Precision Swiss CNC Turning Services

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HomeServices – Swiss Turning Center

Manufacturer of industrial precision parts

SCZY LTD boasts industry-leading Swiss CNC machining capabilities. Leveraging a cutting-edge cluster of Swiss machine tools, the company can achieve one-step machining of complex parts, eliminating the need for secondary processing. For workpieces up to 800 mm in length and 20 mm in diameter, the company maintains a stable tolerance control accuracy of ±0.01 mm, fully meeting the demands of high-precision manufacturing applications.

Our Swiss machine tools are capable of performing typical threading, tapping, boring, deburring, drilling, knurling, milling, reaming, and turning operations. Our machine tools feature a dual-axis tool arrangement, reducing processing cycles; multiple operations can be completed in a single setup, enhancing processing accuracy and efficiency; additionally, the machine tools are equipped with automatic bar feeding functionality, enabling unmanned processing, shortening production cycles, improving production efficiency, and accelerating product delivery times.

SCZY LTD has been deeply involved in the Swiss CNC machining field for over 20 years and is a leading Swiss CNC machining supplier in China. We specialize in precision machining of multiple materials, including stainless steel, aluminum, steel, brass, copper, and other metals, as well as high-performance engineering plastics such as POM, PEEK, and PTFE. We can flexibly accommodate prototype development, small-batch pilot production, and large-scale mass production requirements, focusing on the production of precision shafts, pins, fasteners, components, and connectors. With our extensive experience, we ensure reliability throughout the entire process, from material selection to bulk delivery.

If you are looking for a manufacturer capable of processing smaller, more complex parts, SCZY LTD is your ideal choice — we specialize in high-precision small shaft and long shaft part processing, with accuracy up to ±0.01mm, combining cost-effectiveness with the ability to realize complex structures. Contact our professional team today to obtain a customized processing solution!

Swiss Turning Capabilities

processing capability

Dimensional tolerances

Main processed materials

Surface Finishing

Quality Assurance

Comprehensive quality management ensuring every part meets specifications

 
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Inspection process

Quality Control Equipment

Why can you trust SCZY LTD?

CNC equipment

ISO 9001:2015

Equipped with advanced multi-axis turning/milling systems, SCZY LTD efficiently manufactures complex parts from stainless steel, plastics, superalloys, etc. Our precision machining meets aerospace, medical and industrial needs with ±0.01mm tolerance capability.

higher quality

AS9100D

SCZY LTD deploys comprehensive QC systems and tools—including gauges, concentricity testers, roughness meters, projectors, CMMs, micrometers, and salt spray testers—to ensure every detail from dimensional accuracy to surface finish meets strict standards, guaranteeing superior product quality.

high efficiency

ISO 13485

SCZY LTD mill-turn machines efficiently integrate multiple functions through disposable fixtures for fast, high-precision manufacturing, shortening the process chain and reducing errors, and the multi-axis linkage function enables the machining of complex shapes, further enhancing productivity.

competitiveness

IATF 16949

SCZY LTD is committed to building partnerships with its customers, always selecting the most appropriate facility to deliver high quality components at competitive prices.

Swiss Turning machine processing case

Swiss Turning equipment is used for micro mechanical parts manufacturing, mainly serving the electronics, medical, automotive, instrumentation, connector and other industries.

CNC Milling Surface Treatment Services

SCZY LTD offers a one-stop, high-quality surface treatment solution for CNC milling services, covering a wide range of processes such as sandblasting, anodizing, electroplating, electrophoretic coating, baking paint, chemical conversion coating, passivation, polishing, blackening, and QBQ protection, precisely meeting the stringent requirements of industries such as aerospace, medical, and new energy. Each processing technique is accompanied by professional testing services, providing detailed data such as film thickness measurements, hardness test reports, precise color parameters, corrosion resistance salt spray test results, and authoritative adhesion test reports. These scientific data ensure processing quality from a quantitative metrics perspective, not only imparting outstanding protective performance and aesthetic appeal to products but also comprehensively ensuring their reliability and stability. Whether it’s mirror polishing of optical components or corrosion-resistant treatment of high-pressure valve bodies, SCZY achieves exceptional quality through end-to-end data-driven process control.

As-machined-cnc-finish-1

Standard (As-Machined)

This finish refers to parts just after the machining process, sometimes followed by minor grinding. It contains tool marks, small burrs & chips, but provides tight tolerances. The roughness can be as low as 3.2 μm. This finish is suitable when aesthetics is not a requirement.
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Bead Blasting

Bead blasting strikes the tiny glass, ceramic, or other beads on the machined surface at high pressure to remove tool marks, burrs, chips, and other surface irregularities. It produces a light and smoothie texture with an attractive appearance.
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Anodized (Type II Or Type III)

The CNC-machined aluminum or non-ferrous parts can be anodized, which refers to adding and protective oxide layer on their surface. Type II is clear and color anodizing, whereas type III (MIL-A-8625/MIL-PRF-8625) refers to hard coating. Anodized surfaces resist harsh environments and save the parts from corrosion, wear, and surface degradation.
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Powder coating

It is the electrostatic deposition of a thin powder layer(powder of epoxy, polyester, etc) and curing at high temperature, up to 400. Powder coat surfaces are highly corrosion-resistant and can be achieved in any color. It is applicable to all material-type machine parts with complex geometries.
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Polishing

Polishing can be applied through electrochemical and mechanical methods. It produces a smooth and fine, mirror-like finish with Ra as low as 0.3 μm. This surface finish is preferred for machined parts if low-surface friction is essential for performance or aesthetics is important.
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Black-Oxide

Black oxide is a surface treatment for ferrous materials that creates a sleek black appearance and offers mild corrosion resistance. It chemically converts the metal surface into an oxide layer, preserving tight tolerances. This finish is ideal for precision components where a low-reflective, durable surface is desired.

CNC Milling Processing Materials

SCZY LTD leverages advanced five-axis CNC technology to specialize in milling processing of various metals and engineering plastics. Materials include aluminum alloys (such as 7075, 6061, etc., combining lightweight properties with corrosion resistance), brass (wear-resistant with excellent electrical conductivity), titanium alloys (high strength, high temperature resistance), as well as engineering plastics such as ABS (high toughness, easy to form) and POM (self-lubricating, low friction). Customized machining services achieve tolerance control of ±0.01mm, providing precision parts with high precision and reliability for industries such as aerospace, medical, and automation. Five-axis interpolation technology enables the one-time machining of complex surfaces, reducing setup times and achieving surface roughness as low as Ra ≤ 0.8 μm. From prototype sampling to small-to-medium-volume production, comprehensive quality control throughout the entire process ensures efficient and reliable delivery, fully meeting diverse requirements from design to mass production.

Extensive Industry Experience

SCZY LTD, a globally renowned custom machined parts manufacturer, provides precision components to customers in over 20 countries, serving industries such as micro-light infrared systems, optoelectronic rangefinders, aircraft seats, avionics, high-speed rail communication, new energy vehicles, oil and gas electronic valve bodies, pneumatic hydraulic electromagnetic valves, high-speed turbine blowers, turbine water pumps, medical diagnostic equipment, semiconductor and automated manufacturing, smart agriculture, smart home, and smart wearable devices. Based on the technical characteristics of parts processing across different industries, we have established five specialized manufacturing departments: optical, fluid control, transportation, smart manufacturing, and 5G lifestyle. By precisely matching specialized technical expertise with production services, we provide end-to-end solutions from design consultation to customized solutions, leveraging advanced CNC machining technology and a rigorous quality management system to ensure every product meets the highest international standards. We deliver seamless, efficient services and cost-effective solutions to global customers, positioning ourselves as a trusted partner in precision manufacturing.

Automotive

Automotive

Robotics

Robotics

energy

Energy

Medical-Equipment

Medical Equipment

Optical-Lens

Optical Lens

Aerospace

Aerospace

CNC Milling FAQ

Browse our CNC milling FAQs to learn more about our CNC machining services and how we can support your manufacturing needs.

CNC milling (computer numerical control milling) is a high-precision “subtractive manufacturing” process. It uses high-speed rotating tools controlled by computer programs to precisely cut away excess material from a solid block (such as metal or plastic), ultimately forming the designed part. This process is like an automated, extremely precise sculptor, capable of producing parts with excellent mechanical strength and strict tolerances.

The entire CNC milling process begins with a digital 3D model (CAD file). This model is imported into CAM (computer-aided manufacturing) software, where programmers set parameters such as tool paths, cutting speed, and depth, and generate machine instructions known as “G-code.” Next, the operator secures the raw material on the CNC machine and loads the G-code into the system. The machine strictly follows the G-code instructions, automatically controlling the tool's movement along multiple axes such as X, Y, and Z, and shaping the workpiece through precise cutting until the final part is completed.

This is determined by the physical characteristics of CNC milling, as the tool used (end mill) is cylindrical. When a rotating circular tool cuts an internal corner, it cannot achieve a perfect 90-degree sharp angle, and the limit of its path inevitably leaves an arc. The minimum radius of this arc is equal to the radius of the tool. Therefore, to ensure manufacturability, designers must incorporate a radius for all internal corners when designing parts. It is generally recommended that this radius be slightly larger than the radius of the tool used to improve machining efficiency and reduce costs.

The cost of CNC milling is primarily driven by four core factors. First is processing time, which is the largest cost driver. The complexity of the part, the amount of material removed, and surface finish requirements directly determine the machine tool's runtime. Second is material cost, with significant price differences between materials such as standard aluminum alloys and titanium alloys. Third is clamping complexity; if a part requires multiple rotations or the use of multi-axis equipment for processing, this significantly increases setup time and labor costs. Finally, tolerance requirements and post-processing specifications also impact costs; extremely high precision requirements and post-processing operations such as anodizing or sandblasting add additional expenses.

The material application range of CNC milling is extremely broad, encompassing virtually all machinable hard materials. The most common metals include aluminum alloys (such as 6061, 7075), stainless steel, carbon steel, brass, bronze, and titanium alloys, among others. In terms of plastics, it can easily process engineering plastics such as ABS, nylon (Nylon), POM (Delrin), acrylic (Acrylic), and polycarbonate (PC). Additionally, CNC milling is commonly used for processing wood, composite materials (such as carbon fiber panels), and materials like Dacron and foam used in mold manufacturing.

To obtain a quick and accurate quote from a manufacturing plant, you need to provide a complete set of information. The most important document is a 3D CAD model, with the STEP (.stp) format being the industry-standard preferred choice. Additionally, a detailed 2D engineering drawing (typically in PDF format) is also crucial, as it clearly specifies key dimensions, tolerance requirements, thread specifications, and surface finish that cannot be fully represented in the 3D model. Furthermore, the required material specifications (e.g., “Aluminum Alloy 6061-T6”), order quantity, and any post-processing requirements must be clearly specified.

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