Analýza silového zatížení při obrábění vzorku materiálu M509 vyrobeného konvenční a aditivní technologií
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Vysoká škola báňská – Technická univerzita Ostrava
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Master thesis deals with cutting forces during milling of M509 material. We have samples made of this material using conventional manufacturing and additive manufacturing. In this master thesis, we compare the resulting cutting forces during the machining of these two differently manufactured samples.
The experimental part deals with the milling of two samples, where one is produced conventionally and the other with additive SLM technology, with a combination of minimum and maximum cutting conditions recommended by the manufacturer of replaceable inserts. Based on performed experiment, the necessary components of the cutting force were measured. These cutting force components were then recalculated to the resulting total cutting force F. For easier comparison, the total cutting forces were inserted into graphs comparing the resulting cutting forces on conventionally manufactured samples and on additively manufactured samples. Finally, the graphically represented values were evaluated.
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cutting forces, cutting force components, cutting speed, feed, depth of cut, piezoelectric dynamometer, material M509, conventional manufacturing, additive manifacturing method SLM