Products

Electrolysis Tank Titanium Plate Perforated Mesh
High Strength-to-Weight Ratio
Thermal Conductivity
Perforated Mesh Structure
The electrolysis tank titanium plate perforated mesh is a highly specialized component tailored for diverse industrial applications within electrolytic cells. Specifically engineered to serve as an electrode, this perforated mesh plays a pivotal role in facilitating intricate electrochemical processes within the electrolysis tank. Its design is meticulously crafted to withstand the unique challenges posed by corrosive environments and harsh conditions inherent in electrolytic applications. The perforated structure allows for enhanced mass transfer, ensuring efficient movement of ions and fluids critical to the electrolytic processes. With a focus on durability, corrosion resistance, and optimal functionality, the electrolysis tank titanium plate perforated mesh stands as a key component, contributing to the success and efficiency of electrochemical operations across various industrial sectors.
Products Specifications
| Material |
Pure titanium |
|||
|
Diameter |
70mm |
|||
|
Thickness |
2mm | |||
|
Techniques |
Laser punch | |||
|
Certificate |
ISO9001:2015 | |||
Products Features

Perforated Mesh Structure
The titanium plate is perforated with a mesh structure, featuring precise and customizable perforations. These perforations serve crucial roles in facilitating mass transfer, controlling fluid flow, and optimizing the electrode surface area.
Corrosion Resistance
Titanium's inherent corrosion resistance is a critical feature, ensuring the longevity and durability of the perforated mesh. This resistance is essential in electrolysis processes where corrosive environments are common.


High Strength-to-Weight Ratio
Titanium offers a high strength-to-weight ratio, providing the necessary mechanical strength for the perforated mesh while keeping it relatively lightweight. This is advantageous for ease of handling and installation.
Thermal Conductivity
Titanium's good thermal conductivity is beneficial in electrolytic processes where temperature control is important. It helps in efficient heat dissipation within the electrolysis tank.

how laser punching works

How Laser Punching Works
Laser punching technology is an advanced manufacturing process that combines the precision of laser cutting with the versatility of punching. It involves the use of a laser to create holes, contours, and intricate shapes in sheet metal or other materials, providing a highly efficient and accurate method for producing components.
- Laser Cutting:
Laser punching begins with the use of a laser cutting machine. The machine employs a high-powered laser beam to cut through the material, creating precise openings, contours, or perforations.
- Punching:
Simultaneously, a mechanical punch tool is used to form specific shapes or create additional features. The punch tool can be equipped with various dies to achieve different hole sizes, shapes, and patterns.
applications
Metal Electroplating
Electroplating processes involve the deposition of a metal coating onto a substrate. The electrolysis tank titanium plate perforated mesh can function as an electrode in these processes, ensuring uniform metal deposition.
Electrowinning
In electrowinning, metals are extracted from solutions through electrolysis. The perforated mesh serves as an efficient electrode for the deposition of metals onto its surface.
Chlor-Alkali Industry
Electrolysis is a key process in the chlor-alkali industry for the production of chlorine, sodium hydroxide, and hydrogen. The perforated titanium mesh acts as an anode or cathode in these cells.
Water Treatment
Electrolytic water treatment systems utilize titanium perforated mesh electrodes to facilitate processes such as electrocoagulation. The mesh aids in the removal of contaminants from water.
Hydrogen Production
Titanium perforated mesh is used in electrolysis for hydrogen production. It serves as an electrode, contributing to the electrolysis of water to generate hydrogen gas.
Electrolytic Capacitors
Within the electronics industry, the perforated titanium mesh finds application as an electrode in electrolytic capacitors. Its properties contribute to the stability and efficiency of these capacitors.
Contact us
Tel: 0917-3873009
Phone: +86 18992731201
Email: zhangjixia@bjygti.com
Fax: 0917-3873009
Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China
Whatsapp: +86 18992731201
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