SA303_RIGGING_2026_09_04
Analyzed File RIG Version Autodesk Fusion (2704.1.53)
Creation Date 2026-09-04, 01:22:19 Author pierre
Report Properties
Report Properties
TitleStudies
Authorpierre
Simulation Model 1
Study 1 - Static Stress
Study Properties
Study Properties
Study Type Static Stress
Last Modification Date 2026-09-04, 01:03:00
Study Setup
Settings
General
Contact Tolerance0.10 mm
Remove Rigid Body ModesNo
Mesh
Average Element Size (% of model size) - Solids 10
Scale Mesh Size Per Part No
Average Element Size (absolute value) -
Element Order Parabolic
Create Curved Mesh Elements Yes
Max. Turn Angle on Curves (Deg.) 60
Max. Adjacent Mesh Size Ratio 1.5
Max. Aspect Ratio 10
Minimum Element Size (% of average size) 20
Adaptive Mesh Refinement
Number of Refinement Steps 0
Results Convergence Tolerance (%) 20
Portion of Elements to Refine (%)10
Results for Baseline Accuracyvon Mises Stress
Materials
Steel - High-Strength, Low-Alloy
Components
Component Strength
Cadre:1/BackPlate:1Yield Strength
Cadre:1/FrontPlate:1Yield Strength
Cadre:1/RailBackBar:1Yield Strength
Cadre:1/RailFrontBar:1Yield Strength
FrontFix:1Yield Strength
RearFix:1Yield Strength
Properties
Density7.850E-06 kg / mm^3
Young's Modulus200000.00 MPa
Poisson's Ratio0.29
Yield Strength344.738 MPa
Ultimate Tensile Strength482.633 MPa
Thermal Conductivity0.047 W / (mm C)
Thermal Expansion Coefficient1.200E-05 / C
Specific Heat480.00 J / (kg C)
Stainless Steel
Components
Component Strength
M12L20:1/Body1Yield Strength
M12L20:2/Body1Yield Strength
Properties
Density8.000E-06 kg / mm^3
Young's Modulus193000.00 MPa
Poisson's Ratio0.30
Yield Strength250.00 MPa
Ultimate Tensile Strength540.00 MPa
Thermal Conductivity0.016 W / (mm C)
Thermal Expansion Coefficient1.040E-05 / C
Specific Heat477.00 J / (kg C)
Acetal Resin, Black
Components
Component Strength
M12L20:1/Body2Yield Strength
M12L20:2/Body2Yield Strength
Properties
Density1.425E-06 kg / mm^3
Young's Modulus2900.00 MPa
Poisson's Ratio0.39
Yield Strength68.21 MPa
Ultimate Tensile Strength68.21 MPa
Thermal Conductivity1.600E-04 W / (mm C)
Thermal Expansion Coefficient1.100E-04 / C
Specific Heat1465.45 J / (kg C)
Contacts
Contact Type Contact Set Penetration Type Bodies Entities
Bonded
Bonded154Symmetric[Body1 M12L20:2||Body2 M12L20:2][Face 2||Face 10]
Bonded155Symmetric[Body1 M12L20:1||Body2 M12L20:1][Face 2||Face 10]
Bonded156Symmetric[FrontPlate FrontPlate:1||RailBackBar RailBackBar:1][Face 26||Face 7]
Bonded157Symmetric[FrontPlate FrontPlate:1||RailFrontBar RailFrontBar:1][Face 26||Face 9]
Bonded158Symmetric[FrontPlate FrontPlate:1||Body2 M12L20:2][Face 25||Face 10]
Bonded159Symmetric[FrontPlate FrontPlate:1||Body2 M12L20:1][Face 25||Face 10]
Bonded160Symmetric[FrontPlate FrontPlate:1||Body1 M12L20:1][Face 16||Face 5]
Bonded161Symmetric[FrontPlate FrontPlate:1||Body1 M12L20:2][Face 13||Face 5]
Bonded162Symmetric[BackPlate BackPlate:1||RailBackBar RailBackBar:1][Face 25||Face 6]
Bonded163Symmetric[BackPlate BackPlate:1||RailFrontBar RailFrontBar:1][Face 25||Face 8]
Bonded164Symmetric[BackPlate BackPlate:1||Body1 M12L20:1][Face 16||Face 5]
Bonded165Symmetric[BackPlate BackPlate:1||Body1 M12L20:2][Face 13||Face 5]
Bonded167Symmetric[Body1 RearFix:1||Body1 M12L20:2][Face 1||Face 5]
Bonded169Symmetric[Body1 FrontFix:1||Body1 M12L20:1][Face 5||Face 5]
Bonded170Symmetric[Body1 FrontFix:1||Body1 M12L20:1][Face 4||Face 5]
$$OffsetBonded$
Mesh
TypeSolids
Nodes98395
Elements55718
Load Case1
Constraints
Pin1
TypePin
RadialFixed
AxialFixed
TangentialFree
Pin2
TypePin
RadialFixed
AxialFixed
TangentialFree
Loads
Gravity
TypeGravity
Magnitude9.807 m / s^2
X Value0.00 m / s^2
Y Value-9.807 m / s^2
Z Value0.00 m / s^2
X Angle0.0 deg
Y Angle-90.0 deg
Z Angle0.0 deg
Bearing Load1
TypeBearing Load
Magnitude1780.00 N
X Value0.00 N
Y Value-1780.00 N
Z Value0.00 N
A Angle0.0 deg
Bearing Load2
TypeBearing Load
Magnitude1980.00 N
X Value0.00 N
Y Value-1980.00 N
Z Value0.00 N
A Angle0.0 deg
Load Case1 - Guided Results
Safety Factor
With the analysis criteria in this study setup, the design is not expected to bend permanently or break.
Next Steps
Meets Safety Factor Target
Validate your study setup
  • Check the loads are not set too high
  • Check the mesh refinement and consider increasing it in areas of high stress
  • Confirm your Safety Factor requirement
  • If the Displacement result shows high displacement, consider running a Nonlinear study to gain more insight
Check other results
  • Examine the Below target Result visualization to see where the weakest areas are
  • Check the stress result to see if, and where, the material might yield
  • Check the displacement result to see how far from its original alignment the model has moved
  • Look at other results, such as reaction forces to check your study set up, or strain to check your material performance
Above Safety Factor Limit
Validate your study setup
  • Check the loads are not set too high
  • Check the mesh refinement and consider increasing it in areas of high stress
  • Confirm your Safety Factor requirement
  • If the Displacement result shows high displacement, consider running a Nonlinear study to gain more insight
Check other results
  • Examine the Below target Result visualization to see where the weakest areas are
  • Check the stress result to see if, and where, the material might yield
  • Check the displacement result to see how far from its original alignment the model has moved
  • Look at other results, such as reaction forces to check your study set up, or strain to check your material performance
Lightweight the design
  • Set a Safety Factor upper limit to find where material can be removed
  • Remove material from areas that exceed the Safety Factor upper limit
Generate alternative designs
  • In the Generative Design workspace, create design modifications
  • Remove unnecessary material using a Shape Optimization study
Load Case1 - Results
Result Summary
Result type Sub-result Minimum Maximum
Safety Factor
Safety Factor
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Stress
1st Principal
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3rd Principal
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Displacement
Total
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