Multi-forming method

US10363593B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10363593-B2
Application numberUS-201615156486-A
CountryUS
Kind codeB2
Filing dateMay 17, 2016
Priority dateDec 29, 2015
Publication dateJul 30, 2019
Grant dateJul 30, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A multi-forming method, wherein after a material which is heated to a warm-deformation condition in a mold is deformed to a maximum deformation depth through plastic deformation, and the deformed material which is heated to a super plasticity temperature is blow-formed by blowing gas to a final product shape, a product having a deep forming depth and complicated shape can be produced.

First claim

Opening claim text (preview).

What is claimed is: 1. A multi-forming method, comprising: a first material supply step of loading a sheet having super-plasticity on a lower mold that is disposed on a lower mold die of a warm-forming mold and on a blank holder that is disposed on the lower mold die of the warm-forming mold through a cushion spring corresponding to a circumference of the lower mold of the warm-forming mold; a material warm-heating step of lowering an upper mold of the warm-forming mold operated by a slider at an upper portion of the lower mold of the warm-forming mold to grasp an edge of the sheet together with the blank holder of the warm-forming mold, and heating the sheet to a warm-forming temperature through a heating cartridge disposed in the upper mold of the warm-forming mold, the lower mold of the warm-forming mold, and the blank holder of the warm-forming mold; a warm-forming step of combining the upper mold of the warm-forming mold with the lower mold of the warm-forming mold by operating the slider of the warm-forming mold to plastic-deforms the sheet to a maximum forming depth of a product along a lower mold surface of the lower mold of the warm-forming temperature; a material super-plasticity heating step of unloading the sheet, which is warm-deformed to the maximum forming depth of the product, from the warm-forming mold, and heating the sheet to a super-plasticity temperature in a heating device; a secondary material supply step of loading the sheet heated to the super-plasticity temperature on a lower mold that is disposed on a lower mold die of a blow-forming mold and on a blank holder that is disposed on the lower mold die of the blow-forming mold through a cushion spring corresponding to a circumference of the lower mold of the blow-forming mold; a blow-sealing step of combining an upper mold of the blow-forming mold operated by a slider of the blow-forming mold with the lower mold of the blow-forming mold at a predetermined pressure, the upper mold of the blow-forming mold grasping an edge of the sheet together with the blank holder of the blow-forming mold, and a sealing bead formed along an edge circumference of the lower mold of the blow-forming mold contacting the sheet disposed between the upper mold of the blow-forming mold and the lower mold of the blow-forming mold so as to prevent leakage of the blowing gas used in blow-deforming of the sheet; a blow-forming step of supplying a blowing gas into a gap between the lower mold of the blow-forming mold and the sheet through a gas passage that is formed in the lower mold of the blow-forming mold such that the sheet is deformed to a final shape of the product along an upper mold surface of the upper mold of the blow-forming mold; and a product unloading step of separating the upper mold of the blow-forming mold from the lower mold of the blow-forming mold and unloading the product, after the blow-forming step of the sheet to the final shape of the product in the blow-forming mold. 2. The multi-forming method of claim 1 , wherein the sheet having super-plasticity is an aluminum alloy. 3. The multi-forming method of claim 1 , wherein the gas passage is connected with an outside gas supplier through a gas supply pipe to receive high pressure gas. 4. The multi-forming method of claim 1 , wherein the lower mold surface of the lower mold of the warm-forming mold has an incomplete product shape to deform the sheet only to the maximum forming depth. 5. The multi-forming method of claim 1 , wherein the upper mold surface of the upper mold of the blow-forming mold has the final shape to deform the sheet to the final shape of the product. 6. The multi-forming method of claim 2 , wherein the warm-forming temperature is a value less than an annealing temperature that lowers potential density within a structure of the sheet having super-plasticity, in the material warm-heating step. 7. The multi-forming method of claim 2 , wherein the warm-forming temperature is one value within a range of 200° C. to 250° C., in which a grain size of the aluminum alloy is increased, strength thereof is decreased, and ductility thereof is increased. 8. The multi-forming method of claim 6 , wherein the warm-forming temperature is one value within a range of 200° C. to 250° C., in which a grain size of the aluminum alloy is increased, strength thereof is decreased, and ductility thereof is increased. 9. The multi-forming method of claim 1 , wherein the maximum forming depth of the product is performed by a position movement of the upper mold of the warm-forming mold without pressing of the upper mold of the warm-forming mold, when the upper mold of the warm-forming mold is combined with the lower mold of the warm-forming mold in the warm-forming step. 10. The multi-forming method of claim 1 , wherein the heating device is a high frequency induction heating device or an electricity heating device. 11. The multi-forming method of claim 2 , wherein the super-plasticity temperature is one value within a range of 500° C. to 540° C. that forms super-plasticity of the aluminum alloy. 12. The multi-forming method of claim 1 , wherein the secondary material supply step further comprises a step of pre-heating the blow-forming mold to a predetermined temperature. 13. The multi-forming method of claim 12 , wherein the predetermined temperature is within a range of 350° C. to 500° C. 14. The multi-forming method of claim 1 , wherein the sealing bead of the blow-forming mold comprises: an inner sealing bead that protrudes along an edge circumference of the lower mold and a front end portion thereof contacts the sheet to be forcibly inserted into the sheet; and an outer sealing bead that protrudes along the edge circumference of the lower mold at an outer side of the inner sealing bead and a front end portion thereof contacts the sheet to be forcibly inserted into the sheet. 15. The multi-forming method of claim 14 , wherein a height of the inner and outer sealing beads is within a range of 40% to 60% of the sheet thickness. 16. The multi-forming method of claim 14 , wherein the inner sealing bead is formed along a trim line of the sheet. 17. The multi-forming method of claim 15 , wherein the inner sealing bead is formed along a trim line of the sheet. 18. The multi-forming method of claim 1 , wherein the predetermined pressure is 400 t in the blow-sealing step. 19. The multi-forming method of claim 1 , wherein a pressure of the blowing gas that is supplied between the lower mold and the sheet is 30 bar in the blow-forming step.

Assignees

Inventors

Classifications

  • for heating moulds or mould parts · CPC title

  • Temperature · CPC title

  • with incorporated heating or cooling means · CPC title

  • Blanks having super-plastic properties · CPC title

  • Deforming sheet bodies · CPC title

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Frequently asked questions

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What does patent US10363593B2 cover?
A multi-forming method, wherein after a material which is heated to a warm-deformation condition in a mold is deformed to a maximum deformation depth through plastic deformation, and the deformed material which is heated to a super plasticity temperature is blow-formed by blowing gas to a final product shape, a product having a deep forming depth and complicated shape can be produced.
Who is the assignee on this patent?
Sungwoo Hitech Co Ltd
What technology area does this patent fall under?
Primary CPC classification B29C49/4823. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Jul 30 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).