Analysis on the Processing and Design of Cutting Machine Tool

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At present, Olicon's new gear cutting equipment is a series of machine tools. The moving part consists of a linear moving shaft and a rotating shaft. The movement of this shaft satisfies all the spatial motion forms of cutting spiral bevel gears by various machining methods. In addition, the rigidity of such machine tools is greatly improved, and the spiral cone is designed in the comparison of the high-speed steel wet cutting and the hard alloy dry cutting production cost of the chip and the exhaust of the wire-counting. The processing technology of gears has advanced to a new era of dry machining.

In order to meet the needs of dry cutting, and the machine tool is designed as a patented bed and a chip removal system directly under the cutting zone, the independent chip removal system quickly separates the chips from the machine and discharges them from the machine so that the dry chips cannot be cut. The machine stays in the machine and spreads heat to the inside of the machine, causing loss of machine tool deformation and accuracy. The heat of the dry cut will be absorbed by the chips. This machine suitable for dry machining has achieved a higher level of machining accuracy and processing efficiency for the Olympus spiral bevel gear. A spiral bevel gear with outer diameter is a comparison of the production cost of high-speed steel cutter wet cutting and dry cutting with cemented carbide tools. It is not difficult to see the advanced nature of the new machine tool.

At present, Gleason's most advanced cutting machine tools, such as the Phoenix cutting machine, have changed the original mechanical transmission form, and the complicated geometric relationship adjustment mechanism has also been canceled. The computer and working software can directly perform various actions of the machine. control. The adjustments that have been made to the complex geometric relationship between the machine's drive train and the adjustment position have been effectively and simplistically accomplished by the controller through the new drive system. The machine is produced with great flexibility, and it can meet the processing requirements of various cutting methods.

Since Gleason's circular-tooth spiral bevel gears are easy to grind with grinding wheels, Gleason's new gear grinding machine is currently eye-catching. The new type of computer numerically controlled gear grinding machine, such as the phoenix, has made a leap in the production efficiency of the grinding of the spiral bevel gear by the grinding wheel. This machine adopts a computer numerical control system. The machine eliminates the manual adjustment of the cradle, the knife tilt, the cutter eccentric cutter position and the knife swivel mechanism. A powerful controller simplifies the complicated machine geometry adjustment project. The machine's motion axis satisfies all the forms of motion required to grind a spiral bevel gear.

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