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Minor improvements (#56)
* Update printer_basic_information_accessory.md * Update printer_basic_information_adaptive_bed_mesh.md * Update bed type documentation and images Replaced outdated bed type GIF with two new PNG images illustrating bed type selection and material temperature settings. Updated documentation to reflect new bed types, improved instructions, and added references to the new images.
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images/bed/bed_type_material_temperature.png
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images/bed/bed_type_selector.png
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@@ -19,15 +19,30 @@ The metallic material of the nozzle: This determines the abrasive resistance of
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## Nozzle HRC
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The nozzle's hardness. Zero means no checking for nozzle hardness during slicing.
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The Nozzle Hardness ([Hardness Rockwell C](https://en.wikipedia.org/wiki/Rockwell_hardness_test)) value is used in OrcaSlicer to validate nozzle compatibility with abrasive filaments and prevent nozzle damage during printing.
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| Material | Value |
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|-------------------|-------|
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| Disable Check | 0 |
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| Brass | 2 |
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| Stainless Steel | 20 |
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| Hardened Steel | 55 |
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| Tungsten Carbide | 85 |
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## Auxiliary Part Cooling Fan
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Enable this option if machine has auxiliary part cooling fan. G-code command: M106 P2 S(0-255).
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Enable this option if machine has auxiliary part cooling fan.
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G-code command:
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```gcode
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M106 P2 S(0-255)
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```
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### Auxiliary Fan
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OrcaSlicer uses `M106 P#` / `M107 P#` to control any fans managed by the slicer.
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OrcaSlicer uses `M106 P#` (Set Fan Speed) / `M107 P#` (Fan Off) to control any fans managed by the slicer.
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The `P` parameter indicates the fan index as defined by OrcaSlicer:
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- `P0`: part cooling fan (default layer fan)
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- `P1` (if present): an additional fan
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@@ -5,8 +5,7 @@ This feature allows users to seamlessly integrate adaptive bed mesh commands wit
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The implementation is designed to be straightforward, requiring no additional plugins or alterations to firmware settings, thereby enhancing user experience and print quality directly from OrcaSlicer.
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- [Bed mesh min](#bed-mesh-min)
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- [Bed mesh max](#bed-mesh-max)
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- [Bed mesh](#bed-mesh)
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- [Probe point distance](#probe-point-distance)
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- [Mesh margin](#mesh-margin)
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- [Available g-code variables for Adaptive Bed Mesh Command](#available-g-code-variables-for-adaptive-bed-mesh-command)
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@@ -15,13 +14,11 @@ The implementation is designed to be straightforward, requiring no additional pl
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- [Klipper](#klipper)
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- [RRF](#rrf)
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## Bed mesh min
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## Bed mesh
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This option sets the min point for the allowed bed mesh area. Due to the probe's XY offset, most printers are unable to probe the entire bed. To ensure the probe point does not go outside the bed area, the minimum and maximum points of the bed mesh should be set appropriately. OrcaSlicer ensures that adaptive_bed_mesh_min/adaptive_bed_mesh_max values do not exceed these min/max points. This information can usually be obtained from your printer manufacturer. The default setting is (-99999, -99999), which means there are no limits, thus allowing probing across the entire bed.
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## Bed mesh max
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This option sets the max point for the allowed bed mesh area. Due to the probe's XY offset, most printers are unable to probe the entire bed. To ensure the probe point does not go outside the bed area, the minimum and maximum points of the bed mesh should be set appropriately. OrcaSlicer ensures that adaptive_bed_mesh_min/adaptive_bed_mesh_max values do not exceed these min/max points. This information can usually be obtained from your printer manufacturer. The default setting is (99999, 99999), which means there are no limits, thus allowing probing across the entire bed.
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This option sets the min and max point for the allowed bed mesh area. Due to the probe's XY offset, most printers are unable to probe the entire bed. To ensure the probe point does not go outside the bed area, the minimum and maximum points of the bed mesh should be set appropriately.
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OrcaSlicer ensures that adaptive_bed_mesh_min/adaptive_bed_mesh_max values do not exceed these min/max points. This information can usually be obtained from your printer manufacturer.
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The default setting is (-99999, -99999), which means there are no limits, thus allowing probing across the entire bed.
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## Probe point distance
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@@ -51,12 +51,13 @@ This is the maximum printable height which is limited by the height of the build
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## Support multi bed types
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You can enable it in printer settings.
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Once enabled, you can select the bed type in the drop-down menu, corresponding bed temperature will be set automatically.
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You can set the bed temperature for each bed type in the filament settings as demonstrated in the following image.
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//TODO: UPDATE IMAGE
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This also enabled you to set each bed type in the [filament settings](material_temperatures#bed).
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Orca also support `curr_bed_type` variable in custom G-code.
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For example, the following sample G-codes can detect the selected bed type and adjust the G-code offset accordingly for Klipper:
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@@ -71,10 +72,12 @@ For example, the following sample G-codes can detect the selected bed type and a
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Available bed types are:
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- Cool Plate
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- Engineering Plate
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- High Temp Plate
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- Smooth Cool Plate
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- Smooth High Temp Plate
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- Textured Cool Plate
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- Textured PEI Plate
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- Engineering Plate
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- Cool Plate (SuperTack)
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## Best object position
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