HyperLife User's Guide
- A
- accessing the context menu layer filter[1]
- access the context menu derived load steps[1]
- access the context menu exploded view[1]
- access the context menu measure panel[1]
- access the context menu section cut[1]
- access the context menu set panel[1]
- add a measure group measure panel[1]
- add a section cut[1]
- additional comments contour panel[1]
- advanced options, animation controls[1]
- animation controls[1]
- animation controls advanced options[1]
- animation types[1]
- apply an automatic explosion exploded view panel[1]
- apply cached results[1]
- apply tensor settings to elements in a model tensor panel[1]
- assign and configure load histories[1]
- assign materials to parts[1]
- averaging options[1]
- B
- C
- caching results contour panel[1]
- center of rotation[1]
- change directory[1]
- change the color of measure group measure panel[1]
- change the display of model elements iso panel[1]
- change the display options contour panel[1]
- change the display options measure panel[1]
- change the display options section cut[1]
- change the display options set panel[1]
- change the font attributes of measure group measure panel[1]
- change the tensor color by direction tensor panel[1]
- change the tensor color by value tensor panel[1]
- change the tensor drawing mode tensor panel[1]
- change the tensor size tensor panel[1]
- change the value display tensor panel[1]
- change the vector color by direction vector panel[1]
- change the vector color by value vector panel[1]
- change the vector head vector panel[1]
- change the vector size vector panel[1]
- clear an explosion exploded view panel[1]
- clear contour contour panel[1]
- clear iso surfaces iso panel[1]
- clear tensors tensor panel[1]
- clear vectors vector panel[1]
- color band generation contour panel[1]
- color mode settings[1]
- composites post-processing contour panel[1]
- configure fatigue analysis using a weld method[1]
- configure fatigue analysis using the en method[1]
- configure fatigue analysis using the factor of safety method[1]
- configure fatigue analysis using the sn method[1]
- constant amplitude load[1]
- contour panel[1]
- control the display of iso values contour panel[1]
- counting layers contour panel[1][2]
- create a contour plot based on elemental results including corner results contour panel[1]
- create a contour plot based on nodal results contour panel[1]
- create a derived load case from a load case list derived load steps[1]
- create a derived load case from a simulation list derived load steps[1]
- create and manage contour plots contour panel[1]
- create a vector plot vector panel[1]
- create cached results[1]
- create iso surfaces for elemental results iso panel[1]
- create iso surfaces for nodal results iso panel[1]
- create iso surfaces using contour results iso panel[1]
- create model[1]
- create new materials[1]
- create plot style contour panel[1]
- create plot style tensor panel[1]
- create plot style vector panel[1]
- creating and editing layer filters[1]
- critical plane approach[1]
- custom view, recall[1]
- custom view, store[1]
- D
- Dang Van criterion[1]
- deactivate a section cut[1]
- define a measure group measure panel[1]
- define a set set panel[1]
- define the linear scaling factor derived load steps[1]
- delete a derived load case derived load steps[1]
- delete a measure group measure panel[1]
- delete an explosion exploded view panel[1]
- delete a section cut[1]
- delete cached results[1]
- deleting a layer filter[1]
- deleting a set sets panel[1]
- derived load cases[1]
- deselect[1]
- E
- edit fkm mean stress correction[1]
- edit the contour panel legend contour panel[1]
- E-N approach - fatigue analysis[1]
- E-N approach - multiaxial fatigue analysis[1]
- entity filter[1]
- EN tool[1]
- estimate uts[1]
- Evaluate[1]
- evaluate the model[1]
- exclude sets[1]
- Explode[1]
- explode a model or component exploded view panel[1]
- exploded view panel[1]
- explode panel[1]
- export a set set panel[1]
- export FE data[1]
- F
- factor of safety - Dang Van Criterion[1]
- factor of safety tutorial[1]
- failure evaluation - seam weld fatigue analysis[1]
- fatigue analysis[1]
- fatigue properties - seam weld analysis[1]
- FE data, export[1]
- file formats, supported[1]
- filter load cases derived load steps[1]
- fit curve[1]
- fit view[1]
- fkm mean stress correction, edit[1]
- FOS tool[1]
- H
- hide[1]
- home directory[1]
- hot spot stress - seam weld fatigue analysis[1]
- I
- import a set set panel[1]
- isolate[1]
- iso panel[1]
- K
- keyboard shortcuts and mouse controls exploded view panel[1]
- keyboard shortcuts and mouse controls section cut panel[1]
- keyboard shortcuts and mouse controls set panel[1]
- L
- M
- manage the legend display contour panel[1]
- manage the legend display tensor panel[1]
- manage the legend display vector panel[1]
- Material[1]
- materials, create[1]
- Measure[1]
- measure panel[1]
- menu bar[1]
- mesh display settings[1]
- mid-side node elemental results in contour contour panel[1]
- model, create[1]
- model, open[1]
- model, save[1]
- modeling window[1]
- multiaxial fatigue analysis[1][2]
- multi-model result plotting[1]
- N
- nodal averaging of elemental results[1]
- O
- open model[1]
- other factors affecting fatigue[1]
- other methods for fitting a curve[1]
- overlay result display contour panel[1]
- overlay result display tensor panel[1]
- overview[1]
- P
- pan view[1]
- post-processing stress results using the contour panel[1]
- post-process stress results solver independent contour panel[1]
- preferences[1]
- project vectors on a cross section plane vector panel[1]
- Q
- query results contour panel[1]
- query results tensor panel[1]
- query results vector panel[1]
- R
- recall custom view[1]
- remove load cases or simulations from a derived load case derived load steps[1]
- rename a derived load case derived load steps[1]
- results browser[1]
- results explorer[1]
- ribbon[1]
- rotate view[1]
- Run Analysis[1]
- S
- sample derived loadsteps configuration file[1]
- save screen captures[1]
- save session[1]
- screen captures, save[1]
- seam weld fatigue analysis[1]
- seam weld fatigue analysis implementation[1]
- seam weld fatigue analysis input/output[1]
- seam weld fillet tutorial[1]
- section cut panel[1]
- select[1]
- select a projection rule contour panel[1]
- select a projection rule iso panel[1]
- select a projection rule tensor panel[1]
- session, save[1]
- set panel[1]
- set rotation center[1]
- Sets[1]
- setting an active layer filter[1]
- settings, color mode[1]
- settings, mesh display[1]
- show[1]
- show hide tool[1]
- S-N approach[1]
- S-N approach - multiaxial fatigue analysis[1]
- SN tool[1]
- spot weld cbar tutorial[1]
- spot weld fatigue analysis[1]
- spotweld fatigue analysis - implementation[1]
- spot weld fatigue - input/output[1]
- status bar[1]
- store custom view[1]
- strain-life approach[1]
- strain-life approach - fatigue analysis[1]
- strain-life approach - mean stress correction[1]
- strain-life approach multiaxial tutorial[1]
- strain-life approach uniaxial tutorial[1]
- stress-life approach[1][2]
- stress-life approach multiaxial tutorial[1]
- stress-life approach tutorial[1][2]
- supported weld types[1]
- T
- tensor panel[1]
- time data load[1]
- tool, show hide[1]
- transient response load[1]
- tutorial, factor of safety[1]
- tutorial, seam weld fillet[1]
- tutorial, spot weld cbar[1]
- tutorial, strain-life approach multiaxial[1]
- tutorial, strain-life approach uniaxial[1]
- tutorial, stress-life approach[1][2]
- tutorial, stress-life approach multiaxial[1]
- U
- uniaxial fatigue analysis[1][2]
- update result files derived load steps[1]
- user profile, select[1]
- V
- value filter contour panel[1]
- variation percentage control[1]
- vector panel[1]
- view, fit[1]
- view, pan[1]
- view, rotate[1]
- view, zoom[1]
- view iso value with transparent boundary geometry as "x-ray" viewing iso panel[1]
- view run history[1]
- view run status[1]
- view subcase animations[1]
- visualize results[1]
- visualize the boundaries of a clipped part section cut[1]
- W
- Weld[1]
- window selection[1]
- window selection settings[1]
- Z