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Processing method for thin-wall barrels

A processing method and technology of thin-walled cylinders, which are applied in the field of mechanical processing and manufacturing, can solve the problems of single processing methods, poor consistency, and low precision, and achieve the effects of simple and convenient operation, reduced production costs, and high precision

Active Publication Date: 2016-06-22
贵州凯星液力传动机械有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In order to solve the above technical problems, the present invention aims to provide a processing method for thin-walled cylindrical parts, so as to solve the problems of many processes, poor consistency, low precision and single processing methods in the traditional thin-walled cylindrical parts.

Method used

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  • Processing method for thin-wall barrels
  • Processing method for thin-wall barrels
  • Processing method for thin-wall barrels

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] Lofting: draw a line on the sheet for processing according to the unfolded diagram of the workpiece, and leave a cutting margin of 1.5mm on the left and right A sides after the scribing; blanking: cut the left and right A sides of the plate on the shearing machine , leave a milling allowance of 0.8mm; cutting circle: cut the upper and lower arcs of the plate according to the workpiece expansion diagram on the circular shearing machine; milling process: milling and cutting the margin of the A surface on both sides of the plate; circle circle: Circle the plate and correct it to ensure that the two A surfaces are aligned; Welding: Weld the circle plate through the two overlapping A surfaces so that the weld is completely penetrated and the weld is higher than the base metal on the inner and outer surfaces; Grinding Weld seam: Grind the weld seam with a grinding wheel, so that the height difference between the weld seam and the base metal is 0.1 mm, and after the grinding is...

Embodiment 2

[0039]Embodiment 2: Lofting: draw a line on the sheet for processing according to the unfolded diagram of the workpiece, and leave a blanking shear allowance of 1 mm on the left and right A sides after the scribing; blanking: cut the left and right sides of the sheet on the shearing machine A side, leaving 0.5mm milling allowance; cutting circle: cut the upper and lower arcs of the plate according to the workpiece expansion diagram on the circular shearing machine; milling: milling and cutting the margin of the A surface on both sides of the plate; Circle circle: Circle and correct the plate to ensure that the two A surfaces are aligned; Welding: Weld the circle plate through the two A surfaces that overlap each other, so that the weld is completely penetrated, and the weld is higher than the inner and outer surface matrix Metal; Grinding the weld seam: Grinding the weld seam with a grinding wheel, so that the height difference between the weld seam and the base metal is 0.09mm...

Embodiment 3

[0040] Example 3: Lofting: draw a line on the sheet for processing according to the unfolded diagram of the workpiece, and leave a 1.2mm blanking shear allowance on the left and right A sides after the scribing; blanking: cut the left and right sides of the sheet on the shearing machine For two A surfaces, leave a milling allowance of 0.6mm; round cutting: cut the upper and lower arcs of the plate on the circular shearing machine according to the workpiece development diagram; milling: milling and cutting the margin of the A surface on both sides of the plate ;Circle circle: Circle and correct the plate to ensure that the two A surfaces are aligned; Welding: Weld the circle plate through the two A surfaces that overlap each other, so that the weld is completely penetrated, and the weld is higher than the inner and outer surfaces Base metal; Grinding the weld seam: Grinding the weld seam with a grinding wheel, so that the height difference between the weld seam and the base meta...

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Abstract

The invention discloses a processing method for thin-wall barrels. The method comprises the steps such as setting-out, blanking, circle-shearing, milling processing, wrapping, welding, welding seam grinding, stretching and forming, explosive forming and the like. The processing method is simple and convenient to operate, a plurality of thermal-treatment tempering processes are not needed, processing steps are simplified, and time consumption is reduced, so that the processing efficiency is improved; the processed thin-wall barrels are high in dimension consistency and are high in precision, so that the production cost can be reduced; besides, the processing method further has relatively wide applicability, and can be used for processing other similar thin-wall barrels.

Description

technical field [0001] The invention relates to the technical field of mechanical processing and manufacturing, in particular to a processing method for a thin-walled cylinder. Background technique [0002] In the field of mechanical processing, for the processing of thin-walled cylindrical parts, the traditional processing methods mainly include the following two methods: one is multiple sets of drawing dies, gradually stretching and forming, and the other is powerful spinning forming. Step by step stretching of multiple sets of drawing dies not only requires a reasonable number of heat treatment and tempering processes between the processes to eliminate tensile stress, but also prevents oxidation from tempering during the heat treatment and tempering process, which is extremely difficult. Moreover, the workpiece has a certain amount of springback after stretching, and it is difficult to control the consistency of the size, resulting in a decrease in the precision of the fi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B23P15/00
CPCB23P15/00
Inventor 李进洪
Owner 贵州凯星液力传动机械有限公司