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CNC aluminum parts

CNC aluminum parts

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DIE CASTING MOLD

DIE CASTING MOLD

Not Our Die-casting Factory has good machining and quality checking equipment, but also over 10 years experience, skilled die casting engineering team and technician team provide a full solution from design, development, manufacturing, production, and post-processing for aluminum die casting part, zinc die casting parts and magnesium die casting parts. Kaito manufactures prototyping, low volume, and production die casting mold for today’s demanding manufacturing environment.

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RAPID PROTOTYPING MOLD

RAPID PROTOTYPING MOLD

We have strong engineering design capabilities in product development, production process design, product assembly, and metal mold design and manufacturing. We can provide rapid prototype and model making services according to customer requirements.

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3D Printing Service

3D Printing Service

Looking for a reliable, quick-turn supplier of 3D Printing Service? With hundreds of CNC machines, our unmatched in-house capacity ensures your parts are shipped on-time, every single time. At Katio, our ISO 9001 certified CNC machining facilities are designed for both rapid prototyping and low-volume production of end-use components.

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PRECISION MOLD COMPONENTS AND PARTS

PRECISION MOLD COMPONENTS AND PARTS

A good precision mold part manufacturer can help high precision mold make factories reducing cost and time! We do not only provide total mold solutions for our customers but also have one individual workshop equip with high precision machining machines for manufacturing high-quality precision mold parts efficiently and cost-effectively.

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CNC Turned Parts + CNC Milled Parts

CNC Turned Parts + CNC Milled Parts

CNC machining is suitable for plastic and metal parts and can be used to make from one single prototype to up to 500 parts. A wide variety of materials can be machined, including mild and stainless steel, aluminum, magnesium, zinc, brass and many plastics.

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Surface Treatments Metal & Plastic

Surface Treatments Metal & Plastic

Finishing Services Surface treatment(Metal) Surface treatment is through the physical or chemical method in the material surface to form a layer with some or more special properties of the surface. Through the surface treatment can enhance the product appearance, texture, function and other aspects of the performance.

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Quality Inspection and Testing

Quality Inspection and Testing

Making a product of consistently high quality requires good management and process control techniques combined with advanced equipment. Longi Prototype make sure every project includes these steps for quality assurance:

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 3D Scanning & Reverse Engineering

3D Scanning & Reverse Engineering

3D scanning, the process of converting physical objects into precise digital models, enables you to quickly and accurately capture your object’s shape and geometries. This process supplies you with a complete digital representation of your part to be used for reverse engineering, quality inspection or at any point of a typical manufacturing cycle.

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The Future Development of 3D Printing in Manufcturing Industries

The Future Development of 3D Printing in Manufcturing Industries

Just a few years ago, the benefits of additive manufacturing were speculative. Now, time savings in design and manufacturing as well as more efficient products have led to a rapidly growing use case,

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Some Useful Tips in Choosing CNC Machining Materials

Some Useful Tips in Choosing CNC Machining Materials

Compared to Vacuum Casting and 3D printing two methods of manufacturing, a wide range of materials are avaliable in CNC Machining. For example, plastic, metal and sheet metal, etc. Why can CNC machine tools effectively process different materials? Because these machines can handle different operations, such as CNC milling, CNC grinding, CNC turning, CNC welding, end positioning, drilling and winding, to form the final parts you need.

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The Difference Between Back Milling and Down Milling in CNC Machining

The Difference Between Back Milling and Down Milling in CNC Machining

Also called up milling. It is a traditional milling method, the principle of which is to rotate the tool in the opposite direction of the workpiece, so as to produce upward cutting force. In this cutting process, when the tool engages, it is forced to confront the working parts, creating relatively high friction, and thus generating more heat. Milling up, on the other hand, is the opposite of milling down. As the cutter begins to subtract the smallest material, it gradually cuts the largest material because it rotates.

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