![]() ![]() ![]() A full set of routing and parts placement methods allow users to choose the one that is right for a given context. CATIA - Piping Design 2 (PIP) provides general layout tools for intelligent placement of parts, automatic placement of components such as bends, elbows, tees, and reducers. This level of integration delivers tremendous benefits to a customer's design process as it not only ensures the quality of the design but significantly improves productivity and reduces cycle time. CATIA - Piping Design 2 (PIP) offers easy to use validation tools that highlight inconsistencies between functional and physical design. When 3D Piping Design is driven from Piping and Instrument Diagrams, the consistency between the 3D piping and 2D piping diagrams is maintained. ![]() Users can also access piping and instrumentation diagram lines and parts to automate the 3D Piping Design. Additionally, CATIA - Piping Design 2 integrates the two design stages (logical and physical) and ensures that the design intent is captured from the diagram at the detail design phase. This new capability optimizes the physical design and layout process by providing the ability to propagate and streamline the data from the functional PID diagram to the 3D detailed design developed with PIP. CATIA - Piping Design 2 (PIP) features 2D/3D integration with CATIA - Piping and Instrumentation Diagrams 2 (PID). In addition, the captured intelligence can be reused for downstream design processes, providing further benefits to the customer's overall business processes. This intelligent piping design capability enables the user to create and validate their designs more productively. The tools are focused on creating an intelligent piping layout that captures all appropriate design information. If you'd like to learn more about BOMs in particular, check out some of the additional resources listed below.Provide 3D tools to create, modify, analyze, and document piping designs based (optionally) on specifications in 2D Piping and Instrument Diagrams.ĬATIA - Piping Design 2 (PIP) Product creates and manages physical designs of piping systems using industry standard conventions, terminology, and practices. That's it! I hope you found this SOLIDWORKS tutorial helpful. For you to have an evaluated (-) sign in the total length column for the rest of the components in the assembly, you have to create a new custom property for each component.When prompted to assign properties to the new column, select to link CUSTOM PROPERTY, and for Property Name, select your new custom property.Go to the assembly bill of materials and insert a new column by right-clicking a header of an existing column and selecting Insert > Column Right/Left. Step 3: Link a new BOM column to the custom property In this example, I linked variable A to property total length (keep in mind that this will also be the column header in later steps). Link the new custom property to the new global variables by selecting it from the list of options in the drop-down menu.While still in the pipe part model, create a new custom property by going to File > Properties. ![]() If it is not evaluating, then the issue lies in the syntax of the equation. Ensure that your global variable evaluates.You’ll want to select each with a + in between. Then move the equation window enough to where the dimensions are exposed and can be selected. Tab over to the value/equation column and type the equal sign (=) as to start an equation.In the Name column, under Global Variables, give your global variable a name. Insert an equation by going to Tools > Equation.The spline length dimension is only available in SOLIDWORKS 2014 and newer versions. Edit the sketch and make sure you have a length for the straight segments and any splines.Step 1: Create a Global VariableĬhances are you used a Sweep feature to create your pipe part model, hence having a “path” sketch. In this tutorial, learn how to get the total length of a bent pipe in your SOLIDWORKS BOM (Bill of Materials) in just three steps. ![]()
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