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CNC Lathe Machining York, PA

Improve production efficiency with CNC Lathe Machining in York, PA, pairing accuracy with workflow optimization for demanding applications. Roberson Machine Company helps manufacturers overcome downtime, scrap, and tooling issues through stable, repeatable machining processes. Contact us online or call 573-646-3996 to learn more about York, PA, CNC lathe machining and take the next step.

Learn more about:

  • How CNC lathes play a role in production-ready components
  • How turning and multi-axis machining work together in a single workflow
  • Our Doosan Puma TT1800SY multi-turret, multi-spindle turning capability
  • Industries and applications that rely on turned features at scale
  • Examples of actual components produced at volume
  • How to begin a CNC turning or multi-axis machining project with our team

Roberson Machine Company offers machining technology, process experience, and production capacity that keep long-term runs with reliable quality and controlled unit cost.


Table of Contents

Visit our reviews, look through case studies, and explore the blog and FAQs for real machining examples and production insights. For more than 20 years, we’ve turned drawings into reliable, production-ready parts with York, PA, CNC lathe machining and multi-axis machining workflows.



The Importance of Lathe Machining in the CNC Production Process

CNC machining shapes modern manufacturing, and CNC lathes lead the way by producing rotational components with consistent geometry and controlled surfaces. When tools, offsets, feeds, and inspection routines are set, CNC turning holds the diameters, bores, threads, and sealing surfaces that downstream CNC milling and assembly depend upon.

Modern CNC lathes equipped with bar feeding, live tooling, and multi-spindle layouts can cut, drill, tap, and finish in a single setup—reducing handoffs, minimizing variation, and keeping production on schedule.


York, PA, CNC Lathe Operations & Multi-Axis Machining

In multi-axis machining, turning and milling complement one another. The lathe defines core geometry such as accurate diameters, concentric relationships, and functional surfaces, while milling introduces pockets, flats, slots, and 3D features not possible on a spindle-driven machine alone. This workflow keeps features aligned, minimizes secondary setups, and helps reduce manufacturing downtime.

We lathe and cut metals, alloys, stainless steels, aluminum, titanium, and production-grade polymers. Using horizontal turning centers with bar feeders, live tooling, and multi-axis capability, we complete many parts in one setup while keeping accuracy steady from the first article through each release.

  • Hard turning: Refined tool paths built for hardened steels and final finishing.
  • Long turning capacity: Horizontal turning up to 48″ when geometry allows.
  • Live-tool capability: One-setup drilling, tapping, and milling for faster flow.
  • Short, predictable lead times: Stable cycles and automation keep production on schedule.

CNC lathe machining in York, PA, continues to be one of the most flexible CNC machining methods where accuracy, concentricity, and efficient production are critical.


Industries & Applications Supported by York, PA, CNC Lathe Machining

In medical, aerospace, automation, and high-throughput industrial environments, CNC lathe machining drives production. These industries depend on accurate diameters, bores, threads, and stable concentric features, with examples of volume-produced components below.

Across these industries in York, PA, CNC lathe machining keeps dimensional relationships, surface quality, and unit cost consistent from run to run. If you’re planning new releases or scaling an existing project, our team can review drawings, map the process, and outline a practical production path. Learn more about our team, reach out online, or call 573-646-3996 to discuss your next project.


York, PA, CNC Lathe Machining - Pumatt 1800sy - Roberson Machine Company


Doosan Puma TT1800SY: Multi-Turret, Multi-Spindle Lathe for High-Throughput Production

Roberson Machine Company has increased its turning capacity by adding the Doosan Puma TT1800SY, a multi-turret, multi-spindle turning center designed for fast, accurate output. It merges roughing, finishing, drilling, tapping, and milling into one continuous cycle to maintain alignment and reduce handling steps.

Main–sub spindle transfer, parallel cutting, and bar-fed workflows make it a strong fit for two-sided or multi-op parts that need accurate relationships from one operation to the next. The layout supports high-throughput work while keeping cycle times stable and predictable.


Key Specifications & Capabilities

This spec set details TT1800SY features that shape real production workflows, from spindle speed and torque to bar capacity, travel envelopes, and the live-tooling and handoff systems that lower setup count and stabilize cycle times.

TT1800SY Technical Overview

Category Specification Value Why It Matters
Capacity Swing Over Bed 9.1″ Envelope for small to mid-sized turned components.
Recommended Turning Diameter 8.3″ Sweet spot for production work on this platform.
Max. Turning Diameter (Upper / Lower) 9.1″ / 9.1″ Handles symmetrical turning on both turrets.
Bar Working Diameter 2.6″ Supports steady bar-fed production for many shaft-style parts.
Axis Travels X-Axis Rapid Traverse 787 IPM Reduces non-cutting time between features.
Z-Axis Rapid Traverse 1,575 IPM Keeps cycle times down on longer parts.
X1 / X2 Travel 6.5″ / 7.5″ Room for twin-turret work on complex parts.
Y-Axis Travel 3.9″ Enables off-center milling and drilling operations.
Z1 / Z2 / A Travel 27.6″ / 28.4″ / 30.3″ Supports front- and back-working on longer components.
Spindles Main Spindle Speed 5,000 RPM Good balance of metal removal and finish capability.
Main Spindle Power / Torque 29 HP · 154 ft-lbs Supports heavy cuts while maintaining surface quality.
Sub Spindle 5,000 RPM · 29 HP Full-power back-working and accurate part handoff.
Turret & Live Tooling Tool Stations 12 stations per turret Plenty of room for turning, drilling, and milling tools.
Turret Index Time 0.15 sec Fast indexing keeps chips flowing.
Max Rotary Tool Speed 5,000 RPM (7.5 / 1.5 HP motor) Handles most drilling, tapping, and light milling work at the spindle.
Footprint L × W × H 154″ × 89″ × 82″ Compact floor space for a full twin-spindle, twin-turret lathe.
Machine Weight ≈ 19,400 lbs Mass and rigidity for stable cutting and better finishes.

This configuration provides one-and-done machining for small to mid-sized components, maintaining concentricity, clean shoulder transitions, sealing surfaces, and multi-op geometry from run to run.


Unlock CNC Lathe Production with Pumatt 1800sy Capabilities - CNC Lathe Machining in York, PA


What the Puma TT1800SY Unlocks for York, PA, CNC Lathe Machining & Production

In real workflows, the TT1800SY strengthens production by improving geometric control and removing setup transitions that often introduce cost and variation. Key advantages include:

  • Shorter part flow: Pulls multiple setups into one streamlined, uninterrupted cycle.
  • Cleaner feature relationships: Keeps diameters, bores, and milled geometry aligned on the same centerline.
  • Better performance on two-sided parts: Precise spindle handoff reduces variation in mirrored and back-worked features.
  • Fewer fixtures and handling steps: Reduces stack-up error and limits chances for dimensional drift.
  • More predictable scheduling: Steady cycle times improve release forecasting and tooling-life planning.
  • Efficient volume scaling: Bar-fed throughput and balanced cutting stabilize output during extended production runs.

Whether you’re producing shafts, bushings, housings, sleeves, couplings, or multi-op turned/milled components, the Puma TT1800SY supports rapid moves from prototype to production with reliable, repeatable output, reinforcing its role in York, PA, CNC lathe machining.

Need to validate a part on the new system? Contact us online or call 573-646-3996 to see how the Puma TT1800SY can strengthen your workflow and help reduce production delays.


Pumatt 1800SY CNC Lathe Machining - York, PA, Precision Lathe CNC Machining


Frequently Asked Questions

If CNC lathe workflows are on your schedule, the core questions often involve part fit, lead time, and how turning fits into your broader build. These FAQs explain the details that matter when progressing from prototypes or one-off work into production-grade CNC lathe machining in York, PA.

What types of parts are a good fit for CNC lathe machining in York, PA?

CNC lathes perform best on rotationally symmetric components where diameters and concentricity are critical. Typical candidates include:

  • Shafts, pins, and bushings
  • Housings, sleeves, and couplings
  • Valve bodies and manifolds with critical sealing surfaces
  • Rollers and cylindrical tooling for automation and packaging
  • Turned parts that also need milled flats, slots, or drilled features

When high-volume runs rely on consistent diameters, shoulders, and threads, CNC lathe machining becomes the foundation of the workflow.

How does a multi-turret, multi-spindle lathe change production compared to a standard lathe?

Multi-turret, multi-spindle equipment lets us complete more work in a single cycle instead of spreading operations across several machines and setups. That means:

  • Front- and back-working (two-sided parts) completed in one continuous process
  • Roughing and finishing handled in parallel rather than in separate runs
  • Fewer fixtures and handling steps, which lowers stack-up error
  • More stable cycle times as volumes increase

For parts that normally move through multiple handoffs, the Puma TT1800SY consolidates everything into a single, continuous workflow.

What do you need to quote a CNC lathe machining project?

Clear engineering intent produces stronger quotes and more predictable production. Helpful inputs include:

  • Current drawings with tolerances and any critical feature callouts
  • Material and finish requirements
  • Target quantities (per release and annual volume)
  • Expected delivery cadence or release schedule
  • Any inspection, documentation, or packaging requirements

If details are still developing, we can start from provisional prints and help tighten the package before locking in production pricing.

What tends to drive cost on CNC lathe machined parts in York, PA?

Piece price for turned parts often ties back to setup effort, cycle time, and material. Common cost drivers include:

  • Complex workholding or multiple setups that could be consolidated
  • Very tight tolerances or surface finish requirements on multiple features
  • Challenging materials (hard alloys, difficult chip control, or long overhangs)
  • Heavy interruption from milling, cross-holes, or deep drilling operations
  • Small lot sizes that repeat tooling and setup time too often

Discussing tolerances, materials, and functional requirements early on often reveals paths to keep cost and lead time under control.

How do you maintain repeatability across large lots and repeat releases?

Repeatability is achieved by locking the entire process, not only the first cycle. Typical controls include:

  • Standardized fixturing and workholding for the entire workflow
  • Documented tool lists, offsets, and tool life management
  • In-process checks on critical diameters, bores, and threads
  • Final inspection routines tied to print requirements
  • Lot records that tie parts, dates, and inspection data together

When a lathe workflow proves out, those controls keep dimensions consistent from the first article across every following release.

When should York, PA, CNC lathe work be combined with milling or other processes?

Many components run best when turning sets the core geometry while other processes add the remaining features. That often looks like:

  • Lathe operations setting diameters, shoulders, and critical bores
  • Live-tool work or downstream milling adding flats, keyways, pockets, or patterns
  • Secondary processes (EDM, grinding, or honing) reserved for features that truly need them

Reviewing the full print and functional requirements early on makes it simpler to choose what belongs on the lathe and what should move to another process.

Why Choose Us for York, PA, CNC Lathe Machining?

Roberson Machine Company supplies the process control, equipment, and production experience that support reliable, repeatable CNC lathe machining in York, PA. We manage long-term production schedules with stable workflows and tooling strategies that keep releases on schedule.

  • Turning processes structured to hold the diameters, bores, threads, and sealing features your assemblies require
  • Quick, one-setup machining with bar feeding, live tooling, and multi-spindle capability
  • Dimensional consistency maintained from the first article through all repeat releases
  • Material flexibility spanning stainless, aluminum, alloys, titanium, and production-grade polymers
  • Workflows structured to reduce scrap, tooling delays, and downstream variation for more predictable scheduling

Our core services include:

Roberson Machine Company helps drive new releases, scaled production, and long-term CNC lathe machining workflows. Learn more via our team and capabilities, request a quote online, or call 573-646-3996 to discuss the benefits and opportunities that come with York, PA, CNC Lathe Machining.

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