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KEMP · ELECTROGALVANIZING UPGRADE

ELPANGFeatures

Compare Costs

Calculators for Upgrade 300 and 500

Reference photograph of a group of hex nuts

SURFACE CHEMISTRY

Existing zinc electroplating.
The next step in corrosion resistance.

ELPANG is an upgrade solution that uses your existing
zinc electroplating line to improve corrosion resistance.

CORE PROPERTIES

Process design for corrosion resistance
and productivity.

We select the Upgrade grade for the target corrosion resistance, plating thickness and existing post-treatment process.

01

CORROSION RESISTANCE

Improved Corrosion Resistance

An inorganic film system limits corrosive-agent penetration on zinc-electroplated surfaces. White- and red-rust SST performance at each plating thickness guides grade selection.

02

EXISTING LINE

Use Your Existing Line

ELPANG works with existing zinc electroplating lines. We optimize treatment chemistry and operating parameters for the acid or alkaline plating bath and post-treatment configuration.

03

PROCESS & COST

Process Cost Analysis

Compare chemical unit prices, throughput, operating hours and consumption rates. The calculator immediately shows estimated consumables costs before and after adoption, including the cost difference and percentage change.

We also propose alternative surface-treatment specifications for components currently using hot-dip galvanizing or zinc-nickel plating. Sample evaluation covers corrosion resistance, dimensions, appearance and post-plating fabrication requirements.

ELPANG UPGRADE SERIES

Upgrade specifications by plating thickness
and corrosion resistance.

Choose from Upgrade 100, 300 and 500 to match the plating thickness and required corrosion performance.

Performance for Thin Zinc Deposits

Enhances corrosion resistance on components with thin zinc-electroplated deposits.

Coating thickness
1–2µm
Red-rust SST
96hr

White-rust SST: 15 hr

Balanced Thickness and Performance

Balances zinc-deposit thickness and corrosion performance across a range of component requirements.

Coating thickness
3–10µm
Red-rust SST
300–500hr

See white-rust SST by thickness in the table below

Higher Corrosion Resistance

Upgrades corrosion performance for demanding components and existing surface-treatment applications.

Coating thickness
6–12µm
Red-rust SST
500–720hr

See white-rust SST by thickness in the table below

The table shows white- and red-rust SST results at each plating thickness. Cost-calculation models are available for Upgrade 300 and 500.

PERFORMANCE BY THICKNESS

White- and red-rust resistance
by plating thickness.

Seven thickness and process conditions from the ELPANG Upgrade System performance data, with separate white- and red-rust SST results.

On smaller screens, scroll horizontally within the table to view all columns.

GradeExisting lineThickness (µm)White-rust SST (hr)Red-rust SST (hr)Applications
Upgrade 100Zinc electroplating1–21596
Upgrade 300Zinc electroplating + sealer3–560300①②
Upgrade 300Zinc electroplating + sealer5–672400①②
Upgrade 300Zinc electroplating + sealer8–1096500①②③
Upgrade 500Zinc electroplating + sealer6–872–96500①②③
Upgrade 500Zinc electroplating + sealer8–1072–120600①③
Upgrade 500Zinc electroplating + sealer10–1272–120720①③④
  • ① Improve zinc electroplating performance
  • ② Evaluate substitution for lower-cost hot-dip galvanizing
  • ③ Evaluate substitution for higher-cost hot-dip galvanizing
  • ④ Evaluate substitution for zinc-nickel plating

Source: ELPANG Upgrade System performance table · Test method: ASTM B117 · White- and red-rust acceptance criteria apply at each plating thickness.

HOW TO APPLY

From process assessment to production.

We assess the current process and target performance, then develop sample-treatment conditions and process economics together.

01. Plating and Post-Treatment Assessment

Identify the acid or alkaline plating bath, rack or barrel process, plating thickness, post-treatment and sealer configuration. Existing white- and red-rust test results are assessed against customer specifications.

02. Process Setup and Sample Evaluation

Set treatment chemistry and process parameters for the target grade, then evaluate corrosion resistance, appearance and dimensions on actual components. Dosage and dilution ratios follow the applicable TDS and line-specific technical specifications.

03. Process Economics and Operating Plan

View estimated consumables costs before and after adoption, the cost difference and percentage change immediately after calculation. Detailed breakdowns and consultation are optional. Total manufacturing-cost analysis also includes labor, energy, equipment adjustments and production conditions.

We support dedicated treatment-chemical supply, line-specific operating parameters and quality control. Technical consultation defines the scope of support and supply terms.

ECONOMIC SIMULATOR

Compare consumables costs
before and after the upgrade.

Enter your operating conditions to immediately compare
estimated consumables costs before and after adoption.

Key results shown immediately

  • 01Estimated consumables costs before and after adoption
  • 02Cost per kg and per part
  • 03Cost change and percentage change

Detailed breakdowns and consultation are optional.
No contact details are required to view the results.

Estimated consumables costs use a China-reference pricing scenario. Adjustments reflect exchange rates, supply prices, freight, contract terms, process configuration, capacity utilization and yield. Labor, energy and equipment costs are calculated separately.