mirror of
https://github.com/Ultimaker/Cura.git
synced 2025-08-07 05:53:59 -06:00
Merge branch 'master' of github.com:Ultimaker/cura
This commit is contained in:
commit
f6095e9ad0
24 changed files with 84 additions and 38 deletions
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@ -235,7 +235,7 @@ class CuraContainerRegistry(ContainerRegistry):
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if not expected_machine_definition:
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expected_machine_definition = global_container_stack.definition.getId()
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if expected_machine_definition is not None and profile_definition is not None and profile_definition != expected_machine_definition:
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Logger.log("e", "Profile [%s] is for machine [%s] but the current active machine is [%s]. Will not import the profile", file_name)
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Logger.log("e", "Profile [%s] is for machine [%s] but the current active machine is [%s]. Will not import the profile", file_name, profile_definition, expected_machine_definition)
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return { "status": "error",
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"message": catalog.i18nc("@info:status Don't translate the XML tags <filename> or <message>!", "The machine defined in profile <filename>{0}</filename> doesn't match with your current machine, could not import it.", file_name)}
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@ -559,7 +559,8 @@ class MachineManager(QObject):
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def activeVariantNames(self) -> List[str]:
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result = []
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active_stacks = ExtruderManager.getInstance().getActiveGlobalAndExtruderStacks()
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# Just return the variants in the extruder stack(s). For the variant in the global stack, use activeVariantBuildplateName
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active_stacks = ExtruderManager.getInstance().getActiveExtruderStacks()
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if active_stacks is not None:
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for stack in active_stacks:
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variant_container = stack.variant
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@ -90,6 +90,7 @@
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"infill_overlap": { "value": "0" },
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"infill_pattern": { "value": "'triangles'" },
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"infill_wipe_dist": { "value": "0" },
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"initial_layer_line_width_factor": { "value": "120" },
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"jerk_enabled": { "value": "True" },
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"jerk_layer_0": { "value": "jerk_topbottom" },
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"jerk_prime_tower": { "value": "math.ceil(jerk_print * 15 / 25)" },
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@ -109,7 +110,9 @@
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"material_bed_temperature": { "maximum_value": "115" },
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"material_bed_temperature_layer_0": { "maximum_value": "115" },
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"material_standby_temperature": { "value": "100" },
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"meshfix_maximum_resolution": { "value": "0.04" },
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"multiple_mesh_overlap": { "value": "0" },
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"optimize_wall_printing_order": { "value": "True" },
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"prime_tower_enable": { "default_value": true },
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"raft_airgap": { "value": "0" },
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"raft_base_thickness": { "value": "0.3" },
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@ -120,6 +123,7 @@
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"raft_margin": { "value": "10" },
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"raft_surface_layers": { "value": "1" },
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"retraction_amount": { "value": "2" },
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"retraction_combing": { "default_value": "noskin" },
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"retraction_count_max": { "value": "10" },
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"retraction_extrusion_window": { "value": "1" },
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"retraction_hop": { "value": "2" },
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@ -1,7 +1,7 @@
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// Copyright (c) 2018 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Controls 1.1
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import QtQuick.Controls.Styles 1.1
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import QtQuick.Layouts 1.1
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@ -1,7 +1,7 @@
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// Copyright (c) 2018 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Controls 1.1
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import QtQuick.Controls.Styles 1.1
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import QtQuick.Layouts 1.1
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@ -1,9 +1,9 @@
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// Copyright (c) 2018 Ultimaker B.V.
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// Uranium is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Layouts 1.2
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import QtQuick.Controls 2.1
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import QtQuick.Controls 2.0
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import UM 1.2 as UM
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@ -1,9 +1,9 @@
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// Copyright (c) 2018 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Layouts 1.2
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import QtQuick.Controls 2.1
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import QtQuick.Controls 2.0
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import UM 1.1 as UM
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import Cura 1.0 as Cura
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@ -1,7 +1,7 @@
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// Copyright (c) 2016 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Controls 1.1
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import QtQuick.Controls.Styles 1.1
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import QtQuick.Layouts 1.1
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@ -1,7 +1,7 @@
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// Copyright (c) 2017 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Controls 1.1
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import QtQuick.Controls.Styles 1.1
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@ -1,7 +1,7 @@
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// Copyright (c) 2015 Ultimaker B.V.
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// Cura is released under the terms of the LGPLv3 or higher.
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import QtQuick 2.8
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import QtQuick 2.7
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import QtQuick.Controls 1.1
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import QtQuick.Controls.Styles 1.1
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import QtQuick.Layouts 1.1
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@ -120,6 +120,31 @@ UM.Dialog
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width: (parent.width / 3) | 0
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}
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}
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Column
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{
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width: parent.width
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visible: Cura.MachineManager.hasVariantBuildplates
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Item // Spacer
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{
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height: spacerHeight
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width: height
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}
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Row
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{
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width: parent.width
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height: childrenRect.height
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Label
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{
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text: catalog.i18nc("@action:label", "Build plate")
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width: (parent.width / 3) | 0
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}
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Label
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{
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text: Cura.MachineManager.activeVariantBuildplateName
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width: (parent.width / 3) | 0
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}
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}
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}
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Repeater
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{
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@ -13,6 +13,7 @@ setting_version = 4
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[values]
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cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =cool_fan_speed
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infill_line_width = =round(line_width * 0.42 / 0.35, 2)
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machine_nozzle_cool_down_speed = 0.75
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machine_nozzle_heat_up_speed = 1.6
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material_print_temperature = =default_material_print_temperature + 5
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@ -20,9 +21,9 @@ material_standby_temperature = 100
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prime_tower_enable = False
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skin_overlap = 20
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speed_layer_0 = 20
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speed_topbottom = =math.ceil(speed_print * 35 / 70)
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speed_wall = =math.ceil(speed_print * 50 / 70)
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speed_wall_0 = =math.ceil(speed_wall * 35 / 50)
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speed_topbottom = =math.ceil(speed_print * 40 / 70)
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speed_wall = =math.ceil(speed_print * 55 / 70)
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speed_wall_0 = =math.ceil(speed_wall * 45 / 50)
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top_bottom_thickness = 1
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wall_thickness = 1
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@ -13,6 +13,7 @@ setting_version = 4
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[values]
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cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =cool_fan_speed
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infill_line_width = =round(line_width * 0.42 / 0.35, 2)
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machine_nozzle_cool_down_speed = 0.75
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machine_nozzle_heat_up_speed = 1.6
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material_standby_temperature = 100
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@ -14,6 +14,7 @@ setting_version = 4
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cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =cool_fan_speed
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cool_min_speed = 10
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infill_line_width = =round(line_width * 0.42 / 0.35, 2)
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machine_nozzle_cool_down_speed = 0.75
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machine_nozzle_heat_up_speed = 1.6
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material_print_temperature = =default_material_print_temperature - 5
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@ -14,6 +14,7 @@ setting_version = 4
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cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =cool_fan_speed
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cool_min_speed = 7
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infill_line_width = =round(line_width * 0.42 / 0.35, 2)
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machine_nozzle_cool_down_speed = 0.75
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machine_nozzle_heat_up_speed = 1.6
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material_standby_temperature = 100
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@ -18,11 +18,10 @@ cool_fan_speed_max = 100
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cool_min_layer_time_fan_speed_max = 6
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cool_min_speed = 4
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gradual_infill_step_height = =5 * layer_height
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gradual_infill_steps = 4
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infill_line_width = =round(line_width * 0.38 / 0.38, 2)
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infill_overlap = 0
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infill_pattern = tetrahedral
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infill_sparse_density = 96
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infill_pattern = cross_3d
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infill_sparse_density = 10
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infill_wipe_dist = 0.1
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jerk_enabled = True
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jerk_print = 25
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@ -18,11 +18,10 @@ cool_fan_speed_max = 100
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cool_min_layer_time_fan_speed_max = 6
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cool_min_speed = 4
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gradual_infill_step_height = =5 * layer_height
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gradual_infill_steps = 4
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infill_line_width = =round(line_width * 0.38 / 0.38, 2)
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infill_overlap = 0
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infill_pattern = tetrahedral
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infill_sparse_density = 96
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infill_pattern = cross_3d
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infill_sparse_density = 10
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infill_wipe_dist = 0.1
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jerk_enabled = True
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jerk_print = 25
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@ -18,11 +18,10 @@ cool_fan_speed_max = 100
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cool_min_layer_time_fan_speed_max = 6
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cool_min_speed = 4
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gradual_infill_step_height = =5 * layer_height
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gradual_infill_steps = 4
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infill_line_width = =round(line_width * 0.38 / 0.38, 2)
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infill_overlap = 0
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infill_pattern = tetrahedral
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infill_sparse_density = 96
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infill_pattern = cross_3d
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infill_sparse_density = 10
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infill_wipe_dist = 0.1
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jerk_enabled = True
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jerk_print = 25
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@ -15,8 +15,8 @@ cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =100
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cool_min_speed = 2
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gradual_infill_step_height = =3 * layer_height
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infill_line_width = =round(line_width * 0.535 / 0.75, 2)
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infill_pattern = cubic
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infill_line_width = =round(line_width * 0.65 / 0.75, 2)
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infill_pattern = triangles
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line_width = =machine_nozzle_size * 0.9375
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machine_nozzle_cool_down_speed = 0.75
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machine_nozzle_heat_up_speed = 1.6
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@ -25,6 +25,12 @@ material_initial_print_temperature = =max(-273.15, material_print_temperature -
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material_print_temperature = =default_material_print_temperature + 10
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material_standby_temperature = 100
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prime_tower_enable = True
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retract_at_layer_change = False
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speed_print = 45
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speed_topbottom = =math.ceil(speed_print * 35 / 45)
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speed_wall = =math.ceil(speed_print * 40 / 45)
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speed_wall_x = =speed_wall
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speed_wall_0 = =math.ceil(speed_wall * 35 / 40)
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support_angle = 70
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support_line_width = =line_width * 0.75
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support_pattern = ='triangles'
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@ -15,8 +15,8 @@ cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =100
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cool_min_speed = 2
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gradual_infill_step_height = =3 * layer_height
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infill_line_width = =round(line_width * 0.535 / 0.75, 2)
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infill_pattern = cubic
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infill_line_width = =round(line_width * 0.65 / 0.75, 2)
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infill_pattern = triangles
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layer_height = 0.4
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line_width = =machine_nozzle_size * 0.9375
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machine_nozzle_cool_down_speed = 0.75
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@ -27,6 +27,12 @@ material_print_temperature = =default_material_print_temperature + 15
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material_standby_temperature = 100
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prime_tower_enable = True
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raft_margin = 10
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retract_at_layer_change = False
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speed_print = 45
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speed_topbottom = =math.ceil(speed_print * 35 / 45)
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speed_wall = =math.ceil(speed_print * 40 / 45)
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speed_wall_x = =speed_wall
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speed_wall_0 = =math.ceil(speed_wall * 35 / 40)
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support_angle = 70
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support_line_width = =line_width * 0.75
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support_pattern = ='triangles'
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@ -15,8 +15,8 @@ cool_fan_full_at_height = =layer_height_0 + 2 * layer_height
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cool_fan_speed_max = =100
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cool_min_speed = 2
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gradual_infill_step_height = =3 * layer_height
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infill_line_width = =round(line_width * 0.535 / 0.75, 2)
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infill_pattern = cubic
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infill_line_width = =round(line_width * 0.65 / 0.75, 2)
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infill_pattern = triangles
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layer_height = 0.3
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line_width = =machine_nozzle_size * 0.9375
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machine_nozzle_cool_down_speed = 0.75
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@ -26,6 +26,12 @@ material_initial_print_temperature = =max(-273.15, material_print_temperature -
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material_print_temperature = =default_material_print_temperature + 10
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material_standby_temperature = 100
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prime_tower_enable = True
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retract_at_layer_change = False
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speed_print = 45
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speed_topbottom = =math.ceil(speed_print * 35 / 45)
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speed_wall = =math.ceil(speed_print * 40 / 45)
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speed_wall_x = =speed_wall
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speed_wall_0 = =math.ceil(speed_wall * 35 / 40)
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support_angle = 70
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support_line_width = =line_width * 0.75
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support_pattern = ='triangles'
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@ -15,11 +15,10 @@ brim_width = 8.75
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cool_min_layer_time_fan_speed_max = 6
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top_skin_expand_distance = =line_width * 2
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gradual_infill_step_height = =4 * layer_height
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gradual_infill_steps = 5
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infill_before_walls = True
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infill_line_width = =round(line_width * 0.7 / 0.8, 2)
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infill_pattern = tetrahedral
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infill_sparse_density = 80
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infill_pattern = cross_3d
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infill_sparse_density = 10
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jerk_prime_tower = =math.ceil(jerk_print * 25 / 25)
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jerk_support = =math.ceil(jerk_print * 25 / 25)
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jerk_wall_0 = =math.ceil(jerk_wall * 15 / 25)
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@ -15,11 +15,10 @@ brim_width = 8.75
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cool_min_layer_time_fan_speed_max = 6
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top_skin_expand_distance = =line_width * 2
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gradual_infill_step_height = =4 * layer_height
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gradual_infill_steps = 5
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infill_before_walls = True
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infill_line_width = =round(line_width * 0.7 / 0.8, 2)
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infill_pattern = tetrahedral
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infill_sparse_density = 80
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infill_pattern = cross_3d
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infill_sparse_density = 10
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jerk_prime_tower = =math.ceil(jerk_print * 25 / 25)
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jerk_support = =math.ceil(jerk_print * 25 / 25)
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jerk_wall_0 = =math.ceil(jerk_wall * 15 / 25)
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@ -15,11 +15,10 @@ brim_width = 8.75
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cool_min_layer_time_fan_speed_max = 6
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top_skin_expand_distance = =line_width * 2
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gradual_infill_step_height = =4 * layer_height
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gradual_infill_steps = 5
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infill_before_walls = True
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infill_line_width = =round(line_width * 0.7 / 0.8, 2)
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infill_pattern = tetrahedral
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infill_sparse_density = 80
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infill_pattern = cross_3d
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infill_sparse_density = 10
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jerk_prime_tower = =math.ceil(jerk_print * 25 / 25)
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jerk_support = =math.ceil(jerk_print * 25 / 25)
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jerk_wall_0 = =math.ceil(jerk_wall * 15 / 25)
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||||
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