Structural Design with Robot Structural Analysis - AulaGEO

所在平台: Udemy

课程主页: https://www.udemy.com/course/bim-autodesk-robot-structure/

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课程名称:机器人结构分析中的结构设计 - AulaGEO 课程概述: 欢迎参加这个全面的机器人结构分析专业课程,旨在为建筑师、土木工程师和技术人员提供技能,使他们能够加强对钢筋混凝土和钢结构工业建筑中结构元素的建模、计算和设计能力。课程内容将逐步指导您使用机器人结构分析(RSA),从建模和计算到结构元素的设计和细节处理。 请注意:所使用的软件版本为西班牙语,但所有课程指令和讲解均以英语进行,以确保清晰和易懂。本课程将使您能够高效、准确地使用机器人结构分析进行结构项目设计,重点关注国际标准和规范要求。我们将提供必要的技能,以优化工作流程,提高生产力,确保高质量的设计。您将学习使用RSA工具计算抗震荷载情况,定义材料和钢筋,并为结构元素创建详细的钢筋图。 完成本课程后,您将能够: - 熟练运用机器人结构分析进行钢筋混凝土和钢结构的设计。 - 理解进行抗震荷载计算的工具,设计梁、柱和板等元素,并处理钢连接。 - 生成详细的设计报告,包括混凝土元素和钢连接的钢筋详图。 - 提高结构设计项目的效率和准确性,融入行业公认的标准和最佳实践。 您将在课程中学习的内容包括: 1. 几何建模:使用各种工具创建准确的建筑模型。 2. 荷载计算:理解如何计算模态和抗震荷载并应用于设计。 3. 混凝土结构设计:学习如何设计符合相关标准的钢筋混凝土元素。 4. 钢结构设计:掌握钢结构的设计,并创建详细的计算说明。 5. 详细钢筋计划:为混凝土结构生成钢筋放置图和规格表。 6. 实际应用:通过两个实践示例,将所学应用于混凝土和钢结构设计。 课程内容包括: - 课程介绍及软件功能概述 - 几何模型创建、材料定义及构件放置 - 分析模型的创建及荷载应用 - 分析结果的处理与解读 - 钢筋混凝土设计及钢结构设计 为什么要参与这个课程? - 课程内容全面:学习混凝土和钢结构设计,掌握机器人结构分析专业软件。 - 实用项目:参与实际项目,面对结构设计中的挑战。 - 提高效率:掌握工具,提高工作生产率,减少复杂结构设计所需的时间。 - 专家指导:讲师拥有丰富的行业经验,逐步指导您完成每个步骤。 通过本课程,您将具备高效、专业地处理复杂结构项目的知识与技能。现在就报名,迈出掌握机器人结构分析专业结构设计的第一步!

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课程详情

Course OverviewWelcome to this comprehensive Robot Structural Analysis Professional course, designed for architects, civil engineers, and technicians seeking to enhance their ability to model, calculate, and design structural elements in reinforced concrete and steel industrial buildings. This course is structured to guide you step-by-step through the process of using Robot Structural Analysis (RSA), from modeling and calculation to the design and detailing of structural elements.Please note: While the version of the software used is in Spanish, all course instructions and explanations are narrated in English for clarity and accessibility.This course will enable you to efficiently and accurately design structural projects with Robot Structural Analysis, focusing on international standards and normative regulations for reinforced concrete and steel structures. We will provide you with essential skills to optimize workflows, increase productivity, and ensure high-quality designs. You'll learn the use of RSA tools to calculate seismic load cases, define materials and reinforcement, and create detailed reinforcement plans for structural elements.By the end of this course, you will:Be proficient in using Robot Structural Analysis for the design of both reinforced concrete and steel structures.Understand the tools for performing seismic load calculations, designing elements such as beams, columns, and slabs, and working with steel connections.Be able to generate detailed design reports, including reinforcement details for concrete elements and steel connections.Improve the efficiency and accuracy of your structural design projects, integrating industry-recognized standards and best practices.What You Will LearnGeometric Modeling: Learn how to create accurate models using various tools like beams, columns, slabs, and walls.Load Calculations: Understand how to calculate modal and seismic load cases and apply them to your designs.Designing Concrete Structures: Study how to design reinforced concrete elements, ensuring compliance with relevant standards and calculating the required reinforcement.Steel Structure Design: Gain proficiency in designing steel structures, with a focus on steel connections, and create detailed calculation notes.Detailed Reinforcement Plans: Learn how to generate reinforcement placement drawings and specification sheets for concrete structures, including foundations, columns, beams, and slabs.Real-world Applications: We'll develop two practical examples throughout the course that will allow you to apply your learning to both concrete and steel building designs.Course ContentSection 1: IntroductionLecture 1: Program Overview - Introduction to Robot Structural Analysis Professional and its capabilities for structural design.Section 2: Creating the Geometric ModelLecture 2: User Interface - Learn how to navigate the RSA interface.Lecture 3: Units and Formats - Setting up the correct units and formats for your project.Lecture 4: Construction Lines - Creating construction lines to define the geometry of your structure.Lecture 5: Building Plants - Learn how to create floor plans for multi-story buildings.Lecture 6: Definition of the Materials - Defining the materials (concrete, steel, etc.) for your structure.Lecture 7: Section Definition - Defining cross-sections of structural elements like beams and columns.Lecture 8: Column Placement - Placing columns in the model and defining their parameters.Lecture 9: Placement of Beams - Placing beams in the model and defining beam properties.Lecture 10: Thickness Creation - Defining thickness for slabs and walls.Lecture 11: Ribbed Thicknesses - Applying ribbed thicknesses to slabs for more complex designs.Lecture 12: Plant Slab Placement - Placing and defining plant slabs in the model.Lecture 13: Slab Hollows - Creating hollow spaces in slabs to reduce weight.Lecture 14: Wall Placement - Placing walls and defining their properties.Section 3: Creation of the Analytical ModelLecture 15: Creation of Groups - Grouping elements to facilitate analysis.Lecture 16: Support Application - Applying boundary conditions and supports to your structure.Lecture 17: Load Cases - Defining the different load cases for analysis.Lecture 18: Wind Loads - How to apply wind load cases.Lecture 19: Seismic Spectra - Applying seismic loads and understanding seismic design parameters.Lecture 20: Load Application - Applying loads to the model.Lecture 21: Load Combinations - Combining loads for a realistic analysis.Lecture 22: Grid Creation - Creating a structural grid to organize your model.Lecture 23: Analysis Run - Running the structural analysis and interpreting results.Section 4: Analysis ResultsLecture 24: Results by Diagrams - Viewing results in graphical form (bending moments, shear forces, etc.).Lecture 25: Results by Maps - Viewing results in mapped form to visualize stress distributions.Section 5: Reinforced Concrete DesignLecture 26: Design of Reinforced Concrete Bars - Designing beams and columns in reinforced concrete.Lecture 27: Real Bar Armor - Detailing the required reinforcement for concrete elements.Lecture 28: Panel Armor - Designing and detailing the reinforcement of concrete panels.Lecture 29: Foundation Design - Designing and detailing concrete foundations.Section 6: Design of Steel StructuresLecture 30: Assistant for the Creation of Industrial Buildings - Using RSA tools to design steel industrial buildings.Lecture 31: Types of Steel Bars - Understanding the different types of steel bars used in design.Lecture 32: Design Groups - Creating design groups for steel structures.Lecture 33: Sizing Groups - Sizing steel groups based on design calculations.Lecture 34: Final Verification of Steel Bars - Verifying the sizing of steel bars to meet design requirements.Lecture 35: Steel Connections - Designing and detailing steel connections.Lecture 36: Personalized Design - Customizing your design based on specific project requirements.Why Enroll in This Course?Comprehensive Curriculum: Learn both concrete and steel design using Robot Structural Analysis Professional, one of the most powerful tools for structural engineering.Practical Projects: Engage in real-world projects that mirror the types of challenges faced in structural design.Increased Efficiency: Master the tools that will make you more productive and precise in your work, reducing the time required for designing complex structures.Expert Instructor: Learn from an instructor with years of industry experience, guiding you through every step of the process.By the end of this course, you will be equipped with the knowledge and skills to tackle even the most complex structural projects efficiently and professionally.Enroll now and take the first step toward mastering structural design with Robot Structural Analysis Professional!

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