The Mazak Syncrex 38/9X is a powerful Mazak Swiss lathe designed for precision, stability, and efficiency. Offering advanced Swiss-style turning and simultaneous 5-axis capability, it enables complex part production in a single setup. Engineered for industries that demand tight tolerances, the 38/9X is a reliable solution for high-precision CNC turning for a wide variety of industrial applications.
Syncrex 38/9X Features:
| Model | Syncrex 38/9X |
|---|---|
| Max Workpiece Diameter | 1.5" |
| Max Machining Length | 12.59" |
The Mazak Syncrex 38/9X delivers advanced Swiss-style turning with exceptional rigidity and thermal stability. Built for demanding industries, this Mazak Swiss lathe ensures reliable accuracy for small, complex components. With its robust structure and precise axis travels, it excels in high-precision CNC turning, making it ideal for manufacturers who require consistent quality and tight tolerances.
The Syncrex 38/9X reduces idle time and increases throughput with advanced tool changers that prepare the next tool during active machining. This capability supports continuous operation, keeping spindle utilization consistent in high-volume or high-mix production environments. As a result, manufacturers benefit from greater efficiency without sacrificing part quality.
The Syncrex 38/9X completes complex geometries in a single setup with simultaneous 5-axis machining. This eliminates repositioning, shortens cycle times, and ensures consistent precision. The Smooth CNC control system enhances operations with AI-driven tool path optimization, digital twin simulation, and real-time diagnostics. These intelligent features simplify programming, improve workflow, and give operators greater control over every stage of production.
| Model | Syncrex 38/9X |
|---|---|
| Max Workpiece Diameter | 1.5" |
| Max Machining Length | 12.59" |
| Capacity | Max. machining diameter | Φ1.5″ |
|---|---|---|
| Max. machining length GB (one chucking) | 12.59″ | |
| Main Spindle | Max. spindle speed | 8000 rpm |
| Power requirement (40% ED) | 7.5 kW (10 HP) | |
| Second Spindle | Max. spindle speed | 8000 rpm |
| Power requirement (40% ED) | 7.5 kW (10 HP) | |
| Turret | Number of tools | 39 |
| OD | 8 | |
| Cross live tool | 4 | |
| Back working | 8 | |
| End working tools | 5 | |
| Boring bar holder (Main / Sub) | 4 / 4 | |
| B-axis Tool* (Main / Sub) | 3 / 3 | |
| Rapid traverse rate | X1-axis | 1378 IPM |
| Y1-axis | 1378 IPM | |
| Z1-axis | 1378 IPM | |
| X2-axis | 1378 IPM | |
| Y2-axis | 1378 IPM | |
| Z2-axis | 1378 IPM | |
| Machine size | Width × Depth (MAZATROL SmoothStX) | 52″ × 99.2″ |
| Height | 78.9″ | |
| Weight | 1200 lbs |
The Mazak Syncrex 38/9X adds programmable B-axis tool motion to the 38 mm Swiss-type platform. Angled holes, compound features, and contoured milling can be integrated with sliding-headstock turning and second-spindle work. A.W. Miller provides regional applications engineering and factory-certified support from the initial process review through installation, training, and production.
Capacity on the Syncrex 38/9X combines 38 mm bar capacity with main- and second-spindle processing, B-axis contouring, and a high-density driven-tool layout. Final capacity and equipment should be confirmed against the complete part, fixture, tool, and automation plan.
Applications commonly evaluated for the Mazak Syncrex 38/9X include:
B-axis motion lets tools approach at programmable angles for contouring, angled holes, chamfers, and milled features that fixed cross tools cannot address efficiently.
The platform is designed around 38 mm bar capacity, subject to the guide bushing, collet, feeder, and material condition.
Its tool layout is designed to expand complex work on both sides, but each feature must be checked against tool stations, travel, and collision clearance.
Complex medical, aerospace, connector, and fluid-control parts benefit when simultaneous turning and milling reduce handling and total cycle time.
B-axis motion lets tools approach at programmable angles for contouring, angled holes, chamfers, and milled features that fixed cross tools cannot address efficiently.
The platform is designed around 38 mm bar capacity, subject to the guide bushing, collet, feeder, and material condition.
Its tool layout is designed to expand complex work on both sides, but each feature must be checked against tool stations, travel, and collision clearance.
Complex medical, aerospace, connector, and fluid-control parts benefit when simultaneous turning and milling reduce handling and total cycle time.
Toolholder clearance, guide-bushing position, part transfer, B-axis sweep, cutoff, and second-spindle motion should be verified as one sequence.