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OEM&ODM SERVICE
Cechen - We specialize in providing high-quality custom stainless steel wire mesh tailored to meet your unique requirements. Whether you need a specific specification, weaving technique, or advanced processing, our experienced team is here to deliver solutions that exceed expectations.
CUSTOM PROCESS
01
Discussing
Discuss your concept and potential solutions
02
Designing
Draw 2D/3D design file, sign a confidentiality agreement
03
Sampling
Produce a sample according to the required design
04
Confirming
Optimize and confirm the final production plan
05
Manufacturing
Produce your goods, and conduct strict product quality tests
06
Shipping
Fast lead time
Custom Stainless Steel Wire Mesh
We can provide custom design services for stainless steel wire mesh. We can select and design stainless steel wire mesh based on your specific need and requirements and then determine the selected materials, mesh sizes and shapes, surface treatment methods and other details to ensure these stainless steel woven wire mesh can achieve best-use effects and performances.
Customizing your wire mesh ensures it is perfectly suited for your application, offering benefits like durability, corrosion resistance, and precision.
Our Advantage:
Customized Deep Processing Products
Beyond producing high-quality wire mesh, we provide custom deep processing to meet specific industry needs!We have a variety of processing capabilities from simple cutting and slitting to complex sintering and custom designs.
Custom Processing Capabilities
A variety of custom processing capabilities - Hebei Cechen New Material Co., Ltd. is committed to providing customers with reliable stainless steel wire mesh solutions, from simple cutting and slitting to complex sintering and custom design. Through professional custom design and efficient production capabilities, we ensure that every one of your needs is accurately met.
01
Slitting
Stainless steel wire mesh slitting process uses special cutting equipment to cut the entire wire mesh into narrow rolls or strips. The slitting stainless steel woven wire mesh can be used for further processing or directly applied to different scenarios. Through the slitting process, the stainless steel wire mesh can be processed into different widths and lengths according to customer needs to accurately meet specific usage requirements.
Slitting process not only improves the efficiency of the wire mesh but also optimizes the utilization rate of the material.
02
Laser Cutting
Laser cutting of stainless steel wire mesh is a precision cutting method using a high-energy laser beam, which can cut the wire mesh into more complex shapes or design patterns. Laser cutting can achieve higher precision and complexity while maximizing the integrity of the wire mesh without deforming or damaging the material.
Laser cutting technology is widely used in applications that require precision processing, such as industrial filtration, architectural decoration, and process design.
03
Punching
Stainless steel wire mesh punching is a process in which punching equipment processes holes of various shapes and specifications on the wire mesh. Through precise mold design and efficient punching technology, various hole types such as round holes, square holes, diamond holes, etc. can be realized on the wire mesh to meet different functional requirements.
Punching process not only ensures the strength and integrity of the wire mesh but also gives the material better air permeability, filtration performance or decorative effect.
04
Binding/Frame
Binding/frame is a process that reinforces the perimeter of a cut woven wire mesh to improve its hardness and prevent it from deformation caused by excessive tension. After binding/frame, woven wire mesh with mesh counts can extend its service life and make it easy to remove and clean. Depending on its thickness, there are single-layer filter screens, double-layer filter screens and multi-layer filter screens.
Binding/framing technology is usually used in screening equipment, filtration systems, safety protection and decoration fields, and can design frame forms of different specifications according to specific needs.
05
Shaping
Shaping is a process of processing woven wire mesh into a specific shape through bending, punching, welding, etc. Common shapes include sheet, cylindrical, conical, semi-circular, etc. We use advanced equipment to ensure processing accuracy, prevent damage to the woven wire mesh, and improve production efficiency.
Precision shaping maintains the structural integrity of the wire mesh. Perfectly adapted to its intended use, whether it is filtration, architectural design, industrial components or protective coverings.
06
Spot Welding
Stainless steel wire mesh spot welding is a common metal mesh welding method to enhance the strength and stability of the mesh. It connects multiple layers of woven wire mesh together by performing multiple welding at the intersection of the mesh to achieve the purpose of woven wire mesh reinforcement.
Spot Welding process is commonly used to produce wire mesh for applications such as filtration, safety barriers, industrial screening and architectural design. This makes it ideal for demanding environments.
07
Sintering
Sintering of stainless steel woven mesh is a process that improves the properties of the mesh by bonding all the contact points of the wires together to form a mesh in which the wires are firmly fused in place. The sintered woven mesh has higher corrosion resistance and filtration performance, suitable for demanding industrial and filtration applications, enabling it to be used in harsh environments.
Sintering process generally improves the structural stability of the mesh surface, high temperature resistance, and reduces material usage, optimizing product performance.
08
End-to-End Welding
Woven wire mesh end-to-end welding is a process where individual wire mesh sections are welded together along their edges to create continuous sheets or rolls. End-to-end welding ensures the flatness of the whole mesh surface and makes the structure more rigid and is typically used in electronic component manufacturing.
End-to-end welding is commonly used in applications where large, seamless mesh surfaces are required. End-to-end welding seams offer increased strength and reduce the likelihood of separation or deformation under load.
09
Pleating
Pleating is a process that folds the woven wire mesh into a series of uniform folds for pleats to increase its surface area and filtration capacity. This technique enhances the mesh’s surface area and improves its functionality in applications where increased air flow, filtration, or surface coverage is required.
Pleating woven wire mesh helps optimize performance in industries such as filtration, HVAC systems, and architectural designs.
10
Injection Molding
Stainless steel wire mesh of various designs combine with injection moulding for wire mesh edge protection, sealing, joining, support or assembly elements, or for forming shapes.
The precisely designed stainless steel wire mesh, integrated with injection moulding, are widely used in the manufacturing of automotive filters.
Ready to create a stainless steel wire mesh tailored to your needs? Contact our team to discuss your project specifications. Our experts are here to guide you from design to delivery, ensuring the perfect solution for your unique application.
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Need A Custom Solution?
Our team is filled with seasoned experts who can't wait to help you find the right solution for your business.
Get In Touch
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