Nesting determines how parts are arranged on the raw sheet metal. Efficient nesting directly impacts your material yield and profitability. Utilizing the Nesting Engine Open the and create a new job layout.
Use tools like mirror, rotate, or scale to adjust the geometry before proceeding. 2. Applying Technology Settings
Once the simulation confirms a clean workflow, click or Generate G-Code . BySoft compiles the visual nesting plan into specific machine code. Transfer this file to your Bystronic machine via your local network connection or a USB drive. Pro-Tips for Advanced BySoft Optimization
tab, select the machine type, material, and gas (e.g., Nitrogen or Oxygen). Automation: bysoft cam tutorial
What of BySoft you are using (e.g., BySoft 7, BySoft Suite)
Click the check icon to ensure part geometry is valid for cutting. 3. Nesting and Cutting Plans
Utilize the nesting feature to share cutting lines between two parts to save gas and time. Nesting determines how parts are arranged on the
Never send code to a laser without simulating it. BySoft CAM has a high-fidelity 3D simulation.
For optimizing material usage (nesting) and creating cutting jobs. 2. Setting Up Your Workflow
Watch the cutting head movement at a simulated high speed to check for: Intersecting rapid-travel paths. Missing lead-ins or un-cut contours. Sub-optimal head-lift movements. Use tools like mirror, rotate, or scale to
Click New Job , select your target cutting machine, and specify your customer details.
: Open the "Part Editor," use "Import Part," and select your file. You can then clean up the drawing by removing dimension lines or construction layers .
Use the drag-and-drop grid tools to manually reposition priority parts or fill empty sheet spaces with stock items. 5. Sequence Optimization and NC Code Generation