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16
2019-03
Classification and Selection of Electroplating
Ordinary electroplating primarily refers to conventional single-metal plating processes, such as plating with Cu, Ni, Cr, Sn, Zn, and Cd. It serves as the foundation for various specialized electroplating techniques, including composite plating, nonmetallic plating, alloy plating, brush plating, and precious and rare-metal plating. Different single-metal plating coatings have distinct properties and applications, and the processes employed also exhibit their own unique characteristics; however, their underlying theoretical principles are broadly similar. Today, let’s talk about the classification and applications of chrome plating. The properties and applications of chrome plating can be broadly categorized into two main types: protective-decorative chrome plating and wear-resistant chrome plating. The former aims to prevent the base metal from rusting and enhance the aesthetic appeal of the product, while the latter is designed to improve the durability and resistance to wear.
2019-03-16
04
2019-04
What are the basic principles of electroplating?
Electroplating is an electrochemical process as well as a redox process. The basic principle of electroplating involves immersing a part into a solution containing metal salts, with the part serving as the cathode and a metal plate acting as the anode. When a direct current power source is connected, the desired plating layer is deposited onto the part. For example, during nickel plating, the cathode is the part to be plated, and the anode is a pure nickel plate. At the cathode and anode, the following reactions occur: Cathode (plated part): Ni²⁺ + 2e⁻ → Ni (main reaction); 2H⁺ + e⁻ → H₂↑ (side reaction) Anode (nickel plate): Ni – 2e⁻ → Ni²⁺ (main reaction); 4OH⁻ – 4e⁻ → 2H₂O + O₂ + 4e⁻ (side reaction) Not all metal ions...
2019-04-04
11
The most important surface treatment process for electroplated automobiles.
As people’s living standards continue to improve, China’s automotive industry is experiencing a remarkably rapid development trend. The number of vehicles in circulation has been increasing year after year, and at the same time, the demands for vehicle safety performance are becoming ever higher. A car is composed of thousands—or even tens of thousands—of individual parts, which are assembled into components or subassemblies. These components and subassemblies are then interconnected to form a complete vehicle. It is not uncommon for improper assembly of parts to result in severe corrosion or damage to those parts. Therefore, automotive manufacturers have no choice but to employ electroplating technology to prevent corrosion of automotive parts. Cars also utilize electroplating for decorative and aesthetic purposes.
2019-04-11
22
2019-07
The Ultimate Guide to Type-C
On November 18, 2014, Nokia released the N1 tablet. Beyond feeling nostalgic about the stark contrast between the glory days of its predecessor and the present, many people turned their attention to a new term associated with the N1—the USB Type-C connector. In the years that followed, a series of terms closely linked to Type-C—such as the USB 3.1 standard, Thunderbolt 3, external graphics cards, and DP Alt Mode—emerged one after another. Some even predicted that "201X would be the breakout year for Type-C." Yet this so-called breakout period has already lasted four years. The truth is that, as of today, we’re still far from seeing the true dawn of the Type-C era.
2019-07-22
05
2019-08
Analysis of the Competitive Landscape and Development Prospects in the Electroplating Industry
2019-08-05
19
What is the importance of chemical nickel plating? What precautions should be taken?
2019-08-19