Public engineering report

BambuLab Basic PC White

Material Engineering Report
MaterialID MAT0168
3DPIceland Engineering Platform
3DPIceland Labs
Generated with 3DPIceland Engineering Platform v60.0.6 WORKFLOW-RELIABILITY - Bug Fixes and Workflow Reliability
Generated 2026-08-25 19:02:26
Public-data contract: This static report contains only allowlisted material identity, public links, canonical MSRP and existing Verified Material Summary / governed score outputs. It excludes raw specimen rows and non-public operational data.
Test coverage
Complete
Engineering axes
6/6
Public MSRP
$55.92 USD/kg

Material identity

MaterialIDMAT0168
MaterialBambuLab Basic PC White
ManufacturerBambuLab
Product lineBasic
Base materialPC
CategoryEngineering
Variant / finish
Reinforcement
ColorWhite

Governed engineering profile

Overall42/100
Tensile30/100
Impact13/100
Stiffness86/100
Consistency70/100
Layer adhesion13/100
Thermal48/100
Best available axisstiffness

Engineering score profile

Overall
42/100
Tensile
30/100
Impact
13/100
Stiffness
86/100
Consistency
70/100
Layer adhesion
13/100
Thermal
48/100

Engineering radar

TensileImpactStiffnessThermalLayer adhesionConsistency
Selected material
Material average - PC
Manufacturer average - BambuLab

All axes use existing governed 0–100 engineering scores. Missing axes are shown at zero and remain listed as n/a elsewhere in the report.

Fixture thermal result

95 °C · score 48/100 · method 3dp-thermal-deflection-fixture-v1
Nearby BlueDOT probe-indicated fixture temperature from a non-standard comparative 3DPIceland method; not ASTM D648, ISO 75, specimen temperature, certified HDT or a manufacturer limit.

Material and manufacturer context

MetricSelected materialMaterial averageManufacturer average
Overall42/10046/10047/100
Tensile30/10030/10026/100
Impact13/10026/10031/100
Stiffness86/10082/10077/100
Consistency70/10075/10077/100
Layer adhesion13/10019/10024/100
Thermal48/100

Verified measurement results

Existing Verified Material Summary outputs. The public renderer does not read raw specimen rows or recalculate these values.

MeasurementAverageStd. deviationCVSamplesConfidence
Tensile upright5.399 MPa3.177 MPa58.9%1010/10
Tensile flat43.143 MPa9.908 MPa23%1010/10
Impact upright103.361 kJ/m²23.694 kJ/m²22.9%1010/10
Impact flat157.075 kJ/m²26.156 kJ/m²16.7%1010/10
Stiffness modulus2569.808 MPa
Stiffness deflection2.112 mm

Measurement provenance

Canonical per-module measured dates from SQLite, shown in unambiguous ISO format. Missing dates are not inferred.

ModuleMeasured date
TensileNot recorded
ImpactNot recorded
StiffnessNot recorded
ThermalNot recorded

Engineering interpretation

Summary: BambuLab Basic PC White has a specialized or limited engineering profile. It is below its material-family average by 4,2 points and below its manufacturer average by 4,8 points. Its strongest measured axis is Stiffness, while the weakest axis is Layer Adhesion.
Data-driven review: BambuLab Basic PC White is best understood as a repeatable material for cosmetic, concept and low-load prototype work. Compared with the current verified dataset, it ranks better than 24% overall, is below the material-family average by 4,2 points, and is below the manufacturer average by 4,8 points. Its strongest engineering signal is Stiffness, while Layer Adhesion is the main limitation to consider before using it for demanding applications.
Best feature
Stiffness
Main limitation
Layer Adhesion
Dataset position
Better than 24%
179 / 234

Strengths

  • Stiffness: 86/100. Stiffness is a relative advantage in this comparison group.

Limitations

  • Tensile: 30/100. Avoid using this as the primary choice for tensile-loaded parts.
  • Impact: 13/100. Avoid high impact or shock-loaded components without additional validation.
  • Layer adhesion: 13/100. Z-axis performance should be treated with caution.

Engineering trade-offs

  • Good repeatability does not compensate for low tensile capability in load-bearing designs.
  • Stiffness is useful for shape stability, but impact tolerance is a separate limitation.
  • The report should be read as a suitability warning rather than a general-purpose recommendation.

Recommended applications

  • Rigid brackets, fixtures and shape-stable prototypes
  • Cosmetic parts, concept models or low-load prototypes
  • Avoid high tensile load applications
  • Avoid high impact components

Metric rankings and percentiles

MetricScoreRankPercentile
Overall42/100179 / 234Better than 24%
Tensile30/10098 / 226Better than 57%
Impact13/100199 / 226Better than 12%
Stiffness86/10093 / 223Better than 59%
Consistency70/100201 / 231Better than 13%
Layer adhesion13/100184 / 226Better than 19%
Thermal48/10019 / 209Better than 91%

Decision guidance

Better alternatives

MaterialIDMaterialManufacturerOverallTensileImpact
MAT0033Prusa3D Prusament PC Blend PC BlackPrusa3D56/10039/10046/100
MAT0029Prusa3D Prusament PC Blend PC CF BlackPrusa3D55/10035/10032/100
MAT0032Prima Creator PrimaSelect PC BlackPrima Creator46/10026/10021/100

Peer context

Highest-scoring same-base-material peers from the current governed dataset. This context is descriptive and is not recalculated by the public renderer.

MaterialIDMaterialManufacturerOverallTensileImpact
MAT0033Prusa3D Prusament PC Blend PC BlackPrusa3D56/10039/10046/100
MAT0029Prusa3D Prusament PC Blend PC CF BlackPrusa3D55/10035/10032/100
MAT0032Prima Creator PrimaSelect PC BlackPrima Creator46/10026/10021/100
MAT0028Prima Creator PrimaSelect PC CF BlackPrima Creator45/10038/10021/100
MAT0034Yasin Standard Black PC Plus BlackYasin35/10012/10021/100

Public links

Methodology and limitations

Results are comparative 3DPIceland measurements from home-built test equipment. Thermal is a nearby BlueDOT probe-indicated fixture temperature, not ASTM D648, ISO 75 or specimen temperature. Missing evidence remains n/a. Scores and test results are not recalculated by this publishing layer and do not replace certified manufacturer datasheets or accredited laboratory testing.