solidworks-basics

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课程简介

本课程名为“Solidworks基础”(Solidworks Basics),旨在教授学员如何使用Solidworks这一机械设计软件。课程内容涵盖了使用Solidworks创建零件模型、进行零件和部件的装配,以及如何为零件和装配体制作工程图。 课程内容从基础的介绍和草图工具(包括多种草图工具的应用)开始,然后深入讲解了各种创建三维模型的特征,如拉伸( Extrude)、旋转(Revolve)、倒圆角(Fillet)、倒角(Chamfer)、抽壳(Shell)等。此外,课程还介绍了在草图和特征中使用线性、圆形、曲线驱动等多种模式(Pattern)的功能,以及肋(rib)、样条曲线(spline)工具和逆向工程(Reverse Engineering)的应用。 在高级建模方面,课程详细讲解了扫描(Sweep)功能,包括使用剖面、无剖面、曲线导向等多种方式,并应用于零件建模(如弹簧制作)和扫除切除(Sweep cut)。此外,还涵盖了放样(Loft)的各种选项、导向曲线应用、实例演示以及放样与边界(Boundary)的区别,并包含了注塑模具相关的练习。 在装配体设计方面,课程从基础概念(如自由度、添加配合)开始,逐步深入到标准配合(重合、距离、同心、相切)、多重配合、干涉检测、动态间隙与碰撞检测。同时,还讲解了爆炸视图(Exploded View)、自顶向下设计(Top Down Design)、物料清单(BOM in Assembly)、子装配体(Subassembly)、装配体特征(范围、倒圆角、倒角)、焊缝(Weld Beads)、孔系列(Hole Series)、智能组件(Smart Components)以及在装配体中插入皮带(Insert Belt)等。 课程还重点介绍了装配体中的各种模式,包括组件的线性、圆形、驱动以及镜像模式。高级配合部分涵盖了对称、宽度、线性耦合、路径配合,以及机械配合,如凸轮、齿轮、齿条小齿轮和螺杆配合。此外,还介绍了角度和距离配合、铰链和参照配合。 最后,课程还涉及配置表设计(Configuration Table Design)以及通过案例研究(Assembly Case Study 1 & 2)来巩固装配体设计技能,并布置了实际的项目(Project-1, Project-2)供学员实践。

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课程详情

الهدف من هذه الدورة هو تعليمك ، كيفية استخدام برنامج التصميم الميكانيكي Solidworks لإنشاء نماذج واللأجزاء وتجميعها وكيفية عمل رسم لتلك الأجزاء والتجميعات. Lecture 1:IntroductionLecture 2:2-Sketch tools-1Lecture 3:3-sketch tools-2Lecture 4:4-Sketch-tools-3Lecture 5:5-Extrude base-1Lecture 6:6-Extrude base-2Lecture 7:7-Extrude base-3Lecture 8:8-Extrude cutLecture 9:9-Revolve baseLecture 10:10- Revolve CutLecture 11:11-Fillets & chamferLecture 12:12- ChamferLecture 13:13- Working with planesLecture 14:14-Making an axis, Points& coordinate systemLecture 15:15- ShellLecture 16:16- Pattern linear& circular in sketch& featureLecture 17:17-Pattern curve & sketch Driven patternLecture 18:18-Pattern table & fillLecture 19:19-Variable PatternLecture 20:20-All patternsLecture 21:21-ribLecture 22:22.spline toolsLecture 23:23.Reverse EngineeringLecture 24:25.spline on surfaceLecture 25:25.sweep-optionsLecture 26:26-sweep without profileLecture 27:27-sweep curve guideLecture 28:28- Part Modeling (Sweep cut with body)Lecture 29:28- Part Modeling (Sweep cut)Lecture 30:29-Part Modeling ( Spring methods)Lecture 31:30-Part Modeling (Loft)Lecture 32:32-Part Modeling (Loft options)Lecture 33:33-Part Modeling (Loft with guid curve)Lecture 34:34-Part Modeling (Loft application)Lecture 35:35-Part Modeling (Loft cut)Lecture 36:36-Boundary vs LoftLecture 36-2-Molding ExercisesLecture 37-1-Assembly Lecture 37-2-Draft DrawingLecture 37-3:37-Assembly (1) IntroLecture 38:38-Degree of freedom and Add matesLecture 39:39-Assembly (3)Standard Mates;Concident,distance, Concentric, Tangent.Lecture 40:Assembly (4)Multiple MateLecture 41:Assembly (5)Interference Detection and Assembly appearanceLecture 42:42-Assembly (6)Dynamic clearance and Collision detectionLecture 43:43-Assembly (7)Exploded ViewLecture 44:44-Assembly (8)Top Down DesignLecture 45:45-Assembly (9)BOM in AssemblyLecture 46:46-Assembly (10)SubassemblyLecture 47:47-Assembly (11)Assembly Features Scope, Fillets & ChamferLecture 48:48-Assembly (12)Weld BeadsLecture 49:49 -Assembly (13)Hole SeriesLecture 50:50 -Assembly (14)Smart ComponentsLecture 51:51 -Assembly (15)Insert Belt in AssemblyLecture 52:52-Assembly (16) Linear Pattern ComponentsLecture 53:53-Assembly (17)Circular Pattern ComponentsLecture 54:54-Assembly (18)Driven Pattern ComponentsLecture 55:55 -Assembly (19) Mirror Pattern ComponentsLecture 56:56 -Assembly (20) Advanced Mate (Symmetric& Width)Lecture 57:57 -Assembly (21) Advanced Mate (Linear Coupler Mate & Path Mate).Lecture 58:58 -Assembly (22) Mechanical Mate (Cam Mate& Gear Mate).Lecture 59:59 -Assembly (23)Mechanical Mate (Rack & Pinion Mate& Screw Mate)Lecture 60:60 -Assembly (24) Advanced Mate (Distance& angle mate)Lecture 61:61 -Assembly (25)Advanced Mate (Hinge & References mate).Lecture 62:62 -Assembly (26)Configuration Table Design AssemblyLecture 63:63-Assembly (27)Assembly Case Study (1)Projects:64-Assembly (28)Assembly Case Study (2)Projects:65-Project-1Projects:65-Project-2

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