CNC MACHINE TOOLS

In the machine tool industry, precision machining and stable operation are crucial. However, heavy-duty operations generate substantial heat, which, without proper cooling, can reduce machining accuracy, accelerate component wear, and impact both productivity and equipment lifespan. Our high-performance cooling systems offer efficient temperature control solutions, ensuring stable operation under high precision and high efficiency, while embracing eco-friendly refrigerants and energy-saving inverter designs to enhance energy efficiency and reduce carbon footprints.

Spindle

The spindle is the core power source of the machine tool, driving cutting tools for high-precision machining. However, high-speed rotation generates significant heat, leading to thermal expansion that can affect machining accuracy and workpiece quality.
Our cooling system provides precise temperature control tailored for spindles, effectively reducing spindle operating temperatures to ensure machining accuracy and stability. Additionally, the inverter-based cooling system adjusts cooling capacity based on spindle load variations, achieving energy savings while using eco-friendly refrigerants to minimize environmental impact.

Cooling System Features:

  • A. Precise Temperature Control: Maintains ±0.5°C stability, ensuring accuracy during high-speed operations.
  • B. Efficient Heat Dissipation: Rapidly removes heat generated during operation, extending spindle lifespan.
  • C. Continuous Operation: Designed for long-term, high-load usage, preventing downtime due to overheating.

Recommended Series:


Gearbox

The gearbox transmits power and withstands significant torque and friction, generating considerable heat during prolonged operations. Without effective cooling, lubricating oils can degrade, and gears may wear out, impacting transmission efficiency and reducing equipment lifespan.
Our cooling system offers efficient heat dissipation and stable cooling for gearboxes, ensuring optimal performance during continuous operation. Smart temperature control adjusts cooling capacity based on gearbox load, enhancing energy efficiency.

Cooling System Features:

  • A. Oil Temperature Control: Maintains lubricant temperature, reducing wear and energy consumption.
  • B. High Stability: Prevents thermal expansion of gears, ensuring smooth operation.
  • C. Environmental Adaptability: Operates reliably under high-temperature and high-pressure conditions.

Recommended Series:


Electric Control Box

The electric control box contains critical components such as drives, inverters, and servo control systems, which are highly sensitive to temperature. Excessive heat can lead to component failure, affecting system stability and safety.
The KAC Series cooling system is specifically designed for electric control boxes, providing precise temperature control and efficient heat dissipation, ensuring optimal operating temperatures for electronic components, reducing failure rates, and extending equipment lifespan. The system also features energy-saving inverter technology that adjusts cooling capacity based on load, further reducing energy consumption while utilizing eco-friendly refrigerants.

Cooling System Features:

  • A. High-Efficiency Cooling: Maintains stable low temperatures to prevent component damage.
  • B. Energy-Saving Design: Intelligent temperature control system effectively reduces power consumption.

Recommended Series:


Ballscrew

The ballscrew converts rotational motion into linear motion and is widely used in precision machinery. Prolonged operation generates frictional heat, leading to thermal expansion and clearance changes that can affect machining accuracy.
Our cooling system ensures stable temperature control for ballscrews, reducing thermal deformation and maintaining consistent machining precision and equipment stability.

Cooling System Features:

  • A. Precise Temperature Control: Maintains optimal temperature differentials to prevent thermal expansion.
  • B. Extended Lifespan: Reduces wear caused by high temperatures, prolonging ballscrew service life.
  • C. Quiet Operation: Ensures a stable cooling environment, minimizing equipment noise.

Recommended Series:


Cutting Machine

During high-speed metal cutting, substantial heat is generated at the tool-workpiece interface. Without timely cooling, tool wear accelerates, compromising machining accuracy and efficiency.
Our cooling system for cutting machines offers high-efficiency water-cooling technology to rapidly dissipate heat during cutting, extending tool life and minimizing thermal stress on workpieces. Inverter-based control optimizes cooling capacity based on cutting loads, achieving maximum energy savings.

Cooling System Features:

  • A. Rapid Heat Dissipation: Quickly cools workpieces to prevent thermal deformation and improve cutting accuracy.
  • B. Liquid Cooling Support: Compatible with cutting fluid temperature control for stable machining.
  • C. Multiple Modes: Adjustable cooling settings based on machining requirements.

Recommended Series:


Lathe

Lathes are essential for metal cutting operations, but they generate significant heat during machining, which can affect precision and stability. Prolonged operation can lead to thermal deformation of components, compromising machining accuracy.
Our cooling system for lathes offers stable temperature control, ensuring high precision even during extended operations. Featuring eco-friendly refrigerants and energy-saving inverter controls, the system reduces power consumption and supports sustainable manufacturing.

Cooling System Features:

  • A. Uniform Cooling: Effective heat management prevents component stress caused by overheating.
  • B. Energy Efficiency: Optimized cooling system reduces operating costs.
  • C. High Durability: Designed for heavy-duty, long-duration lathe operations.

Recommended Series:


Grinder

Grinders require precise temperature control as thermal expansion can directly affect surface finish and machining accuracy.
Our high-efficiency water-cooling system maintains stable temperatures during grinding, preventing thermal distortions that impact precision. Inverter technology adjusts cooling based on grinding loads, optimizing energy use. Eco-friendly refrigerants further support green manufacturing initiatives.

Recommended Series:


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