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Special machine tool for beveling and single v-shaped pipe bevel processing method based on the machine tool

A special-purpose machine tool and groove processing technology, applied in metal processing equipment, milling machine equipment, manufacturing tools, etc., can solve the problems of low processing efficiency, insufficient processing accuracy, high cost, etc., and achieve easy implementation, strong operability, and automation high effect

Active Publication Date: 2019-02-15
SHENYANG POLYTECHNIC UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Purpose of the invention: The invention provides a special machine tool for beveling and a single V-shaped pipe beveling method based on the machine tool. Difficulties and other problems, this method can improve the efficiency and accuracy of groove processing, facilitate the realization of variable (equal) angle groove processing, and improve the processing yield

Method used

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  • Special machine tool for beveling and single v-shaped pipe bevel processing method based on the machine tool
  • Special machine tool for beveling and single v-shaped pipe bevel processing method based on the machine tool
  • Special machine tool for beveling and single v-shaped pipe bevel processing method based on the machine tool

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Embodiment Construction

[0031] The present invention provides a special machine tool for beveling. The machine tool includes a machine base, a worktable 003, a machine tool column 005 and a milling head 008. The machine tool column 005 is arranged on the machine tool base. The milling head 008 is movably connected to the machine tool column 005. The milling head 008 corresponds to the position of workbench 003.

[0032] A chuck 002 is also provided on the workbench 003.

[0033] The machine tool column 005 is a structure that can move forward and backward relative to the worktable 003 on the machine tool base, that is, the structure that moves in the X direction. figure 1 Approach and workbench 003 in the middle X direction (left and right direction in the figure).

[0034] The milling head 008 is a structure that can move up and down relative to the machine tool column 005, that is, Z-axis movement and its own axial rotation, and the worktable 003 is a structure that can rotate on its own axis.

[0035] The...

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Abstract

A special machine tool for beveling and a single V-shaped pipe groove processing method based on the machine tool. The machine tool includes a machine base, a workbench, a machine column and a milling head. The machine column is set on the machine base, and the milling head is connected to the machine column. , the milling head corresponds to the position of the table. The process method of the invention has strong operability, is easy to implement, has a high degree of automation, and has an enlightening effect on related industries.

Description

Technical field [0001] The invention relates to a pipeline processing technological method. The method utilizes a groove special machine tool to complete the processing of a single V-shaped pipe groove through the linkage of a numerical control system and each axis of the machine tool. Background technique [0002] At present, in the petroleum, chemical, electric power and other industries, pipes with different diameters often need to be welded, and the welding quality is closely related to the processing quality of the pipe groove. Among them, the single V groove, especially the variable angle single V The application of type groove is more and more extensive. In the case of higher requirements for welding quality of pipe fittings, traditional manual gas cutting, profiling turning and other methods have problems such as low processing efficiency, insufficient processing accuracy, high cost, and difficulty in processing variable-angle grooves. Therefore, a new design is designed ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23C3/12
CPCB23C3/122
Inventor 孙兴伟朱新华
Owner SHENYANG POLYTECHNIC UNIV