![]() ![]() Under the Template section, click Browse and select C_PART.DRW. Under Specify Template, select the radio button Use template. Note that the Use Default Template option is enabled.Ĭlick Browse from the New Drawing dialog box and select BOX.PRT as the Default Model. In the New dialog box, type BOX as the Name. Ĭlick the New icon on the main toolbar and select Drawing as the Type in the New Object dialog box.Right-click the DRAWING_TUTORIAL folder and select Set Working Directory. In the Navigator Folder Browser, browse to the following folder C:\HANDS-ON_WF3\DRAWING_TUTORIAL. If Pro/ENGINEER is already running ensure all windows are closed, and all items from the previous exercise are erased from memory. Start Pro/ENGINEER Wildfire 3.0 if necessary. Step 4: Make design changes in the model and in the drawing.Īs an alternative to having this open along-side Pro/Engineer, you can also view a printable version by clicking here. Step 3: Create, move and manipulate drawing details such as dimensions and notes. Step 2: Create, move, and manipulate drawing views Both a part and assembly drawing will be created. In this tutorial, you will learn the basics of Drawing creation. Icons and their names are shown inline with the text.The "picks and clicks" are shown in Bold.There are several conventions used in this tutorial: Notes are provided as additional information.Information is provided at the start of most tasks.You will see various icons throughout the tutorial: Scroll through the entire contents before progressing to the next step. If the page contains more information than the visible screen, a scroll bar will appear along the vertical side. ![]() Click Home to return to the beginning of the tutorial. Click Next to proceed to the next slide and Previous to return to the previous slide. Use the Commands at the top of the page to navigate through the tutorial. It is recommended that you maximize the amount of working area on your screen by setting your monitor to the highest resolution setting, for example 1600x1200. Your web browser and Pro/ENGINEER can be resized and laid out as shown below to facilitate your experience. Set your working directory to this location.įor example: C:\HANDS-ON_WF3\DRAWING_TUTORIAL.Extract the zip file to a location on your hard drive.Ī plain drive letter (ex: C:\ ) is recommended.If not, please refer to the READ ME FIRST document.ĭownload the model files here. Files used or created during this tutorial cannot be used with any other version of Pro/ENGINEER other than the Tryout Edition. Your hosting Hands-on Workshop Application Engineer will have this set up for you. Please make sure that Pro/ENGINEER Wildfire 3.0 Tryout Edition is installed on your machine before continuing. This tutorial is intended to be used alongside Pro/ENGINEER Wildfire 3.0 Tryout Edition. Novice designers for new product development with AM can also use this solution.Introduction to Creating Drawings in Pro/Engineer Introduction to Drawing Hands-On Workshop Pro/ENGINEER Wildfire 3.0 Finally, we evaluate the proposed methodology by designing a left-handed mouse as a case study. The proposed user-centered methodology integrates the different stakeholders, throughout the project life cycle. Hence, this study aims to provide a new methodology for product design for AM that covers the entire process, from the requirement to production. Furthermore, we integrate visualization and prototyping throughout the process to ensure product quality and user fidelity. The benefits and constraints of AM are structured for greater understanding, through the design heuristics, principles, and design rules related to the process. This paper aims to provide designers and companies with a systematic and creative integrated design methodology in a user-centered approach. Most research studies focus on either design heuristics, or design principles, or design rules, and do not provide a structuring and comprehensive design methodology tailored to additive manufacturing. Existing design methodologies for additive manufacturing only consider a subset of the design process. However, design teams need to gain the experience, training, and design knowledge that allow them to consider the capabilities of this new technology. Many industries are looking to adopt this technology to take advantage of its benefits, such as design freedom and component mass reduction. Additive manufacturing has seen remarkable growth in recent years and a rising evolution of industrial applications for direct manufacturing.
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