A flat-bed CNC lathe is a high-precision, high-efficiency automated machining device. Based on digital control technology, it can automatically complete various turning operations according to pre-programmed instructions. By precisely controlling tool movement along the X and Z axes, it can perform a variety of operations on rotating parts, including external turning, internal boring, threading, taper turning, grooving, and parting.
OEMach’s
team excels in the precision turning of a wide variety of materials, including ceramics, titanium alloys, various plastics, and stainless steel. We are particularly experienced in the precision manufacturing of medical device parts and automotive components. Based on customer-supplied part drawings and process requirements, we can develop the most optimized machining solutions to ensure both the quality and accuracy of every part. Whether the requirement is for simple shaft components or complex, high-precision parts with intricate profiles, we can provide customers with premium machining services using our flat-bed CNC lathe technology.
| Category | Description |
|---|---|
| Maximum part size | Diameter × Length: 500 × 1500 mm (customizable as required) |
| General tolerance | Dimensional tolerance: ±0.01 mm; roundness tolerance: ±0.005 mm (customizable as required) |
| Delivery date | For standard operations, simple parts can typically be delivered within 3-5 days; for complex parts or batch orders, the lead time is generally 7-10 days, subject to project evaluation. |
| Customization Services | Machinable materials include carbon steel, alloy steel, stainless steel, aluminum alloy, copper alloy, titanium alloy, and other metals, as well as certain engineering plastics and other non-metallic materials. The equipment supports high-speed turning, precision thread cutting, profiling turning, and other advanced processes. We specialize in high-precision turning of slender shafts (L/D = 30:1) and micro rotary parts (Ø3mm). |

Machining of precision shaft components and implant parts for medical devices, ensuring the safety and reliability of the equipment and meeting the stringent quality standards of the medical field.
For the production of small shaft components, connectors, housings, and other parts in electronic devices, meeting the industry's requirements for high precision, miniaturization, and mass production.
Used to process key components such as crankshafts, camshafts, half-shafts, wheel hubs, and various shafts and discs in automotive transmission systems, providing reliable support for automotive power transmission and driving safety.
Used for machining a variety of shafts, discs, and sleeve components, such as motor shafts, gear shafts, flanges, and bearing sleeves. This is an indispensable machining method in the production of mechanical products, ensuring the accuracy and interchangeability of mechanical parts.
