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METALWORKING EQUIPMENT
        AND TOOLS
                                                               Conclusions
                                                                      Having considered the application of modern
                                                               abrasive processing technologies by the example
                                                               of  towing  and  streaming  technologies,  we  can
                                                               conclude that they are highly effective from the
                                                               standpoint  of  reducing  machine  time,  ensuring
                                                               surface quality stability, and ensuring preliminary
                                                               and final processing on one equipment with a high
                                                               degree  of  automation.  The  specified  equipment
                                                               has a wide range of capabilities, which is provided
                                                               by the flexibility of readjustment, usually taking



                               a



        no  more  than  5  - 10  minutes.  Further
        development of processing technologies in
        a free abrasive will include the use of robotic
        systems for the implementation of complex
        spatial movements  in an  abrasive  stream
        in  order  to  process  difficult  and  difficult
        surfaces.








                                                                                       b



                                                   Fig. 13.  Gear before (a) and after (b) machining on the SF 3 PulsFinish.





                                                   A. S. Babaev, Ph.D., associate professor, Tomsk Polytechnic
                                                                                                              University.
                                                         V.P. Chartoryysky, General Director of PROMTECH LLC
                                                                                                     Saint Petersburg.













        References:

        1. Babaev A. S., Chartorysky V. P. Study of microgeometry of the cutting edges of gun drills using a
        MikroCAD microscope // Metal Processing (Technology, Equipment, Tools). 2015. No 2. pp. 309 - 312.
        2. Kirsanov S. V., Babaev A. S. Influence of sharpening conditions for carbide small-diameter drill bits
        on the radius of rounding of cutting edges // Reference. Engineering Journal, 2012. No. 2. pp. 23 - 25.
        3. Kirsanov S. V., Babaev A. S. Features of chip cutting with gun drills of small diameters // Reference.
        Engineering Journal. 2015. No 4. pp. 37 - 39.
        4. GFM, GmbH: Schneidkantenmessung: Bestimmung von K-Factor, Delta r und Kantenradius.
        MAV März. 2006.
        5. Frankowski G. et al. Real-time 3D Shape Measurement with Digital Stripe Projection by Texas
        Instruments Micromiror Devices (DMD). Proc. of SPIE. V. 3958. (2000). pр. 90 - 106.
        6. Rodriguez C. Cutting edge preparation of precision cutting tools by applying micro-abrasive jet
        machining and brushing, Kassel University press GmbH, Kassel. 2009. 205 p.

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