Optimize Cutting Fluid Performance Today

Integrated AI Solutions for Fluid Optimization and Engineering Applications

Innovative Fluid Performance Solutions

At Ecocut Labs, we integrate advanced methodologies to optimize cutting fluid performance through data analysis and AI-driven solutions for engineers.

A metal-cutting machine in action, with a saw blade slicing through pipes and coolant fluid being applied to reduce heat and friction. The environment has an industrial and mechanical feel with visible metal shavings and gears.
A metal-cutting machine in action, with a saw blade slicing through pipes and coolant fluid being applied to reduce heat and friction. The environment has an industrial and mechanical feel with visible metal shavings and gears.
A close-up of a CNC milling machine cutting into a metal surface, with visible coolant fluid being applied around the area. The cutting tool is spinning, focusing on a detailed, reflective piece of metal.
A close-up of a CNC milling machine cutting into a metal surface, with visible coolant fluid being applied around the area. The cutting tool is spinning, focusing on a detailed, reflective piece of metal.
A machine is actively engaged in cutting or engraving a metallic surface with precision. The left side of the image shows a control panel with various buttons, one of which is red, and two indicator lights that are illuminated. The metallic surface has visible cut marks and circular shapes, indicating ongoing or completed cutting processes. The cutting tool emits a bright orange light as it makes contact with the metal.
A machine is actively engaged in cutting or engraving a metallic surface with precision. The left side of the image shows a control panel with various buttons, one of which is red, and two indicator lights that are illuminated. The metallic surface has visible cut marks and circular shapes, indicating ongoing or completed cutting processes. The cutting tool emits a bright orange light as it makes contact with the metal.

About Ecocut Labs

Our research combines experimental data, literature mining, and AI to enhance cutting fluid formulations for improved lubrication, cooling, and biodegradability.

Innovative Fluid Solutions

We optimize cutting fluid performance using advanced AI and comprehensive data analysis methodologies.

Data Collection Phase
A close-up view of a metalworking machine, focusing on a drill bit actively cutting or drilling into a piece of metal. Sparks and metal shavings are visible, with a flexible coolant hose in the frame. The lighting is dim with warm tones, emphasizing the metallic surfaces.
A close-up view of a metalworking machine, focusing on a drill bit actively cutting or drilling into a piece of metal. Sparks and metal shavings are visible, with a flexible coolant hose in the frame. The lighting is dim with warm tones, emphasizing the metallic surfaces.

Gathering extensive cutting fluid performance datasets for analysis and optimization.

A close-up view of an industrial cutting machine with a metallic arm and attachments, positioned above a flat surface. The setting appears to be a workshop or manufacturing environment with additional machinery in the background.
A close-up view of an industrial cutting machine with a metallic arm and attachments, positioned above a flat surface. The setting appears to be a workshop or manufacturing environment with additional machinery in the background.
A high-tech laser cutter or CNC machine is in operation, focusing a beam onto a reflective surface. The machine is surrounded by a backdrop of blurred industrial elements, with visible purple and blue lighting highlighting the setup.
A high-tech laser cutter or CNC machine is in operation, focusing a beam onto a reflective surface. The machine is surrounded by a backdrop of blurred industrial elements, with visible purple and blue lighting highlighting the setup.
AI Optimization Model

Building multi-objective AI models to simulate and enhance fluid formulation performance.

Natural Language Interface

Creating user-friendly interfaces for engineers to describe their requirements.

Fluid Optimization

Innovative methodology combining data analysis and language modeling.

A precision laser cutting machine appears in a workspace, with a laser head marked 'Opt Lasers' actively cutting or engraving material. The machine is mounted on a linear rail system, and the surrounding area is dark, highlighting the blue light emitted by the laser.
A precision laser cutting machine appears in a workspace, with a laser head marked 'Opt Lasers' actively cutting or engraving material. The machine is mounted on a linear rail system, and the surrounding area is dark, highlighting the blue light emitted by the laser.
Phase One

Collecting comprehensive cutting fluid performance datasets and context.

A laser cutting machine is in operation, emitting bright sparks as it cuts through a sheet of metal. The machine's head is positioned above the sheet, and intricate patterns are visible on the metallic surface. The scene is well-lit by the intense light of the sparks, highlighting the precision and industrial nature of the process.
A laser cutting machine is in operation, emitting bright sparks as it cuts through a sheet of metal. The machine's head is positioned above the sheet, and intricate patterns are visible on the metallic surface. The scene is well-lit by the intense light of the sparks, highlighting the precision and industrial nature of the process.
Phase Two

Building AI model for multi-objective fluid formulation optimization.

A stream of glossy black liquid pours over a shiny, metallic propeller, set against a dark background. The liquid appears thick and viscous, creating a reflective surface that highlights the curves and edges of the blades.
A stream of glossy black liquid pours over a shiny, metallic propeller, set against a dark background. The liquid appears thick and viscous, creating a reflective surface that highlights the curves and edges of the blades.
A close-up view of an industrial cutting machine in a manufacturing setting. There is a large control panel with numerical buttons, function keys, and a prominent red emergency stop button. The machine is processing a large sheet of material, likely for cutting or engraving. Overhead lighting and a computer monitor are visible in the background.
A close-up view of an industrial cutting machine in a manufacturing setting. There is a large control panel with numerical buttons, function keys, and a prominent red emergency stop button. The machine is processing a large sheet of material, likely for cutting or engraving. Overhead lighting and a computer monitor are visible in the background.
Phase Three

Creating natural language interface for engineers to interact.

Research Results

Presenting findings on lubrication, cooling, and biodegradability.