{"id":19927,"date":"2020-07-06T01:14:59","date_gmt":"2020-07-06T01:14:59","guid":{"rendered":"https:\/\/www.meetyoucarbide.com\/?p=19927"},"modified":"2020-07-06T01:15:00","modified_gmt":"2020-07-06T01:15:00","slug":"features-of-various-traditional-machining-centres","status":"publish","type":"post","link":"https:\/\/www.meetyoucarbide.com\/tr\/features-of-various-traditional-machining-centres\/","title":{"rendered":"Features of Various Traditional Machining Centres"},"content":{"rendered":"
A good mechanical process engineer must be a good processing equipment application engineer. He has a very accurate and full understanding of the types of processing equipment, processing scope, structural characteristics and processing accuracy of various processing equipment in the mechanical industry, and can also combine with his own In the specific situation of the company’s equipment, make reasonable equipment layout and arrangement for various processing parts and processing procedures, understand their processing advantages and disadvantages, and can make good use of their strengths and avoid weaknesses to coordinate the company’s mechanical processing work. Now, we will make a general analysis and understanding of several processing equipment commonly used in the mechanical processing industry, so that we can have a relatively clear and clear definition of the processing equipment in this industry from the perceptual point of view, and at the same time, we can also theoretically analyze various processing equipment In order to better combine practice in the future work, so as to further guide our work and help our work. Our introduction focuses on the most common machining equipment in the mechanical processing industry, such as turning, milling, planing, grinding, boring, drilling, wire cutting and other processing equipment, and makes a further detailed elaboration on the types, application scope, structural characteristics and processing accuracy of these processing equipment.<\/strong><\/strong><\/p>\n\n\n\n There are many types of lathes. According to the statistics of a machining technologist’s manual, there are 77 kinds of lathes. The typical types are: instrument lathe, single axis automatic lathe, multi axis automatic or semi-automatic lathe, return wheel or turret lathe, crankshaft and camshaft lathe, vertical lathe, falling lathe Among them, there are many kinds of small-sized lathes, such as ground and horizontal lathes, profiling and multi cutter lathes, axle roller spindles and shovel tooth lathes, etc., which are divided into many small types, and the vertical lathes and horizontal lathes are commonly used in our machinery industry, and they can be seen in almost all places where there is machining.<\/strong><\/strong><\/p>\n\n\n\n We mainly choose several typical lathe types to introduce the application range of machining.<\/strong><\/strong><\/p>\n\n\n\n Horizontal lathe is suitable for turning internal and external cylindrical surface, conical surface, forming rotary surface and annular groove, turning cross section and various threads, and can be used for drilling, reaming, reaming, tapping, threading and knurling. Although the ordinary horizontal lathe has a low degree of automation and more auxiliary time in the processing process, because of its wide range of processing and good general performance, this type of machine tool has been widely used and popularized in the mechanical processing industry. It is one of the typical representative processing equipment in our machinery industry, and it is also indispensable to the mechanical processing industry One of the processing equipment.<\/strong><\/strong><\/p>\n\n\n\n Vertical lathe is suitable for machining various kinds of frame and shell parts, as well as internal and external cylindrical surface, conical surface, end face, groove, cutting, drilling, expanding and reaming of various parts. With the aid of additional devices, it can also realize the processing procedures of turning thread, turning end face, copying, milling and grinding.<\/strong><\/strong><\/p>\n\n\n\n The machining accuracy of the usual horizontal lathe is as follows: roundness: 0.015mm; cylindricity: 0.02\/150 mm; flatness: 0.02 \/ \u00d7150 mm; surface roughness: 1.6 RA \/ \u03bc M.<\/strong><\/strong><\/p>\n\n\n\n The machining accuracy of vertical lathe is as follows: roundness: 0.02mm; cylindricity: 0.01mm; flatness: 0.03mm. The above machining accuracy is only a relative reference value, which does not mean that all lathes meet the requirements. Many lathe equipment have certain up and down floating amount according to the specific requirements of the manufacturer and the specific conditions of assembly. However, no matter how large the floating amount is, the machining accuracy value must meet the national standard If the processing accuracy requirements of such equipment do not meet the requirements of national standards when purchasing the equipment, the purchaser has the right to refuse acceptance and payment.<\/strong><\/strong><\/p>\n\n\n\nLathe<\/strong><\/strong><\/h2>\n\n\n\n
Types of lathe<\/strong><\/h3>\n\n\n\n
The applicable range of lathe processing<\/strong><\/h3>\n\n\n\n
Machining accuracy of lathe<\/strong><\/strong><\/h3>\n\n\n\n