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See “ Element and contact pair removal and reactivation, ” Section 11.2.1. In some procedures these values are given in the procedure definition. Output control: Quantities such as stress, strain, reaction force, temperature, and energy are available as output. Boundary conditions: Boundary conditions can be added, modified, or removed during an analysis ( “ Boundary conditions, ” Section 33.3 ). If an amplitude curve is not defined, Abaqus assumes either that the loading varies linearly over the step or that the load is applied instantaneously at the beginning of the step, depending on the chosen response type (see “ Defining an analysis, ” Section 6.1.2 ).
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Optional history data The following history data can be included as necessary: Loading: Usually some form of external loading is defined. In this way a linear or nonlinear dynamic analysis can be performed based on the conditions at the end of the static solution. The type of analysis can be changed from step to step. (see “ Defining an analysis, ” Section 6.1.2 ). Abaqus can perform many types of analyses-linear or nonlinear, static or dynamic, etc. The state at the end of a general step provides the initial conditions for the next step, making it easy to simulate consecutive loadings of a model, such as a dynamic response following a static preload or the loading of a product during its usage following a simulation of the manufacturing process. There is no limit on the number of steps in an analysis. Steps can be introduced simply to change the output requests or to change the loads, boundary conditions, analysis procedure, etc. Multiple steps can be defined in an analysis. (For more information on steps, see “ Defining an analysis, ” Section 6.1.2.) The history input data are combined within a step as needed to define the history of the analysis. An Abaqus analysis is based on the concept of steps, which are described in the history data portion of the input file. The material library is described in Part V, “ Materials.” Special elements such as springs or dashpots do not have an associated material, but their properties must be defined.
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The element types available for modeling are described in Part VI, “ Elements,” along with explanations of how to define the elements. Special features can be defined with special elements such as springs, dashpots, point masses, etc.
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Models defined in terms of an assembly of part instances are discussed in “ Defining an assembly, ” Section 2.10.1. If the model is organized into an assembly of part instances, the model data are further categorized and must fall within the proper level: part, assembly, instance, or model. The model data section is explained below. After the heading the input file usually contains a model data section to define nodes, elements, materials, initial conditions, etc. The first heading line will appear as a heading at the top of each page of the output. Any number of data lines can be used to give the title they will appear at the beginning of the output files ( “ Output, ” Section 4.1.1 ). Most input files have the same basic structure. The input syntax for keyword and data lines is described in “ Input syntax rules, ” Section 1.2.1.
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