{"id":3872,"date":"2019-11-12T06:28:57","date_gmt":"2019-11-12T06:28:57","guid":{"rendered":"https:\/\/www.mcctcarbide.com\/?p=3872"},"modified":"2020-05-06T02:52:12","modified_gmt":"2020-05-06T02:52:12","slug":"technical-analysis-of-micro-milling-on-carbide-material-by-pcd-cutters","status":"publish","type":"post","link":"https:\/\/www.meetyoucarbide.com\/it\/technical-analysis-of-micro-milling-on-carbide-material-by-pcd-cutters\/","title":{"rendered":"Analisi tecnica di microfresatura su materiale in metallo duro mediante frese PCD"},"content":{"rendered":"
\n
Cemented carbide has the edge of high hardness, good wear resistance, corrosion resistance and a small coefficient of thermal expansion. It is widely used in the manufacture of precision molds such as optical glass forming, metal drawing, and wear-resistant and corrosion-resistant parts. Cemented carbide mold not only has a long service life, more than ten times or even hundreds of times that of steel mold, but also has a very high surface quality of products. The glass lens and other parts of injection molding can meet the requirements of optical surface quality.<\/p>\n\n\n\n
Cemented carbide is typically hard to machine material due to its poor machinability. Grinding and EDM are two of the most commonly used machining methods of cemented carbide die. With the appearance of CBN, diamond and other superhard tools, it is possible to directly cut cemented carbide, which attracts more and more attention. Foreign scholars have carried out more research. B. bulla et al. Analyzed the influence of machining parameters on the surface profile of cemented carbide in diamond turning. After obtaining the optimal machining parameters, further studied the influence of tool geometry on the surface roughness and tool wear. N. Suzuki et al. Carried out diamond ultrasonic elliptical vibration turning experiments on cemented carbide. It was found that the surface quality of ultrasonic elliptical vibration turning is better than that of ordinary turning, and the tool wear is smaller. Through the experiments, the hard alloy dies such as micro prism and spherical lens with optical surface quality were also machined.<\/p>\n\n\n\n
\u00c8 un segno importante misurare il livello di produzione dello stampo nazionale per produrre uno stampo in carburo cementato preciso, complesso e di lunga durata. La tecnologia di microfresatura presenta i vantaggi di un'elevata efficienza di lavorazione, un'ampia gamma di materiali di lavorazione, lavorazione di forme complesse tridimensionali, elevata qualit\u00e0 della superficie e cos\u00ec via. \u00c8 molto adatto per la lavorazione di microstampi e microparti di metallo duro e ha un'ampia prospettiva di applicazione. In questo articolo gli utensili rivestiti diamantati vengono utilizzati per la micro-fresatura del metallo duro. Vengono analizzate la forza di taglio, la qualit\u00e0 della superficie e l'usura dell'utensile.<\/p>\n\n\n\n
Test equipment and experiment schedule of PDC micro milling<\/strong><\/h2>\n\n\n\n
The self-built high-precision micro milling machine tool (see Figure 1) is used. The machine tool is specially designed for micro milling of small and micro parts. It is composed of marble bed, feed mechanism, high-speed air flotation spindle, motion control system based on PMAC, etc. Due to the small diameter of micro milling cutter, it is not easy to achieve an accurate tool setting. The machine tool is equipped with a microscope tool setting system, which can also be used to monitor the micro-milling process online.<\/p>\n\n\n\n