Modern Australian
Men's Weekly

.

PolyU researchers pioneer novel multi-energy field-assisted diamond cutting technology, enabling ultra-precision manufacturing for high-performance materials

HONG KONG SAR - Media OutReach Newswire - 30 March 2026 - Machining, involving the precise cutting and shaping of materials, is a key manufacturing process. As industries increasingly adopt the use of high-performance materials with high strength and hardness, traditional machining methods often fall short in delivering the required precision.

A research team at The Hong Kong Polytechnic University (PolyU) has developed a ground-breaking machining technology that combines laser and magnetic fields during diamond cutting, enhancing cutting smoothness and surface quality while reducing a material's subsurface damage and tool wear. This dual-field approach demonstrates exceptional manufacturing capabilities that surpass existing field-assisting cutting techniques, making possible ultra-precision machining of a range of challenging advanced materials.

Prof. Sandy To Suet, Professor of the PolyU Department of Industrial and Systems Engineering and Associate Director of the State Key Laboratory of Ultra-precision Machining Technology, and her research team, have developed an innovative and unique multi-energy field-assisted ultra-precision machining technology that enhances cutting smoothness and surface quality, while also reducing a material’s subsurface damage and tool wear, demonstrating exceptional manufacturing capabilities that surpass existing field-assisting cutting techniques.
Prof. Sandy To Suet, Professor of the PolyU Department of Industrial and Systems Engineering and Associate Director of the State Key Laboratory of Ultra-precision Machining Technology, and her research team, have developed an innovative and unique multi-energy field-assisted ultra-precision machining technology that enhances cutting smoothness and surface quality, while also reducing a material’s subsurface damage and tool wear, demonstrating exceptional manufacturing capabilities that surpass existing field-assisting cutting techniques.

The innovative and unique multi-energy field-assisted ultra-precision machining technology, known as in-situ laser-magnetic dual-field assisted diamond cutting (LMDFDC), has been developed by Prof. Sandy TO Suet, Professor of the PolyU Department of Industrial and Systems Engineering and Associate Director of the State Key Laboratory of Ultra-precision Machining Technology, and her research team. Relevant research findings are published in International Journal of Extreme Manufacturing.

Site field machining refers to the application of external energy fields, such as laser and magnetic fields, at the cutting site during the machining process. Existing field-assisting cutting techniques have certain limitations. For example, a laser field helps soften hard-brittle materials and makes them easier to cut, but often causes melting or craters due to overheating; a magnetic field can diminish cutting force and enhance heat dissipation to ease cutting process, but its effect is unstable across different materials and surface scratches caused by the exfoliation of hard particles in high-performance materials like high-entropy alloys (HEAs) cannot be avoided.

By combining laser and magnetic fields, LMDFDC synergises strengths of both fields and mitigates their respective drawbacks. The researchers compared this new approach with three other machining methods for HEA workpieces: laser-only, magnetic-only and cutting without any external field. Using a suite of advanced tools, they observed changes of the workpiece at multiple levels—from surface appearance to subsurface features and atomic-scale structures.

Results showed that, through thermo-magneto-mechanical multi-physical synergistic interactions, LMDFDC improves machinability to a degree not achievable with either field alone. In particular, the technology produces finished pieces with smoother surface and less damaged subsurface by using a magnetic field to enhance heat transfer and suppress laser-induced thermal damage, while the laser softens hard particles to avoid scratches and improve cutting stability. The dual-field coupling effect also prevents the formation of build-up on tool edges caused by severe friction, and rapid tool degradation from heat, significantly reducing tool wear and extending their lifespan.

In 2017, at the forefront of advanced manufacturing technology research, Prof. To led her team to propose the world's first magnetic field-assisted diamond cutting technique that enhances manufacturability of difficult-to-machine materials. She said, "As time progresses, single-field assisted machining technologies are proving increasingly inadequate for the precision manufacturing of new high-performance materials, especially the emerging HEAs with their excellent strength and stability that are highly desirable for advanced engineering applications in high-ends fields like aerospace and energy. LMDFDC marks a technological breakthrough in machining these new materials, opening up new avenues of ultra-precision manufacturing technology."

In addition to introducing a transformative dual-field assisted machining technology, the research also investigated what occurs, what changes and what improves in the materials when dual fields are applied. This deepens scientific understanding of material transformations during field-assisted processes and their underlying mechanisms, bridging a critical knowledge gap for designing future multi-field machining methods for various advanced materials.

"The research is among the first to thoroughly examine how laser and magnetic fields work together during ultra-precision machining, and how this combined action differs from using either field alone," Prof. To added. "The significance of the findings resides in propelling frontier academic developments in multi-physics coupled manufacturing theories while discovering innovative machining approaches.

Currently in the process of patenting the innovative LMDFDC technology, the research team plans to explore additional combinations of energy fields to support the development of more versatile and reliable multi-physics machining approaches.

The research was supported by the National Natural Science Foundation of China's General Program, as well as the General Research Fund of the Research Grants Council and the Mainland-Hong Kong Technology Cooperation Funding Scheme under the Innovation and Technology Fund of the Innovation and Technology Commission of the Hong Kong Special Administrative Region Government.
Hashtag: #PolyU #Machining #UltraPrecisionMachining #DiamondCuttingTechnique #HongKong

The issuer is solely responsible for the content of this announcement.

Stainless Steel Tube: A Complete Specification Guide for Engineers, Project Managers, and Industrial Buyers

Few materials in the industrial and manufacturing world are as universally relied upon — or as frequently misspecified — as stainless steel tube...

How to Choose the Right Barber Shears Scissors for Professional Results

Since a barber is only as good as their tool, choosing the right barber shear scissor must not be taken lightly. Most barbers end up buying the first ...

Why Commercial Construction Companies Play A Critical Role In Modern Urban Development

Urban development requires highly organised planning, engineering expertise, and professional construction teams capable of delivering complex build...

Essential Features for Comfortable Family Caravan Trips

Choosing the right van for family travel requires careful consideration of how the space will be used on a daily basis. Families have specific needs...

Chatswood Tutor: Helping Students Achieve Academic Success With Personalised Learning

Education plays a crucial role in shaping a student’s future, and many students benefit from additional academic support outside the classroom. A pr...

How External Consulting Can Guide Enterprise IT Strategy and Procurement

Internal IT teams carry deep operational knowledge, but that familiarity can create blind spots in strategic decisions. An external IT consultant br...

Why Sports Nutrition Australia Is Important for Performance and Recovery

Athletes and fitness enthusiasts place significant demands on their bodies during training and competition. Maintaining energy levels, supporting mu...

How Body Contouring Bundoora Helps Improve Shape And Confidence

Modern aesthetic treatments have made it possible to refine body shape without the need for invasive surgery. One of the most popular non-surgical o...

Why Plantation Shutters Are a Stylish and Practical Choice for Modern Homes

Window coverings play a major role in the comfort, privacy, and overall design of a home. Homeowners often look for solutions that provide both visu...

Why a Retractable Hose Reel Is Essential for Efficient Water Management

Managing hoses efficiently is important for both residential and commercial environments. Whether watering gardens, cleaning outdoor areas, or maint...

Best Ways to Trade In Your Old Tech for Cash in Australia

Upgrading your mobile is exciting, but many Australians are left wondering what to do with the device they no longer use. Instead of leaving it in a...

Why Doctors in Bundoora Play an Important Role in Community Health

Access to quality healthcare is essential for maintaining a healthy lifestyle and managing medical conditions effectively. Visiting experienced doctor...

Backyard Aesthetics Decoded: Mediterranean, Coastal, Retro, Rustic, and Beyond

Backyard design has come a long way from a patch of lawn, a barbecue in the corner, and a few chairs chosen purely for practicality. Today, outdoor ...

What Stops a Home From Feeling Flat-Pack Generic

There is nothing wrong with convenience. Flat-pack furniture, fast styling decisions, and online checkouts have made it easier than ever to furnish ...

5 Best Dental Clinics in Beecroft, NSW

The best dental clinics in Beecroft, NSW are Beecroft Smiles Dental Surgery, Beecroft Elegant Dental Clinic, McConnell Dental, Dentistry for Life, a...

Executive Recruitment: Finding Leadership Talent That Drives Organisational Success

Hiring the right leadership team can significantly influence the direction and performance of any organisation. Strong executives bring strategic thin...

Understanding the Importance of Abrasive Blasting in Industrial Surface Preparation

Surface preparation is an essential step in many industrial processes. Whether preparing metal structures, removing old coatings, or cleaning equipmen...

Farm Machinery Costs Set to Rise

With steep rises in fuel prices and the need for specialised maintenance, farm machinery costs are set to rise across Australia. The need for transpor...