity and voids
  • Check distribution and orientation of filler particles

Condition monitoring and analysis of corrosion prevention coatings (epoxies, epoxy-phenolics)
http://www.excelplas.com/

Testing of Epoxy Coatings (LAE, FJC, FBE), heat shrink sleeves and tapes, barrier tapes, and meshes.
http://www.excelplas.com/

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