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所在平台: Udemy |
课程主页: https://www.udemy.com/course/the-review-of-fundamentals-of-polymers-by-10-basic-curves/
课程评论:没有评论
**课程名称:10条基本曲线回顾高分子科学基础** **课程概述:** 本课程将带您快速、简易地回顾高分子科学的10条基本曲线,以此深入理解高分子科学的基础概念。通过生动的示意图和动画,我们将解析这些曲线,探索聚合方法、高分子化学、高分子结构、形貌以及高分子流变学。课程还将通过这些曲线讨论高分子的物理、热学和力学性能,让您熟悉重要且实用的高分子材料。此外,课程还会简单介绍结晶、力学分析、交联过程和渗流理论。每节课后都设有练习题,旨在加深您的理解并提升研究能力。 **课程内容(共10节):** 1. **大分子(分子量):** 学习如何通过曲线理解高分子的分子量分布。 2. **聚合方法(逐步聚合与链式聚合):** 探讨不同聚合机理如何体现在相关曲线中。 3. **高分子结晶(半结晶与非晶):** 通过曲线分析高分子的结晶行为和结构。 4. **高分子热转变(玻璃化转变温度与熔点):** 理解玻璃化转变温度和熔点等关键热学参数。 5. **高分子流变学(牛顿与非牛顿流体):** 学习如何利用曲线描述高分子的流动行为。 6. **力学性能(拉伸分析):** 分析高分子材料的拉伸性能和断裂行为。 7. **力学疲劳(力学疲劳测试):** 了解高分子材料在循环载荷下的耐久性。 8. **热稳定性(TGA与DSC分析):** 通过热重分析(TGA)和差示扫描量热法(DSC)评估高分子的热稳定性。 9. **交联(硫化过程):** 学习高分子交联(如硫化)过程及其对性能的影响。 10. **渗流理论(高分子复合材料):** 探讨渗流理论在高分子复合材料中的应用。 **学习形式:** 本课程以曲线分析为核心,辅以示意图和动画,注重理论与实践的结合。每节课后的练习题将帮助您巩固知识并提升解决问题的能力。
Welcome to the polymer world. In this course, we are supposed to check 10 basic curves in polymer science to review the polymeric basic concepts fast and simply. We try to make sense of polymer by using schematic images and animations. Analyzing the 10 basic curves is an opportunity to investigate polymerization methods, polymer chemistry, polymer structure, morphology, and polymer rheology. Also, the physical, thermal, and mechanical properties of polymers are discussed in the course by these curves. You get familiar with important and practical polymers during the course. Also, crystallization, mechanical analysis, crosslinking process, and percolation theory are noted simply. This course makes you understand polymer basics more deeply…The course syllabus is:1-Macromolecules (Molecular Weight)2-Polymerization Methods (Step and Chain Polymerization)3-Polymer Crystallinity (Semicrystalline and Amorphous)4-Polymer Thermal Transitions (Glass Transition Temperature and Melting Temperature)5-The Polymer Rheology (Newtonian and Non-Newtonian Fluid)6-The Mechanical Properties (Tensile Analysis)7-The Mechanical Fatigue (Mechanical Fatigue Test)8-The Thermal Stability (TGA and DSC Analysis)9-The Crosslinking (The Vulcanization Process)10-The Percolation Theory (Polymeric Composite)We have designed a question or practice for you at the end of each session. These practices help you to learn interesting points while your research ability improves.