What is the Purpose of Surface Treatment for Metals?
Knowledge

What is the Purpose of Surface Treatment for Metals?

Defects are bound to arise during the reprocessing of mechanical equipment or parts related to metal. As a result, the final item's surface treatment process plays a crucial role, serving the dual purpose of enhancing aesthetics and providing protection. This process not only improves the performance of metal parts but also helps prevent rust.
Published: Nov 24, 2023
What is the Purpose of Surface Treatment for Metals?

Why is Surface Treatment Necessary?

In our daily lives, precision parts surround us, greatly facilitating both our personal and professional endeavors. At times, we may observe that precision parts made from copper materials turn black after processing. This phenomenon is attributed to the inherent reactivity of copper, which readily undergoes chemical reactions with oxygen in the air. The oxidation process leads to the formation of copper oxide, expressed by the chemical reaction formula: 2Cu + O2 = 2CuO.

In many instances, brass parts processed as precision components may already exhibit oxidation and discoloration before reaching the customer, compromising quality, affecting appearance, and even necessitating rework, thereby escalating costs.

To address this, it is essential to incorporate a passivation process during the manufacturing of precision parts. The principle involves applying a chemical conversion film that forms a protective layer without affecting conductivity, weldability, or workpiece dimensions. Importantly, this process maintains the hardness of the material.

Surface Treatment Procedure

Utilize a stainless steel container to contain the passivation solution.

Immerse the workpiece in the solution for approximately 5 minutes.

Remove the workpiece and rinse it thoroughly with water, allowing it to dry.

Before passivation, ensure the workpiece undergoes pre-treatment to eliminate oil stains or surface oxides. This may involve using a cleaning or deoxidizing agent.

For enhanced brightness, polish the surface with a polishing agent before proceeding with passivation.

The polishing process is straightforward, requiring no specialized equipment, and can be done by direct immersion.

Surface treatment is a deliberate process that imparts unique mechanical, physical, and chemical properties to the surface layer of a base material. The goal is to fulfill specific functional requirements, such as corrosion resistance, abrasion resistance, or decorative enhancements. Common surface treatment methods for metal castings include mechanical polishing, chemical treatment, surface heat treatment, and spray coating. This comprehensive approach ensures the thorough cleaning, deburring, degreasing, and descaling of the workpiece surface.

Published by Nov 24, 2023

Further reading

You might also be interested in ...

Headline
Knowledge
How Can Manufacturers Reduce Incoming Quality Risks When Supplier Quality Is Unstable?
Supplier quality directly affects production stability, delivery performance, and customer satisfaction. Learn how supplier qualification, incoming inspection, performance monitoring, and collaborative improvement help manufacturers reduce quality risks before materials reach the production line.
Headline
Knowledge
Why Do Quality Issues Keep Recurring? The Real Problem May Be That Corrective Actions Never Reached the Shop Floor
Corrective actions only create value when they become part of daily operations. Learn how root cause analysis, CAPA, standardized work, and continuous improvement help manufacturers prevent recurring quality issues and strengthen long-term quality performance.
Headline
Knowledge
Why Do Operational Differences Persist Even After Standardizing Production Processes?
Creating SOPs is only the first step. Learn how standardized work, effective shop floor management, continuous training, and ongoing improvement help manufacturers achieve consistent quality, productivity, and operational excellence.
Headline
Knowledge
How Does Excessive Changeover Time Affect Capacity and Delivery Performance?
Long changeover times reduce equipment utilization and delay production. Learn how manufacturers can apply SMED, standardized work, and lean principles to shorten setup time, increase capacity, and improve on-time delivery.
Headline
Knowledge
Vane Pump Cartridge Kit Maintenance: A Practical Pump Rebuild Guide for OEM Service Teams
For OEM service teams and distributors, knowing when a hydraulic vane pump may be rebuilt with a vane pump cartridge kit rather than replaced outright can help reduce repair cost and equipment downtime.
Headline
Knowledge
Popping Boba Technology: The Encapsulation Science Behind the Trend
The performance of popping boba depends on encapsulation chemistry: the gel membrane has to deliver the intended bite while remaining compatible with the product's storage, filling, and processing conditions.
Headline
Knowledge
Standard vs. Custom Coil Winding Machines: When Do You Need a Bespoke Turnkey Solution?
From Standalone Machines to Automated Lines: Understanding the Timing and Benefits of Custom Winding Solutions
Headline
Knowledge
A Comprehensive Guide to Industrial Power Factor Correction: Reducing Energy Costs and Penalties
Electricity costs in industrial operations are influenced by more than just total energy consumption.
Headline
Knowledge
Retrofitting vs. Replacing: When Should You Upgrade a Legacy Rubber Calendering Machine?
How to Determine Whether Your Legacy Calender Still Supports Safe, Consistent, and Cost-Effective Production
Headline
Knowledge
How to Choose the Right CNC Cylindrical Grinder: A Precision Buyer’s Guide
Choose for Proven Part Performance, Not the Biggest Specification or Lowest Price
Headline
Knowledge
How CNC Swiss Lathes Revolutionize Medical Device Manufacturing
CNC Swiss-type lathes deliver the precision and production efficiency medical components demand.
Headline
Knowledge
How Can Digital Twins Help Manufacturers Optimize Production Processes and Equipment Management?
How Digital Twin Technology Improves Production Efficiency, Predictive Maintenance, and Smart Factory Management
Agree