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  1. Home/
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  3. Advanced Sheet Metal Design Using NX Cad Challenge_2_Box Assembly

Advanced Sheet Metal Design Using NX Cad Challenge_2_Box Assembly

ADVANCED SHEET METAL DESIGN OF BOX ASSEMBLY USING SIEMENS NX CAD OBJECTIVE: To design a sheet metal box assembly using Siemens NX Cad. To create a drafting of the same part in A4 sheet.   INTRODUCTION:  Sheet metal is a metal formed by an industrial process into thin, flat pieces. Sheet metal can be…

  • CAE
  • DESIGN
  • Sachin Barse

    updated on 22 Sep 2022

ADVANCED SHEET METAL DESIGN OF BOX ASSEMBLY USING SIEMENS NX CAD

OBJECTIVE:

  • To design a sheet metal box assembly using Siemens NX Cad.
  • To create a drafting of the same part in A4 sheet. 

 INTRODUCTION: 

Sheet metal is a metal formed by an industrial process into thin, flat pieces. Sheet metal can be cut and bent into a variety of shapes. Countless everyday objects are fabricated from sheet metal.

NX formerly known as "unigraphics", is an advanced high-end CAD/CAM/CAE software. NX Sheet Metal provides a set of tools within the NX design environment that allows for simple and fast design of sheet metal parts.

 DESIGN METHODOLOGY:

                                                                                                        

DESCRIPTION:

Tools used & their functions:

SKETCH: It is used to create a profile.

TAB: It is used to create the base feature of the sheet metal.

FLANGE: It is used to create a extended part of a sheet part.

UNBEND: It is used to unbend the sheet metal by taking any one face as a stationary face. 

REBEND: It is used to re-bend the sheet metal.

BEAD: It is used to lift material along the contour of a sketch.

DIMPLE: It is used to lift an area of the model inside a sketch that simulates a stamping tool.

HEM FLANGE: It is used to modify an edge of a sheet metal part by folding it onto itself for the purpose of safe handling or to increase edge stiffness. The hem flange is always created as a secondary feature on a base part.

CLOSED CORNER: It is used to modify two flanges in one operation and to close the corner where the two flanges meet. 

UNITE: It is used to combine the volume of two or more solid tool bodies into a single target body. The target body and tool body must overlap or share faces so that the result is a valid solid body. This command creates a Unite feature.

NORMAL CUTOUT: It is used to cut material by projecting a sketch onto the model and then cutting perpendicular to the faces intersected by the projection.

BEND: It is used to modify the model by bending material on one side of a sketch line, adding a bend between the two sides.

BREAK CORNER: It is used to round or chamfer sharp corners of a tab or flange.

MIRROR: It is used to create a copy of the feature or body about a reference plane to which it is mirrored. 

Order of Usage of tools:

  • The sheet metal preferences are set as required.
  • A required sketch is drawn in the XY plane.
  • The base part is created using the TAB command.
  • FLANGES are added to the edges of tab.
  • CLOSED CORNER tool is used to close the space in the corners between the flange and the tab.
  • FLANGES and HEM FLANGES are added as required.
  • The body of the box is then mirrored using MIRROR tool.
  • The UNITE tool is used to combine the two mirrored bodies as a single body.
  • DIMPLE is created at a side of the box assembly and is then mirrored to the other side. 
  • FLANGES are added to the edges of tab.
  • DIMPLE is also created at the bottom of the box assembly.
  • UNBEND tool is used to unbend the whole sheet metal and BEAD is added at the bottom of the box assembly as a lower support.
  • The sheet metal is again rebended using REBEND tool.
  • New datum plane is created to create the lid. 
  • The lid for the box is created using the TAB tool.
  • The extension of the lid holding the box together is created using FLANGE tool.
  • The lid holder is create using TAB, FLANGE, BREAK CORNER & HEM FLANGE tools.
  • BEND tool is used to bend the sheet metal.
  • Gaps in the holder joints are created using NORMAL CUTOUT tool.
  • The sheet metal is then again rebended using REBEND tool.
  •   Finally, the FLAT PATTERN tool is used to create a 2D representation of the flattened 3D sheet metal part

STANDARD VIEWS:

  • FRONT VIEW:

                                                   

  • TOP VIEW:

                                                                       

  • SIDE VIEW:

                                                                                                 

  • ISOMETRIC VIEW:

                                                  

  • DRAWING SHEET 1:

  • DRAWING SHEET 2:

                                            

CONCLUSION:

The sheet metal box assembly is successfully designed using Siemens NX Sheet metal Workbench.

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