CMI - 3d printing & aerospace

3D PRINTING FOR INDUSTRY, MEDICINE AND AVIATION

C.M.I. IS AN ISO 9001-2015 CERTIFIED COMPANY, APPROVED BY THE IQC.
C.M.I INTRODUCED THE FIRST METAL 3D PRINTER TO IAI

3D PRINTING

3d printing

Our Company Brings A Powerful, Innovative And Optimal Approach To The Production Of 3D Printing Of Metal Items. We Provide Systems For Metal And Polymer Printing Applications.

CMI Is A Service Center For:

NDT PCRT

Non-Destructive Testing Is The Answer For 3D Printed Metal Parts.

CMI Is The Official Representative Of Vibrant In Israel.

Process Compensated Resonance Testing (PCRT) Is An Economically Suitable Replacement For Destructive Testing And Increases Safety And Financial Savings In Production By Detecting Process Deviations And Structural Defects That Cannot Be Detected By Other Testing Methods.

Our PCRT Technology Is Not Limited To The Detection Of Specific Anomalies Against Defined Performance Specifications Or Allowable Standard Intervals But Goes One Step Further. Taking The Guesswork Out Of Identifying Potential Failures, We Examine Each Item While Identifying Anomalies – Even Those You Could Not Have Known Existed.

3D printing for medical devices

The CMI Company Specializes In Printing Delicate Medical Devices With An Accuracy Of 100 Microns.
3D Printing For Medical Devices Allows:

Custom Equipment
Improving The Performance Of The Medical Equipment
Flexible Design And Maximum Accuracy

Specific And Precise Design In Special Shapes According To Demand.
Cost Reduction For Advanced Versions Of Surgeon Tools

Applications In The World Of Medicine:
General Dentistry, Orthodontics, Orthopedics, Cardiovascular, Audiology, Minimally Invasive Surgery, Ophthalmology And More.

MELD technology

The MELD technology is a groundbreaking solid-state process for metal with a wide range of applications, including additive manufacturing, coating, repairing, joining, adding features, and creating metal matrix composites (MMCs) and custom metals. MELD is a no-melt, open-atmosphere process that promises to revolutionize the manufacturing industry. This method can achieve fully dense parts with isotropic strength properties in a variety of materials and applications

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