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News

We will exhibit our Mighty-Mild and Drag Finish at Eastec 2025

Date: Tuesday, May 13th to Thursday, May 15th 2025

Venue: Eastern States Exposition West Springfield, MA

Exhibit: Eastec

Booth number: 3038

Register for a complimentary pass here

 

We will be exhibiting the following at the show:

 

Mighty-Mild – Thanks to its dedicated 2-motor configuration, high-gravitational forces of up to 40Gs can be exerted on the work which significantly reduces impingement and prolongs the usage of media due to its milder and more concentrated grinding power within the barrel.

 

Drag Finish – Drag finishing involves dragging parts through a bed of loose abrasive media combined with an abrasive or polishing compound. Ideal for large parts and eliminates impingement.

 

We will also be exhibiting an array of our abrasive media, such as our SMD which is ideal for mirror finishing of hard products such as carbide tools, and precision micro media E Series, which can finish some of the most complex shapes in mass finishing.

 

We look forward to seeing you at our booth.

 

Click here for our exhibitor page>

Click here for our Mighty-Mild video>

Click here for our Mighty-Mild catalog>

Click here for the Drag Finish video>

Click here for the Drag Finish catalog>

Announcement of the opening of the Wixom, Michigan office

We opened the Wixom office in the United States on March 1, 2025.

 

We have installed some of our product line such as MMC1-4, MMC5-4, CF3-6, TVF-01, TVF-001, and ECX40, and have prepared a test environment. If you would like to test, please feel free to contact us. Click here for access and inquiries.

 

Location: 28317 Beck Road Suite E-14 Wixom, Ml 48393

Tel: 090-7698-8473

We will exhibit our TVF🄬 (Taylor Vortex Flow Nanoreactor) and ECX-Ps at Interphex NY

Date: Tuesday, April 1st to Thursday, April 3rd, 2025

Venue: Jacob Javits Convention Center, 429 11th Ave, New York, NY 10001 USA

Booth number: 3521

For complimentary admission, please register here

 

・TVF🄬 (Taylor vortex flow nanoreactor) is a continuous crystallization/reaction device that uses Taylor vortices. It has good extrudability and a uniform velocity gradient, resulting in a sharp particle size distribution. We have a rich track record of delivering products in the crystallization process of drug substances and the manufacturing process of capsule particles.

 

・ECX-Ps doubles productivity, reduces material loss, and achieves consistent granulation and coating through its unique multi-spin structure and powerful vortex flow using brilliant discs.

 

We look forward to seeing you at our booth.

 

Click here for our exhibitor page >

Click here for the TVF🄬 video >

Click here for the TVF🄬 product catalog >

Click here for our ECX-Ps video

Click here for our ECX-Ps catalog

Received the Nagoya City Industrial Research Institute Director Award!

TVF🄬 (Taylor Vortex Flow Nanoreactor) won the “Nagoya City Industrial Research Institute Director’s Award” at the Nagoya City Industrial Technology Grand Prix (Nagoya Industries Promotion Corporation).

The award ceremony will be held at the Institute on February 14th.

The award details are published in the Chubu Keizai Shimbun on January 30th.

Click here for the video of TVF🄬>

Click here for the list of award-winning companies>

An article about Taylor vortex current was published in “Chemical Engineering”

An article by Osaka Municipal University lecturer Masuda Hayato, entitled “Learning from the past: Taylor vortex flow,” was published in the December 2024 issue of Chemical Engineering.

 

Lecturer Masuda is an advisor to the Go-Tech program, which supports advanced research and development through industry-academia collaboration by the Ministry of Economy, Trade and Industry, and Tipton has been selected for this year’s program on the topic of “Research and development of continuous crystallization mass production technology using Taylor vortex nanoreactors.”

 

The article describes the journey from the discovery of Taylor vortexes about 100 years ago to applied research in chemical processes, including continuous reactive crystallization.

 

For the full article, click here for more details.