INDUSTRIAL SPRING (24-27.03.2026)
STOM-TOOL - BLECH & CUTTING - LASER - ROBOTICS - FIX, Welding, Expo-Surface, Fluid Power, Control-Stom, 3D Printing Days
LAZZATI High - Performance Boring-Mills
- Via Rugareto 7, I-20027 RESCALDINA, Italy
- 00390331465200,000390331464151
- lazzati@lazzati.eu
- www.lazzati.eu
Description
LAZZATI machines are not conceived as short-term production assets, but as long-term investments, engineered to deliver stable accuracy, rigidity, and performance over decades of operation. This philosophy has made LAZZATI a trusted technology partner for customers operating in sectors such as energy, oil & gas, aerospace, defense, and heavy equipment manufacturing, where precision must be maintained not only during initial commissioning, but throughout the entire life cycle of the machine.
A key pillar of LAZZATI technology is its deep expertise in hydrostatic systems, developed and refined continuously since 1975. Hydrostatic guideways provide smooth, vibration-damped motion, eliminate stick-slip phenomena, and ensure long-term geometric stability, creating the ideal conditions for high-precision machining of large and complex components. Rather than pursuing rapid or unproven innovation, LAZZATI follows a philosophy of controlled evolution, where each new machine generation builds on proven designs and introduces only fully validated technologies.
All critical manufacturing processes are carried out in-house, from structural components to final assembly, ensuring full control over quality and consistency. Mechanical craftsmanship remains central to LAZZATI’s identity, with manual hand scraping still applied to critical surfaces to guarantee long-term precision retention. This combination of advanced engineering and traditional expertise results in machines that maintain their accuracy under heavy-duty conditions and over extended periods of use.
Each LAZZATI machine is configured in a modular way, allowing it to be tailored precisely to the customer’s production requirements while maintaining a robust and reliable base architecture. Design simplicity is a guiding principle: unnecessary complexity is avoided to reduce potential failure points and increase operational reliability. This approach is complemented by responsive global service, spare parts availability, and technical support designed to protect the customer’s investment over time.
This philosophy is well summarized by a timeless principle attributed to Leonardo da Vinci: “Not who begins, but who perseveres.” It reflects LAZZATI’s commitment to long-term performance, enduring precision, and trusted partnerships built to last.
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LAZZATI-HB-2ML-EVO-4.0.jpgfile size: 1.26 MB
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LAZZATI-HB-150T-EVO-4.0.jpgfile size: 1.14 MB
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LAZZATI-HB-160MM-EVO-4.0.jpgfile size: 3.39 MB
Products
The HB 160MM Evo 4.0 is equipped with a 160 mm diameter boring spindle, with 90 kW power and 4,000 Nm torque, capable of operating at speeds up to 4,000 RPM. Thanks to the DPS-X system with double pinion and backlash recovery and the LAS system for active stabilization of the axes, the machine achieves rigidity values never obtained before, significantly increasing tool life and surface finish quality. The A UA 360 automatic universal head allows positioning on two axes with 1° precision, increasing versatility for complex operations. With large axis travels (4,000 + n° x 1,000 mm in X, 3,000 ÷ 5,000 mm in Y, 1,600 mm in Z, and 1,100 mm in W), the machine is perfect for high-intensity sectors such as earthmoving, naval, and energy industries.
• Boring spindle Ø130/150 mm with a maximum power of 75 kW and torque up to 3,250 Nm.
• Rotation speed up to 4,000 RPM.
• LHS (Lazzati Hydrostatic System) that eliminates wear and guarantees high thermal and structural stability.
• X, Y, Z axis movements of 3,000-4,000 mm, 2,000-2,500 mm, and 1,500-2,000 mm, respectively, with a spindle stroke (W) of 900 mm.
• Rotary table with a load capacity of up to 15 tons.
• Automatic tool changer with options up to 120 positions.
• LAS (Lazzati Active Stabilization) system to reduce vibrations and improve cutting conditions.