Five-shaft four-linkage drilling, milling and tapping machine
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A processing machine, drilling and milling technology, applied in the field of five-axis four-link drilling, milling and tapping processing machines, can solve the problems of high human resource cost, low production efficiency, long logistics time, etc., and achieve low human resource cost and high production efficiency. , The effect of less logistics time
Inactive Publication Date: 2014-11-12
SHANGHAI LONGDAY MACHINERY
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[0003] However, multiple people and multiple machines can only produce a single product in the same period of time, resulting in low production efficiency, long logistics time, long production cycle, unstable quality, and high human resource costs.
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[0012] The present invention will be described in detail below in conjunction with the accompanying drawings.
[0013] Such as figure 1 As shown, a five-axis four-linkage drilling, milling and tapping machine includes a bed base 1, a Y-axis guide rail 2 arranged on the upper end of the bed base 1, and a Y-axis guide rail 2 arranged on the Y-axis guide rail 2 along the Y-axis guide rail 2. The Y-axis slider 3 moving back and forth, the Y-axis driving servo motor, the screw mechanism arranged between the Y-axis driving servo motor and the Y-axis slider 3, the X-axis arranged at the upper end of the Y-axis slider 3 Guide rails, an X-axis table 4 arranged on the X-axis guide rails and moving left and right along the X-axis guide rails, an X-axis drive servo motor, a screw mechanism arranged between the X-axis drive servo motor and the X-axis slider, The clamping device arranged at the upper end of the left half of the X-axis table 4, the turning device arranged at the upper end o...
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Abstract
The invention discloses a five-shaft four-linkage drilling, milling and tapping machine. The five-shaft four-linkage drilling, milling and tapping machine comprises a lath body base, a Y-axial-direction guide rail arranged at the upper end of the lathe body base, a Y-axial-direction sliding block arranged on the Y-axial-direction guide rail, an X-axial-direction guide rail arranged at the upper end of the Y-axial-direction sliding block, an X-axial-direction worktable arranged on the X-axial-direction guide rail, a clamping device arranged at the upper end of the left half part of the X-axial-direction worktable, a rotary device used for driving workpieces to rotate is arranged at the upper end of the right half part of the X-axial-direction worktable, a Z-axial-direction guide rail arranged on the lathe body base, a cutter driving device which is arranged on the Z-axial-direction guide rail and vertically moves along the Z-axial-direction guide rail, an Z-axis driving servo motor, a screw mechanism arranged between the Z-axis driving servo motor and the cutter driving device and a cutter which is arranged at the lower end of the cutter driving device and above the X-axial-direction worktable. Drilling, milling and tapping of the same type of motor accessories can be automatically finished on the same machine.
Description
technical field [0001] The invention relates to a five-axis four-linkage drilling, milling and tapping processing machine, which is used for drilling, milling and tapping processing of motor accessories such as motor housing frame, end cover, foot, junction box seat, junction box cover and wind cover . Background technique [0002] In the prior art, the drilling, milling, and tapping of each product in the motor housing base, end cover, foot, junction box seat, junction box cover, and windshield are usually performed by a number of different The processing machinery is completed, each operator operates a piece of equipment, and multiple machines and multiple people form an assembly line operation mode. [0003] However, multiple people and multiple machines can only produce a single product in the same period of time, resulting in low production efficiency, long logistics time, long production cycle, unstable quality, and high human resource costs. [0004] In the prio...
Claims
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Application Information
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