Best Magnetorheological Finishing Machine
Release Time:
2025-04-21
Source:
|
name |
parameter |
|
Processing Capabilities (Maximum workpiece size) |
Maximum size 1000mm×600mm |
|
Machinable surface |
Plane, spherical, aspherical, etc. |
|
Processable materials |
Microcrystalline, K9, fused quartz, Si, CVD, SiC, nickel-phosphorus layer, etc. |
|
Machinable accuracy |
|
|
X-axis travel |
1050mm |
|
Y-axis travel |
700mm |
|
Z-axis travel |
350mm |
|
A-axis travel |
±45° |
|
B-axis travel |
±35° |
|
C-axis travel |
n×360° |
|
Fixture |
/ |
|
Protection function |
It has fault alarm protection for unexpected power failure, water failure, gas failure, motion system failure protection, etc. |
|
Smart Features |
It has advanced functions such as appointment timing, processing protection, remote assistance, and logs. |
|
Dimensions |
2.7m×1.8m×2.3m |
|
Machine weight |
10 tons |
|
Power consumption |
15 KW |

The Magnetorheological Finishing Machine is an advanced precision polishing system engineered for high-accuracy surface finishing of optical components. Utilizing the unique properties of magnetorheological fluids, the Magnetorheological Finishing Machine enables deterministic, sub-micron surface correction with minimal subsurface damage. This cutting-edge technology is ideal for polishing glass, ceramics, and other hard-to-process materials, offering superior results compared to traditional polishing methods.
By applying a magnetic field to the magnetorheological fluid, the polishing medium changes viscosity in real-time, allowing for precise material removal that adapts to the surface profile. The Magnetorheological Finishing Machine provides exceptional control and consistency, making it the preferred solution for fabricating complex optics with tight tolerances. Whether used for plano, spherical, or aspheric surfaces, the Magnetorheological Finishing Machine delivers outstanding form accuracy and surface quality.
One of the key advantages of the Magnetorheological Finishing Machine is its non-contact, stress-free polishing process, which greatly reduces the risk of surface distortion or defects. This makes it especially suitable for high-value optics used in aerospace, defense, medical imaging, and scientific research. The machine’s integrated software allows for customizable polishing routines and real-time process monitoring, ensuring repeatable, high-quality finishes across production batches.
The Magnetorheological Finishing Machine significantly reduces polishing time while improving yield and reliability. Its adaptability to various optical geometries and materials makes it a versatile tool in any advanced manufacturing environment. With a proven track record in delivering nanometer-level surface finishes, the Magnetorheological Finishing Machine represents a critical advancement in the field of ultra-precision surface processing. Investing in this technology means enhanced product performance, reduced manufacturing costs, and a competitive edge in high-precision optics fabrication.
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Magnetorheological Finishing Machine
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