Flux Reference Manual

  • Welcome to Flux
  • Introduction
    • Installing the software
    • The user interface
    • Part workflow
  • CAD
    • 2-D Import
      • 2-D Cleanup
    • 3-D Import
      • Import 3D Model
      • Import assembly
      • Form detection
      • Component detection
    • Modifying the geometry
    • Attachments
  • Laser CAM
    • Part workflow
      • Editing panels
        • Laser cut
          • Approach
          • Withdrawal
          • Microjoint
          • Advanced
        • Contour
        • Scrap cut
        • Part
        • Corner treatment
      • Quick-Nest
    • Job workflow
      • Job panel
        • Sheets tab
        • Parts tab
        • Layouts tab
        • Summary tab
      • Edit layout
        • Nesting modes
        • Placement panel
        • Sequencing
        • Slice sheet
    • Bevel cut
      • Open contours
      • Variable bevel
      • Miscellaneous
    • Advanced
      • Finishing rules
      • Edit LTT
      • FlyLine
      • TwinLine
        • Strategy
        • Microjoints
        • Further settings
      • DetectLine
  • Bend CAM
    • Create bend data
    • Bend navigator
    • Edit bend data
      • Edit a bend
      • Edit a tool mount
      • Edit a bend setup
      • Edit the back-gauges
      • Edit angle measurement
      • Bends spreadsheet
      • Changing the sequence
      • Adding setups and stations
    • Advanced
      • Angle measurement
      • Batch process
      • Recompute solution
      • Tonnage check
    • Bending Aids
  • BendMaster CAM
    • Bend navigator
    • Part pickup
      • Pickup from pallet
      • Pickup from dispenser
    • Robotic bending
      • Insertion
      • Bending
      • Extraction
    • Regripping
      • Regrip panel
      • Add regrip
      • Edit regrip
      • Regrip with jaw
      • RG-Stations panel
    • Part deposit
      • Deposit panel
      • Repeat and sequence
      • Add separator sheets
      • Lock part-rest
      • Deposit pattern types
    • Advanced
      • Waypoints
      • Cell configuration
      • Custom Cell Components
      • Gripper database
        • Create a gripper
        • Import gripper from DXF
        • Import Suction Cup
  • FlexCell CAM
    • Bend navigator
    • Part pickup
      • Pickup from pallet
      • Centering table
    • Robotic bending
      • Insertion
      • Bending
      • Extraction
      • Advanced
    • Regripping
      • Regrip panel
      • Add/Remove regrip
      • Gripper Panel
      • RG-Stations panel
    • Part deposit
      • Deposit panel
      • Deposit Tabs
    • Advanced
      • Waypoints
      • Cell configuration
      • Gripper database
        • Create a gripper
        • Import gripper from DXF
    • Troubleshooting
  • Fold CAM
    • Create fold data
    • The Fold view
    • Editing Fold data
      • Edit a bend
      • Edit a side/section
      • Change the sequence
      • Edit the blank-holders
      • Edit the gauging
      • Edit the blades
      • Edit the loading
      • Edit the unloading
    • Tool inventory
    • Advanced
      • Custom air-gap tables
      • Manual bend completion
      • Required flange length
  • Settings
    • Drawing
      • Layers
      • Dimensions
      • View
    • Bend CAM
      • Machine defaults
      • Bend outputs
      • Bend view
      • Bend cell
    • Cut CAM
      • Layout
        • Nest settings
        • Sheet
        • Sheet handling
        • Skeleton cuts
        • Work support
      • Laser CAM
        • Sequence
      • Cut outputs
      • Cut view
    • Panel bending
      • Defaults
      • ZBW carriers
      • Outputs
    • Reports
      • Item defaults
    • Import/Export
    • Environment
  • Database
    • Materials
    • Machines
    • Bend tools
    • Bend deductions
    • Bend grippers
    • Forms and Components
  • Reports
    • Report designer
    • Fields, pictures and tables
    • Bands (sub-reports)
    • Labels, bitmaps and shapes
  • Appendix
    • Supported 3D formats
    • Separator sheet DXF
    • Bend tool DXF
    • The Adapt Geometry feature
Laser CAM
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Bevel cut

Bevel cut

Bevel cuts are used in sheet metal design to create parts that are easier to weld. Beveled edges increase the weld surface area, leading to stronger welds. Welding on beveled edges can also help improve the aesthetics of weld edges by concealing the weld lines.

Bevel Cut Part

Flux supports four different types of bevel profiles:

Bevel Types
Multiple Cuts

These profiles are achieved by using up to three cuts along any edge of the contour. The image below shows these three cuts, in the order in which they will be processed.

  1. Bottom Chamfer Cut

  2. Vertical Cut

  3. Top Chamfer Cut

Different bevel profiles will require different combinations of these cuts. For example, the Y-Bevel type will require the vertical cut, and the top chamfer cut, while the DY-Bevel type will require all three. The chamfers are defined using the chamfer angle, and the chamfer depth. Here is the how they are defined for the top chamfer. The bottom chamfer is defined similarly.

Chamfer Definition

Creating bevel cuts

Bevel cutting is enabled for parts if these conditions are met:

  • Select a TruLaser machine that can tilt the cutting head for bevel cutting.

  • Use a sheet with thickness greater than or equal to 3 mm.

  • Select an LTT (Laser Technology Table) that includes the bevel-cut process type.

With all these conditions met, the Laser Cut panel has a Chamfer section where Bevel cutting can be programmed.

Chamfer
  • Top chamfer ° and Top chamfer depth must both be non-zero to create a chamfer cut at the top.

  • Bottom chamfer ° and Bottom chamfer depth must both be set non-zero to create a chamfer cut at the bottom.

  • If the sum of the two chamfer depths is the same as the sheet thickness, then the chamfer(s) effectively define the outer boundary of the part, and the vertical cut shown in the image above is not really necessary. However, a cleaner edge is sometimes obtained with a vertical cut, and you can select the Force vertical cut checkbox to turn it on.

The laser cutting line is projected to the top surface of the part and shown on the part. The bevel cut paths are shown with a yellow highlight around them, and all the three parts are tagged in the image above.

Contents

  • Creating bevel cuts
Slice sheet Open contours

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