Customized CNC Machining with 5 Axis High Precision CNC Milling Service CNC Machined Complex Parts
Product Description
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Business Type |
Factory / Manufacturer |
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Machining Material |
1). Aluminum: AL 6061-T6, 6063, 7075-T etc |
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2). Stainless steel: 303,304,316L, 17-4(SUS630) etc |
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3). Steel: 4140, Q235, Q345B,20#,45# etc. |
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4). Titanium: TA1,TA2/GR2, TA4/GR5, TC4, TC18 etc |
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5). Brass: C36000 (HPb62), C37700 (HPb59), C26800 (H68), C22000(H90) etc |
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6). Copper, bronze, Magnesium alloy, Delrin, POM,Acrylic, PC, etc. |
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Finish |
Sandblasting, Anodize color, Blackenning, Zinc/Nickl Plating, Polish, |
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Power coating, Passivation PVD, Titanium Plating, Electrogalvanizing, |
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electroplating chromium, electrophoresis, QPQ(Quench-Polish-Quench), |
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Electro Polishing,Chrome Plating, Knurl, Laser etch Logo, etc. |
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CNC Machining Equipment |
CNC Machining center, CNC Lathe, precision lathe |
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Drawing format |
STEP,STP,GIS,CAD,PDF,DWG,DXF etc or samples. |
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Tolerance |
+/-0.001mm ~ +/-0.05mm |
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Surface roughness |
Ra 0.1~3.2 |
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Inspection |
Complete inspection lab with Micrometer, Optical Comparator, Caliper Vernier,CMM |
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Depth Caliper Vernier, Universal Protractor, Clock Gauge |
About Five-axis precision machining

Five-axis precision machining is an advanced manufacturing technology, which breaks through the limitations of traditional three-axis machining. On the basis of the three linear axes X, Y and Z, two rotating axes are added, which is like giving the process a clever magic. This technology allows the tool to approach the workpiece at more complex angles and paths, easily responding to the machining needs of various complex geometries.
Non-standard metal parts are unique to those that do not follow standard specifications. They are often tailored to specific projects, equipment or products, each carrying unique design requirements. Five-axis precision machining is the ideal manufacturing method for these non-standard parts.
Precision is a highlight of five-axis precision machining of non-standard metal parts. It is able to achieve a precision level of micrometers or even higher, ensuring that the parts fit perfectly with other parts in practical applications. Whether in the aerospace sector, or in industries such as precision medical devices, this high precision is crucial. It is about the performance, safety and reliability of the equipment.
The ability to process complex shapes is even more amazing. Five-axis machining can easily create a variety of curved surfaces, inclined holes, deep cavity and other complex structures. From aero engine blades to uniquely shaped medical device components, five-axis precision machining can bring designers' ideas to life.
At the same time, five-axis precision machining has a wide range of adaptability to materials. Whether it is common stainless steel, aluminum alloy, titanium alloy, or special alloy materials, it can show excellent performance under the "carving" of five-axis processing.
In addition, the processing efficiency can not be underestimated. Although non-standard parts processing, but through reasonable programming and tool path planning, five-axis precision machining can ensure quality at the same time, improve production efficiency, reduce processing time and cost. In short, the five-axis precision machining of non-standard metal parts is leading the modern manufacturing industry to a higher level.
Factory
Established in 2021, Pans Technology is a leading provider of precision manufacturing solutions, located in the Dongfang Community, Songgang Street, Baoan District, Shenzhen.
Specializing in custom CNC machining, prototyping, sheet metal fabrication, die-casting, injection molding, and other processing services, Pans Technology is committed to delivering ultimate parts and one-stop service for aerospace, automotive, intelligent robotics, and medical and other industries.
Pans Technology has state-of-the-art facilities and rich experience of engineering team to ensure that every product meets the strictest tolerances and quality standards, making it a trusted partner for customers.
Our factory covers an area of more than 3500 square meters, with 30 sets of 3/4/5 Axis CNC machines, 15 sets of CNC milling machines, 12 sets of Swiss high-speed precision CNC lathes, 5 sets of injection molding machines and so on. We are a combined team of talented and experienced engineers, machinists and technical consultants dedicated to helping solve problems related to the manufacture of precision and complex mechanical parts, including design, product cost, quality, assembly issues and more.
Inspection

In our company's workshop, parts inspection is a crucial step in ensuring product quality. Before any part is processed, the factory inspects the raw materials to confirm that the material and appearance are acceptable, preventing errors from the outset. After the first product is completed, operators conduct a first-piece inspection to confirm that the dimensions match the drawings; only after this is done will mass production continue.
During production, quality inspectors conduct random checks, focusing on key dimensions and appearance. If any deviations are found, equipment is adjusted promptly to prevent the problem from escalating. After all parts are processed, a final inspection is performed to ensure that dimensions, appearance, and quantity meet requirements before packaging and shipping.
Through this step-by-step inspection process, the factory can reduce rework and scrap, ensuring that every part delivered to the customer is qualified and reliable.
Certifications
As a company specialized in customized machining parts, Pans Technology places quality at the core of its business operations. We recognize that every customer drawing is unique and every component plays a critical role in the final application. In a custom manufacturing environment, consistent quality relies not only on advanced machining capabilities but also on a well-structured and effectively implemented quality management system.
Pans Technology is certified to ISO 9001, AS9100, and IATF 16949, which demonstrates our strong commitment to internationally recognized quality standards. These certifications reflect our ability to manage complex manufacturing processes and to meet the rigorous quality requirements of customers across aerospace, automotive, and industrial sectors.
ISO 9001 provides the foundation for Pans Technology’s quality management system and supports our customized machining operations. By adopting a customer-focused and process-based approach, we have established structured controls covering contract review, process planning, raw material procurement, machining, in-process inspection, final inspection, and delivery. This systematic framework enables Pans Technology to effectively manage quality risks, even in low-volume, high-mix, and high-precision custom machining projects, ensuring that every part is produced strictly in accordance with customer drawings and specifications.
AS9100 is a quality management system standard specifically developed for the aerospace and high-reliability manufacturing industries. Operating under the AS9100 system strengthens Pans Technology’s capabilities in risk management, critical process control, documentation, and full product traceability. This certification demonstrates that Pans Technology is capable of supporting applications where safety, reliability, and precision are essential, and where strict quality control is mandatory.
IATF 16949 is the globally unified quality management system standard for the automotive industry. Through the implementation of IATF 16949, Pans Technology has established a systematic approach to defect prevention, process stability, and continuous improvement. This enables us to maintain consistent quality performance in repeated or batch production of customized machining parts and to meet the long-term supply expectations of automotive customers.
In conclusion, ISO 9001, AS9100, and IATF 16949 certifications are not merely formal credentials, but a reflection of Pans Technology’s long-term commitment to standardized management, precision manufacturing, and customer-oriented quality assurance.

Packing
Proper and standardized packaging effectively protects parts during transportation and storage.
Machine-machined parts come in a wide variety of materials, including carbon steel, stainless steel, aluminum alloys, copper alloys, and cast iron, each with different packaging requirements. For high-precision parts and products with stringent surface finishes, the primary task of packaging is to prevent bumps, scratches, and deformation. Cushioning materials such as pearl cotton, foam, and EVA lining are typically used for individual isolation, ensuring that parts do not come into contact with each other and preventing damage from transportation vibrations.
Rust and corrosion prevention are also crucial aspects of machine-machined packaging. Metal parts are prone to rust in humid environments, especially precision-machined surfaces, which require extra protection. Common practices include applying rust-preventive oil before packaging or using rust-proof paper or bags for sealed packaging. For export products, the long-term maritime environment necessitates even higher requirements for the moisture-proof performance of the packaging.
For outer packaging, wooden crates, plywood crates, and reinforced cardboard boxes are widely used. Wooden crates are suitable for heavier or more complex parts, providing greater overall strength; cardboard boxes are better suited for smaller parts, balancing cost and ease of transport. The outside of the packaging is usually clearly marked with the part name, quantity, order number, weight, and shipping markings such as "Fragile," "Moisture-proof," and "Here," to reduce human risk during loading, unloading, and logistics.
Furthermore, standardized packaging procedures are an important part of a quality management system. Good packaging not only protects the parts themselves but also reflects the machining company's responsibility to product quality and customers, laying a solid foundation for long-term, stable partnerships.






