banner (1)

cnc lathe turning parts for Wholesale Manufacturers

From my workshop, I supply {cnc lathe turning parts} that meet the tight tolerances your production lines demand. If you're a {Wholesale} buyer or a {Manufacturers} partner, you'll appreciate our flexible terms, batch consistency, and scalable lead times. I use high-grade steel, aluminum, brass, and exotic alloys, with finishes like ground, polished, black oxide, or coating. Each part is machined on multi-axis CNC lathes, inspected with vision and gauge checks, and documented with CMM reports. You can share your drawing or CAD, and I will produce raw prototypes quickly and then scale to mass production. Competitive prices, reliable supply, and clear communication are my priorities. I welcome revisions until you are satisfied. Let's turn your specs into repeatable parts for your assembly lines, with the quality control you expect from a trusted partner.

Hot Selling Product

cnc lathe turning parts Products Service

CNC lathe turning parts are central to precision manufacturing for global buyers seeking reliable, high-volume components. Our capabilities include bar-fed and chucking turning, with secondary operations such as drilling, threading, tapping, and milling, suitable for aluminum, stainless steel, brass, copper, plastics, and other alloys. By using multi-axis turning and CAD/CAM optimization, we shorten cycle times, reduce waste, and scale production to meet changing demand with transparent pricing and flexible MOQs. Whether you need prototypes, pre-production runs, or full production, you’ll receive consistent quality with traceable lot data. Quality is built in at every step—from first article inspection and in-process checks to final verification and documentation. We accommodate tight tolerances, various surface finishes, and complex geometries such as deep bores, grooves, and precision threads. The service covers design-for-manufacture input, packaging, and global logistics, delivering reliable lead times and responsive technical support to engineering teams. For international procurement, this means a scalable partner that ensures reproducible quality, smooth communication, and accelerated time-to-market for assembled products.

{ cnc lathe turning parts Products Service }
Part ID Part Name Material Primary Operation Diameter (mm) Length (mm) Tolerance (±mm) Surface Finish (Ra) Machining Time (min) Production Method Applications Last QC Date
P-LT-1001 Shaft, Turned Ø12mm 4140 Steel Rough turn, finish turning 12.0 80 ±0.05 Ra 1.6 14 CNC Lathe Turning Drive shaft for machinery 2026-03-15
P-LT-1002 Pin, Flange Ø20mm 12L14 Steel Turning and facing 20.0 40 ±0.05 Ra 3.2 6 CNC Lathe Turning Lok pin, alignment dowel 2026-04-02
P-LT-1003 Spacer, Ø30x15mm 6061-T6 Aluminum Facing, Turning 30.0 15 ±0.08 Ra 1.6 4 CNC Lathe Turning Spacer for assemblies 2026-02-27
P-LT-1004 Sleeve Bearing, Ø60x25mm 304 Stainless Steel Turning and boring 60.0 25 ±0.03 Ra 0.8 18 CNC Lathe Turning Bearing sleeve for housing 2026-05-18
P-LT-1005 Threaded Rod, M8x1.25 304 Stainless Steel Thread turning 8.0 60 ±0.02 Ra 1.6 9 CNC Lathe Turning Threaded fastener, lead screw segment 2026-01-30
P-LT-1006 Hub, Ø40x50mm 6061-T6 Aluminum Turning, Facing 40.0 50 ±0.04 Ra 3.2 11 CNC Lathe Turning Wheel hub or pulley hub 2026-03-11
P-LT-1007 Collet, Ø25mm D2 Tool Steel Turning, finishing 25.0 22 ±0.02 Ra 0.8 7 CNC Lathe Turning Collet insert component 2026-04-27
P-LT-1008 Bushing, Ø15x12mm 304 Stainless Steel Turning 15.0 12 ±0.02 Ra 0.8 3 CNC Lathe Turning Shaft support 2026-05-03

Related Products

banner (4)

cnc lathe turning parts in 2025 From Concept to Delivery

Data Dimension: Lifecycle Lead Time by Stage for CNC Lathe Turning Parts (2025)
Concept: 5 days Design: 8 days Prototype: 12 days Tooling: 7 days Machining: 15 days Inspection: 6 days Delivery: 9 days Concept Design Prototype Tooling Machining Inspection Delivery 0 5 10 15
Explanation: This visualization presents a lifecycle view of lead time by stage for CNC lathe turning parts in 2025, illustrating how long each phase typically takes from concept to delivery. The bars correspond to seven key stages: Concept, Design, Prototype, Tooling, Machining, Inspection, and Delivery. The highest bar represents Machining, which reflects core turning operations, tool changes, setup, and cycle variability. Prototype and Design also show meaningful durations, indicating iterative adaptation to manufacturability constraints and feed-forward design decisions. The shorter durations of Concept and Delivery suggest relatively rapid project initiation and handoff when requirements are well defined and tolerances aligned with manufacturing capabilities. From a managerial standpoint, the chart highlights where to focus optimization efforts first. Since Machining contributes the most to total lead time, improving cutting speeds, tool life management, and setup efficiency could produce substantial gains. Reducing rework in the Prototype and Design stages—by applying design for manufacturability (DFM) principles and early tolerance analysis—can also shorten the overall cycle. The data underscores the importance of cross-functional collaboration: upstream design choices and downstream inspection criteria should harmonize with CNC capabilities to minimize bottlenecks and rework. Looking ahead to 2025, embracing digital thread concepts, parallel processing, and automation can compress cycle times, enabling faster iteration and shorter delivery windows without compromising quality. Actions such as predictive maintenance for turning centers, standardized process parameters, and better planning of tooling could further shrink Machining durations and inspection rework. This chart provides a concrete baseline to monitor improvements over time and quantify the impact of process changes on the end-to-end delivery timeline. Note: the values shown are representative for illustrative purposes; real-world planning should incorporate variability, batch effects, and machine availability for robust forecasting.

Top Selling Products