ANALYTICAL DETERMINATION OF THE TIME OF HANDLING PROCESS OF POLYMERIC PARTS IN A MACHINE WITH A COMPLEX MOVEMENT OF WORKING CONTAINER
DOI:
https://doi.org/10.30857/1813-6796.2019.3.1Keywords:
polishing, working container, free abrasive in the form of granules, polymeric unitsAbstract
An analytical determination of the main technological parameters of polishing small polymer parts with a free abrasive in the form of granules in containers that perform a complex spatial movement, determination of the time of handling process of polymeric details in a machine with a complex movement of working container. Methodology. An analytical research was conducted of the processing of small polymericparts by abrasive in the form of free granules in a machine whose working capacities performs a complex spatial movement to determine rational polishing conditions. Results. On the basis of the conducted analytical research of the processing of small polymer parts in a machine with a complex spatial motion of a working container, mathematical dependencies were obtained that enable to predict the technological result at the design stage. It has been analytically established that in a container with proportional greater geometric parameters processing will take less time. Scientific novelty. The regularities of the influence of the geometric parameters of the working container, which performs the complex spatial motion and the modes of motion of a friable working medium, are determined on the intensity of the process of polishing small polymer parts by
abrasive in the form of free granules. Practical significance. The mathematical dependences are obtained for the calculation of
the processing time and instructions for realization of the corresponding mode of movement of a friable working medium, which provide intensive polishing of small polymer parts with a free abrasive in the form of granules, are obtained in a machine whose working capacities performs a complex spatial movement.
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Published
2019-11-12
Issue
Section
Mechatronic Systems. Energy Efficiency & Resource Saving