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Multi-axis numerical control milling equipment with automation detection and machining technology of multi-axis numerical control milling equipment

A CNC milling and automatic detection technology, applied in milling machine equipment, measuring/indicating equipment, metal processing equipment, etc., can solve the problems of low work efficiency, large error, low detection accuracy, etc., and achieve the effect of improving machining accuracy and ensuring cleanliness

Inactive Publication Date: 2018-10-16
王佳颖
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the prior art, the detection of frame products is generally carried out in special testing equipment or inspection fixtures, that is, the frame is taken out after processing, and then re-clamped into the inspection fixture to estimate the error by measuring equipment or visual inspection. value, followed by secondary processing. On the one hand, this detection method requires multiple clamping and multiple reprocessing, and the work efficiency is low. On the other hand, this traditional detection method often uses visual inspection and simple measuring tools. , leading to large errors, low detection accuracy, and reduced processing quality of the final product

Method used

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  • Multi-axis numerical control milling equipment with automation detection and machining technology of multi-axis numerical control milling equipment
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Embodiment Construction

[0018] The present invention will be further described in detail below with reference to the embodiments of the accompanying drawings.

[0019] As shown in the drawings, this embodiment is a multi-axis CNC milling equipment with automatic detection, including a frame 1, in which a worktable is formed, the worktable is inclined, and the height of its rear part is It is higher than the front, that is, the height of the worktable is gradually reduced from the rear to the front. The frame is equipped with a chip removal track 2 at the front of the worktable. A flow belt is set in the chip removal track, and the flow belt is conveyed by a group Composed of a pulley and a belt, the belt is wrapped outside the transmission wheel. When the transmission wheel keeps rotating, it can drive the belt to circulate and slide around the transmission wheel, so that the workpiece supported on the belt can be transmitted. During work, the iron filings generated by milling can slide down the incl...

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Abstract

The invention discloses multi-axis numerical control milling equipment with automation detection. The multi-axis numerical control milling equipment comprises a rack. A worktable top is formed in therack. Two base clamps are placed on the worktable top. The worktable top is further provided with two multi-axis milling mechanisms, wherein the two multi-axis milling mechanisms are located on the two sides of a workpiece correspondingly. Each multi-axis milling mechanism comprises a horizontal rotation table borne on the workbench top, wherein the horizontal rotation table is controlled by a rotation motor arranged in the rack to rotate, a cross-shaped sliding rail is laid on the horizontal rotation table and is internally in sliding connection with a vertical rotation table, a power head and a servo motor are fixed to the vertical rotation table, and the machining angle of the power head is adjusted through the servo motor. The power heads are provided with milling cutters and laser sensors, the laser sensors are right opposite to the two ends of the workpiece, and when the power heads rotate by the angle, the angle of the laser sensors can be adjusted along with the power heads.

Description

technical field [0001] The invention relates to a multi-axis numerical control milling equipment with automatic detection. By setting horizontal and vertical rotary tables and cross slide rails in the equipment, the power head can move four axes relative to the workpiece to be processed, and can be used during the processing process. Adjust the lateral and radial positions as well as the inclination and toe angles for milling. Background technique [0002] In the prior art, the detection of frame products is generally carried out in special testing equipment or inspection fixtures, that is, the frame is taken out after processing, and then re-clamped into the inspection fixture to estimate the error by measuring equipment or visual inspection. value, followed by secondary processing. On the one hand, this detection method requires multiple clamping and multiple reprocessing, and the work efficiency is low. On the other hand, this traditional detection method often uses visua...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B23C1/12B23C1/04B23Q11/00B23Q17/24
CPCB23C1/12B23C1/045B23Q11/0053B23Q17/2414
Inventor 王佳颖
Owner 王佳颖