Agency since 2022
Chugoku Marine Paints
Marine and offshore coating supply for the agreed newbuilding, drydock or maintenance specification.

Home / Services / Marine paints & coatings
Marine coating agencies since 2022
Published
SVC Marine brings coating procurement, vessel delivery and the repair work package together. We supply through our agency relationships with Chugoku Marine Paints, Nippon Paint Vietnam and New Generation Paint (THM).
SVC Marine has held these agency agreements since 2022. Supply, invoicing and payment are handled through SVC Marine; the proposed brand and coating system follow the vessel specification.
Agency since 2022
Marine and offshore coating supply for the agreed newbuilding, drydock or maintenance specification.
Agency since 2022
Protective and marine coating requirements reviewed against the vessel area and manufacturer documentation.
Agency since 2022
Vietnamese marine coating systems, with product codes and coating schedules available for technical purchasing review.
Coating scope
Primers, tie coats and antifouling for a defined drydock coating system.
Ballast, fresh water and cargo-space coatings against the stated service and specification.
Maintenance primers, intermediate coats and topcoats selected against the existing system.
Protective and heat-resisting coatings for the specified machinery-space or structural application.
Technical purchasing
The source tables retain the published coating codes, coat order, dry film thickness and volume solids. Confirm the current manufacturer documents and application conditions with the order.
| Vessel area | Coat | Coating type | Sea service | River service | DFT (µm) |
|---|---|---|---|---|---|
| Bottom + Anchor | 1 | Zinc-rich epoxy primer | ET1601 | ET1601 | 60 - 70 |
| Bottom + Anchor | 1 | Epoxy primer | EH1602 , EI1602 | EI1602 | 80 - 140 |
| Bottom + Anchor | 2 | Epoxy intermediate coat | EH2104 , EH2101 , EI2103 | EI2103 , EI2203 | 80 - 140 |
| Bottom + Anchor | 3 | Epoxy topcoat | - | Epoxy topcoat range | 80 |
| Bottom + Anchor | 3 | Epoxy tie coat | EC2101 | - | 50 - 60 |
| Bottom + Anchor | 4 + 5 | Antifouling | AF3152 | - | 80 - 120 |
| Boot Top | 1 | Zinc-rich epoxy primer | ET1601 , EH1601 | ET1601 , EH1601 | 60 - 70 |
| Boot Top | 1 | Epoxy primer | EH1602 , EI1602 | EI1602 | 80 - 140 |
| Boot Top | 2 | Epoxy intermediate coat | EH2104 , EH2101 , EI2103 | EI2103 , EI2203 | 80 - 140 |
| Boot Top | 3 | PU topcoat | PU topcoat range | PU topcoat range | 50 - 60 |
| Deck + Hatch Coaming + Inner Bulwark | 1 | Epoxy primer | EH1602 , EI1602 | EI1602 | 80 - 140 |
| Deck + Hatch Coaming + Inner Bulwark | 2 | Epoxy intermediate coat | EH2104 , EH2101 , EI2103 | EI2103 , EI2203 | 80 - 140 |
| Deck + Hatch Coaming + Inner Bulwark | 3 | PU topcoat | PU topcoat range | PU topcoat range | 50 - 60 |
| Accommodation / Cabin | 1 | Epoxy primer | EH1602 , EI1602 | EI1602 | 80 - 140 |
| Accommodation / Cabin | 2 | Epoxy intermediate coat | EH2104 , EH2101 , EI2103 | EI2103 , EI2203 | 80 - 140 |
| Accommodation / Cabin | 3 | PU topcoat | PU topcoat range | PU topcoat range | 50 - 60 |
| Structural Steel | 1 | Epoxy primer | EH1602 , EW1602 , EI1602 | EI1602 , EW1602 | 80 - 100 |
| Structural Steel | 1 | Advanced alkyd topcoat | AMC1602 , AMC1101 | AMC1602 , AMC1101 | 60 - 70 |
| Structural Steel | 2 | Epoxy topcoat | Epoxy topcoat range | Epoxy topcoat range | 80 |
| Structural Steel | 2 | Advanced alkyd topcoat | Advanced alkyd range | Advanced alkyd range | 40 - 60 |
| Fresh Water Tank | - | Food-grade epoxy coating | ES3690 | ES3690 | 3 × 100 |
| Classification | Generic type | Product | Volume solids (%) |
|---|---|---|---|
| Shop primer | Epoxy | Hi-Pon 20-09 Epoxy Shop Primer FD | 30 |
| Primer | Inorganic zinc rich | Zinky-12 Inorganic Zinc Rich Primer | 65 |
| Primer | Epoxy zinc rich | Zinky-22 Epoxy Zinc Rich Primer 80 | 65 |
| Primer | Epoxy red oxide | Hi-Pon 20-01 Epoxy Primer | 73 |
| Primer | Epoxy zinc phosphate | Hi-Pon 20-07 Epoxy Zinc Phosphate 70 | 72 |
| Intermediate | Epoxy mastic | Hi-Pon 20-04 STE 80 | 80 |
| Intermediate | Epoxy micaceous iron oxide | Hi-Pon 30-02 Epoxy MIO 80 | 80 |
| Intermediate | Epoxy mid coat | Hi-Pon 30-06 Epoxy MidCoat 90 | 90 |
| Topcoat | Polyurethane | Hi-Pon 50-01 Polyurethane Top Coat | 60 |
| Topcoat | Fluorocarbon | Hi-Floro 6738 FloroCarbon Top Coat | 48 |
| Tank lining | Phenolic epoxy | Hi-Pon 80-03 Epoxy Phenolic Primer | 65 |
| Tank lining | Phenolic epoxy | Hi-Pon 80-04 Epoxy Phenolic Top Coat | 65 |
| Coal tar epoxy | Epoxy | 1226 Epotar HB Black | 58 |
| Heat resistant | Silicone primer | Nippon S500 Heat Resisting Primer | 49 |
| Heat resistant | Silicone topcoat | Nippon S450 Heat Resisting Black | 46 |
| Heat resistant | Silicone topcoat | Nippon S350 Heat Resisting Aluminium | 38 |
Agree the coating system and receiving arrangements before the work reaches surface preparation.
Identify the vessel area, existing system, preparation standard and application requirements.
Agree products, quantities, documentation and the quoted supply and application scope.
Plan the port or yard receiving point and delivery timing against the repair schedule.
01
A product suitable for deck maintenance can be entirely unsuitable for permanent seawater immersion, for a ballast tank or for a cargo hold carrying abrasive bulk. Selection runs down a chain, and every link is set by the vessel, not by the catalogue.
01Substrate
02Surface Prep
03Primer
04Intermediate
05Finish / AF
06DFT
07Recoat Window
08Service Condition
The table below is the New Generation Paint (THM) marine system as published in the manufacturer’s 2026 catalogue, separated into sea-going and river service. Codes and dry film thicknesses are reproduced from that document without alteration.
Coat
02
Two antifouling routes are available through SVC Marine, and they are different technologies with different film builds. They are quoted separately and never specified interchangeably.
Position in system: Coats 4 and 5, sea-going bottom system
Dry film thickness: 80 - 120 µm
Applied over: Epoxy tie coat EC2101
Compliance: Declared compliant with AFS 2001
Quoted as part of a complete bottom system rather than as a standalone drum, because the tie coat and the intermediate build below it determine whether the antifouling performs at all.
Type: Two-component silicone, no copper(I) oxide, no biocide
Coats: 1 coat
Dry film thickness: 20 - 30 µm on steel hull bottom
Stated coverage: 9 - 10 m² per litre per coat
Recoat interval: 6 - 8 hours
Thinner: AF01, 0 - 5 %
Packaging: 1 L · 3 L · 4 L · 5 L
Shelf life: 6 months from date of manufacture
Approval: Vietnam Register works approval for anti-fouling manufacture, certificate 02773/24SG.WA, valid to 14/10/2029
Manufacturer’s stated performance for AF1000 is fouling control of up to 10 years, protection of the hull with no release of copper(I) oxide or algaecide, and reduced fuel consumption. Service life achieved on any specific vessel depends on trading pattern, idle periods, achieved surface preparation and applied film thickness, and is confirmed against the current product data sheet before order.
AF1000 carries a stated shelf life of six months from the date of manufacture. On a docking that slips by a quarter, material ordered too early expires before it is opened. Antifouling is scheduled against the confirmed dock date and the blasting programme, not against the date the purchase order was raised.
Tanks & Enclosed Spaces
03
Permanent seawater immersion, restricted access, and edges, welds and stiffener faces that need stripe coating before the main coats go on. Within the Nippon Paint Vietnam range:
The Type Approval Certificate and the documentation supporting the Coating Technical File are issued by the coating manufacturer and supplied with the order.
Food-grade epoxy ES3690, specified at three coats of 100 µm. Potable water service is the one area where substitution on price is not available - the coating either holds the certification for potable contact or it does not.
Abrasion, grab impact, cargo residue, wash-down and corrosion under residue. Selection depends on the commodity carried, the condition of the existing coating and the resistance required.
Resistance to a specific commodity is confirmed against the manufacturer documentation for the product proposed. It is never assumed from the generic coating type.
Cargo hold and ballast tank work at anchorage is enclosed-space work carried out away from a shipyard. Entry proceeds under the vessel’s own permit-to-work system, following gas-freeing, atmosphere testing, continuous ventilation, a standby attendant and rescue arrangements. SVC Marine does not enter a tank or hold on verbal clearance and does not certify a space as safe for entry - that remains the Master’s responsibility.
Solvent-borne coatings applied inside a tank raise the ventilation requirement above the level needed for entry alone. Ventilation capacity is agreed before the coating is ordered, not after the drums are on deck.
Steel, Machinery & Structures
04
Protective coatings from the Nippon Paint Vietnam range, used for engine room steel, machinery foundations, pump-room steel, pipe supports, tank linings, and new or repaired steel after renewal. Volume solids below are as published in the manufacturer’s company profile, stated there as updated to April 2022 - the current data sheet is confirmed at quotation before any quantity is calculated from these figures.
05
Coating failures are far more often a preparation and application problem than a product problem. Salt contamination left on the steel, coating applied within three degrees of the dew point, or a stripe coat skipped on edges and welds will defeat any product in the catalogue.
Oil and grease removed with a suitable cleaner, followed by high-pressure fresh water washing. Salt is measured, not assumed to be gone.
Sa 2½ to ISO 8501-1 in dock. St 2 to St 3 afloat. The grade is recorded as what was achieved, not as what the specification asked for.
Surface temperature, ambient temperature, relative humidity and dew point checked against the product data sheet before each coat and logged.
Wet film checked during application, dry film after cure. Stripe coats on edges, welds and cut-outs applied before the main coat.
Enter the figures from the data sheet for the product actually being quoted. Theoretical spreading rate is volume solids × 10 ÷ target DFT. Wet film thickness is target DFT ÷ volume solids fraction. Nothing here is pre-loaded from a product database, because a spreading rate carried across from a different product is the most common way a paint order comes up short.
Surface area (m²)
Volume solids (%)
Target DFT per coat (µm)
Number of coats
Practical loss allowance (%)
-Theoretical spreading rate m²/L
-Wet film thickness µm
-Theoretical volume L
-With loss allowance L
The planner gives a theoretical procurement quantity. The final order accounts for surface condition, geometry, stripe coating, application method and the applicator’s practical loss allowance.
SVC Marine supplies coating and carries out application or owner-side attendance within the agreed scope. Any certified coating inspection is a separate appointment with the required qualifications and deliverables.
Warranty Conditions
06
The following summary concerns the published New Generation Paint underwater hull policy. Confirm the current written terms for the product and application before ordering.
The published policy concerns manufacturing defects; it does not guarantee a particular service life for every vessel.
These conditions relate to the quoted New Generation Paint underwater hull warranty. The manufacturer’s current written policy and approval for the proposed application must be confirmed with the order.
Drydock Procurement
07
A docking runs several coating systems at once across different areas, on a sequence that cannot be re-ordered. Paint arriving late stops the whole chain even when the steel and blasting are already finished.
Vessel, yard, docking dates, approved coating specification and the existing system on board.
Square metres by area, repair areas, new steel, full coat against touch-up.
Blasting, power-tool cleaning, washing, spot preparation - confirmed with the yard, not assumed.
Primer, intermediate, tie coat, finish and antifouling matched to the existing coating.
Volume solids, target DFT, coat count and spreading rate from the data sheet, with the applicator’s allowance confirmed.
Phased against blasting completion, steel work and the coating sequence - including antifouling shelf life.
Technical data sheets, safety data sheets and the coating schedule issued to the vessel and the yard.
Delivery to yard or vessel, and attendance during application where SVC Marine is appointed.
01Blasting
02Inspection
03Primer
04Steel Touch-Up
05Intermediate
06AF / Finish
07Curing
08Flood Dock
Surface temperature, ambient temperature, humidity, coating temperature, minimum and maximum recoat intervals and the required time before immersion all constrain this sequence. The values used are those in the data sheet for the product actually applied. Where SVC Marine attends, the sequence is recorded against the docking programme - see Drydock Supervision in Vietnam.
Requisition
08
Send the vessel details, work location, coating specification, areas and approximate quantities so the supply and application scope can be reviewed.
09
Yes. SVC Marine supplies marine coating systems to commercial vessels at Vietnamese ports, shipyards, anchorages and drydocks. Supply may cover underwater hull systems, antifouling, primers, intermediate coats, ballast and fresh water tank coatings, deck and superstructure coatings, machinery-space coatings and maintenance touch-up products, subject to the vessel specification and current availability.
SVC Marine has held agency agreements since 2022 with Chugoku Marine Paints, Nippon Paint Vietnam and New Generation Paint (THM). Supply, invoicing and payment run through SVC Marine at agency pricing plus delivery cost. The correct brand for a given job is selected against the vessel specification, the existing coating and the achievable surface preparation, not against a preferred supplier.
Yes. Two antifouling routes are available. AF3152 sits as coats 4 and 5 of the New Generation Paint sea-going bottom system at 80 to 120 microns dry film thickness. AF1000 is a separate biocide-free silicone product applied as a single coat at 20 to 30 microns over a cured epoxy system. The two products are different technologies with different film builds and are never specified interchangeably. Nippon antifouling is also available through the Nippon Paint Vietnam agency.
Yes. A drydock package is quoted as one procurement against the approved coating specification and the docking worklist, covering primers, intermediate coats, tie coats, antifouling, topcoats, tank coatings and touch-up material, with delivery phased against blasting and steel-renewal progress rather than delivered as a single early drop.
A warranty is confirmed for the particular product and application under the manufacturer’s written terms. The New Generation Paint underwater hull policy described here requires the specified surface preparation, approved application and coating system. SVC Marine’s local maintenance painting at anchorage should not be assumed to carry that drydock hull-system warranty.
Topsides and freeboard above the waterline, decks, hatch coamings, accommodation and superstructure, cargo holds and ballast tanks. Bottom, boot-top and sea chests are drydock scope.
SVC Marine supplies the coating. Within the Nippon Paint Vietnam range the systems designated for PSPC service are NOA 60HS and E-Marine 2000, and a non-PSPC alternative is Hi-Pon 20-04 STE IM 80 with a glass-flake epoxy. The Type Approval Certificate and the documentation supporting the Coating Technical File are issued by the coating manufacturer and supplied with the order. SVC Marine does not issue approvals and does not sign the Coating Technical File.
SVC Marine can produce a theoretical quantity using the volume solids and target dry film thickness stated in the product data sheet for the specific product being quoted. The result is a planning figure. Actual consumption depends on surface profile, geometry, edges and welds, stripe coating, application method, overspray and the contractor allowance, and the practical allowance is confirmed by the applicator.
Not by default. Overcoating an unknown or foreign coating requires review of the existing generic type, its condition, solvent sensitivity, adhesion and the recoat window. Where the existing coating cannot be identified from records, a test patch or additional inspection may be appropriate in line with the manufacturer guidance for the product proposed.
Cargo hold coating is supplied against the specification provided. Selection depends on the cargo carried, the condition of the existing coating and the abrasion and chemical resistance required. Resistance to a specific commodity is confirmed against the manufacturer documentation for the product proposed, not assumed from the coating type.
Yes. Available technical and safety data sheets are supplied for the selected product with the quotation or order.
No. Coating performance depends on product selection, substrate condition, surface preparation, application method, ambient and surface temperature, humidity and dew point, achieved dry film thickness, curing and service condition. Any performance warranty is issued by the coating manufacturer under its own terms.
Where This Page Sits
Send the specification, vessel area, quantity and port or drydock schedule to the SVC supply desk.