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Brass Lathe Part Copper CNC Turned Parts Brass Pin - ODM Factory

I'm your partner in precision machining, delivering {Brass lathe part copper cnc turned parts brass pin} tailored for {ODM} projects and {Factory} mass production. I understand the buying behavior of buyers who want reliable supply, consistent tolerances, and scalable tooling. With in-house CNC turning, precision lathes, and copper brass alloys, I produce durable components with smooth finishes and tight tolerances. Whether you need custom geometry, drillings, grooves, or thread features, I can adapt quickly for {ODM} and {Factory} requirements. I offer flexible MOQs, competitive pricing, and lead times, plus rapid prototyping to accelerate your time-to-market. All parts are inspected with first article and ongoing QC checks, ensuring you get repeatable performance batch after batch. I'll work with you on material spec, surface finish, and packaging, delivering reliable supply chains for your assembly line. Let's discuss your design, I can propose optimized workflows and tooling to reduce costs while preserving quality.

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Brass lathe part copper cnc turned parts brass pin Supplier Supplies the World\u2019s Top Brands

Global buyers seeking precision brass lathe parts and copper CNC turned components will find a capable partner in a well‑equipped Dongguan facility. From small brass pins to complex copper pieces, the operation employs high‑precision CNC lathes, tight tolerances, and rigorous quality checks to ensure reliable geometry and finishes. Materials include brass, copper alloys, and bronze, with surface options such as electro‑polish or passivation to fit assemblies. Value goes beyond machining: scalable production, quick quotes, and flexible lead times support launches across electronics, automotive, and consumer devices. A robust quality system covers incoming material checks, in‑process monitoring, and final inspection with traceability. Clients gain design support, packaging options, and shipment readiness for international distribution, reducing risk and speeding time‑to‑market.

{ Brass lathe part copper cnc turned parts brass pin Supplier Supplies the World's Top Brands}
Part ID Material Alloy/Grade Diameter (mm) Length (mm) Tolerance (mm) Surface Finish Machining Type Lead Time (days) Country of Origin Certifications Description
P-BC-0001 Brass CuZn39Pb3 12.00 40.00 +/-0.05 0.4 Ra CNC Turning 7 China ISO 9001; RoHS; REACH Standard brass pin for mechanical assemblies
P-BC-0002 Copper C11000 8.00 35.00 +/-0.03 0.3 Ra CNC Turning + Finishing 5 India ISO 9001 Copper pin with tight tolerance for electrical connectors
P-BC-0003 Brass CuZn36Pb2 15.00 50.00 +/-0.04 0.5 Ra CNC Turning 9 Germany ISO 9001; RoHS; REACH Brass pin with larger diameter used in precision dashboards
P-BC-0004 Copper C12200 6.00 28.00 +/-0.02 0.2 Ra CNC Turning 3 Vietnam ISO 9001 Copper dowel pin for small alignment fixtures
P-BC-0005 Brass CuZn40Pb2 20.00 60.00 +/-0.05 0.4 Ra CNC Turning + Drilling 12 Czech Republic ISO 9001; RoHS Brass pin with through-hole for quick-release assemblies

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Brass lathe part copper cnc turned parts brass pin Sets the Industry Standard Your Trusted OEM Partner

Data Dimension: Production Time Allocation by Part Type in Brass Machining

Explanation: This chart shows the distribution of machining time across five common brass lathe part types. The data dimension is Production Time Allocation by Part Type, measured in minutes per part. The values are representative of a typical small-to-mid sized precision shop. In this dataset, Bushings dominate the time with 210 minutes, followed by Pins at 150 minutes, Couplings at 120 minutes, Shims at 100 minutes, and Adapters at 80 minutes. The visualization highlights where most of the production effort is spent and helps identify opportunities for efficiency improvements. A large share of time dedicated to bushings suggests complex internal features, tight tolerances, or lengthy setups. Reducing cycle times for bushings could yield significant gains in throughput. Conversely, parts with lower time may be suitable for batch processing or parallel workflows. The chart's simple bar format supports quick comparisons across categories, which is valuable for scheduling, capacity planning, and cost estimation. For example, if automation or tooling changes shorten bushings by 30 minutes per unit, the total machining time would drop substantially, increasing daily output or freeing capacity for higher-margin work. The data can also be used to track performance over time, enabling trend analysis and forecasting. When used with defect rates, scrap, and downstream handling times, the metric provides a more complete picture of overall manufacturing efficiency. It is important to consider variability, such as operator skill, material grade, and machine condition, which can affect measured times. This chart is intended as a practical, floor-level decision support tool to support lean manufacturing initiatives, capacity alignment with demand, and continuous improvement projects. By maintaining regular data collection and refreshing the chart, managers can quickly spot deviations, test improvement hypotheses, and communicate insights across teams.

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