Sheetcam Hot Crack _hot_ · Proven
Cracks may not appear immediately; they can develop anywhere from 48 hours to several weeks after the cut. CUMIC Steel Managing Cut Quality with SheetCam You can use SheetCam TNG
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This feature avoids cutting outlines that are close to others until the surrounding area has had time to cool down. By keeping the torch moving over a wider physical space, you prevent heat from building up in any one "hot spot," which is one of the most effective ways to prevent warping.
Stainless retains heat and expands rapidly. Use overcuts and optimize cutting paths to prevent heat accumulation. Moderate-High sheetcam hot crack
The beginning and end of a cut are the most vulnerable zones for hot cracking. When a plasma arc or laser pierce occurs, it creates a massive spike in localized heat. If this pierce happens directly on the cut line, a hot crack can easily propagate into the finished part.
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He pressed Start.
when approaching tight corners (e.g., tighter than 45°) to prevent "rounding" and excessive stress. Control Torch Height (THC):
His feed rate was 15 IPM (inches per minute). Too slow. The torch was flooding heat into a narrow kerf. The Fix: He increased feed rate to 25 IPM (using SheetCam's "Cut Rule" calculator). He also switched from a straight lead-in to a 0.2" arc lead-in. Result: The sheetcam hot crack vanished. By moving faster, he reduced the Heat Affected Zone (HAZ) by 60%.
If you are cutting parts that drop out of the sheet (freeing themselves), they lose structural support. Cracks form as they fall. Cracks may not appear immediately; they can develop
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To help troubleshoot your specific issue, could you tell me what and thickness you are cutting? If you know your current lead-in style or feed rate , share those as well so we can optimize your SheetCam profile. Share public link