5 Axis CNC Machining Services
Yonglihao Machinery provides professional 5-axis CNC machining services. We tailor these services for making complex parts. Using multi-axis linkage technology, we get higher precision and efficiency. This helps you produce precision components. We can meet your needs, whether you want rapid prototypes or batch production.
- Instant CNC Quote
- Tolerances down to ±0.1 mm
- Multiple materials
- Complex geometries
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Custom 5 Axis CNC Machining
5-axis CNC machining is an advanced machining technology. It uses five rotary axes to cut blank materials from many angles. It offers more flexibility and precision than traditional 3-axis machining. This makes it ideal for parts with complex curved surfaces. It is also great for multi-hole structures or highly three-dimensional parts. This technology is now widely used in aerospace, medical devices, and automotive parts. If you need a reliable CNC machining maker, our team is ready to give you an instant online quote.
5-Axis CNC Machining Tolerance Standards
Yonglihao Machinery’s 5-axis machining services focus on complex part designs. We also focus on high-tolerance manufacturing. We use advanced machining technology and precision equipment. This ensures every detail of the part meets strict tolerance needs. This perfectly matches your design specifications. This is not just a technical promise. It is a guarantee based on our project experience. Our standard tolerances follow the ISO 2768 standard. This ensures parts can be interchanged and assembled accurately. The detailed tolerance table is below:
Standard | Metric Units | Imperial Units |
|---|---|---|
Maximum Part Size | 300 x 200 x 100 mm | 11.8 × 7.7 × 3.9 inches |
Minimum Part Size | 4 x 4 x 4 mm | 0.1 × 0.1 × 0.1 inches |
Minimum Feature Size | Φ 0.50 mm | Φ 0.00197 inches |
Standard Tolerances | Metal: ISO 2768-f | |
Plastic: ISO 2768-m | ||
-Linear Dimensions | +/- 0.1 mm | +/- 0.004 inches |
-Hole Diameter (Unreamed) | +/- 0.1 mm | +/- 0.004 inches |
-Shaft Diameter | +/- 0.1 mm | +/- 0.004 inches |
Edge Conditions | Sharp corners will be removed. They will become chamfers or radii. The drawing must show the chamfer size or the final radius. | |
Threads and Threaded Holes | Standard size: Diameter is standard drill size; Depth is 4 times diameter. Maximum size: Diameter Φ1mm; Depth is 10 times diameter. Yonglihao Machinery can produce threads of any size and spec the customer needs. |
5-Axis CNC Machining Material Options
Yonglihao Machinery offers a wide range of material options. This includes metals, plastics, and more. We meet the specific needs of different industries, uses, and environments.
metal milling services
Plastics milling services
Aluminium is a lightweight metal with good strength, electrical conductivity and rust resistance. This makes it great for industries like aerospace, automotive, electronics, construction, and packaging.
Grades
6061 Aluminium alloy: Good strength and corrosion resistance. Suitable for applications where these qualities are important.
7075 Aluminium alloy: A high strength alloy, mainly used in aerospace applications. Its corrosion resistance is slightly lower than 6061.
2024 Aluminium alloy: Known for its fatigue resistance, mainly used for aircraft parts and fasteners.
5052 Aluminium alloy: Good corrosion resistance and easy to weld. Commonly used in ships and chemical equipment.
3003 Aluminium alloy: easy to form, but low strength. Commonly used for storage tanks and pipes.
Surface treatment options: anodising, chemical nickel plating, electrophoretic coating, powder coating, sand blasting, polishing.
Brass is strong, easy to machine and corrosion resistant. It is ideal for CNC machining and can be used to make many mechanical parts and decorative items.
Grades
C260: Made from approximately 70% copper and 30% zinc, it is strong and easy to machine. Commonly used for stamped parts, screws and nuts.
C360: This grade has a higher lead content and is ideal for CNC machining. Often used to make high-precision parts for automated machines.
Finish Options: Plated, brushed, polished, oxidised, passivated, painted.
Copper has excellent electrical and thermal conductivity and is an ideal processing material for electrical, electronic, construction, and refrigeration equipment.
Grades
C110: Made of 99.9% copper, it has excellent electrical conductivity. It’s ideal for electrical parts, wires, contacts, and heat exchangers.
C101: This grade has even more copper than C110, offering better conductivity for high-performance electrical and electronic uses.
C122: Contains a small amount of beryllium, giving it high strength and flexibility. It’s great for springs, connectors, wear parts, and molds due to its corrosion and fatigue resistance.
C17500/C17510: These alloys have better electrical conductivity and fatigue resistance. They are strong and often used to make welding electrodes and springs for electrical switches.
Surface Finishing Options: Electroplated, Polished, Passivated, Oxidised, Painted, Chemically Plated.
Stainless steel offers excellent corrosion resistance and strength, as well as aesthetic appeal, making it ideal for processing medical devices, food processing equipment, aerospace parts, chemical equipment and architectural finishes.
Grades
304 Stainless Steel: Good rust resistance and easy to process. Widely used in kitchen equipment, building decoration and chemical equipment.
316 Stainless Steel: Provides better rust resistance, especially in salt-containing environments. It is well suited for marine equipment, chemical containers and components exposed to highly corrosive environments.
303 Stainless Steel: Easier to work with than 304, it is ideal for parts that need to be machined quickly, such as screws, bolts and valve components.
430 Stainless Steel: Good corrosion resistance and magnetic properties. Commonly used for electrical components, decorative materials and automotive trim.
410 Stainless Steel: Known for its hardness and wear resistance, but with lower corrosion resistance. It is ideal for knives, bearings and valves.
17-4PH Stainless Steel: Very strong and corrosion resistant, ideal for high strength parts in aerospace, chemical and marine applications.
Alloy steel is strong, tough, resistant to wear and corrosion. It is ideal for the manufacture of tools, machine parts and structural components.
Grades
4140 Alloy Steel: Strong and wear-resistant, used for shafts, gears, bolts and tools.
4340 Alloy Steel: Known for its toughness and fatigue strength, it is commonly used for aerospace parts, heavy machinery and tools.
8620 Alloy Steel: Ideal for carburising, making parts such as gears and bearings robust and wear-resistant.
Finish options: plated, oxidised, sandblasted, painted.
Mild steel is easy to machine, weld and form, while being strong enough to meet many structural needs. It is widely used in the engineering, automotive and construction industries.
Grades
A36 steel: easy to weld and machine, commonly used in building structures and bridges.
1018 Steel: Strong and easy to machine, commonly used for bolts, shafts, pins and screws.
1045 Steel: Higher strength and hardness, suitable for parts that require hardness, such as gears, shafts and couplings.
Surface finish options: heat treated, plated, sandblasted, painted, hot dip galvanised.

Conventional colors:Black, white, gray, natural (yellowish)
Surface Finish:Polished, Painted, Plated
POM is widely used in CNC machining because of its high strength, low friction, and dimensional stability. It’s commonly used for gears, bearings, and other machine parts.
Regular Color: Black, White, Natural (Ivory)
Surface Finish:Polished

Regular Color:Black, White, Natural (Beige)
Surface Finish:Polished, Painted, Reinforced Coating

Regular colors: transparent, black, white, natural (yellowish)
Surface Finish: Polished, Coated, Painted

Regular Color:Natural (light brown)
Surface Finish:Polished, Coated

Regular color:black, white, natural (translucent)
Surface Finish:Spraying
PE materials are often used in CNC machining to manufacture corrosion-resistant parts, sliding parts and low-cost prototypes such as pipe fittings, containers and mechanical gaskets due to their good chemical stability, low friction coefficient and easy processing.
Conventional colours: white, black, natural color (translucent or milky white)
Surface treatment: polishing, texturing, spraying
PMMA is known for its high transparency, excellent optical properties and good weather resistance. It is widely used in CNC machining to manufacture display racks, lampshades, optical lenses and decorative panels.
Conventional colours: transparent, black, white, color (customizable)
Surface treatment: polishing, laser engraving, painting, silk screen printing
5-Axis CNC Machining Surface Treatment Options
We offer full surface treatment services. This meets unique needs for rust resistance, surface hardness, and looks. These treatments improve both appearance and function.

Workpieces are left with natural tool marks and roughness. Ideal for applications that do not require a special look or additional machining.

Higher accuracy and smoother surfaces for precision machinery, optical instruments and medical device parts.

Smooth and shiny polished surfaces for decorative parts, medical devices and high precision equipment.

Cleaning and polishing of the surface to achieve a matt and smooth effect.

After sandblasting and polishing, the parts are anodised to obtain a thick coating with high abrasion resistance, increasing hardness and durability, especially for aluminium parts that require extra strength.

The surface is bead blasted to a matt finish and then anodised for better corrosion and abrasion resistance. Available in various colours, commonly used for aluminium parts.

A black coating applied to steel and stainless steel to prevent corrosion and improve appearance. Commonly used for automotive, mechanical and decorative parts.

A robust, wear-resistant coating applied by electrostatic spraying. Available in glossy and matt colours, it is similar to paint and is used on furniture, metal products and automotive parts.

Adds a protective layer to aluminium or zinc alloys to improve corrosion resistance and electrical conductivity. Used in aerospace, electronics and automotive parts.

Plating a thin layer of metal to improve corrosion resistance, abrasion resistance or electrical conductivity, and to improve appearance.

Adds texture to the surface of a metal part to give it a metallic feel. Commonly used in household appliances and decoration.

A process that smooths parts by using abrasives to remove burrs and sharp edges, improving surface finish
These options are improved based on customer feedback. This ensures every part meets expectations in both looks and performance. We are committed to providing high-performance parts. We combine surface treatments to create complete solutions.
Various Industrial Applications
5-axis machining is a solution for complex parts. It is widely used in fields like automotive, medical devices, and aerospace. We understand the specific needs of different industries. This allows us to provide custom services to ensure the best performance and reliability.
Advantages of 5-Axis CNC Machining
Based on multi-axis linkage, 5-axis machining offers a more efficient and precise solution. It not only handles complex shapes but also greatly improves production speed. It also reduces the need for secondary machining.
Complex Geometry Handling: 5-axis machining can cut flat and curved surfaces from many angles. This makes handling complex shapes easier and more efficient. In practice, this means we can finish multi-sided machining in one step. This avoids the multiple setups of older methods.
Higher Precision Machining: Machining parts in a single setup reduces clamping and resetting needs. This improves accuracy and repeatability. In aerospace cases, we found this lowers error rates. It ensures parts meet strict FAA standards. This is vital for precision industries.
Higher Production Efficiency: Machining multiple faces in one pass improves productivity. It also shortens lead times. In our factory, this cuts the average cycle from 10 days to 7 days. This helps clients get to market faster.
Handling More Materials: It is suitable for a wide range of materials. This includes hard alloys, plastics, and composites. We confirmed its flexibility in composite material projects. This ensures it works well with different materials.
Precision and Complex Part Manufacturing: It handles curved surfaces, holes, and 3D shapes better. This makes producing precision and complex parts more possible. In real use, this reduces scrap rates and improves overall quality.
Reduced Secondary Machining: Multi-axis machining reduces part transfers between worktables. This lowers secondary machining and increases the one-time machining rate. According to our internal data, this can save 20% in costs.
FAQ
Our standard is ±0.1 mm, which is good for most uses. Precision options can reach ±0.025 mm. This depends on the material and complexity. We can adjust based on your drawings.
It is good for small-batch prototypes to medium-batch production. Our flexible equipment can handle orders of 1 to 1,000 pieces.
We use ISO-certified quality control, equipment calibration, and final inspection. We run multiple tests in every project to ensure parts meet tolerance standards.
Standard orders take 7-14 days, depending on complexity. We offer expedited services that can shorten it to 3 days.


















