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  • Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe
  • Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe
  • Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe
  • Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe
Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe

Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe

  • 1 - 4 Sets
    $14,800
  • 5 - 9 Sets
    $13,800
  • >= 10 Sets
    $13,200

Customization:

Customized packaging(Min.Order: 1 pieces)
Customized logo(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Machining: Designed for high-precision manufacturing of complex parts using a programmable hydraulic tailstock and GSK/Siemens/Fanuc CNC controllers, enabling accurate cuts and surface finishes.
  • Versatile Processing: Supports medium-duty machining with a slant bed structure and turret design, accommodating materials like metals, alloys, and composites for industries such as aerospace, automotive, and medical devices.

Key features

  • 1. Material Technology

  • With a robust slant-bed construction using high-strength steel and aluminum, you can ensure durability and precision in heavy-duty machining, outperforming horizontal-bed models prone to chip accumulation*.

  • 2. Interactive Design

  • With a user-friendly touchscreen interface and Jog dial controls, you can program and adjust operations intuitively, surpassing models reliant solely on physical buttons for faster setup and reduced operator error*.

  • 3. Performance Parameters

  • With a versatile 5-75kW spindle motor, you can handle materials of varying hardness and thickness, offering a 40% wider power range than standard lathes to accommodate diverse production needs*.

  • 4. Scenario Solutions

  • With a programmable hydraulic tailstock and automatic tool changes, you can automate complex machining processes, reducing downtime by 25% compared to manual setups and enabling seamless transitions between automotive and aerospace components*.

  • 5. Certification Standards

  • With compatibility for industry-leading CNC controllers (Siemens/GSK/Fanuc), you can meet rigorous manufacturing standards for precision and reliability, ensuring compliance with aerospace and automotive quality requirements unmatched by proprietary systems*.

Product details

Economical CNC Lathe T300 GSK Controller Programmable Hydraulic Tailstock Horizontal Slant Bed CNC Lathe

The Economical CNC Lathe T300 is a versatile horizontal slant-bed machine designed for precision machining in industries such as aerospace, automotive, and medical devices. Equipped with programmable hydraulic tailstock and advanced CNC control systems (Siemens, GSK, or Fanuc), it offers automated, high-precision manufacturing with medium-duty capacity. Its durable steel-aluminum construction and sleek industrial design ensure reliability and adaptability for diverse applications.

Technical specifications

FeatureSpecificationApplication Scenario
CNC Control SystemSiemens, GSK, or FanucProgramming complex geometries for aerospace parts
Spindle Motor Power5 kW or 7.5 kW (adjustable)Handling small to medium-sized components
Machining CapacityMedium DutyProducing automotive engine parts or medical devices
StructureSlant BedReducing vibration for high-precision finishes
Automation FeaturesHydraulic tailstock, automatic toolingStreamlining production of repetitive tasks
SafetyInterlocked guards and emergency stopsEnsuring operator safety in high-speed operations

Customization guide

Adjustable spindle power (5 kW to 7.5 kW) and programmable hydraulic tailstock allow customization to meet specific material requirements (e.g., softer metals vs. hardened alloys). The open-slant bed design supports tool adjustments for varying workpiece sizes, while the choice of CNC control system (GSK, Siemens, or Fanuc) tailors precision and compatibility with existing workflows.

Get inspired

With the T300’s programmable hydraulic tailstock, you can achieve precise clamping for irregular workpieces, reducing setup time by 20% compared to traditional methods. Its slant-bed structure ensures minimal vibration, ideal for machining delicate medical components requiring micron-level accuracy.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Spindle Power5 kW7.5 kW10 kW*
Control SystemGSK (basic)Siemens (enhanced)Fanuc (premium)
Precision±0.01 mm±0.005 mm±0.002 mm*
Automation LevelManual tool changeSemi-automaticFully automatic*

Supplier's note

  1. Three Technical Breakthroughs:

    • Adaptable Spindle Power: The Pro model’s 10 kW spindle delivers 66% more power than the Base, enabling heavy-duty machining of titanium alloys.
    • Fanuc Control System: The Pro’s premium CNC system reduces programming errors by 40% compared to GSK, critical for aerospace part tolerances.
    • Slant-Bed Stability: The design cuts vibration by 30% versus vertical-bed lathes, ensuring smoother finishes for medical implants.
  2. Version Selection Guidance:

    • Base Model: Ideal for small workshops or prototyping with basic materials (e.g., aluminum).
    • Advanced Model: Suitable for medium-scale production requiring semi-automation (e.g., automotive components).
    • Pro Model: Best for high-precision industries like aerospace or medical devices, where Fanuc’s triple-redundant safety protocols ensure zero-defect production.

*Pro Model specifications exceed industry benchmarks by 30–50% in power, precision, and automation.

Frequently asked questions

  • Which CNC lathe model suits small workshops for medium-duty tasks?

  • How to maintain the hydraulic tailstock of the T300 CNC lathe?

  • Slant bed vs. horizontal bed CNC lathe: Which is better for chip management?

  • Can the T300 CNC lathe be customized with Siemens or Fanuc controllers?

  • Is the T300’s spindle motor power sufficient for medium-duty machining?

  • How does the automatic grade of the T300 improve productivity?

  • Does the T300 comply with industrial safety standards?

  • What advantages does the slant bed design offer over traditional horizontal lathes?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
CNC Control SystemPrecision part manufacturing, prototypingIndustry Standard: Basic PLC-based control (ISO 6983)
Our Base: Siemens SINUMERIK 840D sl (ISO 9001)
Our Advanced: Fanuc 31i (CE certified)
▲ Advanced offers 20% faster program execution (120 programs/hour)
Industry-standard compatibility
Base lacks predictive diagnostics; Advanced requires specialized training
Spindle Motor PowerHeavy-duty machining, multi-axis operationsIndustry Standard: 5.5kW (IEC 60034)
Our Base: 5.5kW (ISO 2372)
Our Advanced: 7.5kW (IEC 60034)
▲ Advanced handles 40% heavier loads (max torque: 120 Nm)
Quiet operation at 75 dB(A) (quieter than standard lathes at 85 dB(A))
Base may overheat during prolonged high-load tasks
Bed StructureHigh-precision, coolant-intensive tasksIndustry Standard: V-bed lathe (ASTM B588)
Our Base/Advanced: Slant-bed design (ISO 230-2)
▲ Slant-bed improves chip evacuation by 30%
Reduced vibration for smoother cuts (≤3 µm surface finish)
Higher cost vs. V-bed designs; requires floor space for slant orientation
Machining CapacityMedium-to-large workpiecesIndustry Standard: Max diameter 250mm
Our Base: 300mm (ISO 230-2)
Our Advanced: 400mm (ASME B5.54)
▲ Advanced accommodates oversized parts (e.g., turbine blades)
Accurate to ±0.01mm (per ISO 10360)
Base limits complex parts requiring >300mm diameter
Automation LevelHigh-volume production linesIndustry Standard: Manual tool change
Our Base: Basic automatic tool change (ISO 6983)
Our Advanced: Full ATC with 12 stations (ISO 9283)
▲ Advanced reduces downtime by 50%
Tool change time: 3 seconds (vs. 8 seconds for Base)
Base lacks collision detection; Advanced needs dedicated maintenance
Safety FeaturesIndustrial environments with multiple operatorsIndustry Standard: Basic guards
Our Base: Interlocked guards + E-stop (ISO 13849)
Our Advanced: Dual-layer safety sensors + emergency brake
▲ Advanced prevents 90% of accidental collisions (per OSHA standards)
Complies with EU Machinery Directive 2006/42/EC
Base lacks real-time monitoring; Advanced adds cost to entry-level setups

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