CSWA - Certified Solidworks Associate Materials and Mass Properties Questions and Answers — Questions and Answers
Question 1: A SolidWorks user needs to determine the total mass of a part. After modeling the geometry accurately, which of the following steps is absolutely essential to get a correct mass calculation?
- Create a custom coordinate system at the part's origin.
- Assign the correct material to the part. (Correct answer)
- Ensure all sketches are fully defined.
- Run a simulation study on the part.
Correct answer: Assign the correct material to the part.
SolidWorks calculates mass by multiplying the part's volume by the density of its assigned material. Without an assigned material, SolidWorks uses a default density which will almost certainly lead to an incorrect mass. While fully defined sketches are best practice, and custom coordinate systems can be useful for evaluating the center of mass, neither is required for the fundamental mass calculation. A simulation study is a separate tool for analysis and not needed for basic mass properties.
Question 2: You are given a part file and asked to report its Center of Mass in millimeters, relative to a specific corner which is not the default origin. Which combination of SolidWorks tools would be the most efficient way to accomplish this?
- Use the Measure tool to find the distance from the origin to the corner, then manually calculate the offset.
- Assign a new material with a density that shifts the center of mass to the desired corner.
- Create a new Coordinate System at the specified corner, then use the Mass Properties tool and report values relative to the new system. (Correct answer)
- Edit the original sketch and move the entire geometry so the desired corner is at the origin.
Correct answer: Create a new Coordinate System at the specified corner, then use the Mass Properties tool and report values relative to the new system.
The Mass Properties tool allows you to report values, including the Center of Mass, relative to any user-defined coordinate system. The most direct and accurate method is to create a new reference coordinate system at the required location and then select it within the Mass Properties dialog box. Manually calculating is prone to error, changing materials affects mass not just the reference point, and moving the entire part geometry is inefficient and may break other design references.
Question 3: In the Mass Properties dialog box, a user wants to view the calculated mass in kilograms, but the part was modeled using millimeters and the default units are grams. Which of the following is the correct procedure?
- Change the part's global unit system in Document Properties to MKS (meter, kilogram, second).
- Click 'Options' in the Mass Properties window and use the 'custom settings' to change only the mass unit to kilograms. (Correct answer)
- Manually divide the resulting gram value by 1000.
- Use the 'Override Mass Properties' feature and re-enter the mass value with 'kg' units.
Correct answer: Click 'Options' in the Mass Properties window and use the 'custom settings' to change only the mass unit to kilograms.
The Mass Properties dialog box has an 'Options' button that allows you to use custom settings for the reported values, independent of the document's overall unit system. This is the most direct way to see the mass in a different unit like kilograms without altering the document's primary units. Changing the global setting works but is unnecessary if you only need a temporary report. Manual calculation is an extra step that can be avoided. Overriding mass is for manually assigning a mass, not for converting the calculated value.
Question 4: A material required for a design has a specific density of 7.85 g/cm³. This material is not available in the default SolidWorks material library. What is the proper first step to use this material for mass calculations?
- Select the closest available material, like a generic steel, and use the 'Override Mass Properties' tool to input the correct final mass.
- Find a similar material in the library, copy it to a custom library, and edit its density value. (Correct answer)
- Model the part with no material assigned and use the Measure tool to find the volume, then calculate mass manually.
- Change the global document units to match the density units.
Correct answer: Find a similar material in the library, copy it to a custom library, and edit its density value.
When a specific material is not in the default library, the standard procedure is to create a custom material. The easiest way to do this is to copy a similar existing material into a custom library and then edit its properties, such as density, to match the required specifications. This ensures that all mass property calculations for any part using this material will be accurate. Overriding mass properties should be used sparingly, and manual calculations are inefficient and prone to error.
Question 5: Which of the following values is NOT directly available in the main report of the Mass Properties tool?
- Total Volume
- Center of Mass coordinates
- Principal Moments of Inertia
- Yield Strength (Correct answer)
Correct answer: Yield Strength
The Mass Properties tool reports on geometric and mass-based calculations like Mass, Volume, Surface Area, Center of Mass, and Moments of Inertia. Yield Strength is a mechanical property of a material and is found within the Material dialog box, not in the Mass Properties report.
Question 6: A user has a multibody part and needs to find the mass of only one specific solid body within that part. How can this be achieved using the Mass Properties tool?
- The tool can only calculate the properties for the entire part file.
- Select the desired solid body in the graphics area or FeatureManager tree *before* opening the Mass Properties tool. (Correct answer)
- Hide all other bodies, then run the Mass Properties tool.
- Use the 'Override Mass Properties' tool and select the single body.
Correct answer: Select the desired solid body in the graphics area or FeatureManager tree *before* opening the Mass Properties tool.
The Mass Properties tool is context-sensitive. If no bodies are selected, it evaluates the entire part. If one or more specific solid bodies (or components in an assembly) are pre-selected, the tool will calculate and report the mass properties for only the selected items. Hiding bodies can also work if the 'Include hidden bodies/components' option is unchecked, but direct selection is the most straightforward method.
A SolidWorks user needs to determine the total mass of a part.
After modeling the geometry accurately, which of the following steps is absolutely essential to get a correct mass calculation?