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Tinkercad. Simple 3D design and 3D printing app · Fusion for Education. Software or Browser Access · Revit. Plan, design, construct, and manage buildings with. SolidWorks Premium SP4 Free Download Latest Version. It is full offline installer standalone setup of SolidWorks Premium SP4. SOLIDWORKS Premium SP Free Download, 3D CAD and CNC Milling, Designing and Manufacturing, Design Mechanical Components.
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Define Dimensional Constraints for entities or between constraint points on entities. Community Customer Stories Blog. DraftSight DraftSight Premium. A robust 2D drafting and 3D design experience with full 3D capabilities and constraints features to help meet your drafting, modeling, prototyping, manufacturing, laser cutting and 3D printing needs.
Buy Now. Why Choose DraftSight Premium. Premium Top Features. More top features include:. Dynamic Blocks Support. Mirror 3D. Pattern 3D. Chamfer Edges. Fillet Edges. Interference checking. Cross Section. Make Flat Snapshot. Geometric constraints. Dimensional constraints.
Want to see all DraftSight Premium Features? Start your day free trial of DraftSight Premium today Download. Create Parts will create a library of files each file representing a single configuration of a toolbox file with a single specific size.
This setting will create a large volume of part files but each of these will have a very small file size. Create Parts on Ctrl-Drag is a hybrid of the two versions previously mentioned, it will act like create configurations except for when users press CTRL while dragging components onto the screen.
If either method that causes the creation of parts is selected. A folder location will need to be defined to have generated part files deposited into. Writing to read-only documents this setting is typically left in its default state, this controls the read-only state of the part files in toolbox. This just gives the program the right to change the read-only flag. If either file setting that has create configurations active this setting should be set to allowing toolbox to change read-only status.
Part numbers , allowing the same part number for geometrically equal components can be useful when a hardware component has several custom properties that generate different configurations even though the component will have identical geometry. This does not allow the user to enter the same part number for non-similar components. Display options control what information about the hardware is visible to the user and in what context. It can be any custom toolbox property defined by the user.
All hardware in the toolbox contains standard properties, the individual properties will vary based on the type of component selected. These properties include all the basic construction data about these pieces of hardware. To view or edit the standard properties choose a component inside of the toolbox and the user will be presented by a window similar to the one below.
It will also have the Solidworks part file that contains the geometry for this part file along with a couple settings. The enabled setting allows or restricts users the ability to use this component within Solidworks. This allows the toolbox to be edited to match company standards by disabling and or adding sizes that match what hardware is available to the user s.
Once this data has been entered the new size will populate in the list on the right and will be available to users within Solidworks. Thread Data: This property is very similar to the size and length area of the toolbox, with some minor changes. The user cannot allow or restrict the thread data properties like size and length. Adding custom thread sizes to the toolbox follows the same process as adding sizes and lengths, to use this new thread data the user will also need to also add a new size that calls on the newly added thread data.
When adding custom bolt sizes with unique thread data it is recommended that users add new thread data entries vs modifying existing thread data inside the toolbox. This controls the detail the toolbox components contain when included into an assembly. The thread rendering will have a noticeable performance impact on large assemblies, for best performance use Simplified but for the most realistic appearance use Schematic.
Color: The last setting in the standard properties is color, this can be used to very obviously set the color of a component. Once this setting is opened it will be possible to select a color for the component from one of 48 available with the option to toggle back to the default color above.
Not all custom components manually added to the toolbox will have the same functionality as components that come preinstalled with the tool. An example is a nylon locking hex nut vs a standard hex nut. In this case the toolbox will have the same functionality as the design library and it recommended to use the design library instead of adding these components to the toolbox.
Right click on the hardware component and select copy, then paste the component in the desired location in the toolbox. Once this has be finished toolbox will generate a new solidworks part file for this new component. This part file can be edited to add features to represent the changes in geometry.
Using relationships to scale the features is recommended as the features added will need to be valid for all component sizes. First, all possible configurations for the component need to be prefabricated.
Second, each configuration will need their relevant custom properties IE part number, size etc. Once this has been done launch the toolbox settings 20XX program or configure the toolbox. Once here navigate to the folder in which this custom component should reside. It is possible to create folders as well to contain these custom components.
The toolbox has 3 default data fields for all hardware components, these are: Part numbers, Descriptions, Comments. A user or admin can either the data manually into the toolbox setting program using the fields included in the toolbox configure window.
Or a faster option is the user can export the data to an excel table and populate it using excel or any other 3rd party applications that will work with excel file types. Once this data has been populated the toolbox will need to be saved. Once this has finished the new information will then be available for all users when they insert this hardware into an assembly. When entering a large volume of data this approach will be much more efficient. Using this method will require 3 steps.
The exported excel document will have several sections, these dictate where information should be stored as well as provide information about the hardware this document is used to specify. Any custom rows added that do not match existing size data will be excluded during the import. Once the import is complete the data will appear in the fields of the toolbox settings program.
If changes are made to the excel document the excel file will need to be reimported for those changes to be reflected in the toolbox. It is recommended that users keep these excel documents as a backup of the part numbers that have been inserted into the toolbox. To create a custom property first select the add new custom property icon in the top right corner of the Custom Properties box. Below is detailed information about the options included in the definition window.
Property Name: This is the variable name the user will see when activating this property for certain components as well as the variable name that will be displayed within Solidworks above the drop-down or textbox for this property. Type: When the user inserts this piece of hardware this option will control if the user sees a drop down or a text box in the toolbox configure component dialog box within Solidworks.
This will control what data is applied to the custom property inside this piece of hardware when dragged into an assembly. Each value for this property requires a new configuration name: This option will create custom configurations for each option in the custom property.
This is helpful if creating a custom property such as manufacturers and want to populate different part numbers for each manufacturer. Show in Property Manager: This will control if this property is shown in the solidworks property manager when the component is used. Toolbox components can be configured to include material as a custom material allowing the user to choose between different materials for components.
The custom property will then need to be linked to the Solidworks Material Library. A check box for this will appear after setting type to list. Once a material is chosen it will need to have a value assigned. The value fields are the fields that will be presented to the user in the drop-down list within Solidworks.
An example of the drop down within Solidworks is outlined to the left. Other great methods of adding hardware but ones not covered in this material are the use of toolbox components within smart components, smart features, and the hole series commands. To utilize the toolbox the feature will first need to be enabled inside of Solidworks this can be done on an as needed basis or can be configured to automatically start when the program launches.
If configured to launch toolbox on startup Solidworks will require a professional or premium license. The first way to add the toolbox tool is by selecting Add in now when the toolbox window is opened within the design library. The second method configures if the utility will activate automatically when the software launches.
From this window locate the toolbox and the checkboxes located on either side of it. The checkbox to the left activates the utility for the current session in the software. The box to the right will trigger the utility when the program launches.
This window also documents the launch time of the utility. So if system performance or launch time is a concern this window can be used to determine if the add-in has a significant impact on the time required to start Solidworks.
The drag and drop functionality is the most common use the toolbox. To access this functionality the user will have to choose the design library icon. Once this is selected a flyout for the design library will appear on the right side of the user interface. An example of the toolbox section of the design library is on the right. Once the toolbox is selected it will display folders for the various standards and components available to the user. These can be used to select the desired hardware.
Once hardware components are displayed on the right they can be dragged into the modeling window. Hole wizard and toolbox are built to work together, when a toolbox component is dragged over a hole wizard hole it should match the size of the hole as well as display the insert icon shown left. Once this icon is seen releasing the left mouse button will insert the hardware component into the assembly.
The toolbox insert window is automatically pinned allowing the user to insert duplicate pieces of hardware quickly. Once the size has been chosen the user can select any other hole wizard hole and can continue inserting hardware without reselecting size.
One powerful part of the toolbox is that properties can be associated with the hardware and this information can be automatically added to Bills of material BOMs. By default, the part number and description in the toolbox will be added to the standard BOM image below. To add custom properties a column will need to be added to the BOM. Once added the user can select the custom property that should be displayed. The property in Toolbox should match the custom property used in other components in the assembly, this should minimize the number of unpopulated boxes.
Cody is an Application Engineer based out of the beautiful Salt Lake valley. His background includes mechatronics and automation, where he has worked to develop automated systems to help remove or disconnect people from dangerous tasks. View all posts by Cody Salyer. Article by Cody Salyer on Jul 04,
Solidworks 2018 premium vs professional free download
It can now handle each and every step from designing to manufacturing with distributed data management to make the process even more convenient and easily accessible. An intuitive user interface with enhancements in mouse gestures and touch interactions enhances the usage of the application. With better design capabilities and improved CNC machining, this powerful application can generate accurate results and automates the manufacturing.
Moreover, it is also possible to work directly with Mesh data or solid geometry as well as split, combine, intersect, and cut with the surface. With better data management features and support for electrical and non-electrical data, this powerful application works better than other such applications. Skip to content. Share this: Twitter Facebook.
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