Dongguan Zhonghui Precision Die Casting Technology Co., Ltd.
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Custom Laser Cutting Services

Precise laser cut parts for rapid prototyping and production. Free laser cutting quote with DFM review within 48 hrs. Lead time as fast as 5-7 days.


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What is Laser Cutting

What is Laser Cutting?

Laser cutting is a precise and efficient manufacturing process that uses a high-powered laser beam to cut materials into custom shapes and designs. This technology is ideal for creating intricate parts and components with high accuracy and clean finishes.

Laser cutting is a precise and efficient manufacturing process that uses a high-powered laser beam to cut materials into custom shapes and designs. This technology is ideal for creating intricate parts and components with high accuracy and clean finishes.

At Zhonghui, our custom online laser cutting services cater to a wide range of materials including various metals, plastics, and even woods, ensuring versatility for all your project needs. Whether you require a single prototype, low or high-volume production runs, our capabilities support it all with ease. We utilize advanced laser cutters that can handle complex designs and deliver consistently high-quality results.

To streamline your experience, Zhonghui offers an instant quoting system that accepts multiple 3D CAD file formats. Simply upload your design to receive a real-time quote and move seamlessly from design to production, optimizing both time and cost. Our comprehensive online sheet metal laser cutting service combines speed, precision, and accessibility to meet your manufacturing requirements effectively.

Types of Laser Cutters at Zhonghui 


Our laser cutting shop features advanced machinery capable of handling a variety of materials with high precision and efficiency.

Fiber Laser CuttingFiber Laser Cutting
Fiber laser cutters at Zhonghui provide exceptional precision with minimal setup time, making them suitable for cutting reflective metals. They offer high energy efficiency and fast cutting speeds, essential for both high-volume and custom metal laser cutting projects.
CO2 Laser CuttingCO2 Laser Cutting
Our CO2 laser cutters are highly effective in processing a wide range of materials including metals, plastics, and woods. With a fine laser beam, CO2 technology ensures clean cuts and intricate detailing, enhancing the quality of your laser cut parts.
Nd:Yag Laser CuttingNd Yag Laser Cutting
Nd:Yag laser cutters are renowned for their high power and capability to cut through thick and hard materials. At Zhonghui, we deploy Nd:Yag lasers for tasks that demand extreme precision and deep cutting, well-suited for complex industrial and design challenges.
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Laser Cutting Materials

Metals What is Laser Cutting
Metals such as aluminum, stainless steel, and brass are known for their durability, high strength, and excellent corrosion resistance. These properties make them ideal for both structural applications and detailed aesthetic pieces.
PlasticsPlastics
Plastics like acrylic and polycarbonate are celebrated for their lightweight, impact resistance, and clarity. These materials offer great versatility, allowing for a wide range of applications from industrial components to visually appealing decorative items.
WoodsWoods
Wood varieties such as pine, oak, and maple are chosen for their natural grain patterns, workability, and strength. Each type provides a unique aesthetic and can be used for both structural purposes and intricate decorative works.
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Zhonghui Laser Cutting Capabilities


Our custom laser cutting services follow international industry standards and market trends to offer premium laser cutting parts to our customers.
 
Description
Maximum Part Size 10 mm (0.40 in.)
Minimum Part Size 2x material thickness with a minimum of 1 mm (0.04 in.)
Distance Dimensions Our laser cutting standards depend on ISO 2768-c. Typical size: +/- 0.2 mm (0.008 in.) for length, width, diameter and location.
Maximum Material Thickness Carbon steel < 25 mm (0.98 in.), Stainless steel < 15 mm (0.59 in.), Aluminum < 15 mm (0.59 in.) , Copper < 12.7 mm (0.5 in.)
Kerf (slit size) About 0.5 mm (0.02 in.)
Edge Condition Laser cut edges have matte and vertical lines.
Laser Sources CO2 and fiber lasers. Up to 10 kW.
Reapability +/- 0.05 mm (0.002 in.)
Positioning Accuracy +/-  0.10 mm (0.004 in.)
Lead Time 7-10 days


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Advantages of Laser Cutting


The advantages of using laser cutting technology are significant and beneficial across various manufacturing settings:

●  Precision and Accuracy: Offers exceptional cutting accuracy and consistency, perfect for intricate designs and complex patterns. This precision reduces waste and increases efficiency during the production process.

●  Versatility: Capable of cutting a variety of materials including metals, plastics, and woods, laser cutting is adaptable for different industry needs. It handles various material thicknesses and complexities without the need for tool changes.

●  Speed: One of the fastest cutting methods available, it significantly reduces production times. Its speed makes it ideal for both large scale production runs and rapid prototyping, contributing to faster project completion.

●  Clean Cuts and Smooth Finish: Produces clean, sealed edges that require little to no finishing work, thus minimizing post-processing steps. This not only speeds up production but also enhances the aesthetic quality of the final products.

●  Reduced Contamination: As a non-contact process, there is minimal risk of material contamination, which is crucial for industries where purity is essential, such as in electronics or medical devices.

●  Energy Efficiency: Modern laser cutting machines are designed to be energy efficient, which reduces operational costs and supports sustainability efforts in manufacturing practices.
 


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Applications of Laser Cutting


Laser cutting technology is extensively used to fabricate a diverse range of parts, each benefiting from the precision and versatility this method offers:

●  Structural Components: Essential for machinery and buildings, laser cutting provides the exactness required for structural elements such as beams, frames, and supports, ensuring they fit seamlessly into complex constructions.

●  Decorative Elements: From intricate metal panels to detailed artworks, laser cutting is ideal for creating decorative items that require fine, precise cuts. This capability is widely used in interior design, architecture, and art installations.

●  Functional Parts: Laser cutting is crucial in manufacturing functional components like gears, brackets, and enclosures. The technology’s precision ensures that these parts operate smoothly within mechanical systems, making it a preferred choice for automotive and machinery applications.

●  Prototypes: Designers and engineers frequently use laser cutting to rapidly produce prototypes, allowing for quick iterations and refinement. This process accelerates the development of products across industries by enabling precise and quick modifications.

●  Electronic Components: Laser cutting is used to produce intricate components for electronics, such as circuit boards and insulating layers. The ability to cut complex shapes precisely and without damaging sensitive materials is critical for the miniaturization and functionality of electronic devices.

 


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