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Application of Five-axis Milling-Turning Hybrid Processing Technology in Advanced Equipment

Application of Five-axis Milling-Turning Hybrid Processing Technology in Advanced Equipment

(Summary description)In today’s era of global competition, the competition to reduce costs and increase added value is becoming increasingly fierce. In the machine tool industry, the demand for five-axis milling-turning machine tools that integrate the functions of machining centers and lathes is increasing to cater for complex-shaped workpieces. Requirements for processing, component assembly and process integration. In the fields of optics, semiconductors and medicine, glass or ceramic material products need to be processed with a good surface. In this paper, a laser processing technology is used to propose a method to realize the preparation of precision molds for auto parts and electronic equipment parts. Figure 1 shows the newly designed built-in motor turntable structure. The milling power is not transmitted through gears or conveyor belts, but directly to the tool; this reduces the complexity of assembly. Compared with traditional machine tools, this structure achieves twice the turning capacity and four times the milling capacity.

Application of Five-axis Milling-Turning Hybrid Processing Technology in Advanced Equipment

(Summary description)In today’s era of global competition, the competition to reduce costs and increase added value is becoming increasingly fierce. In the machine tool industry, the demand for five-axis milling-turning machine tools that integrate the functions of machining centers and lathes is increasing to cater for complex-shaped workpieces. Requirements for processing, component assembly and process integration. In the fields of optics, semiconductors and medicine, glass or ceramic material products need to be processed with a good surface. In this paper, a laser processing technology is used to propose a method to realize the preparation of precision molds for auto parts and electronic equipment parts. Figure 1 shows the newly designed built-in motor turntable structure. The milling power is not transmitted through gears or conveyor belts, but directly to the tool; this reduces the complexity of assembly. Compared with traditional machine tools, this structure achieves twice the turning capacity and four times the milling capacity.

Information

In today’s era of global competition, the competition to reduce costs and increase added value is becoming increasingly fierce. In the machine tool industry, the demand for five-axis milling-turning machine tools that integrate the functions of machining centers and lathes is increasing to cater for complex-shaped workpieces. Requirements for processing, component assembly and process integration. In the fields of optics, semiconductors and medicine, glass or ceramic material products need to be processed with a good surface. In this paper, a laser processing technology is used to propose a method to realize the preparation of precision molds for auto parts and electronic equipment parts. Figure 1 shows the newly designed built-in motor turntable structure. The milling power is not transmitted through gears or conveyor belts, but directly to the tool; this reduces the complexity of assembly. Compared with traditional machine tools, this structure achieves twice the turning capacity and four times the milling capacity.

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