Review the basic functionality of the SOLIDWORKS Dynamics module. Show activation of SOLIDWORKS Simulation Add-In. Review the available modules for specific dynamic load times.
Setup initial dynamic simulation, solve and postprocess the results. Understand the importance of natural frequencies in dynamic simulations. Compare the dynamic and static results. Setup, run and postprocess a basic transient study Calculate a sufficient number of natural frequencies Use the mass participation factor to estimate a sufficient number of natural frequencies Run dynamic simulation for slow and fast forces, and compare their results
Setup, run and postprocess a dynamic simulation with the base motion shock excitation. Understand the optimum mesh design, and get more familiar with the estimation of the minimum number of natural frequencies. Understand the basics of damping. Setup, run and postprocess a transient study Define base excitation shock load Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define structural damping Calculate the maximum time step Use remote mass to simplify the model
Setup, run and postprocess a harmonic simulation. Understand and practice the frequency domain excitation definition. Practice postprocessing results from the harmonic study. Setup, run and postprocess a harmonic study Use the mass participation factor to select a sufficient number of natural frequencies Optimize the finite element mesh for dynamic simulation Define the harmonic load in the frequency domain Postprocess results from the harmonic study
Review the basic functionality of the SOLIDWORKS Nonlinear module. Show activation of SOLIDWORKS Simulation Add-In. Learn three basic nonlinear phenomena in engineering calculations. Review of control methods available in the module. Review of basic material models available in the module.
Review the difference between small displacement linear, and large displacement nonlinear analyses. Introduce the concept of time curves, and discuss basic options. Solve small displacement linear analysis to demonstrate inaccurate solution. Define a nonlinear simulation study. Use time curves to control variation of the nonlinear loading. Use fixed increment stepping, and autostepping stepping procedures to solve the nonlinear problem. Postprocess results of the nonlinear simulation. Compare results from nonlinear studies with various setup parameters.
Introduction to the force control and displacement control methods in nonlinear module. Experience and resolve solution instabilities when solving nonlinear problems. Define nonlinear study boundary conditions and loads. Stabilize force control method to arrive to a final solution. Solve the problem using the displacement control method. Adjust boundary conditions for the displacement control method. Compare nonlinear results from the force control, and the displacement control methods.
Introduction to the material nonlinearity, namely metal plasticity. Effect of mesh quality on the quality of the numerical stress results. Solve problem with linear small displacement solution and identify a need for the nonlinear solution due to high stress. Define nonlinear study boundary conditions and loads. Define nonlinear material model with von Mises plasticity. Use simplified bi-linear plasticity material model. Review the stress and displacement results at various times. Study effect of mesh quality on the quality of the stress results. Use the mesh sectioning feature to review stress distribution within the bodies.
애니메이션은 어셈블리를 조립하고 해체하는 것을 시각적으로 좀 더 이해하게 쉽게 보여 주며 파트가 추가되는 순서를 표시합니다. 애니메이션은 분해도를 효과적으로 보완하며 제조업체 및 조립업체가 부품이 어떻게 결합되는지를 정확하게 이해할 수 있게 도와줍니다. 애니메이션은 설계의 복잡성과 최종 제품의 정교함을 보여 줄 수 있기 때문에 훌륭한 마케팅 도구 역할도 합니다. 이 레슨에서는 이 어셈블리의 추가 부품을 분해하여 SOLIDWORKS Composer에 애니메이션을 생성합니다.
배관 작업을 시작하는 방법과 배관 하위 어셈블리를 구성하고 배관 부품을 저장하는 방법을 이해합니다. Routing 애드인을 활성화합니다. 파이핑, 튜빙 및 전기 배선 메뉴를 찾습니다. 배관 하위 어셈블리를 이해합니다. 배관 라이브러리 부품을 식별합니다. Routing Library Manager를 사용하여 설정을 로드합니다.
대형 어셈블리의 일부를 해석하여 시간을 절약하고 하위 모델링을 사용하여 더 정확한 결과를 얻는 방법을 탐색합니다. 모체 스터디에서 하위 모델 스터디를 작성합니다. 하중이 자동으로 하위 모델 스터디로 전달되는 방법을 알아봅니다. 시간과 계산 리소스를 절약하면서 정확한 결과를 유지합니다. eDrawings를 사용하여 결과를 저장합니다.
분해도는 SOLIDWORKS Composer에서 생성될 수 있으며 어셈블리에서 사용되는 모든 부품을 표시하거나 어셈블리를 조립, 해체, 수리하는 방법을 표시할 때 매우 유용합니다. 분해도는 마케팅 팀이 설계를 자랑하는 등의 다른 목적으로도 사용될 수 있습니다. 이 레슨에서는 어셈블리의 각 파트에 레이블을 추가함으로써 개별 부품을 상세하게 보여 주는 분해도를 설명합니다.
Generate a cam profile based on an input follower displacement from a data set. Define a motion of a follower using Data Points. Generate a cam profile using Trace Path. Verify the generated cam profile.
Simulate a mechanism placing an object into a box and a cover on the box. Apply servo motors. Add proximity sensors. Create and run event based motion study.
SOLIDWORKS Simulation 제품군의 모든 모듈을 살펴봅니다. SOLIDWORKS Flow를 사용하여 열 전달 및 유체 유동을 해석합니다. Sustainability를 사용하여 설계가 환경에 미치는 영향을 최소화합니다. SOLIDWORKS Simulation을 사용하여 응력-변형 해석을 살펴봅니다. SOLIDWORKS Motion을 사용하여 강체 역학을 해석합니다. SOLIDWORKS Plastics를 사용하여 플라스틱 사출 파트의 채우기 패턴을 봅니다.
Understand the components of SOLIDWORKS PDM Standard, the role of each component, and how the components interact with each other. These components include: Microsoft® SQL Server® Express. SOLIDWORKS PDM Database Server. SOLIDWORKS PDM Archive Server. The three SOLIDWORKS PDM Client types.
Learn how to a create SOLIDWORKS PDM Standard vault and setup a local client view. Create and configure a SOLIDWORKS PDM Standard vault. Setup a local client view connection to the newly created vault.
Understand how to validate a newly created PDM vault by performing standard PDM operations. Add and share files and folders via the Windows Explorer vault view. Version a SOLIDWORKS part file and transition through a workflow to release.
Understand the steps to perform as complete backup of PDM. Use Microsoft® SQL Server® Management Studio to backup PDM vault databases. Use the SOLIDWORKS PDM Archive Server configuration tool to backup vault user credentials. Locate and backup the vaults file archives.
Understand how to install and configure the components of SOLIDWORKS PDM Standard. Install and configure Microsoft® SQL Server® Express. Install Microsoft® SQL Server® Management Studio. Install the SOLIDWORKS PDM Database Server. Install the SOLIDWORKS PDM Archive Server. Install the SOLIDWORKS PDM CAD Editor client.
Automate the conversion of imported part geometry into a SOLIDWORKS feature-based, parametric model. Open an imported data file in SOLIDWORKS. Use the Import Diagnostics tool to repair imported geometry. View the FeatureWorks options. Use the Automatic feature Recognition Mode. Map the features to the part model. Guide the Automatic Recognition Mode for the best results.