Sample Request
Semiconductor Facilities · Petrochemical Plants · Utility Steelwork

Precision surface treatment
for plant utility steelwork.

Innozinc Ceramic Galvanizing improves corrosion resistance and downstream fabrication quality in grating, trenches, seismic supports, conduit clips and fasteners. Its thin deposit supports dimensional control and integration with bending and welding operations. Supply experience in Korean petrochemical, biopharmaceutical and display projects informs specifications for building and utility steelwork.

44,000 kgMajor Korean petrochemical project
Seismic component supply (since Nov 2024)
3 productsThird-party testing completed
For semiconductor-facility submission
2,664 hrBolt-and-clip assembly tested while fastened
No red rust · KEMP in-house test
140° bendFormability verified
In the cited in-house assessment
Production supply of steel fittings and fasteners · 140° bend requirement met in-house · Dimensional control through thin plating · Building and utility applications
Ceramic zinc plated cable tray
KEMP-plated cable tray. Plating after cutting and punching covers fabricated surfaces and reduces on-site touch-up.
APPLICATION SCOPE

Corrosion resistance, formability
and assembly quality for utility steelwork

Building and utility steelwork requires corrosion protection together with fastening tolerances and downstream fabrication quality. KEMP designs the plating process around component geometry and installation conditions.

Core product applications

  • Walkway and platform steel grating with fixing clips
  • Low-noise trench systems for drainage and cable routes
  • Seismic supports and hangers for piping and equipment
  • Conduit fixing clips and instrumentation-conduit supports
  • Cable trays, brackets and fabricated steel fittings
  • Fasteners: bolts, nuts, washers and anchors, up to property class 8.8
  • Utility piping (nominal size 50A, up to 3 m) and fittings

Product-specific specification design

  • Material and strength grade — pretreatment and plating process selection
  • Dimensions and tolerances — target thickness at fastening interfaces
  • Fabrication methods — integration with bending, welding and cutting
  • Exposure environment — corrosion grade and post-treatment selection
  • Mating materials — interface insulation, sealing and corrosion protection
  • Product dimensions — production matched to equipment capacity, including pipe lengths up to 3 m
MANUFACTURING QUALITY

Thin plating for
efficient fabrication and assembly

Pipe supports and fasteners require coordinated control of plating thickness, geometric precision and fabrication quality. Innozinc's thin deposit supports assembly tolerances and downstream processing.

01

Thickness distribution and assembly clearance

Thickness variation affects connection gaps and threaded assembly tolerances. Innozinc uses controlled electrodeposition to manage product-specific dimensions.

Steel fittings and fasteners
02

Bending after plating

In KEMP's in-house assessment, the Innozinc specimen met the 140° bend requirement. A specimen touched up after bending showed no defects after 2,640 hr salt spray exposure. Post-treatment is applied according to coating condition on the tensile side of the bend.

Post-plating fabrication
03

Integration with welding and cutting

Innozinc supports welding without prior removal of the plated layer; the cited radiographic assessment reported no defects. Local repair in the documented process covered 3–5 cm around the weld. Adjacent zinc provides sacrificial protection at exposed cut edges.

EPC fabrication sequence
Pipe salt spray comparison: hot-dip galvanizing at 576 hr and Innozinc-high at 1,080 hr
Pipe salt spray comparison — KS D 9502, KEMP in-house testing. Hot-dip galvanized specimen: extensive white and red rust at 576 hr. Specimen labeled Innozinc-high: no red rust at 1,080 hr. Photographs show the stated observation times.
COMPARATIVE TESTING

Surface-treatment performance
under fabrication and corrosive exposure

KEMP R&D photographs document in-house comparative assessments. Each specimen's coating, mechanical-damage condition and exposure period define the corrosion and coating-integrity observations.

3-minute immersion in 10% hydrochloric acid: hot-dip galvanizing, SUS304 and Innozinc-high
Acid-resistance comparison: 3-minute immersion in 10% HCl. Hot-dip galvanizing (40 μm): coating loss and darkening; SUS304: no discoloration; Innozinc-high (7 μm): slight discoloration. Results refer to this short-duration immersion test.
Salt spray comparison: hot-dip galvanizing at 500 hr; Innozinc-high and SUS304 at 1,000 hr
Corrosion comparison: neutral salt spray to KS D 9502. Observation times: hot-dip galvanizing at 500 hr; Innozinc-high and SUS304 at 1,000 hr. Photographs show surface condition at each stated time.
Five mechanically damaged bolt-and-nut specifications before salt spray testing
Mechanically damaged specimens before salt spray exposure — left to right: zinc electroplating, hot-dip galvanizing, Innozinc, Geomet and KEMPZIN ZF2. In-house comparison of corrosion at tool-damaged coating areas.
Five mechanically damaged bolt-and-nut specifications after salt spray testing
Surface condition after salt spray · ASTM B117 / KS D 9502 · KEMP in-house testing. Comparison of coating corrosion at damaged areas, rather than fastener strength-grade qualification.
Table 1Surface-treatment performance and fabrication comparison
CharacteristicHot-dip galvanizingInnozinc Ceramic GalvanizingTest / Data Source
Nominal coating thickness50 ~ 100 μm8 ~ 20 μmSpecification value
Coating thickness distributionVariation associated with immersion and drainageObserved pipe-connection gap up to 240 μmControlled thin depositSpecification and field observations
Pipe salt spray exposureExtensive white/red rust at 576 hrNo red rust at 1,080 hrKEMP in-house test
Pipe fitting salt spray exposureWhite and red rust across the surface at 480 hrDark corrosion products across the surface at 800 hrNo white or red rustKEMP in-house test
Bolt-and-clip salt spray test in the assembled stateSingle-system assessmentSlight white rust at 384 hr · No red rust at 2,664 hrKEMP in-house test
Seismic supports / hangersReference: zinc electroplatingZinc electroplating: red rust at 192 hrExtensive red rust at 456 hrAssembly: no red rust at 456 hrSeparate component: slight red rust at a rivet nut at 936 hrKEMP in-house test
Bending after platingCracking in the cited test140° bend requirement metAfter bend-area touch-up: no defects at 2,640 hr SSTKEMP in-house test
Welding without stripping the plated layerMasking, hole preparation, deburring and touch-up operationsWelding without prior strippingLocal repair within 3–5 cm of the weldKEMP in-house test
Adhesion (cross-cut)Equivalent — ASTM D3359Third-party test laboratory
Pencil hardnessEquivalent — ASTM D3363Third-party test laboratory
Abrasion resistance and formabilityInnozinc advantage — ASTM D4060 · KS B 0812Third-party test laboratory
In-house tests are conducted by KEMP R&D. Accelerated-corrosion values identify the specimen, fabrication and exposure conditions. Product specifications combine the required coating thickness and post-treatment.
Application Engineering

Component and assembly assessment
for facility requirements

Building and utility steelwork is assessed for corrosion resistance, dimensions and fabrication quality. Electrical interfaces are assessed under representative assembly conditions.

Contact-interface design

Mating materials, contact surfaces and tightening torque define galvanic-corrosion controls and contact-resistance assessment conditions.

Surface and fabrication quality

Inspect coating thickness, adhesion and surface condition, then manage coating integrity after bending, welding and cutting.

Samples and initial approval

Customer drawings and inspection specifications guide sample production and assessment of assembly fit, appearance and corrosion resistance.

Product Applications

Production experience
and core product applications

Explore fastener supply records for petrochemical, biopharma and display facilities, together with building and utility plating applications.

Table 3Products, applications and supply records
ProductApplicationSupply / Assessment Record
Bolts · Nuts · WashersStructural and equipment anchorageProduction supply: petrochemical seismic U-bend components, 44,000 kg (since Nov 2024); biopharma cooling-tower bolts, 12,000 kg; display-facility structural bolts, 5,000 kg
Grating and conduit fixing clipsWalkway and conduit supportsIn-house assembled-specimen test: no red rust after 2,664 hr SST
Seismic supports and hangersPipe and equipment supportsIn-house comparative testing completed
Steel grating and low-noise trench systemsWalkways · Platforms · DrainagePerformance test data submitted · Application specifications under discussion
Nominal 50A pipe and fittingsUtility pipingPlating trials completed · Specification support for pipe lengths up to 3 m
Cable trays and bracketsPower, telecommunications and piping supportsPlating specifications based on geometry, dimensions and exposure

Technical Support from Initial Assessment to Production

STEP 1

Material and specification consultation

Define plating requirements and assessment items for the material, geometry and service environment.

STEP 2

Sample assessment

Assess corrosion resistance, fabrication capability and assembly quality on actual components.

STEP 3

Application specification approval

Incorporate customer inspection criteria and initial assessment results into each product specification.

STEP 4

Production and quality control

Operate plating and inspection processes to the agreed production volume and delivery schedule.

Ceramic zinc plated channel member
Channel / strut support — cut edges and punched holes plated
Ceramic zinc plated saddles and clamps
Pipe saddles and clamps
Ceramic zinc plated channel post base
Channel post base — plating over welded joints
Ceramic zinc plated U-bolt
U-bolt — plating across bent sections and threads
Specification Design

Plating specifications
matched to product conditions

Design requirements and process conditions are coordinated for general structural, support and fastening components.

Material and strength grade

General fastener specifications focus on property class 8.8 and below. High-strength components undergo hydrogen-embrittlement control planning and process qualification before production.

Dissimilar-metal interface

Mating materials, contact-area ratios and moisture ingress determine insulation, sealing and plating specifications.

Temperature and chemical-environment exposure

Service temperature and exposure to chemical environments define product specifications and assessment criteria. The substance, concentration and contact duration are considered together.

FAQ

Plant Utility Steelwork FAQ

What are the main product applications?

Applications include building and utility grating, trench systems, supports, hangers, conduit clips and general fasteners. Plating specifications are based on drawings, material, strength grade and service environment.

Can plated parts be bent or welded?

Innozinc's thin deposit supports downstream fabrication. The cited in-house test met the 140° bend requirement. Post-treatment, including touch-up on the tensile side, reflects the coating condition after forming. Welding procedures follow the working conditions and safety instructions.

Can I review supply and assessment examples?

KEMP provides supply examples for petrochemical seismic U-bend components, bolts for cooling towers at new biopharma facilities, and display-facility structural fasteners. Grating, trench and piping applications are supported with product-specific performance data and specifications.

How are grounding and bonding components assessed?

Electrical performance is assessed on the actual assembly, including contact surfaces, tightening torque and mating materials. The program covers contact resistance after corrosion and environmental exposure against customer inspection requirements.

What information is needed for a sample request?

Send drawings or photographs, material, dimensions, quantity and installation environment. Our team will confirm the plating specification and sample quantity, cost and schedule.

Technical Inquiry · Sample Request

Start with your drawings:
Innozinc application consultation

  • Provide geometry, dimensions, mating materials and installation environment to define the application specification.
  • Arrange sample plating and performance assessment on actual components. Quantity, cost and schedule are confirmed after your request.
  • Temperature, dissimilar-metal contact and strength grade guide plating specifications and process-qualification criteria.
  • Request relevant test documentation for your product and project requirements.
  • Technical support for EPC designers and supervising engineers, steelwork and grating fabricators, fastener manufacturers and plant procurement teams.
We will email you the proposed application specification and next steps.
Technical inquiries — Sales Director Gyeong-dong Ko +82 52 289 1155
You can attach drawings to your email correspondence with our team.
Explore KEMP

Explore More Industries

Discover KEMP surface-treatment solutions for industry-specific exposure conditions and product requirements.

RELATED PRODUCTS
Call Our TeamSample Request