{"id":20693,"date":"2021-08-11T09:24:20","date_gmt":"2021-08-11T09:24:20","guid":{"rendered":"https:\/\/www.meetyoucarbide.com\/?p=20693"},"modified":"2021-08-11T09:24:20","modified_gmt":"2021-08-11T09:24:20","slug":"how-to-correctly-select-the-tool-coating-and-improve-the-tool-life","status":"publish","type":"post","link":"https:\/\/www.meetyoucarbide.com\/de\/how-to-correctly-select-the-tool-coating-and-improve-the-tool-life\/","title":{"rendered":"Wie w\u00e4hle ich die Werkzeugbeschichtung richtig aus und verbessere die Standzeit?"},"content":{"rendered":"
Dieses Papier ist ein langer Artikel \u00fcber Werkzeugbeschichtung, der vier Fragen beantwortet: Was ist die Werkzeugoberfl\u00e4chenbeschichtungstechnologie, was sind die \u00fcblicherweise verwendeten Beschichtungen, was sind die Eigenschaften der Beschichtungen und die Anwendungsgebiete der Beschichtungen. Diejenigen, die sich auf die Zerspanung spezialisiert haben, schauen weiterhin in die Vergangenheit.<\/p>\n\n\n\n
Tool surface coating technology is a surface modification technology developed according to the market demand. Since its emergence in the 1960s, this technology has been widely used in the manufacturing industry of metal cutting tools. Especially after the emergence of high-speed cutting technology, coating technology has been developed and applied rapidly, and has become one of the key technologies of high-speed cutting tool manufacturing. This technology forms a certain film on the tool surface by chemical or physical methods, so that the cutting tool can obtain excellent comprehensive cutting performance, so as to meet the requirements of high-speed cutting.<\/p>\n\n\n\n
To sum up, the surface coating technology of cutting tools has the following characteristics:<\/p>\n\n\n\n
1. The coating technology can greatly improve the tool surface hardness without reducing the tool strength. At present, the hardness can be close to 100GPa;<\/p>\n\n\n\n
2. With the rapid development of coating technology, the chemical stability and high-temperature oxidation resistance of the film are more prominent, which makes high-speed machining possible;<\/p>\n\n\n\n
3. The lubricating film has good solid lubrication performance, which can effectively improve the machining quality, and is also suitable for dry cutting;<\/p>\n\n\n\n
4. As the final process of tool manufacturing, coating technology has little impact on tool accuracy, and can carry out repeated coating process.<\/p>\n\n\n\n
Benefits of coated cutting tools: it can greatly improve the service life of cutting tools; Effectively improve cutting efficiency; Obviously improve the surface quality of the machined workpiece; Effectively reduce the consumption of tool materials and reduce the processing cost; Reduce the use of coolant, reduce the cost and be conducive to environmental protection.<\/p>\n\n\n\n
Correct surface treatment of small circular tools can improve tool life, reduce machining cycle time and improve machining surface quality. However, choosing the correct tool coating according to the machining needs may be a confusing and laborious work. Each coating has both advantages and disadvantages in cutting. If an inappropriate coating is selected, the tool life may be lower than that of uncoated tools, and sometimes even lead to more problems than before coating.<\/p>\n\n\n\n
At present, there are many kinds of tool coatings to choose from, including PVD coating, CVD coating and composite coating alternately coated with PVD and CVD, which can be easily obtained from tool manufacturers or coating suppliers. This paper will introduce some common properties of tool coatings and some common PVD and CVD coating options. Each characteristic of the coating plays a very important role in determining which coating is most beneficial for machining.<\/p>\n\n\n\n